1.Activation of Centromedial Amygdala GABAergic Neurons Produces Hypotension in Mice.
Xiaoyi WANG ; Ziteng YUE ; Luo SHI ; Wei HE ; Liuqi SHAO ; Yuhang LIU ; Jinye ZHANG ; Shangyu BI ; Tianjiao DENG ; Fang YUAN ; Sheng WANG
Neuroscience Bulletin 2025;41(5):759-774
The central amygdala (CeA) is a crucial modulator of emotional, behavioral, and autonomic functions, including cardiovascular responses. Despite its importance, the specific circuit by which the CeA modulates blood pressure remains insufficiently explored. Our investigations demonstrate that photostimulation of GABAergic neurons in the centromedial amygdala (CeMGABA), as opposed to those in the centrolateral amygdala (CeL), produces a depressor response in both anesthetized and freely-moving mice. In addition, activation of CeMGABA axonal terminals projecting to the nucleus tractus solitarius (NTS) significantly reduces blood pressure. These CeMGABA neurons form synaptic connections with NTS neurons, allowing for the modulation of cardiovascular responses by influencing the caudal or rostral ventrolateral medulla. Furthermore, CeMGABA neurons targeting the NTS receive dense inputs from the CeL. Consequently, stimulation of CeMGABA neurons elicits hypotension through the CeM-NTS circuit, offering deeper insights into the cardiovascular responses associated with emotions and behaviors.
Animals
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GABAergic Neurons/physiology*
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Male
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Central Amygdaloid Nucleus/physiopathology*
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Hypotension/physiopathology*
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Mice
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Blood Pressure/physiology*
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Mice, Inbred C57BL
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Solitary Nucleus/physiology*
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Photic Stimulation
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Neural Pathways/physiology*
2.Clinical and genetic analysis of a child with X-linked mental retardation due to variant of SLC9A7 gene
Wei LI ; Tianjiao FU ; SPANA TAMANG ; Yao WANG ; Huaili WANG ; Zhihong ZHUO
Chinese Journal of Medical Genetics 2024;41(6):730-733
Objective:To explore the clinical and genetic characteristics of a child with mental retardation, language and motor developmental delay and epilepsy.Methods:A Child who was admitted to the First Affiliated Hospital of Zhengzhou University in March 2020 for intermittent seizures for over two months was Selected as the study subject. Clinical data of the child was collected. Peripheral blood samples of the child and his parents were collected and subjected to high throughput sequencing. Candidate variants were verified by Sanger sequencing and bioinformatic analysis.Results:The clinical manifestations of the child have included mental retardation, language and motor developmental delay, and seizures. High-throughput sequencing revealed that he has harbored a hemizygous splice site variant (NM_032591.3: c.1030-1G>C) of the SLC9A7 gene, which was inherited from his mother and unreported previously. Conclusion:The hemizygous splice site variant (NM_032591.3: c. 1030-1G>C) of the SLC9A7 gene probably underlay the disease in this child. Above finding has provided a basis for clinical diagnosis and genetic counseling.
