1.α-ketoglutarate ameliorated arsenic-induced hepatic lipid deposition in offspring via PI3K/AKT signaling pathway
Shuangrui BAO ; Hongyan WU ; Ying SUN ; Tong ZHAN ; Qian YANG ; Xinru LIANG ; Zhiyan WAN ; Wenyi CHEN ; Cheng ZHANG
Acta Universitatis Medicinalis Anhui 2026;61(2):225-231
ObjectiveTo investigate the protective effect of α-ketoglutarate (α-KG) on hepatic lipid deposition in offspring caused by arsenic exposure during pregnancy. Methods8-week-old institute of cancer research (ICR) mice were mated in a ratio of 2∶1 between females and males, and the detection of vaginal plugs confirmed pregnant. A total of 32 pregnant mice were randomly divided into four groups: control group, arsenic group, α-KG group, arsenic+α-KG group. On gestational day 0-16 (GD0-GD16), the arsenic and arsenic+α-KG groups were exposed to sodium arsenite (NaAsO2 ,15 mg/L) in drinking water everyday, and the α-KG and arsenic+α-KG groups were gavaged with α-KG (2 g/kg) everyday. On GD16, pregnant mice were euthanized to collect fetal liver, and fetal body weight and crown-rump length were measured. Gene expression differences between the control group and the arsenic group were analyzed by transcriptome. The total triglycerides (TGs) and subtypes in fetal liver were detected by liquid chromatography tandem mass spectrometry (LC-MS/MS). Oil red O staining was used to observe the histopathological changes in the liver. Quantitative polymerase chain reaction (qPCR) was used to detect the expression level of genes related to lipid synthesis, transport, and degradation, and phosphatidylinositol 3' -kinase/ protein kinase B (PI3K/AKT) in the liver of fetus. ResultsTranscriptomics analysis showed that 2 144 genes were downregulated and 1 675 genes were upregulated in the arsenic exposed fetal liver; body weight and crown-rump length were reduced (PTuKey<0.05); the level of hepatic TGs was elevated in arsenic group (PTuKey<0.05); oil-red O staining showed a significant increase in lipid droplets in arsenic group (PTuKey<0.01); the expression of lipid synthesis-related genes were significantly upregulated (PTuKey<0.05); the expression of β-oxidation-related genes and lipid degradation-related genes were downregulated (PTuKey<0.05); the expression of PI3K, AKT decreased(PTuKey<0.05). Compared with the arsenic group, the body weight and crown-rump length of fetus increased in the arsenic+α-KG group (PTuKey<0.05); the level of hepatic TGs decreased in the arsenic+α-KG group (PTuKey<0.05); oil red O staining showed lipid droplets significantly decreased (PTuKey<0.01); the expression of lipid synthesis-related genes were downregulated (PTuKey<0.05), the expression of β-oxidation-related genes and lipid degradation-related genes were upregulated (PTuKey<0.05); the expression levels of PI3K and AKT increased (PTuKey<0.05). Conclusionα-KG alleviated hepatic lipid deposition in offspring exposed to arsenic during pregnancy through activating PI3K/AKT signaling pathway.
