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- Abstract:Breast cancer is one of the most common cancers in women, which seriously threatens women's health. Early diagnosis and precise treatment of breast cancer are helpful to improve the prognosis of patients. This article summarizes the research status of bacteria and their metabolites in the development and treatment of breast cancer, and discusses in detail the role and mechanism of bacteria and their metabolites in the development and intervention of breast cancer. These mechanisms include regulation of inflammation and immune response, DNA damage, and regulation of cell biological characteristics. Engineering bacteria have become one of the hotspots in the field of breast cancer treatment in recent years due to their natural advantages in targeting tumors and activating immunity. This article further summarizes the research progress of engineered bacteria in the treatment of breast cancer, aiming to provide an important reference for formulating targeted treatment strategies and improving the prognosis of patients. Although bacteria and their metabolites affect the development and treatment of breast cancer through a variety of mechanisms, and can enhance the therapeutic effect of cancer and reduce the adverse effects of treatment, the clinical application of bacteria in anti-breast cancer therapy still faces numerous challenges. The highly individualized composition of bacteria leads to the lack of universality of treatment, and the complex interaction between bacteria and host further increases the difficulty of research. In the future, it is urgent to further explore the mechanism of bacteria and their metabolites affecting the development and treatment of breast cancer, and promote the clinical application of bacteria in anti-breast cancer treatment.Keywords:breast cancer;bacteria;metabolites;tumor;treatment449|1336|0<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
Invited Review
- Abstract:Autophagy is a highly conserved cellular self-regulatory mechanism, which primarily occurs in the lysosomes or vacuoles of mammalian and yeast cells and plays a critical role in maintaining cellular homeostasis and metabolic balance. When cells encounter stress conditions like nutrient deprivation, physical or chemical stimuli, infections, and oxidative stress, or when damaged or aging organelles accumulate in the cytoplasm, the autophagic process is activated. This process degrades and recycles damaged proteins and organelles, removes potentially harmful substances, in which the degradation products are used for energy supply and macromolecule resynthesis, thereby help maintain the cellular homeostasis. Autophagy activators are compounds or drugs that can promote the cellular self-clearance process (such as mTOR inhibitors, AMPK activators, SIRT1 activators, lysosome enhancers, etc.). They enhance autophagy activity by acting on autophagy-related signaling pathways or proteins, thereby regulating cellular and metabolic processes, and consequently exerting an impact on the organism. With the deepening of research, more and more small molecule compounds with autophagic activity have been discovered. As autophagy activators, these small molecule compounds have shown great application potential in the treatment of malignant tumors, nervous system diseases, metabolic diseases, etc. Some related drugs have even entered the clinical trial stage and achieved good efficacy. This article discusses the mechanisms of various types of autophagy activators and their potential applications in diseases, aiming to provide a reference for the further development and application of autophagy activators in diseases.Keywords:autophagy;autophagy activators;signaling pathways;cellular homeostasis;clinical application723|3863|1<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
- Abstract:Perfluorooctane sulfonate (PFOS) has significant biotoxicity and can disrupt the structure and function of the blood-brain barrier. PFOS exposure can lead to the degradation of tight junction proteins in the blood-brain barrier and damage to astrocytes, resulting in increased permeability of the blood-brain barrier, as well as the activation of multiple signaling pathways, including PI3K/AKT, p38 MAPK, oxidative stress, and calcium signaling pathways. Damage to the blood-brain barrier may trigger various neurological diseases, and PFOS affects the function of the blood-brain barrier through multiple mechanisms, thereby interfering with the normal operation of the central nervous system. This article aims to review the research progress on the signaling pathways related to PFOS-induced blood-brain barrier damage and suggests that future studies could focus on developing more precise in vivo models, utilizing advanced molecular biology techniques to reveal more detailed molecular mechanisms, and exploring the synergistic effects of PFOS with other environmental toxins, in order to provide scientific evidence for the clinical prevention and treatment of PFOS-induced neurological diseases.Keywords:perfluorooctane sulfonate;blood-brain barrier;neurotoxicity;mechanism;signaling pathway336|752|0<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