3.Deferoxamine mesylate improves the repair of jaw bone defects in an ovariectomized rat model of osteoporosis
Ai TIAN ; Li LI ; Tianjiao XIAO ; Jiabing KANG ; Jifan ZHAN ; Yan WEI ; Helin CHEN
Chinese Journal of Tissue Engineering Research 2024;28(20):3143-3149
BACKGROUND:Deferoxamine mesylate is a potential anti-osteoporosis drug with iron chelation,vascular regeneration,and antioxidant effects.Recent studies have shown that the application of deferoxamine mesylate can be extended to the field of tissue regeneration engineering. OBJECTIVE:To investigate whether deferoxamine mesylate can promote the repair effect of iron overload osteoporotic rats after bone grafting for mandibular bone defects by simulating the state of iron accumulation in patients with postmenopausal osteoporosis with high iron intervention in osteoporotic rats. METHODS:An iron accumulation ovariectomized osteoporosis model was firstly constructed.The model group underwent bilateral ovariectomy,and the intraperitoneal injection of ferric ammonium citrate(90 mg/kg,twice a week,for 11 weeks)was started in the 2nd week,while the sham-operated group had some fat around the ovaries removed and was given an equal amount of saline for 11 weeks.After the successful modeling,the experimental rats were divided into sham-operated group(n=6),high iron ovariectomtized group(n=6)and high iron ovariectomized deferoxamine mesylate treatment group(deferoxamine mesylate group,n=6).Bone defects of 5 mm in diameter were established in the rat's bilateral mandibles and implanted with Bio-Oss bone powder.Intraperitoneal injection of deferoxamine mesylate(100 mg/kg,3 times a week)was started on postoperative day 4 in the deferoxamine mesylate group,and equal volume of saline was given in the sham-operated and high iron ovariectomized groups.The bone samples of the mandible,liver and blood were taken at 2 and 12 weeks after bone grafting for Prussian blue staining of the jaw and liver and ELISA detection of serum ferritin to detect iron levels in various body tissues;hematoxylin-eosin staining and Masson staining were performed to observe inflammatory cell infiltration and early osteogenesis in the bone defect area;tartrate resistant acid phosphatase staining was performed to observe osteoclast differentiation;ELISA was performed to detect serum calcitonin and type I collagen C-terminal peptide levels;and Micro-CT and hematoxylin-eosin staining were performed to observe osteogenesis in the middle and late stages. RESULTS AND CONCLUSION:The number of tibial trabeculae was reduced and the trabeculae were sparsely arranged in the high iron ovariectomized group.Iron levels in the liver,jaw bone and serum were significantly higher in the high iron ovariectomized group than the sham-operated group at 2 weeks after bone grafting,while the iron levels were significantly decreased after deferoxamine mesylate intervention(P<0.05).In the early stage of bone defect repair,more inflammatory cell infiltration,less new bone matrix and less type I collagen fiber production were observed in the high iron ovariectomized group than in the sham-operated group(P<0.05);after deferoxamine mesylate treatment,inflammatory cell infiltration was reduced,a small amount of new bone matrix was produced and collagen fibers increased significantly(P<0.05).In the middle and late stages of bone defect repair,Micro-CT results showed a reduction in new bone production in the high iron ovariectomized group compared with the sham-operated group and increased new bone matrix after deferoxamine mesylate treatment(P<0.05).Compared with the sham-operated group,the osteoclast number,serum calcitonin level,and serum type I collagen C-terminal peptide level were increased in the high-iron ovariectomized group,while the osteoclast number was decreased and bone metabolic indexes were improved after treatment with deferoxamine mesylate.To conclude,in ovariectomized rats with high iron intervention,elevated iron levels can be seen in multiple tissues,accompanied by reduced new bone production in the mandibular bone defect area.Deferoxamine mesylate can improve bone metabolism and inhibit osteoclast activity by removing iron deposits in tissues,improve bone formation in iron-accumulated osteoporotic rats,and promote bone healing in the mandibular bone defect area.
