1.New perspectives of RNA methylation regulatory networks in the pathophysiologic mechanisms of diabetic retinopathy
International Eye Science 2026;26(3):429-434
Diabetic retinopathy(DR)is the most prevalent microvascular complication associated with diabetes mellitus(DM). Its pathological mechanisms encompass various factors, including microvascular lesions, chronic inflammation, oxidative stress, and metabolic memory effects. Nevertheless, current clinical practices in the diagnosis and treatment encounter significant challenges, particularly regarding early detection and the limited efficacy of therapeutic interventions. Recently, RNA methylation modifications, particularly N6-methyladenosine(m6A), have emerged as a central mechanism in the epigenetic regulation of the transcriptome, playing a crucial role in the pathophysiological processes underlying DR. The regulation of m6A modification is a synergistic process involving methyltransferases(such as METTL3), demethylases(such as FTO and ALKBH5), and binding proteins(such as the YTHDF family), which collectively influence RNA metabolism and participate in various pathological processes. Additionally, m6A interacts within a complex cooperative regulatory network alongside non-coding RNAs(including miRNA, lncRNA, and circRNA), significantly contributing to the key pathological mechanisms of DR. This article systematically reviews the existing literature, with the objective of constructing a regulatory network map for DR centered on RNA methylation. This review not only enhances the understanding of the pathogenesis of DR but also provides a theoretical foundation for developing novel diagnostic markers and targeted treatment strategies based on m6A.
2.COPB1 promotes the development and progression of esophageal squamous cell carcinoma by activating the PI3K/AKT pathway and regulating the tumor immune microenvironment
LIN Yan ; YU Shuangjian ; JIA Sifan ; LI Feiyu ; ZHAO Chenpu ; DONG Zhiming ; SHEN Supeng ; LIANG Jia ; GUO Yanli
Chinese Journal of Cancer Biotherapy 2025;32(12):1236-1246
[摘 要] 目的:探究包被蛋白复合体β1亚基(COPB1)在食管鳞状细胞癌(ESCC)中的表达,及其对ESCC细胞恶性生物学行为的影响、作用机制及临床意义。方法:采用2014~2018年间在河北医科大学第四医院生物样本库中82例ESCC组织及癌旁组织,常规培养正常食管鳞状上皮细胞HEEC和食管癌细胞KYSE-150、KYSE-170、Eca109、TE1、KYSE-30、KYSE-450,用转染试剂将pcDNA3.1-vector(空载体)、pcDNA3.1-COPB1载体,si-NC和si-COPB1转染至KYSE-150、TE1细胞中,记为NC、COPB1-OE、si-NC和si-COPB1组。用数据库数据分析COPB1 mRNA在泛癌组织中的表达及其表达与免疫细胞浸润的关系,qPCR法检测ESCC组织和细胞中COPB1、PIK3CB、CD68、CD163、CD206、ARG1、IL-10 mRNA水平表达情况,WB法检测ESCC组织和各组细胞中的COPB1、PI3K、CD68、CD163、CD206、p-AKT蛋白表达,克隆形成实验和MTS实验检测各组细胞的增殖能力,划痕愈合实验和Transwell实验检测各组细胞的迁移和侵袭能力,免疫组织化学染色(IHC)法检测ESCC组织中COPB1和CD206蛋白表达。以人单核细胞白血病细胞(THP-1)构建巨噬细胞模型,用佛波酯(PMA)和IL-3和IL-4和ESCC细胞上清液诱导巨噬细胞转型,用qPCR和WB法检测CD68和CD206m RNA和蛋白的表达。结果:COPB1在泛癌组织和ESCC组织中均呈高表达且与淋巴结转移和TNM分期有关联(均P < 0.01),COPB1高表达的ESCC患者总生存期短(P < 0.05),COPB1是潜在的ESCC的诊断标志物。COPB1在KYSE-150和TE1细胞中也呈高表达(均P < 0.05),过表达或敲减COPB1可明显抑制或促进KYSE-150和TE1细胞的增殖能力、迁移和侵袭能力(均P < 0.05)。COPB1表达变化诱导的差异表达基因主要富集于PI3K/AKT通路(均P < 0.001), COPB1可促进PI3K/AKT通路的活化(P < 0.05),COPB1高表达可导致M2型巨噬细胞浸润增加(P < 0.05),COPB1高表达促进TAM/M2极化(P < 0.05)。结论:COPB1在ESCC组织中呈高表达,其可激活PI3K/AKT通路及调控肿瘤免疫微环境促进 ESCC发生发展,COPB1有望成为ESCC诊断和预后的生物标志物及治疗靶点。
3.Factors influencing cognitive function in Chinese elderly individuals: The role of traditional Chinese medicine in a large-scale cross-sectional study
Houqin Li ; Ran Chen ; Jing Xia ; Feiyu He ; Yan Zhang ; Shulan Tang ; Cheng Ni
Journal of Traditional Chinese Medical Sciences 2025;2025(2):221-230