- Abstract:Spinal cord injury (SCI) is a prevalent neurological disorder that often results in motor, sensory, cognitive, balance, and walking impairments, and can even lead to pain, significantly affecting the physical and mental health and quality of life of patients. Conventional treatment methods, primarily conducted in hospital settings, tend to be monotonous and lack engagement, leading to low patients’ compliance, motivation and cooperation. In contrast, virtual reality (VR) technology can serve as an effective adjunctive therapeutic approach, immersing patients in simulated virtual environments for functional training in specific contexts and tasks, thereby providing a sense of real experience to achieve assessment and therapeutic outcomes. The interactive and engaging nature of VR technology markedly enhances patients’ interest and motivation in treatment, offering new possibilities for home-based rehabilitation and presenting patients with alternative treatment options. This review systematically introduces the application of VR technology in the treatment of patients with SCI, focusing on its roles in assessing functional impairments, improving motor function, enhancing balance and walking abilities, alleviating pain, and promoting recovery from cognitive and psychological disorders, as well as its impact on other functional impairments and its combined use with other technologies. Furthermore, this article delves into the current advantages and limitations of VR technology, aiming to deepen the understanding of VR among physicians and therapists, promote its widespread clinical application, advance the field of rehabilitation medicine, provide theoretical foundations and directions for future research, and offer new insights and references for clinical practice.Keywords:spinal cord injury;virtual reality;assessment;treatment;application320|1463|2<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
Review
- Abstract:ObjectiveTo investigate the expression level of lysophosphatidyllecithin acyltransferase 4 (LPCAT4) in pancreatic cancer and its effect on the proliferation of pancreatic cancer cells.MethodsIn this study, the differentially expressed genes of patients with KRAS mutant and wild-type pancreatic cancer were analyzed by online database LinkedOmics. The LPCAT4 expression in pancreatic cancer tissues was analyzed online by the University of Alabama at Birmingham Cancer Data Analysis (UALCAN), Sangerbox and gene expression profile interaction analysis 2 (GEPIA2). Kaplan-Meier Plotter database was used to explore the correlation between LPCAT4 and the prognosis of patients with pancreatic cancer. The expression of LPCAT4 in human pancreatic cancer cells were detected by quantitative real-time PCR and Western blot analysis. LPCAT4 was knocked down in the high-expressing SW1990 cell line and overexpressed in the low-expressing MIA PaCa-2 cell line. The effects of LPCAT4 expression on cell proliferation were assessed using CCK-8 and EdU assays. STRING and GEPIA2 databases were used to obtain LPCAT4 binding and coexpressed genes in tumors, which were then analyzed by GO and KEGG.ResultsAnalysis of the LinkedOmics online database revealed a significant upregulation of LPCAT4 in patients with KRAS mutant pancreatic cancer compared to patients with KRAS wild-type pancreatic cancer. The online analysis of GEPIA2, UALCAN and Sangerbox 3.0 showed that the expression of LPCAT4 was higher in pancreatic cancer than in normal tissues. Analysis of the Kaplan-Meier Plotter database revealed that high LPCAT4 expression was associated with poorer prognosis in pancreatic cancer patients.Western blot and qPCR results showed that expression of LPCAT4 in pancreatic cancer cell lines was significantly higher than in normal pancreatic ductal epithelial cells. Knockdown of LPCAT4 in SW1990 cells inhibited proliferation, while overexpression in MIA PaCa-2 cells promoted proliferation. Enrichment analysis indicated that LPCAT4 was closely related to sulfur metabolism.ConclusionsLPCAT4 is highly expressed in pancreatic cancer and is associated with poor prognosis of patients. It plays a significant regulatory role in the proliferation of pancreatic cancer cells, with its expression level closely correlated with cell proliferation capacity. These findings reveal the critical role of LPCAT4 in the malignant progression of pancreatic cancer and provide important evidence for its potential as a therapeutic target.Keywords:lysophosphatidyllecithin acyltransferase 4;pancreatic cancer;differential expression;poor prognosis;proliferation286|584|0<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
- Abstract:ObjectiveTo investigate whether co-activated mesenchymal stem cells(MSCs) exert therapeutic effects against schistosomiasis by modulating macrophage polarization.MethodsTwenty adult male Balb/c mice were randomly divided into four groups: uninfected, infected, MSC-treated, and MSCTLR4+IFN-γ-treated groups. The Schistosoma japonicum infection model was established via abdominal patch method with cercariae. At week 5 post-infection, praziquantel was administered orally for antiparasitic treatment. At week 6, mice received either MSCs treatments (with or without pre-activation) or no treatment. Body weight changes were monitored weekly. Hepatic pathological alterations were evaluated via HE and Masson staining. RT-qPCR was used to assess α-SMA and collagen (Col-I, Col-Ⅲ) mRNA levels to quantify fibrosis. The mRNA levels of hepatic inflammatory cytokines