4.Interleukin-4 regulates macrophage polarization and osteogenic differentiation of bone marrow mesenchymal stem cells
Jie ZHANG ; Tianjiao XIAO ; Li LI ; Jiabing KANG ; Jifan ZHAN ; Yan WEI ; Ai TIAN
Chinese Journal of Tissue Engineering Research 2024;28(25):3960-3966
BACKGROUND:Interleukin-4 can promote the osteogenic effect of bone substitute materials,but its molecular mechanism is not yet clear.Further elucidating the mechanism of interleukin-4 promoting osteogenic effect can help find safe,economical,and effective methods for the regeneration treatment of alveolar bone defects in patients. OBJECTIVE:To explore the effect of interleukin-4 intervention on polarization transformation of macrophages and osteogenic differentiation of bone marrow mesenchymal stem cells and its possible mechanism. METHODS:RAW264.7 cells in the M1 group were induced with interferon gamma + lipopolysaccharide for 24 hours.RAW264.7 cells in the interleukin-4+M1 group were induced with interferon gamma + lipopolysaccharide for 24 hours and then interleukin-4 was added for 24 hours.RAW264.7 cells in the interleukin-4+AG+M1 group were induced with interferon gamma + lipopolysaccharide for 24 hours,and then interleukin-4 and AG-490,a JAK/STAT pathway inhibitor,were added for 24 hours.After intervention,immunofluorescence staining was used to analyze the expression of inducible nitric oxide synthase and CD206,the phenotypic marker protein of macrophages.ELISA kit was used to detect the expression of interleukin-10 and tumor necrosis factor-α in the supernatant of cell culture.The gene expressions of nodular receptor protein-3(NLRP3),interleukin-1β,and caspase-1 were detected by RT-qPCR.The expression levels of tyrosine protein kinase 1(JAK1)/phosphorylated tyrosine protein kinase 1(p-JAK1),signal transduction and transcription activator 6(STAT6)/phosphorylated signal transduction and transcription activator 6(p-STAT6),NLRP3,pro-interleukin-1β and pro-caspase-1 were detected by western blot assay.Then,RAW264.7 cells in the above four groups were indirectly co-cultured with bone marrow mesenchymal stem cells by transwell for 24 hours,followed by alkaline phosphatase staining and alizarin red staining.The mRNA expressions of alkaline phosphatase,collagen type I,and osteocalcin were detected by RT-qPCR. RESULTS AND CONCLUSION:(1)Immunofluorescence and ELISA results showed that interleukin-4 intervention could promote the expression of CD206 and interleukin-10 in M2 macrophages,and inhibit the secretion of inducible nitric oxide synthase and tumor necrosis factor-α.(2)RT-qPCR results showed that interleukin-4 could suppress the expression of NLRP3,interleukin-1β,and caspase-1 mRNAs.(3)Western blot assay showed that interleukin-4 could promote the expression of JAK1/p-JAK1,STAT6/p-STAT6 and NLRP3 proteins.(4)The alkaline phosphatase staining and alizarin red staining of bone marrow mesenchymal stem cells co-cultured with the interleukin-4+M1 group were significantly enhanced,and the mRNA expressions of alkaline phosphatase,collagen type I,and osteocalcin were significantly increased.It is concluded that interleukin-4 may inhibit the activation of NLRP3 by up-regulating JAK1/STAT6 pathway,thus promoting the transformation of macrophages from M1 polarization to M2 polarization,and finally enhancing the osteogenic differentiation ability of bone marrow mesenchymal stem cells.