2.Clinical feature and genetic analysis of a case of X-linked alpha-thalassemia mental retardation syndrome neonate caused by ATRX gene variant and literature review
Qianya XU ; Xinru CHENG ; Shanshan ZHANG ; Aojie CAI ; Qian ZHANG
Chinese Journal of Medical Genetics 2025;42(2):162-169
Objective:To explore the clinical phenotype and genetic etiology of a neonate with X-linked alpha-thalassemia mental retardation syndrome (ATR-X) caused by ATRX gene variant, and review relatede literature on children with ATR-X caused by ATRX gene variants. Methods:A case of ATR-X neonate who was transferred to the First Affiliated Hospital of Zhengzhou University on February 11, 2022 for poor effect of treatment in the neonatology department of the hospital where he was born for 4 days due to "postnatal slow response, groaning, and cyanosis of the skin for 30 min" was selected as the study subject. 3 mL of peripheral blood was collected from the child and their parents, and genomic DNA was extracted for whole exome sequencing (WES). Sanger sequencing was used to verify the pathogenic gene variations in the child′s family. The pathogenicity of genetic variant sites was assessed based on the Standards and Guidelines for the Interpretation of Sequence Variants by American College of Medical Genetics and Genomics (ACMG). The amino acid sequence conservation analysis of relevant variant proteins was conducted by the Universal Protein Resource Database (UniProt) and visual analysis of these variant proteins was performed by Swiss online protein three-dimensional modeling database (SWISS-MODEL). Using keywords such as " ATRX gene" and " X-linked alpha-thalassemia mental retardation syndrome" both in Chinese and English, relevant literature on ATR-X children caused by ATRX gene variants was retrieved from the CNKI, Wangfang Data Knowledge Service Platform, and PubMed databases, and the clinical phenotypes of ATR-X patients reported in the retrieved literature were analyzed. The literature retrieval time was set from the establishment of each database to December 31st, 2023. This study followed the research procedures approved by the Ethics Committee of the First Affiliated Hospital of Zhengzhou University (Ethics No. 2023-KY-1360-002), and informed consent of clinical study was signed by the guardian of the child. Results:The child in this study presented with symptoms such as delayed response, feeding difficulties accompanied by vomiting, low body temperature, hypotonia in all extrimeties, apnea, abnormal hearing screening, and a Neonatal Behavioral Neurological Assessment (NBNA) score of 19 (lower than the normal range).Hemoglobin (Hb) electrophoresis suggested the presence of α-thalassemia. The results of WES and Sanger sequencing revealed a hemizygous missense variant c. 668G>A(p.C223Y) in exon 9 of the ATRX gene in the child of the study, neither of the parents of the child carried this variant, indicating that it is a de novo variant. Based on the Standards and Guidelines for the Interpretation of Sequence Variants released by ACMG, this gene variant was assessed as pathogenic (PS2+ PM2_Supporting+ PP3_Strong+ PP4_Strong). The results of amino acid sequence analysis revealed that the pathogenic variant site normally encodes cysteine, which is highly conserved among various animal species. This pathogenic variant can lead to alterations in the hydrogen bonding structure of ATRX protein, thereby affecting its structural stability. Based on the clinical manifestations and genetic testing results of the child in this study, a diagnosis of ATR-X syndrome was established Based on the literature retrieval strategy established in this study, 13 relevant articles concerning ATR-X syndrome in children caused by ATRX gene variants were retrieved, including 5 Chinese articles and 8 English articles, involving a total of 311 ATR-X children. Including the child in this study, the total number of ATR-X children reaches 312. All 312 children were male and presented with mental retardation. Among them, 45.8% (143/312) had coexisting α-thalassemia, 45.2% (141/312) had abnormal genital appearance, 44.2% (138/312) had facial malformations, and 30.8% (96/312) had hypotonia. Other phenotypes included microcephaly, skeletal dysplasia, among others. Conclusion:The ATR-X child in this study exhibit a range of clinical phenotypes, including delayed growth and development, facial malformation, abnormal genital appearance, apnea, vomiting symptoms, among others. The de novo variant of ATRX gene c. 668G>A (p.C223Y) was identified as the genetic etiology. This study contributes to the expansion of the clinical phenotype spectrum and genetic variation spectrum of ATR-X children.
3.Clinical feature and genetic analysis of a case of X-linked alpha-thalassemia mental retardation syndrome neonate caused by ATRX gene variant and literature review.
Qianya XU ; Xinru CHENG ; Shanshan ZHANG ; Aojie CAI ; Qian ZHANG
Chinese Journal of Medical Genetics 2025;42(2):162-169
OBJECTIVE:
To explore the clinical phenotype and genetic etiology of a neonate with X-linked alpha-thalassemia mental retardation syndrome (ATR-X) caused by ATRX gene variant, and review related literature on children with ATR-X caused by ATRX gene variants.
METHODS:
A case of ATR-X neonate who was transferred to the First Affiliated Hospital of Zhengzhou University on February 11, 2022 for poor effect of treatment in the neonatology department of the hospital where he was born for 4 days due to "postnatal slow response, groaning, and cyanosis of the skin for 30 min" was selected as the study subject. 3 mL of peripheral blood was collected from the child and their parents, and genomic DNA was extracted for whole exome sequencing (WES). Sanger sequencing was used to verify the pathogenic gene variations in the child's family. The pathogenicity of genetic variant sites was assessed based on the Standards and Guidelines for the Interpretation of Sequence Variants by American College of Medical Genetics and Genomics (ACMG). The amino acid sequence conservation analysis of relevant variant proteins was conducted by the Universal Protein Resource Database (UniProt) and visual analysis of these variant proteins was performed by Swiss online protein three-dimensional modeling database (SWISS-MODEL). Using keywords such as "ATRX gene" and " X-linked alpha-thalassemia mental retardation syndrome" both in Chinese and English, relevant literature on ATR-X children caused by ATRX gene variants was retrieved from the CNKI, Wanfang Data Knowledge Service Platform, and PubMed databases, and the clinical phenotypes of ATR-X patients reported in the retrieved literature were analyzed. The literature retrieval time was set from the establishment of each database to December 31st, 2023. This study followed the research procedures approved by the Ethics Committee of the First Affiliated Hospital of Zhengzhou University (Ethics No. 2023-KY-1360-002), and informed consent of clinical study was signed by the guardian of the child.