and matrix metalloproteinases(MMP) were analyzed to explore fibrotic mechanisms. The expressions of i-Nos and Arg-1 in liver tissues were detected by RT-qPCR, and the ratio of M1 or M2 macrophages was detected by immunofluorescence staining, aiming to analyze the correlation between MSCs treatment and macrophage polarization. An in vitro co-culture system validated direct MSC-macrophage interactions.ResultsCompared with the infected group, the MSCTLR4+IFN-γ group exhibited increased body weight gain (P< 0.01), reduced hepatic granulomatous lesion area (P< 0.001), and decreased α-SMA, Col-I, and Col-Ⅲ mRNA levels (P< 0.01). Additionally, the MSCTLR4+IFN-γ group showed reduced TNF-α and IL-1β expression (P< 0.05), as well as elevated MMP2, Mmp9, and MMP13 levels (P< 0.01). The MSCTLR4+IFN-γ group showed higher expression of M2 marker Arg-1 mRNA compared with the infection group (P < 0.001) , while the expression of M1 marker i-Nos decreased (P< 0.05). Immunofluorescence confirmed a lower i-Nos+ cell ratio (P< 0.05) and higher F4/80+CD206+ cell ratio (P< 0.000 1) in the MSCTLR4+IFN-γ group compared with the infection group. In vitro co-culture experiments further demonstrated that MSCTLR4+IFN-γ promoted Arg-1 expression, suppressed pro-inflammatory cytokine i-Nos and TNF-α levels, consistent with ELISA results.ConclusionsThis study reveals that TLR4 and IFN-γ co-activated MSCs alleviate Schistosoma japonicum-induced hepatic fibrosis, potentially through modulating macrophage polarization toward the M2 phenotype. This mechanism may suppress inflammation and enhance extracellular matrix degradation, providing a therapeutic strategy for schistosomiasis-associated liver fibrosis.Keywords:macrophages;schistosomiasis;hepatic fibrosis;mesenchymal stem cells;M2 macrophage polarization251|896|0<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
- Abstract:ObjectiveTo screen key genes associated with neuroblastoma (NB) diagnosis and prognosis using the Gene Expression Omnibus (GEO) database, and to investigate the expression and clinical significance of nucleoporin 93 (NUP93) in NB tissues.MethodsNB gene chip data (GSE73517, GSE49710, GSE19274) were retrieved from the GEO database. Differentially expressed genes (DEGs) commonly upregulated in high-risk groups were screened. The R2 database was then used to assess the prognostic value of DEGs that were commonly upregulated in the MYCN amplification group. Finally, NUP93 expression levels in the tissues from 60 NB, 25 ganglioneuroblastoma (GNB), and 26 ganglioneuroma (GN) cases were measured by immunohistochemistry .ResultsTwenty-five DEGs were identified as commonly upregulated in high-risk groups. Among these, 10 genes (SIVA1, NUP93, STIP1, LSM4, RAI14, MYOZ3, KNTC1, TNFRSF10B, TACC3 and CEP152) showed significantly higher expression in MYCN-amplified subgroups (P<0.05). Survival analysis revealed that high NUP93 expression was associated with shorter overall survival (HR = 4.0, 95% CI: 3.0,5.3, P = 1.80 × 10⁻³⁴). Immunohistochemistry results revealed that NUP93 expression in NB tissues was significantly higher than in GNB and GN tissues (P<0.001). NUP93 expression was positively correlated with high mitosis-karyorrhexis index (MKI; P=0.040), poor differentiation (P<0.001), and MYCN expression (rs = 0.793, P <0.001).ConclusionsHigh expression of NUP93 is associated with high MKI and poor differentiation, and predicts unfavorable prognosis in patients with NB, suggesting it may promote tumor progression by regulating MYCN. NUP93 has the potential to be a novel diagnostic biomarker and therapeutic target for NB.Keywords:neuroblastoma;nucleoporin 93;differentiation;prognosis;biomarker290|733|0<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
- Abstract:ObjectiveTo investigate the effect and mechanism of Polygonatum neutral polysaccharides from sibiricum (PSP-NP) on colon injury in mice with chronic obstructive pulmonary disease (COPD).MethodsMale C57BL/6J mice were randomly divided into a control group, a COPD model group, and a PSP-NP group. The COPD model was established using smoke exposure combined with intranasal LPS administration. The PSP-NP group was simultaneously treated daily with 200 mg/kg of PSP-NP via intragastric gavage, while the other groups received an equal volume of saline. HE staining was used to observe the pathological changes in the colon. ELISA was employed to detect the levels of LPS in serum and the expressions of ZO-1, Occludin, IL-6, and TNF-α in colon tissue. UPLC-MS was used to detect the types and contents of bile acids in colonic content, and to screen for differential bile acids. Differential microbial flora were identified using 16S rRNA gene sequencing, and correlation analysis was conducted with differential bile acids. PSP-NP was combined with the differential bile acids cholic acid (CA), and deoxycholic acid (DCA) in vitro to analyze the binding capacity of PSP-NP for CA and DCA. PSP-NP was applied to NCM460 normal colonic epithelial cells cultured in CA and DCA. Cell migration ability was assessed using the scratch assay, and the mRNA expression levels of inflammatory cytokines TNF-α, IL-6, and NF-κB were measured by RT-qPCR.ResultsPSP-NP effectively improved colonic damage in COPD model mice, enhanced mechanical barrier function, alleviated inflammatory response, and regulated abnormal changes in colonic flora and