5.Structure-activity Omics of Anti-inflammatory and Analgesic Effect of Corydalis Rhizoma in Qizhi Weitong Granules
Xinpeng QIN ; Ying MENG ; Sicong LIU ; Ying ZHENG ; Yongrui BAO ; Shuai WANG ; Tianjiao LI ; Ling HAN ; Wei ZOU ; Xiansheng MENG
Chinese Journal of Experimental Traditional Medical Formulae 2024;30(15):136-145
ObjectiveTo explain the anti-inflammatory and analgesic effects of Corydalis Rhizoma by the means of structure-activity omics. MethodOn the basis of the previous in vitro screening study, we studied the in vivo efficacy of the alkaloids in Corydalis Rhizoma. With the targets as a bridge, the structures of chemical components in Corydalis Rhizoma were connected with the efficacy. The molecular docking of the alkaloids in Corydalis Rhizoma with the targets of inflammation and pain was carried out. According to the docking scores and the differences in the structural nucleus of Corydalis Rhizoma alkaloids, a study of structure-activity omics was carried out to summarize the rules of their connection. ResultThe alkaloids in Corydalis Rhizoma had good anti-inflammatory and analgesic effects in vivo, involving 53 chemical components and 73 targets. There were 3 074 targets associated with inflammation and pain, and 42 targets of direct action were shared by the chemical components and the disease. The protein-protein interaction (PPI) and molecular docking analysis predicted that the main active components of Corydalis Rhizoma were tetrahydropalmatine and palmatine, and the core targets were prostaglandin endoperoxide synthase 2 (PTGS2), glutamate receptor metabotropic 5 (GRM5), estrogen receptor 1 (ESR1), solute carrier family 6 member 4 (SLC6A4), and fusion oncoproteins (FOS). According to the differences of mother nucleus, the 53 alkaloid components of Corydalis Rhizoma were classified into 8 categories, including protoberberine, berberine, and aporphine, which had high binding affinities with PTGS2, GRM5 and other targets. The relationship between the structures of Corydalis Rhizoma alkaloids and docking scores in each group showed the same law. In protoberberine, appropriate substituents with hydroxyl, alkoxy or methyl groups on the A and D rings of the parent ring were conducive to enhancing the binding activities with the two targets. In berberine, the structure containing a methyl group on position 13 had strong binding affinities with the two targets. It is hypothesized that the methyl fragment changes the binding mode between the component structure and amino acid residues, which greatly improves the binding affinity. ConclusionThis study employs the method of structure-activity omics to analyze the material basis for the anti-inflammatory and analgesic effects of alkaloids in Corydalis Rhizoma, and the structure-activity omics provides new ideas for revealing the pharmacodynamic substances of traditional Chinese medicine.
6.Meta analysis of risk factors for pulmonary embolism in patients with spinal injury
Yijing LI ; Supeng YAN ; Xiaoping ZHOU ; Xiaoli WEN ; Tianjiao LI ; Xiangcheng HUANG ; Wei SUN
Chinese Journal of Trauma 2024;40(11):1000-1007
Objective:To evaluate the risk factors for pulmonary embolism in patients with spinal injury.Methods:Literature on risk factors for pulmonary embolism after spinal injury was searched on CNKI, Wanfang database, VIP Chinese Science, PubMed, Embase, Cochrane Library, Up to Date databases from inception through November 2023. A Meta-analysis was performed with the software of RevMan 5.4 after two researchers screened the literature independently according to the inclusion and exclusion criteria, extracted the data and evaluated their quality. Correlations of gender, age, surgical duration, intervertebral disc fusion, body mass index, comorbidity, medicine prophylaxis, deep venous thrombosis (DVT) history, and length of hospital stay with the incidence of pulmonary embolism in patients with spinal injury were evaluated.Results:A total of 10 studies were enrolled, including 2 prospective cohort studies and 8 cross-sectional studies. The total sample size was 401 698 patients, with 525 in the pulmonary embolism group and 401 173 in the non-pulmonary embolism group. The Meta analysis showed that gender ( OR=1.59, 95% CI 1.20, 1.97), age ( OR=1.58, 95% CI 1.19, 2.10), surgical duration ( OR=2.56, 95% CI 1.84, 3.56), DVT history ( OR=15.84, 95% CI 1.88, 133.25) and length of hospital stay ( OR=1.08, 95% CI 1.07, 1.09) were statistically significantly correlated with the incidence of pulmonary embolism in patients with spinal injury ( P<0.01), while intervertebral fusion, body mass index, comorbidity, and medicine prophylaxis were not correlated with the incidence of pulmonary embolism ( P>0.05). Conclusion:Gender, age, surgical duration, DVT history and length of hospital stay are risk factors for pulmonary embolism in patients with spinal injury.
