1.Clinical phenotypic and genetic analysis of three children with Paroxysmal kinesigenic dyskinesia and Self-limited familial infantile epilepsy caused by PRRT2 gene mutation
Dandan SONG ; Xiaoyi PENG ; Yao WANG ; Aojie CAI ; Sapana TAMANG ; Huaili WANG ; Zhihong ZHUO
Chinese Journal of Medical Genetics 2025;42(3):292-299
Objective:To investigate the clinical phenotypic and genetic characteristics of three children with Paroxysmal kinesigenic dyskinesia (PKD) and Self-limited familial infantile epilepsy (SeLIE) caused by PRRT2 gene mutation. Methods:Three children with PKD and SeLIE caused by PRRT2 gene mutation (children 1-3) who were treated in the First Affiliated Hospital of Zhengzhou University from November 2022 to August 2023 were selected as the research subjects. A retrospective study was conducted to collect the clinical and family history data of the three children. 2 mL of peripheral venous blood from children 1-3 and parents of children 1-2 were collected (parents of children refused to undergo genetic testing and no blood samples were collected), genomic DNA was extracted, whole exome sequencing (WES) was performed, and Sanger sequencing method was used for verification. According to the Classification Standards and Guidelines for Genetic Variants formulated by the American Society of Medical Genetics and Genomics (ACMG) (hereinafter referred to as the " ACMG Guidelines" ), the pathogenicity of the variant loci detected in three children was rated, and the detrimental loci of the variant loci were analyzed by multiple bioinformatics software. This study has been approved by the Ethics Committee of the First Affiliated Hospital of Zhengzhou University (Ethics No. 2024-KY-0881-002). Results:The clinical data and genetic test results of the three children in this study are as follows. ①Child 1: female, age of onset of 4 months and 10 days, with seizures, manifested as sudden cessation of movements, staring in both eyes, cyanosis of the lips, paleness, and stiffness and shaking of limbs. The results of genetic testing showed that child 1 had maternal PRRT2 gene c. 583_584dup (p. P196Afs*34) frameshift variant, which was rated as a pathogenic variant (PVS1 PM2_Supporting PP4) according to ACMG guidelines. According to the clinical manifestations and genetic test results of child 1, he was diagnosed with SeLIE and took oral sodium valproate [0.5 mL/(kg.d)], and was still taking medication at the follow-up of 2 years old, and did not have seizures again after 5 months of age. ②Child 2: male, age of onset of 10 years old, manifested as dystonia after sudden movement. The results of genetic testing showed that child 2 had PRRT2 gene mutations: paternal c. 649dupC (p.R217Pfs*8) frameshift variant and maternal c. 445C>A (p.Q149K) mutation. Among them, c. 649dupC was a reported pathogenic variant, and according to ACMG guidelines, c. 445C>A variant was rated as a variant of unknown clinical significance (PM2_Supporting), with a high probability of benignness. According to the clinical manifestations and genetic test results of the child 2, he was diagnosed with PKD, and was followed up with oral oxcarbazepine 9 mg/(kg.d) until 12 years and 2 months, and was still on the drug, and there was no recurrence of the seizure of the form of dyskinesia after taking the drug. ③Child 3: male, age of onset of 11 years old, manifested by dystonia after sudden exercise. The results of genetic testing showed that child 3 had a missense variant of PRRT2 gene c. 904G>C (p.D302H), and his parents refused genetic testing, and the source of the mutation was unknown, and the variant was rated as a variant of unknown clinical significance (PM2_Supporting+ PP3_Moderate+ PP4) according to ACMG guidelines. According to the clinical manifestations and genetic test results of child 3, he was diagnosed with PKD, and was treated with oral oxcarbazepine 10 mg/(kg.d) for 1 year and then discontinued on his own, and was followed up at the age of 17, and there was no recurrence of the seizure of the form of movement disorder after taking the drug. Conclusion:One case of SeLIE and two cases of PKD caused by PRRT2 gene mutations responded well to anti-seizure drugs. In this study, four variant loci of PRRT2 gene were found: c. 583_584dup, c. 904G>C, c. 649dupC, c. 445C>A, among which c. 583_584dup were new variants, enriching the variant spectrum of PRRT2 gene.