bile acid metabolism. Correlation analysis further revealed that PSP-NP regulated colonic bile acid metabolism and reduced the redundancy of secondary bile acids by increasing the relative abundance of Bacteroidota, Verrucomicrobiota, Bacteroides, and Akkermansia, while decreasing the relative abundance of Lactobacillus and Bifidobacterium. Notably, in vitro binding assays demonstrated that PSP-NP bound to differential bile acids DCA and CA, with the strongest binding capacity for DCA at 58.2%. In cellular functional studies, DCA inhibited the migration ability of colonic epithelial cells NCM460 and significantly increased the relative mRNA expression levels of inflammatory factors TNF-α, IL-6, and NF-κB. Importantly, co-treatment with PSP-NP significantly ameliorated the impact of DCA on NCM460 cells.ConclusionsPSP-NP may significantly improve colonic damage in COPD model mice. The mechanism may involve the regulation of colonic bile acid metabolism and bile acid profiles through both microbial modulation and direct binding, thereby reducing the damage caused by secondary bile acids such as DCA to colonic epithelial cells.Keywords:Polygonatum sibiricum polysaccharides;colonic bile acid metabolism;chronic obstructive pulmonary disease;colonic microbiota;in vitro bile acid binding232|1066|1<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
- Abstract:Abstract:ObjectiveThe study aims to explore the effects and regulatory roles of glucose transporter 1 (GLUT1) on the proliferation, migration, adhesion, and angiogenesis of human umbilical vein endothelial cells (HUVECs) under ischemia-hypoxic conditions.MethodsIn vitro experiments were conducted to subject HUVECs to an ischemia-hypoxic-mimicking environment (1% O2, 5% CO2, 94% N2). The biological characteristics of HUVECs under normoxic and ischemia-hypoxic conditions were compared by assessing cell viability, proliferation capacity, and examining the expression changes of GLUT1, HIF-1α, and VEGFA proteins under ischemia-hypoxia using Western blot technology. Further, GLUT1 was overexpressed using plasmid transfection and the proliferation, migration, adhesion, and angiogenic capabilities of HUVECs were evaluated through scratch assays, cell adhesion assays, and tube formation assays. Mitochondrial morphological changes were observed by transmission electron microscopy,and oxygen consumption rate (OCR) was detected by Seahorse metabolic analyzer to evaluate mitochondrial function.ResultsCompared with normoxic conditions, the ischemia-hypoxic environment significantly inhibited the proliferation, cell viability, migration, and adhesion capabilities of HUVECs and impaired their angiogenic potential. The expression levels of GLUT1, HIF-1α and VEGFA proteins were also markedly reduced. However, when GLUT1 expression was upregulated, the migration, adhesion, and angiogenic capabilities of HUVECs were significantly improved, and the protein expression levels of HIF-1α, VEGFA and VEGFR were increased. Transmission electron microscopy revealed that ischemic-hypoxia leads to mitochondrial swelling and matrix damage, while GLUT1 overexpression significantly alleviates mitochondrial morphology abnormalities. OCR results suggest that GLUT1 overexpression may enhance oxidative phosphorylation of endothelial cells in ischemic-hypoxic environments to improve energy metabolism. These results suggest that GLUT1 may influence the function and angiogenic potential of HUVECs by regulating glucose metabolism and energy supply.ConclusionsThis study reveals the significant regulatory role of GLUT1 in the function of HUVECs under ischemia-hypoxic conditions, potentially through modulating cellular energy metabolism and signal transduction pathways, thereby affecting cell proliferation, migration, adhesion, and angiogenesis. These findings provide a new perspective on the role of GLUT1 in cardiovascular diseases and may offer potential targets for the development of new therapeutic strategies.Keywords:glucose transporter 1;ischemia-hypoxic environment;angiogenesis;endothelial cells;energy supply219|886|1<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
- Abstract:ObjectiveTo unearth novel circRNA-miRNA-mRNA network and potential drugs in ischemic stroke.MethodsData from the GEO database were utilized, focusing on three datasets (GSE115697, GSE51586, and GSE137482) that examine RNA expression levels in middle cerebral artery occlusion (MCAO) mouse models. Differentially expressed mRNA (DEmRNA), DEcircRNA, and DEmiRNA were identified using the Limma package in R. A comprehensive strategy combining bioinformatics tools such as MiRWalk and StarBase was employed to identify circRNA-miRNA-mRNA networks associated with ischemic stroke. Hub sub-networks were screened and visualized using Cytoscape software. Functional analyses of the ceRNA networks were performed using Gene Ontology (GO) enrichment and Kyoto Encyclopedia of Genes and Genomics (KEGG) pathway analysis, with pathways containing more than 10 enriched genes and an false discovery rate (FDR) < 0.05 considered statistically significant. Lastly, the Connectivity Map (CMap) was applied to identify potential therapeutic drugs for ischemic stroke and the MCAO model was established in wild-type mice to verify the therapeutic effect.ResultsTotally, 1,249 DEmRNA, 294 DEmiRNA and 70 DEcircRNA were identified and it was found