7.UBE2S promotes glycolysis in hepatocellular carcinoma by enhancing E3 enzyme-independent polyubiquitination of VHL
Renyu ZHANG ; Can LI ; Shuai ZHANG ; Lingmin KONG ; Zekun LIU ; Yixiao GUO ; Ying SUN ; Cong ZHANG ; Yule YONG ; Jianjun LV ; Meng LU ; Man LIU ; Dong WU ; Tianjiao ZHANG ; Haijiao YANG ; Ding WEI ; Zhinan CHEN ; Huijie BIAN
Clinical and Molecular Hepatology 2024;30(4):771-792
Background/Aims:
Ubiquitination is widely involved in the progression of hepatocellular carcinoma (HCC) by regulating various cellular processes. However, systematic strategies for screening core ubiquitin-related genes, clarifying their functions and mechanisms, and ultimately developing potential therapeutics for patients with HCC are still lacking.
Methods:
Cox and LASSO regression analyses were performed to construct a ubiquitin-related gene prediction model for HCC. Loss- and gain-of-function studies, transcriptomic and metabolomics analysis were used to explore the function and mechanism of UBE2S on HCC cell glycolysis and growth.
Results:
Based on 1,423 ubiquitin-related genes, a four-gene signature was successfully constructed to evaluate the prognosis of patients with HCC. UBE2S was identified in this signature with the potential to predict the survival of patients with HCC. E2F2 transcriptionally upregulated UBE2S expression by directly binding to its promoter. UBE2S positively regulated glycolysis in a HIF-1α-dependent manner, thus promoting the proliferation of HCC cells. Mechanistically, UBE2S enhanced K11-linkage polyubiquitination at lysine residues 171 and 196 of VHL independent of E3 ligase, thereby indirectly stabilizing HIF-1α protein levels by mediating the degradation of VHL by the proteasome. In particular, the combination of cephalomannine, a small molecule compound that inhibits the expression of UBE2S, and PX-478, an inhibitor of HIF-1α, significantly improved the anti-tumor efficacy.
Conclusions
UBE2S is identified as a key biomarker in HCC among the thousands of ubiquitin-related genes and promotes glycolysis by E3 enzyme-independent ubiquitination, thus serving as a therapeutic target for the treatment of HCC.
8.Circuit-Specific Control of Blood Pressure by PNMT-Expressing Nucleus Tractus Solitarii Neurons.
Shirui JUN ; Xianhong OU ; Luo SHI ; Hongxiao YU ; Tianjiao DENG ; Jinting CHEN ; Xiaojun NIE ; Yinchao HAO ; Yishuo SHI ; Wei LIU ; Yanming TIAN ; Sheng WANG ; Fang YUAN
Neuroscience Bulletin 2023;39(8):1193-1209
The nucleus tractus solitarii (NTS) is one of the morphologically and functionally defined centers that engage in the autonomic regulation of cardiovascular activity. Phenotypically-characterized NTS neurons have been implicated in the differential regulation of blood pressure (BP). Here, we investigated whether phenylethanolamine N-methyltransferase (PNMT)-expressing NTS (NTSPNMT) neurons contribute to the control of BP. We demonstrate that photostimulation of NTSPNMT neurons has variable effects on BP. A depressor response was produced during optogenetic stimulation of NTSPNMT neurons projecting to the paraventricular nucleus of the hypothalamus, lateral parabrachial nucleus, and caudal ventrolateral medulla. Conversely, photostimulation of NTSPNMT neurons projecting to the rostral ventrolateral medulla produced a robust pressor response and bradycardia. In addition, genetic ablation of both NTSPNMT neurons and those projecting to the rostral ventrolateral medulla impaired the arterial baroreflex. Overall, we revealed the neuronal phenotype- and circuit-specific mechanisms underlying the contribution of NTSPNMT neurons to the regulation of BP.