2.Clinical features and genetic analysis of a child with Christianson syndrome due to variant of SLC9A6 gene
Xiaoyi PENG ; Dandan SONG ; Yao WANG ; Aojie CAI ; Tamang SAPANA ; Huaili WANG ; Zhihong ZHUO
Chinese Journal of Medical Genetics 2025;42(4):411-418
Objective:To analyze the clinical characteristics and genetic etiology of a child with Christianson syndrome (CS).Methods:A 1-year-and-5-month-old boy with CS diagnosed at the First Affiliated Hospital of Zhengzhou University in April 2021 was selected as the study subject. Clinical data were retrospectively analyzed. Peripheral blood samples were obtained from the child and his parents, followed by genomic DNA extraction and whole exome sequencing (WES). Candidate variant was validated by Sanger sequencing. This study has been approved by the Medical Ethics Committee of the Hospital (Ethics No. 2024-KY-1103-001).Results:The child has manifested with seizures, microcephaly, and global developmental delay. WES revealed that he has harbored a novel de novo hemizygous nonsense variant of the SLC9A6 gene, namely c. 1014G>A (p.W338*). Based on the guidelines from the American College of Medical Genetics and Genomics (ACMG), the variant was rated as pathogenic. Conclusion:The hemizygous c. 1014G>A nonsense variant of the SLC9A6 gene probably underlay the pathogenesis in this child. Above discovery has expanded mutational spectrum of the SLC9A6 gene and enabled definite diagnosis of the child.
3.Fibroblast derived C3 promotes the progression of experimental periodontitis through macrophage M1 polarization and osteoclast differentiation.
Feilong REN ; Shize ZHENG ; Huanyu LUO ; Xiaoyi YU ; Xianjing LI ; Shaoyi SONG ; Wenhuan BU ; Hongchen SUN
International Journal of Oral Science 2025;17(1):30-30
Complement C3 plays a critical role in periodontitis. However, its source, role and underlying mechanisms remain unclear. In our study, by analyzing single-cell sequencing data from mouse model of periodontitis, we identified that C3 is primarily derived from periodontal fibroblasts. Subsequently, we demonstrated that C3a has a detrimental effect in ligature-induced periodontitis. C3ar-/- mice exhibited significantly less destruction of periodontal support tissues compared to wild-type mice, characterized by mild gingival tissue damage and reduced alveolar bone loss. This reduction was associated with decreased production of pro-inflammatory mediators and reduced osteoclast infiltration in the periodontal tissues. Mechanistic studies suggested that C3a could promote macrophage polarization and osteoclast differentiation. Finally, by analyzing single-cell sequencing data from the periodontal tissues of patients with periodontitis, we found that the results observed in mice were consistent with human data. Therefore, our findings clearly demonstrate the destructive role of fibroblast-derived C3 in ligature-induced periodontitis, driven by macrophage M1 polarization and osteoclast differentiation. These data strongly support the feasibility of C3a-targeted interventions for the treatment of human periodontitis.
Animals
;
Osteoclasts/cytology*
;
Periodontitis/metabolism*
;
Cell Differentiation
;
Mice
;
Fibroblasts/metabolism*
;
Macrophages
;
Disease Models, Animal
;
Complement C3/metabolism*
;
Humans
;
Disease Progression
;
Mice, Inbred C57BL
;
Male
;
Mice, Knockout
4.Author Correction: Fibroblast derived C3 promotes the progression of experimental periodontitis through macrophage M1 polarization and osteoclast differentiation.
Feilong REN ; Shize ZHENG ; Huanyu LUO ; Xiaoyi YU ; Xianjing LI ; Shaoyi SONG ; Wenhuan BU ; Hongchen SUN
International Journal of Oral Science 2025;17(1):53-53
5.Clinical phenotypic and genetic analysis of three children with Paroxysmal kinesigenic dyskinesia and Self-limited familial infantile epilepsy caused by PRRT2 gene mutation.
Dandan SONG ; Xiaoyi PENG ; Yao WANG ; Aojie CAI ; Sapana TAMANG ; Huaili WANG ; Zhihong ZHUO
Chinese Journal of Medical Genetics 2025;42(3):292-299
OBJECTIVE:
To investigate the clinical phenotypic and genetic characteristics of three children with Paroxysmal kinesigenic dyskinesia (PKD) and Self-limited familial infantile epilepsy (SeLIE) caused by PRRT2 gene mutation.