that 3 circRNA-miRNA-mRNA networks might be closely related to ischemic stroke. Based on these findings, Austricine, Metyrapone and Desoxypeganine were the most likely drugs that able to reverse the changes caused by stroke-related ceRNA networks. Metyrapone, taken as an example, was validated to improve neurological function damage on the first (P=0.001 4) and second (P=0.016 1) days post-surgery and reduce infarct volume (P=0.004 9), thereby exerting a neuroprotective effect in ischemic stroke.ConclusionsOur study provides a novel insight into the pathogenesis and therapy of ischemic stroke from the perspective of circRNA-miRNA-mRNA regulatory network. The three drugs predicted in our research provide new clues for the treatment of ischemic stroke.Keywords:ischemic stroke;circRNA;mRNA;competitive endogenous RNA;connectivity map database292|810|1<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
- Abstract:ObjectiveTo study the regulatory effect of the partial sequence within the 3’ untranslated region (3’UTR) of slit guidance ligand 1 (Slit1) (Slit1-3’UTR) on the fibrotic phenotypes of cardiac fibroblasts (CFs) and its potential mechanism.MethodsThe adenovirus vector was used to overexpress the 1526nt sequence of Slit1-3’UTR in ICR neonatal mouse CFs (mCFs). The expression of fibrosis-related genes in mCFs, such as collagen type 1 alpha1(COL1A1), collagen type 3 alpha3 (COL3A1) and alpha smooth muscle actin (α-SMA) were detected by Western blot assay. The effect of Slit1-3’UTR 1526nt on the proliferation and migration of mCFs was assessed by EdU staining and Trans-well assays. Angiotensin Ⅱ (Ang Ⅱ) was used to treat mCFs, and the impact of Slit1-3’UTR 1526nt on the fibrotic phenotypes of Ang Ⅱ-induced mCFs was evaluated. After overexpression of Slit1-3’UTR 1526nt, miR-34a-5p mimic was transfected into mCFs, followed by actinomycin D treatment to detect the mRNA stability of Slit1-3’UTR 1526nt, and the levels of miR-34a-5p and its target gene SIRT1(si-SIRT1) in mCFs were determined. The effects of miR-34a-5p and small interfering RNA targeting SIRT1 on the Slit1-3’UTR 1526nt-mediated regulation of fibrotic phenotypes were also determined.ResultsAdenovirus-mediated overexpression of Slit 1-3’UTR 1526nt was achieved in mCFs. Overexpression of Slit 1-3’UTR 1526nt markedly inhibited the expression of the fibrosis-related genes, proliferation and migration of mCFs and fibrotic phenotypes of Ang Ⅱ. The results of actinomycin D assay showed that miR-34a-5p inhibited the stability of Slit1-3’UTR 1526nt in mCFs, while the level of miR-34a-5p was reduced in mCFs with overexpression of Slit1-3’UTR 1526nt. Transfection of miR-34a-5p promoted the fibrotic phenotypes, and reversed the inhibitory effect of Slit1-3’UTR 1526nt on the fibrotic phenotypes of mCFs. Overexpression of Slit1-3’UTR 1526nt significantly increased the level of miR-34a-5p target gene SIRT1 in mCFs. Transfection of miR-34a-5p and si-SIRT1 consistently reversed the inhibitory effects of Slit1-3’UTR 1526nt on the fibrotic phenotypes of mCFs.ConclusionSlit1-3’UTR1526nt inhibits the fibrotic phenotypes of mCFs by binding to miR-34a-5p and increasing the expression of its target gene of SIRT1.Keywords:myocardial fibrosis;slit guidance ligand 1(Slit1);3’untranslated region (3’UTR);microRNA;cardiac fibroblasts198|268|0<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
- Abstract:ObjectiveTo explore whether fluoroethylnormemantine (FENM), an NMDA receptor antagonist, could improve compulsive-like behaviors and to investigate its underlying mechanisms in the RU24969-induced obsessive-compulsive disorder (OCD) mouse model.MethodsThirty-two mice were randomly assigned to four groups: Saline (n=8), RU24969 (n=8), RU+FENM (n=8), and FENM (n=8). Mice received FENM or an equivalent volume of saline for pre-treatment, followed by RU24969 or saline for model induction 30 minutes later. Behavioral tests were performed 1 hour after modeling, and serum samples were collected to measure the level of brain-derived neurotrophic factor (BDNF). Evans Blue dye was intravenously injected to assess dye content in brain tissue, thereby evaluating potential blood-brain barrier damage.ResultsFENM treatment significantly improved repetitive stereotyped circling behavior (F=39.850, P<0.001) and alleviated persistent motor activity (F=50.200, P<0.001) in RU24969 model mice. Additionally, FENM treatment significantly increased serum BDNF level in RU24969-induced OCD mice (F=18.930, P<0.001).ConclusionsFENM , an NMDA receptor antagonist, may alleviate compulsive behaviors in OCD mice by modulating BDNF levels , thereby exerting anti-compulsive effects. Neither the RU24969 model nor FENM treatment significantly affectes blood-brain barrier integrity.Keywords:obsessive-compulsive disorder;RU24969;glutamate receptor antagonist;brain-derived neurotrophic factor;blood-brain barrier209|629|0<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