RESULTS:
The child in this study presented with symptoms such as delayed response, feeding difficulties accompanied by vomiting, low body temperature, hypotonia in all extremities, apnea, abnormal hearing screening, and a Neonatal Behavioral Neurological Assessment (NBNA) score of 19 (lower than the normal range).Hemoglobin (Hb) electrophoresis suggested the presence of α-thalassemia. The results of WES and Sanger sequencing revealed a hemizygous missense variant c.668G>A (p.C223Y) in exon 9 of the ATRX gene in the child of the study, neither of the parents of the child carried this variant, indicating that it is a de novo variant. Based on the Standards and Guidelines for the Interpretation of Sequence Variants released by ACMG, this gene variant was assessed as pathogenic (PS2+PM2_Supporting+PP3_Strong+PP4_Strong). The results of amino acid sequence analysis revealed that the pathogenic variant site normally encodes cysteine, which is highly conserved among various animal species. This pathogenic variant can lead to alterations in the hydrogen bonding structure of ATRX protein, thereby affecting its structural stability. Based on the clinical manifestations and genetic testing results of the child in this study, a diagnosis of ATR-X syndrome was established Based on the literature retrieval strategy established in this study, 13 relevant articles concerning ATR-X syndrome in children caused by ATRX gene variants were retrieved, including 5 Chinese articles and 8 English articles, involving a total of 311 ATR-X children. Including the child in this study, the total number of ATR-X children reaches 312. All 312 children were male and presented with mental retardation. Among them, 45.8% (143/312) had coexisting α-thalassemia, 45.2% (141/312) had abnormal genital appearance, 44.2% (138/312) had facial malformations, and 30.8% (96/312) had hypotonia. Other phenotypes included microcephaly, skeletal dysplasia, among others.
CONCLUSION
The ATR-X child in this study exhibit a range of clinical phenotypes, including delayed growth and development, facial malformation, abnormal genital appearance, apnea, vomiting symptoms, among others. The de novo variant of ATRX gene c.668G>A (p.C223Y) was identified as the genetic etiology. This study contributes to the expansion of the clinical phenotype spectrum and genetic variation spectrum of ATR-X children.
Humans
;
X-linked Nuclear Protein/genetics*
;
alpha-Thalassemia/genetics*
;
X-Linked Intellectual Disability/genetics*
;
Male
;
Infant, Newborn
;
Exome Sequencing
;
Mutation
4.Overview of Chemical Imaging Guidelines in the Chinese,United States and European Pharmacopoeias
Shifeng WEI ; Xinru QIAO ; Linghui QIAN ; Xinyi XU
Drug Standards of China 2025;26(4):345-348
In recent years,chemical imaging technology has found increasingly broad applications in pharmaceuti-cal analysis,encompassing component distribution analysis,assessment of mixing uniformity,content uniformity e-valuation,polymorphism identification,and studies of drug delivery mechanisms.Chemical imaging has been pro-gressively recognized as an efficient tool for real-time quality control and online analysis.This article provides an o-verview of the chemical imaging guidelines in the Chinese,United States,European pharmacopoeias.The discus-sion aims to promote the application of multi-information fusion technologies in pharmaceutical analysis,enhance regulatory efficiency,and further advance the high-quality development of the pharmaceutical industry in China.
5.Overview of Chemical Imaging Guidelines in the Chinese,United States and European Pharmacopoeias
Shifeng WEI ; Xinru QIAO ; Linghui QIAN ; Xinyi XU
Drug Standards of China 2025;26(4):345-348
In recent years,chemical imaging technology has found increasingly broad applications in pharmaceuti-cal analysis,encompassing component distribution analysis,assessment of mixing uniformity,content uniformity e-valuation,polymorphism identification,and studies of drug delivery mechanisms.Chemical imaging has been pro-gressively recognized as an efficient tool for real-time quality control and online analysis.This article provides an o-verview of the chemical imaging guidelines in the Chinese,United States,European pharmacopoeias.The discus-sion aims to promote the application of multi-information fusion technologies in pharmaceutical analysis,enhance regulatory efficiency,and further advance the high-quality development of the pharmaceutical industry in China.