ObjectiveTo identify key factors influencing cognitive function in the elderly, including traditional Chinese medicine (TCM) constitutional classification, and to rank their relative importance.MethodsWe used cross-sectional data from seven geographical regions across mainland China. The Changsha version of the Montreal Cognitive Assessment was used to assess cognitive function. A “least absolute shrinkage and selection operator” (LASSO) model, multivariate linear regression analysis, and random forest (RF) model were used. Subgroup analyses were performed to examine the correlation between key TCM constitution types and cognitive function in different population subgroups.ResultsA total of 24 803 individuals aged 60 and above were included in the study. We selected 18 influential factors using the LASSO model. Higher education, being married, and having insurance were positively correlated with cognitive function in the elderly (all P .05). In contrast, poor sleep, vision impairment, hearing impairment, basic activities of daily living disability, instrumental activities of daily living disability, depression, hypertension, coronary heart disease, diabetes, stroke, yang-deficiency constitution (YADC), yin-deficiency constitution (YIDC), qi deficiency constitution (QDC), and blood stasis constitution (BSC) were negatively correlated with cognitive function (all P .05). YIDC and BSC affected all dimensions of cognitive function (all P .05). YADC mainly affected attention, language, abstraction (verbal analogies), memory, and orientation to time and place dimensions (P .001). QDC mainly affected language and abstraction (verbal analogies) dimensions (P .05). The negative correlations between BSC, YADC, YIDC, and QDC scores and cognitive function revealed statistically significant differences across most subgroups. The RF model identified education, BSC, and poor sleep quality as the three most influential factors in our study.ConclusionBSC, YADC, YIDC, and QDC were associated with cognitive decline in the elderly. Our findings provide new perspectives and significant references for interventions for early-stage cognitive disorders.
4.Magnesium promotes vascularization and osseointegration in diabetic states.
Linfeng LIU ; Feiyu WANG ; Wei SONG ; Danting ZHANG ; Weimin LIN ; Qi YIN ; Qian WANG ; Hanwen LI ; Quan YUAN ; Shiwen ZHANG
International Journal of Oral Science 2024;16(1):10-10
Diabetes has long been considered a risk factor in implant therapy and impaired wound healing in soft and hard oral tissues. Magnesium has been proved to promote bone healing under normal conditions. Here, we elucidate the mechanism by which Mg2+ promotes angiogenesis and osseointegration in diabetic status. We generated a diabetic mice model and demonstrated the alveolar bone healing was compromised, with significantly decreased angiogenesis. We then developed Mg-coating implants with hydrothermal synthesis. These implants successfully improved the vascularization and osseointegration in diabetic status. Mechanically, Mg2+ promoted the degradation of Kelch-like ECH-associated protein 1 (Keap1) and the nucleation of nuclear factor erythroid 2-related factor 2 (Nrf2) by up-regulating the expression of sestrin 2 (SESN2) in endothelial cells, thus reducing the elevated levels of oxidative stress in mitochondria and relieving endothelial cell dysfunction under hyperglycemia. Altogether, our data suggested that Mg2+ promoted angiogenesis and osseointegration in diabetic mice by regulating endothelial mitochondrial metabolism.