- Abstract:ObjectiveTo clarify whether epigallocatechin gallate (EGCG) is involved in the clearance of amyloid β-protein (Aβ) and autophagy induction by microglia, so as to explore the potential mechanisms of EGCG in the prevention and treatment of Alzheimer's disease (AD).MethodsSix-month-old APP/PS1 mice were randomly divided into model and EGCG groups, with some additional wild type (WT) mice as the control group, each group consisting of 15 mice. The EGCG group received continuous gavage administration[5 mg/(kg·d)] for 8 weeks, followed by the open field test and Y-maze to assess the learning and memory abilities of the mice. Thioflavin-S staining was used to evaluate the content and distribution of amyloid β-protein (Aβ)in the brain parenchyma of the mice, and immunofluorescence was employed to detect the expression levels of Aβ1-42, glial fibrillary acidic protein (GFAP), and ionized calcium-binding adapter molecule 1 (Iba1) in the hippocampal tissue of the mice. Additionally, N9 mouse microglial cells were induced with 20 µmol/L Aβ1-42, and the cell viability was measured after treatment with different concentrations of EGCG (5 µmol/L, 10 µmol/L, 20 µmol/L). Western blotting was used to detect the levels of Aβ1-42, low density lipoprotein receptor-related protein 1(LRP1), receptor for advanced glycation endproducts (RAGE), amyloid precursor protein (APP), insulin degrading enzyme (IDE), neprilysin (NEP), microtubule associated protein 1 hydrogen chain 3(LC3)-Ⅱ/LC3-Ⅰ, phosphatidylinositol 3-hydroxy kinase(PI3K), p-PI3K, protein kinase B (AKT), p-AKT, mammalian target of rapamycin (mTOR), p-mTOR, and histone deacetylase 6(HDAC6). Finally, through the co-culture of microglial cells and neuronal SH-SY5Y cells, cell viability and Caspase-3 levels were measured to verify the protective effect of EGCG-mediated Aβ clearance on neurons.ResultsEGCG increased the activity time and frequency of APP/PS1 mice in the central area of the open field (P<0.05), and enhanced the percentage of alternation in the Y-maze test (P<0.01); EGCG reduced Aβ deposition in the hippocampal tissue of APP/PS1 mice and increased the number of microglia; in vitro experiments showed that EGCG improved the survival rate of Aβ-induced N9 cells (P<0.01), upregulated RAGE activity (P<0.05), and promoted the internalization and phagocytosis of Aβ (P<0.01). ECGC activated microglial autophagy by downregulating the level of HDAC6 (P<0.05), inhibiting the phosphorylation of PI3K, AKT, mTOR (P<0.001), and increasing the LC3-Ⅱ/LC3-I ratio (P<0.001); EGCG improved the survival rate of SH-SY5Y cells (P<0.05) and reduced the activity of Caspase-3 (P<0.01) by clearing Aβ1-42 through microglia, and had a protective effect on neurons.ConclusionEGCG activates microglial autophagy to clear Aβ by targeting and inhibiting the HDAC6-PI3K/AKT/mTOR axis.Keywords:epigallocatechin gallate;Alzheimer's disease;amyloid β-protein;microglia;autophagy;histone deacetylase 6292|249|2<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
Preclinic Research
- Abstract:ObjectiveTo investigate the efficacy of ovarian tissue cryopreservation and autologous transplantation in preserving fertility and ovarian endocrine function in patients with cervical cancer.MethodsA 26-year-old patient with stage ⅡA1 cervical cancer underwent ovarian tissue harvesting and cryopreservation during cancer surgery. Following complete remission of the cancer, autologous ovarian tissue transplantation was performed. Follow-up monitoring included assessment of menopausal symptoms, hormone levels, and follicular development.ResultsSix months after transplantation, follicle-stimulating hormone levels decreased to 6.60 U/L, and estradiol levels increased from <10.00 ng/L to 89.00 ng/L. At 10 months after transplantation, ultrasound monitoring confirmed follicular development and physiological ovulation in the transplanted ovarian tissue. By 15 months after transplantation, follicle-stimulating hormone levels remained stable at 7.24 U/L, and estradiol levels further increased to 368.00 ng/L. Over 2 years after transplantation, the patient successfully gave birth to a healthy baby through assisted reproductive technology.ConclusionThe restoration of endocrine and ovulation functions in the transplanted cryopreserved ovarian tissue, followed by successful pregnancy, demonstrates the clinical success of ovarian tissue transplantation.Keywords:multidisciplinary collaboration;ovarian tissue cryopreservation;ovarian tissue transplantation;cervical cancer;ovarian function;fertility preservation267|887|1<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
- Abstract:ObjectiveTo explore the diagnostic value of plasma C-C motif chemokine ligand 3(CCL3) levels in infectious diseases.MethodsThe study enrolled patients in hospital or outpatient service and individuals undergoing health check-ups at Guangdong Provincial People's Hospital from July to October 2023. Patients clinically diagnosed with infectious diseases were assigned to the experimental group, while those who were healthy or diagnosed with non-infectious diseases were included in the control group. After non-qualifying samples were excluded, residual blood specimens from complete blood count (CBC) tests were collected to measure the plasma CCL3 levels.The CBC parameters including white blood cell count (WBC), neutrophils count (NEUT), eosinophils count (EOS),etc, and the plasma CCL3 levels were analyzed between the infectious and control groups to evaluate the clinical diagnostic value of CCL3 in infectious diseases.ResultsA total of 257 cases were enrolled, with 167 in the experimental group (active infections confirmed via clinical symptoms, CBC, inflammatory markers, or etiological examinations) and 90 in the control group (confirmed absence of active infections). The