6.Clinical feature and genetic analysis of a case of X-linked alpha-thalassemia mental retardation syndrome neonate caused by ATRX gene variant and literature review
Qianya XU ; Xinru CHENG ; Shanshan ZHANG ; Aojie CAI ; Qian ZHANG
Chinese Journal of Medical Genetics 2025;42(2):162-169
Objective:To explore the clinical phenotype and genetic etiology of a neonate with X-linked alpha-thalassemia mental retardation syndrome (ATR-X) caused by ATRX gene variant, and review relatede literature on children with ATR-X caused by ATRX gene variants. Methods:A case of ATR-X neonate who was transferred to the First Affiliated Hospital of Zhengzhou University on February 11, 2022 for poor effect of treatment in the neonatology department of the hospital where he was born for 4 days due to "postnatal slow response, groaning, and cyanosis of the skin for 30 min" was selected as the study subject. 3 mL of peripheral blood was collected from the child and their parents, and genomic DNA was extracted for whole exome sequencing (WES). Sanger sequencing was used to verify the pathogenic gene variations in the child′s family. The pathogenicity of genetic variant sites was assessed based on the Standards and Guidelines for the Interpretation of Sequence Variants by American College of Medical Genetics and Genomics (ACMG). The amino acid sequence conservation analysis of relevant variant proteins was conducted by the Universal Protein Resource Database (UniProt) and visual analysis of these variant proteins was performed by Swiss online protein three-dimensional modeling database (SWISS-MODEL). Using keywords such as " ATRX gene" and " X-linked alpha-thalassemia mental retardation syndrome" both in Chinese and English, relevant literature on ATR-X children caused by ATRX gene variants was retrieved from the CNKI, Wangfang Data Knowledge Service Platform, and PubMed databases, and the clinical phenotypes of ATR-X patients reported in the retrieved literature were analyzed. The literature retrieval time was set from the establishment of each database to December 31st, 2023. This study followed the research procedures approved by the Ethics Committee of the First Affiliated Hospital of Zhengzhou University (Ethics No. 2023-KY-1360-002), and informed consent of clinical study was signed by the guardian of the child. Results:The child in this study presented with symptoms such as delayed response, feeding difficulties accompanied by vomiting, low body temperature, hypotonia in all extrimeties, apnea, abnormal hearing screening, and a Neonatal Behavioral Neurological Assessment (NBNA) score of 19 (lower than the normal range).Hemoglobin (Hb) electrophoresis suggested the presence of α-thalassemia. The results of WES and Sanger sequencing revealed a hemizygous missense variant c. 668G>A(p.C223Y) in exon 9 of the ATRX gene in the child of the study, neither of the parents of the child carried this variant, indicating that it is a de novo variant. Based on the Standards and Guidelines for the Interpretation of Sequence Variants released by ACMG, this gene variant was assessed as pathogenic (PS2+ PM2_Supporting+ PP3_Strong+ PP4_Strong). The results of amino acid sequence analysis revealed that the pathogenic variant site normally encodes cysteine, which is highly conserved among various animal species. This pathogenic variant can lead to alterations in the hydrogen bonding structure of ATRX protein, thereby affecting its structural stability. Based on the clinical manifestations and genetic testing results of the child in this study, a diagnosis of ATR-X syndrome was established Based on the literature retrieval strategy established in this study, 13 relevant articles concerning ATR-X syndrome in children caused by ATRX gene variants were retrieved, including 5 Chinese articles and 8 English articles, involving a total of 311 ATR-X children. Including the child in this study, the total number of ATR-X children reaches 312. All 312 children were male and presented with mental retardation. Among them, 45.8% (143/312) had coexisting α-thalassemia, 45.2% (141/312) had abnormal genital appearance, 44.2% (138/312) had facial malformations, and 30.8% (96/312) had hypotonia. Other phenotypes included microcephaly, skeletal dysplasia, among others. Conclusion:The ATR-X child in this study exhibit a range of clinical phenotypes, including delayed growth and development, facial malformation, abnormal genital appearance, apnea, vomiting symptoms, among others. The de novo variant of ATRX gene c. 668G>A (p.C223Y) was identified as the genetic etiology. This study contributes to the expansion of the clinical phenotype spectrum and genetic variation spectrum of ATR-X children.