METHODS:
Three children with PKD and SeLIE caused by PRRT2 gene mutation (children 1-3) who were treated in the First Affiliated Hospital of Zhengzhou University from November 2022 to August 2023 were selected as the research subjects. A retrospective study was conducted to collect the clinical and family history data of the three children. 2 mL of peripheral venous blood from children 1-3 and parents of children 1-2 were collected (parents of children refused to undergo genetic testing and no blood samples were collected), genomic DNA was extracted, whole exome sequencing (WES) was performed, and Sanger sequencing method was used for verification. According to the Classification Standards and Guidelines for Genetic Variants formulated by the American Society of Medical Genetics and Genomics (ACMG) (hereinafter referred to as the "ACMG Guidelines"), the pathogenicity of the variant loci detected in three children was rated, and the detrimental loci of the variant loci were analyzed by multiple bioinformatics software. This study has been approved by the Ethics Committee of the First Affiliated Hospital of Zhengzhou University (Ethics No. 2024-KY-0881-002).
RESULTS:
The clinical data and genetic test results of the three children in this study are as follows. Child 1: female, age of onset of 4 months and 10 days, with seizures, manifested as sudden cessation of movements, staring in both eyes, cyanosis of the lips, paleness, and stiffness and shaking of limbs. The results of genetic testing showed that child 1 had maternal PRRT2 gene c.583_584dup (p.P196Afs*34) frameshift variant, which was rated as a pathogenic variant (PVS1 PM2_Supporting PP4) according to ACMG guidelines. According to the clinical manifestations and genetic test results of child 1, he was diagnosed with SeLIE and took oral sodium valproate [0.5 mL/(kg.d)], and was still taking medication at the follow-up of 2 years old, and did not have seizures again after 5 months of age. Child 2: male, age of onset of 10 years old, manifested as dystonia after sudden movement. The results of genetic testing showed that child 2 had PRRT2 gene mutations: paternal c.649dupC (p.R217Pfs*8) frameshift variant and maternal c.445C>A (p.Q149K) mutation. Among them, c.649dupC was a reported pathogenic variant, and according to ACMG guidelines, c.445C>A variant was rated as a variant of unknown clinical significance (PM2_Supporting), with a high probability of benignness. According to the clinical manifestations and genetic test results of the child 2, he was diagnosed with PKD, and was followed up with oral oxcarbazepine 9 mg/(kg.d) until 12 years and 2 months, and was still on the drug, and there was no recurrence of the seizure of the form of dyskinesia after taking the drug. Child 3: male, age of onset of 11 years old, manifested by dystonia after sudden exercise. The results of genetic testing showed that child 3 had a missense variant of PRRT2 gene c.904G>C (p.D302H), and his parents refused genetic testing, and the source of the mutation was unknown, and the variant was rated as a variant of unknown clinical significance (PM2_Supporting+PP3_Moderate+PP4) according to ACMG guidelines. According to the clinical manifestations and genetic test results of child 3, he was diagnosed with PKD, and was treated with oral oxcarbazepine 10 mg/(kg.d) for 1 year and then discontinued on his own, and was followed up at the age of 17, and there was no recurrence of the seizure of the form of movement disorder after taking the drug.
CONCLUSION
One case of SeLIE and two cases of PKD caused by PRRT2 gene mutations responded well to anti-seizure drugs. In this study, four variant loci of PRRT2 gene were found: c.583_584dup, c.904G>C, c.649dupC, c.445C>A, among which c.583_584dup were new variants, enriching the variant spectrum of PRRT2 gene.
Humans
;
Male
;
Nerve Tissue Proteins/genetics*
;
Female
;
Membrane Proteins/genetics*
;
Mutation
;
Child, Preschool
;
Infant
;
Phenotype
;
Dystonia/genetics*
;
Retrospective Studies
;
Child
6.Clinical features and genetic analysis of a child with Christianson syndrome due to variant of SLC9A6 gene.
Xiaoyi PENG ; Dandan SONG ; Yao WANG ; Aojie CAI ; Sapana TAMANG ; Huaili WANG ; Zhihong ZHUO
Chinese Journal of Medical Genetics 2025;42(4):411-418
OBJECTIVE:
To analyze the clinical characteristics and genetic etiology of a child with Christianson syndrome (CS).
METHODS:
A 1-year-and-5-month-old boy with CS diagnosed at the First Affiliated Hospital of Zhengzhou University in April 2021 was selected as the study subject. Clinical data were retrospectively analyzed. Peripheral blood samples were obtained from the child and his parents, followed by genomic DNA extraction and whole exome sequencing (WES). Candidate variant was validated by Sanger sequencing. This study has been approved by the Medical Ethics Committee of the Hospital of Zhengzhou University (Ethics No. 2024-KY-1103-001).