experimental group exhibited higher levels of WBC, NEUT and CCL3 than the control group, while the lymphocytes count(LYMPH), EOS in the experimental group were lower, with statistical significance (P<0.001) in univariate analysis. By using these significantly different indicators as independent variables, logistics regression modeling identified WBC, NEUT and CCL3 as independent risk factors for infection. Receiver operating characteristic(ROC) curve analysis revealed superior diagnostic performance of CCL3 over WBC and NEUT, while LYMP and EOS showed no diagnostic performance. The area under the curve (AUC) for CCL3 was 0.844 (95% CI: 0.795, 0.892), with a sensitivity of 84.4%, a specificity of 69.8%, and an optimal threshold of 106.405 ng/mL.ConclusionPlasma CCL3 levels have clinical diagnostic value in predicting infectious diseases and may serve as a potential clinical biomarker for detecting infectious diseases.Keywords:chemokine;CCL3;infectious diseases;diagnostic test;receiver operating characteristic (ROC) curve;diagnostic value246|378|1<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
- Abstract:ObjectiveTo investigate the impact of preoperative frailty on the prognosis of patients with pancreatic cancer who underwent pancreaticoduodenectomy.MethodsA retrospective analysis was conducted on the clinical data of 435 pancreatic cancer patients who underwent pancreaticoduodenectomy at Sun Yat-sen Memorial Hospital of Sun Yat-sen University. Preoperative frailty was assessed using the FRAIL questionnaire. Binary logistics regression analysis was employed to identify factors influencing frailty, and Cox regression analysis was used to evaluate the effect of frailty on survival. According to the demographic characteristics, subgroup analyses were performed on the effect of frailty on prognosis of patients with pancreatic cancer with pancreaticoduodenectomy.ResultsAmong the 435 patients enrolled, 119 (27.4%) exhibited frailty, while 316 (72.6%) did not. Significant differences were observed between the two groups in various clinical parameters, including age, body mass index, American Society of Anesthesiologists (ASA) score, postoperative red blood cell transfusion, postoperative abdominal abscess, serum levels of glycoantigens 199, glycoantigens 125, and alpha fetoprotein, leukocyte count, neutrophil, high density lipoprotein (HDL) level, and pain intensity (P<0.05). Advanced age and an ASA score of Ⅲ were identified as risk factors for frailty, whereas HDL level was a protective factor. Non-frail patients had better postoperative survival times than frail patients. HDL was determined to be an independent protective factor for prognosis, while LDL was an independent risk factor.ConclusionsThis study demonstrates that preoperative frailty is a significant predictor of poor prognosis in pancreatic cancer patients who underwent pancreaticoduodenectomy.These findings suggest that preoperative frailty assessment and targeted interventions to improve nutritional and metabolic status could potentially enhance postoperative survival and quality of life in pancreatic cancer patients.Keywords:frailty;the FRAIL questionnaire;pancreatic cancer;pancreaticoduodenectomy;prognosis225|888|0<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
- Abstract:ObjectiveTo investigate the effect of video-based educational intervention combined with maternal presence on perioperative adverse outcomes in preschool children undergoing general anesthesia, including cooperation in anesthesia induction, perioperative anxiety, pain and agitation during recovery.MethodsA total of 300 preschool children scheduled for general anesthesia in our hospital from June to December 2023 were randomly assigned to control group (n=150) and intervention group (n=150). The control group received routine recovery care. For the intervention group, in addition to routine recovery care, a preoperative visit was scheduled one day before surgery. During this visit, mothers were guided to watch anesthesia videos with their children. During the waiting period in the operating room and 30 minutes after awakening, the mothers were guided to accompany the children for more than 30 minutes. Recovery conditions were recorded using the surgical anesthesia information system, and the children’s anesthetic induction compliance, perioperative anxiety, pain, and agitation were evaluated and recorded using the modified Yale Preoperative Anxiety Scale (m-YPAS), the Induction Compliance Scale (ICC), the Children’s Pain Behavior Scale (FLACC), and the Pediatric Agitation and Emergence Delirium Scale (PAED).ResultsOn the preoperative visit day, there were no statistically significant differences in baseline data between the two groups (P > 0.05). For perioperative anxiety, the m-YPAS scores of the intervention group were significantly lower than those of the control group, both when entering the operating room waiting area (35.27±6.48 vs. 41.79±6.68, P < 0.05) and 30 minutes after postoperative recovery (20.13±7.05 vs. 35.75±9.51, P < 0.05). In terms of anesthesia induction cooperation, the ICC scores of the intervention group were significantly lower than those of the control group (1.84±0.95 vs. 3.17±0.62, P < 0.05), and the proportion of good induction cooperation was significantly higher than that of the control group (24.00% vs. 12.67%, P < 0.05). There was