Solitary Nucleus/metabolism*
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Blood Pressure/physiology*
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Phenylethanolamine N-Methyltransferase/metabolism*
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Neurons/metabolism*
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Paraventricular Hypothalamic Nucleus/metabolism*
9.Discussion on Pharmaceutical Research of Additional Specifications of Traditional Chinese Medicine Honey Pills Based on Characteristics of Traditional Chinese Medicine
Chinese Journal of Experimental Traditional Medical Formulae 2023;29(1):209-214
Among the supplementary applications for Chinese medicines, additional specifications of pills occupy a certain proportion. It is common situation that addition of water honey pills and water pills on the basis of honey pills. Due to the ingredients of Chinese medicine are complex, and honey may be related to the safety and effectiveness of the preparation as a special excipient. Therefore, the necessity of the change should be considered from multiple perspectives and aspects in combination with the characteristics of the pills, and the scientific and reasonable nature of the change should be proved through research. By thinking deeply of the review of the application for adding water honey pill and water pill specification supplement to honey pill, the author discusses the key contents that need to be paid attention to in pharmaceutical research of such changes, and puts forward the following suggestions:①The necessity of change should be considered in combination with clinical drug demand and benefit-risk ratio. ②Attach importance to the research on the change of process and excipient, and evaluate the impact of changes on drug safety and effectiveness. ③Strengthen quality and stability research, and select appropriate packaging materials to ensure stable and controllable sample quality after change. ④Reasonably expression of specifications and loading specifications.
10.Improvement Effects of Chelidonine on CCl 4-induced Hepatic Fibrosis Model Rats and Its Mechanism
Xiaoming LI ; Wenbao WANG ; Lina GUO ; Bo SONG ; Wei DONG ; Tianjiao XU ; Xiaoli WANG
China Pharmacy 2021;32(23):2868-2874
OBJECTIVE:To study the improvement eff ects and p otential mechanism of chelidonine on CCl 4-induced hepatic fibrosis model rats. METHODS :According to the random number table method ,a total of 48 rats were randomly divided into normal control group ,model group ,chelidonine low-dose ,middle-dose and high-dose groups (0.125,0.25,0.50 mg/kg),positive control group (Liver-protecting tablet ,0.42 g/kg),with 8 rats in each group. Except for normal control group ,other groups were given CCl 4-olive oil solution intraperitoneally for 8 weeks to induce hepatic fibrosis model. From the fifth week of modeling , normal control group and model group were given water intragastrically ;administration groups were given relevant medicine intragastrically,once a day ,for consecutive 10 weeks. After last intragastric administration ,hepatic index of rats was calculated. The levels of aspartate aminotransferase (AST),alanine aminotransferase (ALT)and hyaluronic acid (HA)in serum and the level of hydroxyproline (Hyp)in liver tissue were determined. The staining of collagen fibrin in rat liver was observed. The protein expression of α-smooth muscle actin (α-SMA),microtubule-associated protein 1 light chain 3(LC3)and p 62 as well as the phosphorylation level of phosphoinositide 3 kinase(PI3K),protein kinase B (Akt)and mammalian target of rapamycin (mTOR)in liver tissue were determined ;mRNA expression corresponding to above protein were also determined. RESULTS :Compared with normal control group ,the hepatic index ,the serum levels of AST ,ALT,HA and Hyp ,the percentage of positive staining area for collagen fibrin ,the mRNA and protein expression of α-SMA and LC 3- Ⅱ were increased significantly (P<0.05). Protein expression of p 62,phosphorylation levels of PI 3K,Akt and mTOR as well as mRNA expression of p 62,PI3K,Akt and mTOR were significantly down-regulated (P<0.05). Compared with model group ,phosphorylation levels of PI 3K and mTOR were decreased significantly in chelidonine low-dose group (P<0.05). The changes of above indexes in chelidonine middle-dose and high-dose groups (except for liver index , HA level in middle-dose group ) were reversed significantly (P<0.05). CONCLUSIONS:Chelidonine can attenuate CCl 4-induced liver fibrosis in rats ;the mechanism of it may be associated with activating PI 3K/Akt/mTOR signaling pathway and inhibiting autophagy.

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