RESULTS:
The child has manifested with seizures, microcephaly, and global developmental delay. WES revealed that he has harbored a novel de novo hemizygous nonsense variant of the SLC9A6 gene, namely c.1014G>A (p.W338*). Based on the guidelines from the American College of Medical Genetics and Genomics (ACMG), the variant was rated as pathogenic.
CONCLUSION
The hemizygous c.1014G>A nonsense variant of the SLC9A6 gene probably underlay the pathogenesis in this child. Above discovery has expanded mutational spectrum of the SLC9A6 gene and enabled definite diagnosis of the child.
Humans
;
Male
;
Infant
;
Microcephaly/genetics*
;
Spasms, Infantile/genetics*
;
Sodium-Hydrogen Exchangers/genetics*
;
Exome Sequencing
;
Intellectual Disability/genetics*
;
Genetic Diseases, X-Linked/genetics*
;
Mutation
;
Seizures/genetics*
;
Ataxia
;
Epilepsy
;
Ocular Motility Disorders
7.Clinical phenotypic and genetic analysis of three children with Paroxysmal kinesigenic dyskinesia and Self-limited familial infantile epilepsy caused by PRRT2 gene mutation
Dandan SONG ; Xiaoyi PENG ; Yao WANG ; Aojie CAI ; Sapana TAMANG ; Huaili WANG ; Zhihong ZHUO
Chinese Journal of Medical Genetics 2025;42(3):292-299
Objective:To investigate the clinical phenotypic and genetic characteristics of three children with Paroxysmal kinesigenic dyskinesia (PKD) and Self-limited familial infantile epilepsy (SeLIE) caused by PRRT2 gene mutation. Methods:Three children with PKD and SeLIE caused by PRRT2 gene mutation (children 1-3) who were treated in the First Affiliated Hospital of Zhengzhou University from November 2022 to August 2023 were selected as the research subjects. A retrospective study was conducted to collect the clinical and family history data of the three children. 2 mL of peripheral venous blood from children 1-3 and parents of children 1-2 were collected (parents of children refused to undergo genetic testing and no blood samples were collected), genomic DNA was extracted, whole exome sequencing (WES) was performed, and Sanger sequencing method was used for verification. According to the Classification Standards and Guidelines for Genetic Variants formulated by the American Society of Medical Genetics and Genomics (ACMG) (hereinafter referred to as the " ACMG Guidelines" ), the pathogenicity of the variant loci detected in three children was rated, and the detrimental loci of the variant loci were analyzed by multiple bioinformatics software. This study has been approved by the Ethics Committee of the First Affiliated Hospital of Zhengzhou University (Ethics No. 2024-KY-0881-002). Results:The clinical data and genetic test results of the three children in this study are as follows. ①Child 1: female, age of onset of 4 months and 10 days, with seizures, manifested as sudden cessation of movements, staring in both eyes, cyanosis of the lips, paleness, and stiffness and shaking of limbs. The results of genetic testing showed that child 1 had maternal PRRT2 gene c. 583_584dup (p. P196Afs*34) frameshift variant, which was rated as a pathogenic variant (PVS1 PM2_Supporting PP4) according to ACMG guidelines. According to the clinical manifestations and genetic test results of child 1, he was diagnosed with SeLIE and took oral sodium valproate [0.5 mL/(kg.d)], and was still taking medication at the follow-up of 2 years old, and did not have seizures again after 5 months of age. ②Child 2: male, age of onset of 10 years old, manifested as dystonia after sudden movement. The results of genetic testing showed that child 2 had PRRT2 gene mutations: paternal c. 649dupC (p.R217Pfs*8) frameshift variant and maternal c. 445C>A (p.Q149K) mutation. Among them, c. 649dupC was a reported pathogenic variant, and according to ACMG guidelines, c. 445C>A variant was rated as a variant of unknown clinical significance (PM2_Supporting), with a high probability of benignness. According to the clinical manifestations and genetic test results of the child 2, he was diagnosed with PKD, and was followed up with oral oxcarbazepine 9 mg/(kg.d) until 12 years and 2 months, and was still on the drug, and there was no recurrence of the seizure of the form of dyskinesia after taking the drug. ③Child 3: male, age of onset of 11 years old, manifested by dystonia after sudden exercise. The results of genetic testing showed that child 3 had a missense variant of PRRT2 gene c. 904G>C (p.D302H), and his parents refused genetic testing, and the source of the mutation was unknown, and the variant was rated as a variant of unknown clinical significance (PM2_Supporting+ PP3_Moderate+ PP4) according to ACMG guidelines. According to the clinical manifestations and genetic test results of child 3, he was diagnosed with PKD, and was treated with oral oxcarbazepine 10 mg/(kg.d) for 1 year and then discontinued on his own, and was followed up at the age of 17, and there was no recurrence of the seizure of the form of movement disorder after taking the drug. Conclusion:One case of SeLIE and two cases of PKD caused by PRRT2 gene mutations responded well to anti-seizure drugs. In this study, four variant loci of PRRT2 gene were found: c. 583_584dup, c. 904G>C, c. 649dupC, c. 445C>A, among which c. 583_584dup were new variants, enriching the variant spectrum of PRRT2 gene.