7.Heterogeneous analysis on association between exposure and outcome in cohort studies: based on propensity score matching and subpopulation treatment effect pattern plot
Wei WANG ; Qian YU ; Xinru HU ; Xiaoxiao WANG
Chinese Journal of Epidemiology 2024;45(5):748-754
This paper briefly introduces the basic principle, application scenarios and main steps of subpopulation treatment effect pattern plot (STEPP), and summarizes the theoretical basis of its combined application with propensity score matching (PSM) in cohort study data for the heterogeneity analysis on the association between exposure and outcome risk. In this paper, the combined application of PSM and STEPP in cohort study data is summarized by simulation of "cohort study of the risk of venous thromboembolism (VTE) in cancer patients with different infusion catheter types". The absolute risk value and relative risk value of VTE in the peripherally inserted central catheter group and the central venous catheter group in subpopulations are introduced, as well as the results of heterogeneity analysis among subpopulations. The limitations and research prospects of the combined application of PSM and STEPP are discussed to provide reference for researchers in practical application.
8.MicroRNA-21 promotes epithelial-mesenchymal transition and migration of human bronchial epithelial cells by targeting poly (ADP-ribose) polymerase-1 and activating PI3K/AKT signaling
Shiqing ZHANG ; Peng SUN ; Xinru XIAO ; Yujie HU ; Yan QIAN ; Qian ZHANG
The Korean Journal of Physiology and Pharmacology 2022;26(4):239-253
Epithelial-mesenchymal transition (EMT ) is known to be involved in airway remodeling and fibrosis of bronchial asthma. However, the molecular mechanisms leading to EMT have yet to be fully clarified. The current study was designed to reveal the potential mechanism of microRNA-21 (miR-21) and poly (ADP-ribose) polymerase-1 (PARP-1) affecting EMT through the PI3K/AKT signaling pathway. Human bronchial epithelial cells (16HBE cells) were transfected with miR-21 mimics/inhibitors and PARP-1 plasmid/small interfering RNA (siRNA). A dual luciferase reporter assay and biotin-labeled RNA pull-down experiments were conducted to verify the targeting relationship between miR-21 mimics and PARP-1. The migration ability of 16HBE cells was evaluated by Transwell assay. Quantitative real-time polymerase chain reaction and Western blotting experiments were applied to determine the expression of Snail, ZEB1, E-cadherin, N-cadherin, Vimentin, and PARP-1. The effects of the PI3K inhibitor LY294002 on the migration of 16HBE cells and EMT were investigated. Overexpression of miR-21 mimics induced migration and EMT of 16HBE cells, which was significantly inhibited by overexpression of PARP-1. Our findings showed that PARP-1 was a direct target of miR-21, and that miR-21 targeted PARP-1 to promote migration and EMT of 16HBE cells through the PI3K/AKT signaling pathway. Using LY294002 to block PI3K/AKT signaling pathway resulted in a significant reduction in the migration and EMT of 16HBE cells. These results suggest that miR-21 promotes EMT and migration of HBE cells by targeting PARP-1. Additionally, the PI3K/AKT signaling pathway might be involved in this mechanism, which could indicate its usefulness as a therapeutic target for asthma.