no significant difference in awakening duration between the two groups, but the intervention group had a significantly shorter length of stay in the post-anesthesia care unit than the control group (0.90±0.29 hours vs. 1.29±0.42 hours, P < 0.001). For perioperative agitation, the PAED scores of the intervention group were significantly lower than those of the control group (entering in the operating room waiting area: 8.5 vs. 9.2, P < 0.05; 30 minutes after postoperative recovery: 4.2 vs. 7.8, P < 0.05). In terms of pain scores, the FLACC scores of the intervention group were also significantly lower than those of the control group, both when entering the operating room waiting area ( 5.3 vs. 6.7, P < 0.05; 30 minutes after postoperative recovery: 2.1 vs. 4.9, P < 0.05).ConclusionsVideo-based educational intervention combined with maternal presence reduces the perioperative anxiety, pain and agitation of preschool children undergoing general anesthesia, and improved the compliance of anesthesia induction. It is recommended to promote this intervention measure in clinical practice.Keywords:pre-school age;children under general anesthesia;video-based education;maternal presence;perioperative period208|913|2<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
- Abstract:ObjectiveTo identify the characteristic exhaled volatile organic compounds (VOCs) associated with postoperative pulmonary complications (PPCs) in patients after abdominal surgery.MethodsThis study prospectively enrolled 76 patients with tracheal intubation who were transferred to intensive care unit (ICU) after abdominal surgery at Peking University People's Hospital between December 10, 2022 and June 30, 2023. The patients' basic information was collected during their perioperative period, and their exhaled VOCs were collected within 24 hours after their admission to the ICU, and then analyzed by gas chromatography and mass spectrometry (GC-MS). According to whether PPCs occurred 24 hours after surgery, the patients were divided into PPCs group (n=44) and non-PPCs group (n=32), and the differences of VOCs were compared between the two groups. Lasso regression analysis was used to screen the valuable variables of VOCs, and Logistics regression analysis to determine the characteristic VOCs associated with the occurrence of PPCs.ResultsAmong the 76 patients, 44 had PPCs and 32 had no PPCs. Lasso regression analysis screened 4 PPCs-related compounds from exhaled VOCs of two groups for further analysis and Logistics regression analysis showed that the increase of 1-Hexadecanol content in exhaled breath was significantly correlated with the occurrence of PPCs (OR: 1.000, P=0.002).ConclusionThis study indicated that the increased content of 1-Hexadecanol in patients' exhaled breath after abdominal surgery may be associated with the occurrence of PPCs.Keywords:intensive care unit;tracheal intubation;pulmonary complications;exhaled breath analysis;volatile organic compounds234|451|0<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
- Abstract:ObjectiveTo investigate the perceived experience and acceptance of intrapartum ultrasound (IPUS) as a novel method for labor progress assessment among pregnant women.MethodsFrom February 2023 to December 2024, a total of 180 pregnant women admitted to the Labor Ward of Lingnan Hospital, the Third Affiliated Hospital of Sun Yat-sen University, who were planned for vaginal trial of labor , were accessed for labor progress using IPUS and vaginal examination (VE) after the onset of labor and prior to the initiation n of labor analgesia. A self-designed questionnaire was used to investigate the women's perceived experiences with both examination methods and their acceptance of IPUS. The pain intensity associated with the examinations was evaluated using the visual analogue pain scale (VAS). Differences in the women's experiences and pain intensity between the two labor progress assessment methods were compared.ResultsThe acceptance rate of IPUS was 96.67% (174/180), with the remaining 6 cases undecided. Over 60% of the pregnant women reported IPUS assessment as comfortable and none of them felt discomfort, whereas 32.8% felt uncomfortable with VE (χ2=196.02, P<0.001). Nearly two-thirds of the pregnant women believed that VE would cause psychological distress, while none reported such effect with IPUS (χ2=261.52, P<0.001). Approximately 77.78% (140/180) of the pregnant women believed that IPUS could reduce their fear of vaginal delivery and enhance their confidence if it replaced VE. The VAS score for IPUS [0 (0, 2)] was significantly lower than that for VE [4 (4, 6)] (Z=-14.62, P<0.001). Further stratified analysis showed that over 90% (164/180) of the pregnant women found IPUS painless, with no moderate or severe pain reported, compared to 43.33% (78/180) experienced moderate or severe pain with VE (P<0.001).ConclusionAs a novel approach for labor progress assessment, IPUS not only alleviates the pain and discomfort associated with traditional VE and reduces the fear of childbirth but also enhances women's confidence in delivery, thereby achieving a high level of acceptance among parturient women in China.Keywords:intrapartum ultrasound;experience;acceptance;labor progress assessment;questionnaire survey229|713|1<HTML><L-PDF> <Meta-XML>Updated:2025-05-20
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