8.Clinical features and genetic analysis of a child with Christianson syndrome due to variant of SLC9A6 gene
Xiaoyi PENG ; Dandan SONG ; Yao WANG ; Aojie CAI ; Tamang SAPANA ; Huaili WANG ; Zhihong ZHUO
Chinese Journal of Medical Genetics 2025;42(4):411-418
Objective:To analyze the clinical characteristics and genetic etiology of a child with Christianson syndrome (CS).Methods:A 1-year-and-5-month-old boy with CS diagnosed at the First Affiliated Hospital of Zhengzhou University in April 2021 was selected as the study subject. Clinical data were retrospectively analyzed. Peripheral blood samples were obtained from the child and his parents, followed by genomic DNA extraction and whole exome sequencing (WES). Candidate variant was validated by Sanger sequencing. This study has been approved by the Medical Ethics Committee of the Hospital (Ethics No. 2024-KY-1103-001).Results:The child has manifested with seizures, microcephaly, and global developmental delay. WES revealed that he has harbored a novel de novo hemizygous nonsense variant of the SLC9A6 gene, namely c. 1014G>A (p.W338*). Based on the guidelines from the American College of Medical Genetics and Genomics (ACMG), the variant was rated as pathogenic. Conclusion:The hemizygous c. 1014G>A nonsense variant of the SLC9A6 gene probably underlay the pathogenesis in this child. Above discovery has expanded mutational spectrum of the SLC9A6 gene and enabled definite diagnosis of the child.
9.Association of anti-neutrophil cytoplasmic antibodies with the disease activity in patients with systemic lupus erythematosus
Xiaoyi SONG ; Chengjie XU ; Hangfeng ZHANG ; Jiajia WANG
The Journal of Practical Medicine 2024;40(5):658-663
Objective To investigate the clinical significance of ANCA in the disease activity of patients with SLE.Methods A total of 1 025 SLE patients were recruited and were divided into inactive and active groups according to SLEDAI score.Demographic characteristics,clinical symptoms,autoantibodies,routine laboratory tests and renal pathology were also recorded and compared between the two groups.Results All patients were divided into inactive group(n = 750)and active group(n = 250).The occurrence of renal,pulmonary,cutaneous,arthritis manifestations were significantly higher than those of the inactive group(all P<0.05).All patients were tested for ANCA,and the most common pattern being perinuclear or p-ANCA,the percentage of p-ANCA seroposi-tive increased greatly with the increased disease activity(P<0.05).The autoantibodies were further analyzed between the two groups,25 patients had reactivity to MPO,but no patient had reactivity to PR3.Also,there were significant differences in anti-dsDNA antibody,anti-nucleosome antibody between the two groups(P<0.05).In the active group,patients with p-ANCA seropositive exhibited higher serum beta-2-microglobulin(β2-MG),titers of anti-dsDNA antibody,SLEDAI scores,lower albumin,C3,and C4 levels(P<0.05).Meanwhile,p-ANCA was associated with IL-6,which increased significantly with the increase of SLEDAI score.In addition,patients with p-ANCA seropositive had more occurrence of lupus nephritis,but it had no association with the renal pathology.Conclusion The appearance of p-ANCA in SLE patients indicated more severe disease activity status.