9.Effect of dyslipidemia on clinical outcome of infertility patients receiving donor eggs
Yuan ZHANG ; Caihe WEN ; Xinru XIA ; Jing WANG ; Meng XIA ; Yi QIAN ; Li SHU ; Jiayin LIU ; Daowu WANG ; Xiang MA
Chinese Journal of Obstetrics and Gynecology 2022;57(9):686-691
Objective:To explore the effect of dyslipidemia on the clinical outcome of intracytoplasmic sperm injection-embryo transfer (ICSI-ET) in infertility patients receiving donor eggs.Methods:A total of 118 patients were selected to receive egg donors and ICSI-ET at the First Affiliated Hospital of Nanjing Medical University between April 2007 and December 2020. According to the levels of triacylglycerol, serum cholesterol, high density lipoprotein (HDL), and low density lipoprotein, they were divided into dyslipidemia group (35 cases) and normal blood lipids group (83 cases). The influence of body mass index (BMI) and age was adjusted by 1∶1 propensity score matching, and the general condition and clinical outcome of the two groups were analyzed retrospectively. Finally, the relationship between lipid composition and clinical outcome was analyzed according to patients′ age and BMI.Results:(1) Comparing the pre-matching dyslipidemia group with the normal blood lipids group, the BMI of the dyslipidemia group was significantly higher than that of the normal blood lipids group [(23.5±2.4) vs (22.4±2.7) kg/m 2], and the embryo implantation rate was significantly lower than that of the normal blood lipids group [13.6% (8/59) vs 27.3% (36/132)], the differences were statistically significant (both P<0.05). (2) There were no significant differences in years of infertility, number of pregnancies, number of abortions, number of transplanted embryos, protocol of endometrial preparation, endometrial thickness on transplantation day and high quality embryo rate between the two groups, through propensity score matching (all P>0.05). The biochemical pregnancy rate [28.6% (10/35)], embryo implantation rate [13.6% (8/59)] and live birth rate [20.0% (7/35)] in dyslipidemia group were significantly lower than those in the normal blood lipids group ( P<0.05). The clinical pregnancy rate was lower than that of the normal blood lipids group ( P>0.05). (3) The results of stratified analysis showed that the level of HDL in the clinically non-pregnant group was significantly lower than that in the pregnant group in patients ≤ 35 years old [(1.5±0.3) vs (1.8±0.5) mmol/L; P<0.05]. In the overweight recipient patients, the level of HDL of the clinically non-pregnant group was lower than that of the pregnant group ( P>0.05). Conclusions:Dyslipidemia significantly reduces the biochemical pregnancy rate, embryo implantation rate and live birth rate in patients with receiving donor eggs. Especially in patients aged ≤35 years old, the reduction of HDL is closely related to adverse pregnancy outcomes.
10.Calcium-sensing receptor overexpression induces proliferation and differentiation of immature white matter progenitor cells after ischemia in vitro
Fengxia MAO ; Mengyuan LEI ; Xinru CHENG ; Ju ZHANG ; Qianya XU ; Zanyang SHI ; Suge HAN ; Qian ZHANG
Chinese Journal of Neuromedicine 2021;20(4):325-330
Objective:To explore the promoted role of calcium-sensing receptor (CaSR) overexpression in proliferation and differentiation of immature white matter progenitor cells after ischemia in vitro. Methods:Periventricular white matter cells from 5-d-old rats were cultured in vitro and divided into control group, oxygen-glucose deprivation (OGD) group, OGD+gadolinium chloride (GdCl 3) group, and OGD+ CaSR silenced group. CaSR expression was agitated by GdCl 3, and CaSR gene expression was inhibited by gene silencing. CaSR mRNA levels 24, 48 and 72 h, and 7 and 14 d after OGD were detected by real-time fluorescence quantification-PCR (RT-qPCR); cell proliferation 48 h after OGD was detected by inverted microscope, and cell differentiation 24, 48, and 72 h, and 7 and 14 d was detected by double immunofluorescence staining. Results:(1) CaSR mRNA expressions: CaSR mRNA expressions in OGD group 48 and 72 h and 7 d after OGD were statistically higher than those in control group ( P<0.05). Forty-eight and 72 h, and 7 and 14 d after OGD, CaSR mRNA expressions in OGD+GDCL 3 group were statistically higher than those in control group and OGD group ( P<0.05); the CaSR mRNA expressions in the OGD+CaSR silenced group were significantly lower than those in the control group ( P<0.05). (2) Cell proliferation and differentiation: 48 h after OGD, the cell sphere diameter of OGD group ([75.26±26.07] μm) was significantly increased as compared with that of control group ([57.96±18.92] μm, P<0.05); the cell sphere diameter of OGD+GdCl 3 group ([91.92±21.82] μm) was significantly increased as compared with that of control group and OGD group ( P<0.05); and the cell sphere diameter of OGD+ CaSR silenced group ([24.09±8.34] μm) was significantly shorter than that of control group and OGD group ( P<0.05). At 48 and 72 h after OGD, the number of O4 +/CaSR + olidoendrocyte precursor cells (OPCs) in OGD group was significantly larger than that in control group, that in OGD+GdCl 3 group was significantly larger than that in control group and OGD group, and that in OGD+ CaSR silenced group was significantly smaller than that in control group and OGD group ( P<0.05). Conclusion:CaSR overexpression could promote the proliferation and differentiation of progenitor cells to OPCs.

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