Mice
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Animals
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Kelch-Like ECH-Associated Protein 1/metabolism*
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Magnesium/metabolism*
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Osseointegration
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Diabetes Mellitus, Experimental/metabolism*
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Endothelial Cells/metabolism*
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NF-E2-Related Factor 2/metabolism*
5.Magnesium promotes vascularization and osseointegration in diabetic states
Liu LINFENG ; Wang FEIYU ; Song WEI ; Zhang DANTING ; Lin WEIMIN ; Yin QI ; Wang QIAN ; Li HANWEN ; Yuan QUAN ; Zhang SHIWEN
International Journal of Oral Science 2024;16(1):122-133
Diabetes has long been considered a risk factor in implant therapy and impaired wound healing in soft and hard oral tissues.Magnesium has been proved to promote bone healing under normal conditions.Here,we elucidate the mechanism by which Mg2+ promotes angiogenesis and osseointegration in diabetic status.We generated a diabetic mice model and demonstrated the alveolar bone healing was compromised,with significantly decreased angiogenesis.We then developed Mg-coating implants with hydrothermal synthesis.These implants successfully improved the vascularization and osseointegration in diabetic status.Mechanically,Mg2+ promoted the degradation of Kelch-like ECH-associated protein 1(Keap1)and the nucleation of nuclear factor erythroid 2-related factor 2(Nrf2)by up-regulating the expression of sestrin 2(SESN2)in endothelial cells,thus reducing the elevated levels of oxidative stress in mitochondria and relieving endothelial cell dysfunction under hyperglycemia.Altogether,our data suggested that Mg2+ promoted angiogenesis and osseointegration in diabetic mice by regulating endothelial mitochondrial metabolism.
6.Policy analysis on the infection prevention and control of medical alliance in China
Qun LU ; Zhenwei LI ; Yuzheng ZHANG ; Feiyu WU ; Kaiwen NI
Chinese Journal of Hospital Administration 2024;40(8):635-639
Objective:To quantitatively analyze infection prevention and control policy texts related to medical alliance, aiming to provide reference for further policy improvement.Methods:with the " medical alliance" and " infection prevention and control" as keywords, relevant policy documents issued from January 2015 to March 2023 were searched on the Chinese government website, the official website of the National Health Commission, and the Peking University law database. Content analysis method was used to quantitatively analyze policy texts from two dimensions: policy tools (supply oriented, environmental oriented, demand oriented) and systems theory (management, service, human resources, and financing systems as internal subsystems, while political, economic, social, and technological systems as external subsystems).Results:A total of 91 infection prevention and control policy documents related to medical alliance were included, and 199 codes were obtained. There were 114, 78, and 7 codes for environmental oriented, supply oriented, and demand oriented policy tools, respectively; among the demand oriented tools, there were only 1 code for government purchases, 1 code for price subsidies, and 5 codes for demonstration project sub tools, respectively. The internal subsystem had a total of 119 codes, with only 2 codes related to the fundraising system; and the external subsystem had a total of 80 codes, with the least 10 codes related to the technical system.Conclusions:The structure of infection prevention and control policy tools in China′s medical alliance needed to be optimized, and the application of demand oriented policy tools was insufficient. It is necessary to strengthen the use of pull tools such as government purchases, price subsidies, and demonstration projects. At the same time, it is necessary to improve the construction of internal and external systems, especially in terms of fundraising and technology systems, to enhance the overall effectiveness of the medical alliance′s infection prevention and control system.
7.Construction and characterization of a modA gene mutant strain of Klebsiella pneumoniae
Hui WANG ; Xiaoyu JIANG ; Feiyu LI
Journal of Southern Medical University 2024;44(4):748-756
Objective To construct a mutant strain of Klebsiella pneumoniae NTUH-K2044 with modA gene deletion and its complementary strain and explore the role of modA gene in modulating anaerobic nitrate respiratory growth and phenotypes of K. pneumoniae. Methods The modA deletion mutant K. pneumoniae strain was constructed by homologous recombination using the suicide vector pKO3-Km. To obtain the complementary strain C-modA, the whole sequence fragment containing the promoter, open reading frame and terminator regions of modA was cloned into pGEM-T-easy and electrically transformed into the modA deletion mutant. The NTUH-K2044 wild-type strain, modA gene deletion mutant and complementary strain were compared by measuring in vitro anaerobic nitrate respiration growth, competitiveness index, biofilm quantification, mucoviscosity assay and morphological measurement using Image J. Results The modA deletion mutant strain ΔmodA and the complementary strain C-modA were successfully constructed. The modA gene knockout strain showed inhibited anaerobic nitrate respiratory growth compared with the wild-type and C-modA strains with significantly weakened competitiveness, reduced capacity of biofilm synthesis during anaerobiosis, and lowered mucoviscosity under anaerobic conditions. The ΔmodA strain showed a spherical morphology in anaerobic conditions as compared with the normal short rod-like morphology of K. pneumoniae, with also distinctly shorter length than the wild-type and C-modA strains. Conclusion The molybdate transport system encoding gene modA is associated with the pathogenic capacity of K. pneumoniae by modulating its anaerobic nitrate respiration, competitiveness, biofilm formation, hypermucoviscous phenotype and morphology.