10.Neuroprotective effect of memantine on sepsis associated encephalopathy model mice
Wenyu LI ; Hongna YANG ; Yanxue WANG ; Xiaoyi YU ; Wei FANG ; Xuan SONG ; Chunting WANG
Chinese Journal of Behavioral Medicine and Brain Science 2024;33(11):1020-1026
Objective:To explore the neuroprotective effects and mechanisms of memantine on sepsis-associated encephalopathy (SAE) model mice.Methods:Totally 90 male C57BL/6J mice aged 8-12 weeks were randomly divided into 3 groups (with 30 mice in each group) : sham group, model group and memantine group. The SAE mouse model was established by cecum ligation and puncture while mouse in sham group received open and closed abdomen only. The mice in the memantine group were irrigation with memantine (15 mg · kg -1· d -1) 3 hours before surgery and 7 consecutive days after modeling. The mice in the model group and sham group were irrigation with an equal volume of 0.9% sodium chloride solution. The 7-day survival rate was observed, neurobehavioral and cognitive function scores of each group of mice after modeling were assessed.Blood-brain barrier permeability was measured by detecting the content of Evans blue. Immunofluorescence staining was used to detect the expression of astrocytes. Enzyme linked immunosorbent assay was conducted to detect cellular inflammatory factors and the glutamic acid content detection kit was used to detect the expression of glutamic acid. All data were analyzed by Graphpad Prism 8.3.0 software, survival rate was analyzed using Kaplan-Meier survival curve.Multigroup comparisons were conducted by one-way ANOVA or Kruskal-Wallis test. Results:(1) There was a statistically significant difference in the 7-day survival rate among the three groups of mice after modeling ( F=24.11, P<0.01), and the 7-day survival rate of the memantine group was higher than that of the model group (57% (17/30), 27% (8/30), P<0.01). (2)The behavioral results showed that after 7 days of modeling, there were statistically significant differences in the total distance of the open field test, central area stay time, four corner area stay time, neurobehavioral scores, pole climbing test, and preference index for new object recognition test among the three groups of mice ( F/ χ2=17.67, 17.30, 9.39, 14.06, 10.36, 14.81, all P<0.05).The neurobehavioral score, pole climbing test score, preference index for new object recognition test, total distance of open field test, and central area stay time of the model group were all lower than those of the sham group (all P<0.05), while four corner area stay time of the model group was higher than that of the sham group ( P<0.05).The total distance of open field test (1 564.07(1 363.24, 1 988.19) cm, 913.91 (574.32, 1 096.23) cm), central area stay time (5.21 (4.91, 8.76) s, 1.09 (0.25, 1.64) s), neurobehavioral scores (9.75±0.50, 8.25±0.50), pole climbing test scores (5.67±0.52, 4.56±0.53), and preference index for new object recognition test (56.50±10.59, 26.84±2.91) of the memantine group were all higher than those of the model group (all P<0.05). The four corner area stay time was lower than that of the model group ((480.30±50.64) s, (529.80±36.20) s, P<0.05).(3)The comparison of molecular indicators showed that there were statistically significant differences in the content of Evans blue in the brain, the number of astrocytes in the hippocampus and cerebral cortex, pro-inflammatory cytokines (TNF-α、IL-1β、IL-6), anti-inflammatory cytokines (IL-10), and glutamic acid among the three groups of mice ( F/ χ2=8.84, 6.43, 28.46, 23.63, 12.23, 16.04, 69.22, 6.65, all P<0.05).The content of Evans blue, the number of astrocytes in the hippocampus and cerebral cortex, the expression of TNF-α、IL-1β、IL-6, and glutamate in the model group were all lower than those in the sham group(all P<0.05). The levels of IL-10 in the model group was lower than that in the sham group ( P<0.05).The content of Evans blue ((5.67±1.38)μg/g, (11.08±2.79)μg/g), the number of astrocytes in the hippocampus (16.50 (13.75, 22.25)/μm 2), 80.00 (73.50, 83.50)/μm 2) and the cerebral cortex (40.00 (29.00, 48.00)/μm 2, 81.50 (72.25, 89.00)/μm 2) in the memantine group were lower than those in the model group (all P<0.05).The pro-inflammatory factor TNF-α, IL-1β, IL-6 and glutamic acid expression in the memantine group were lower than those in the model group (all P<0.05), and the anti-inflammatory cytokine IL-10 was higher than that in the model group ( P<0.05). Conclusions:Memantine can improve the neurobehaviors and cognitive functions of SAE mice through improving the integrity of the damaged blood-brain barrier, alleviating inflammation in the brain, as well as reducing glutamate levels in the brain.

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