8.Magnesium promotes vascularization and osseointegration in diabetic states
Liu LINFENG ; Wang FEIYU ; Song WEI ; Zhang DANTING ; Lin WEIMIN ; Yin QI ; Wang QIAN ; Li HANWEN ; Yuan QUAN ; Zhang SHIWEN
International Journal of Oral Science 2024;16(1):122-133
Diabetes has long been considered a risk factor in implant therapy and impaired wound healing in soft and hard oral tissues.Magnesium has been proved to promote bone healing under normal conditions.Here,we elucidate the mechanism by which Mg2+ promotes angiogenesis and osseointegration in diabetic status.We generated a diabetic mice model and demonstrated the alveolar bone healing was compromised,with significantly decreased angiogenesis.We then developed Mg-coating implants with hydrothermal synthesis.These implants successfully improved the vascularization and osseointegration in diabetic status.Mechanically,Mg2+ promoted the degradation of Kelch-like ECH-associated protein 1(Keap1)and the nucleation of nuclear factor erythroid 2-related factor 2(Nrf2)by up-regulating the expression of sestrin 2(SESN2)in endothelial cells,thus reducing the elevated levels of oxidative stress in mitochondria and relieving endothelial cell dysfunction under hyperglycemia.Altogether,our data suggested that Mg2+ promoted angiogenesis and osseointegration in diabetic mice by regulating endothelial mitochondrial metabolism.
9.Magnesium promotes vascularization and osseointegration in diabetic states
Liu LINFENG ; Wang FEIYU ; Song WEI ; Zhang DANTING ; Lin WEIMIN ; Yin QI ; Wang QIAN ; Li HANWEN ; Yuan QUAN ; Zhang SHIWEN
International Journal of Oral Science 2024;16(1):122-133
Diabetes has long been considered a risk factor in implant therapy and impaired wound healing in soft and hard oral tissues.Magnesium has been proved to promote bone healing under normal conditions.Here,we elucidate the mechanism by which Mg2+ promotes angiogenesis and osseointegration in diabetic status.We generated a diabetic mice model and demonstrated the alveolar bone healing was compromised,with significantly decreased angiogenesis.We then developed Mg-coating implants with hydrothermal synthesis.These implants successfully improved the vascularization and osseointegration in diabetic status.Mechanically,Mg2+ promoted the degradation of Kelch-like ECH-associated protein 1(Keap1)and the nucleation of nuclear factor erythroid 2-related factor 2(Nrf2)by up-regulating the expression of sestrin 2(SESN2)in endothelial cells,thus reducing the elevated levels of oxidative stress in mitochondria and relieving endothelial cell dysfunction under hyperglycemia.Altogether,our data suggested that Mg2+ promoted angiogenesis and osseointegration in diabetic mice by regulating endothelial mitochondrial metabolism.
10.Magnesium promotes vascularization and osseointegration in diabetic states
Liu LINFENG ; Wang FEIYU ; Song WEI ; Zhang DANTING ; Lin WEIMIN ; Yin QI ; Wang QIAN ; Li HANWEN ; Yuan QUAN ; Zhang SHIWEN
International Journal of Oral Science 2024;16(1):122-133
Diabetes has long been considered a risk factor in implant therapy and impaired wound healing in soft and hard oral tissues.Magnesium has been proved to promote bone healing under normal conditions.Here,we elucidate the mechanism by which Mg2+ promotes angiogenesis and osseointegration in diabetic status.We generated a diabetic mice model and demonstrated the alveolar bone healing was compromised,with significantly decreased angiogenesis.We then developed Mg-coating implants with hydrothermal synthesis.These implants successfully improved the vascularization and osseointegration in diabetic status.Mechanically,Mg2+ promoted the degradation of Kelch-like ECH-associated protein 1(Keap1)and the nucleation of nuclear factor erythroid 2-related factor 2(Nrf2)by up-regulating the expression of sestrin 2(SESN2)in endothelial cells,thus reducing the elevated levels of oxidative stress in mitochondria and relieving endothelial cell dysfunction under hyperglycemia.Altogether,our data suggested that Mg2+ promoted angiogenesis and osseointegration in diabetic mice by regulating endothelial mitochondrial metabolism.


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