1.Current Status,Challenges,and Strategies of Basic Research on the Brain-Gut Interaction Theory for Spleen and Stomach Diseases in Traditional Chinese Medicine
Ting CHEN ; Jinxia ZHU ; Xiaohua HOU ; Xiaoli ZHANG ; Lifei ZHENG ; Lei ZHANG ; Xinxin WANG ; Xuan LI ; Xudong TANG
Journal of Traditional Chinese Medicine 2026;67(5):517-522
The brain-gut interaction theory is a multidimensional integrative concept based on the brain-gut axis, involving neural, endocrine, and immune regulatory networks as well as the gut microbiota. Zang-fu organs (脏腑) theory in traditional Chinese medicine (TCM) shows a high degree of consistency with the brain-gut interaction theory, and the core functions such as the spleen and stomach governing the ascending of the clear and descending of the turbid, the liver governing the free flow of qi, and the heart governing mental and emotional activities are closely associated with the multi-level regulatory mechanisms of the brain-gut axis. TCM therapy can modulate brain-gut interactions through multiple pathways in the treatment of spleen and stomach diseases, including the regulation of gastrointestinal hormone secretion, neurotransmitter levels, the hypothalamic-pituitary-adrenal (HPA) axis, immune homeostasis and inflammatory responses, as well as the gut microecology. However, current basic research on the brain-gut interaction theory in TCM for spleen and stomach diseases still faces several challenges, such as difficulties in integrating TCM spleen-stomach theory with modern pathophysiology, lack of innovation in research concepts, and limitations in research methodologies. It is therefore proposed that multidisciplinary collaboration, multi-omics technologies, and targeted research approaches should be adopted to provide more comprehensive methods for basic research on TCM spleen and stomach diseases, thereby promoting the in-depth development of brain-gut interaction theory.
2.Comparative analysis of hematopoietic reconstitution after different stem cell infusions in a murine model of bone marrow acute radiation syndrome
Xuan LIU ; Yixi HOU ; Qianqian XIAO ; Fang ZHOU
Chinese Journal of Radiological Health 2026;35(3):407-413
Objective To compare the therapeutic efficacy and identify differences between haploidentical hematopoietic stem cell transplantation combined with mesenchymal stem cells (Haplo-MSC) and umbilical cord blood hematopoietic stem cell transplantation combined with mesenchymal stem cells (UCB-MSC) in mice with bone marrow acute radiation syndrome (ARS). Methods Eight-to ten-week-old CB6F1 mice were exposed to 8 Gy of 60Co γ-ray irradiation to establish a bone marrow-type ARS model.The mice were then randomly assigned to three groups: the Haplo-MSC group (haploidentical hematopoietic stem cells combined with MSCs), the UCB-MSC group (umbilical cord blood stem cells combined with MSCs), and a saline control group. The survival rate, peripheral blood cell counts, pathological changes in target organs, colony formation of bone marrow cells, and graft-versus-host disease (GVHD) were observed. Results All mice in the saline control group died within 14 days, with a median survival time of 8.9 days. The 30 day survival rate was 65% in the Haplo-MSC group and 60% in the UCB-MSC group. The Log-rank test showed no significant difference in survival time between the two transplantation groups (P=0.561). At 28 days post-transplantation, no significant differences were observed in WBC, PLT, RBC, or Hb counts between the two groups (P=0.151, 0.733, 0.856, and 0.300, respectively). Pathological changes in bone marrow cells showed that bone marrow failure occurred later in the UCB-MSC group than in the Haplo-MSC group. In contrast, the Haplo-MSC group exhibited faster hematopoietic stem cell engraftment. Furthermore, the numbers of CFU-E, CFU-GM, and CFU-GEMM differed significantly between the two groups (P<0.05). Conclusion Both the Haplo-MSC and UCB-MSC regimens promoted hematopoietic engraftment and reconstitution in mice with lethal-dose radiation-induced bone marrow ARS. However, the onset of bone marrow failure was delayed in mice treated with the UCB-MSC regimen. In contrast, mice treated with the Haplo-MSC regimen showed faster engraftment.
3.Research on The Role of Dopamine in Regulating Sleep and Wakefulness Through Exercise
Li-Juan HOU ; Ya-Xuan GENG ; Ke LI ; Zhao-Yang HUANG ; Lan-Qun MAO
Progress in Biochemistry and Biophysics 2025;52(1):88-98
Sleep is an instinctive behavior alternating awakening state, sleep entails many active processes occurring at the cellular, circuit and organismal levels. The function of sleep is to restore cellular energy, enhance immunity, promote growth and development, consolidate learning and memory to ensure normal life activities. However, with the increasing of social pressure involved in work and life, the incidence of sleep disorders (SD) is increasing year by year. In the short term, sleep disorders lead to impaired memory and attention; in the longer term, it produces neurological dysfunction or even death. There are many ways to directly or indirectly contribute to sleep disorder and keep the hormones, including pharmacological alternative treatments, light therapy and stimulus control therapy. Exercise is also an effective and healthy therapeutic strategy for improving sleep. The intensities, time periods, and different types of exercise have different health benefits for sleep, which can be found through indicators such as sleep quality, sleep efficiency and total sleep time. So it is more and more important to analyze the mechanism and find effective regulation targets during sleep disorder through exercise. Dopamine (DA) is an important neurotransmitter in the nervous system, which not only participates in action initiation, movement regulation and emotion regulation, but also plays a key role in the steady-state remodeling of sleep-awakening state transition. Appreciable evidence shows that sleep disorder on humans and rodents evokes anomalies in the dopaminergic signaling, which are also implicated in the development of psychiatric illnesses such as schizophrenia or substance abuse. Experiments have shown that DA in different neural pathways plays different regulatory roles in sleep behavior, we found that increasing evidence from rodent studies revealed a role for ventral tegmental area DA neurons in regulating sleep-wake patterns. DA signal transduction and neurotransmitter release patterns have complex interactions with behavioral regulation. In addition, experiments have shown that exercise causes changes in DA homeostasis in the brain, which may regulate sleep through different mechanisms, including cAMP response element binding protein signal transduction, changes in the circadian rhythm of biological clock genes, and interactions with endogenous substances such as adenosine, which affect neuronal structure and play a neuroprotective role. This review aims to introduce the regulatory effects of exercise on sleep disorder, especially the regulatory mechanism of DA in this process. The analysis of intracerebral DA signals also requires support from neurophysiological and chemical techniques. Our laboratory has established and developed an in vivo brain neurochemical analysis platform, which provides support for future research on the regulation of sleep-wake cycles by movement. We hope it can provide theoretical reference for the formulation of exercise prescription for clinical sleep disorder and give some advice to the combined intervention of drugs and exercise.
4.Construction of lentiviral vectors for solute carrier family 1 member 5 overexpression and knockdown and stably transfected RAW264.7 cell line
Daxin GUO ; Susu FAN ; Zhendong ZHU ; Jianhong HOU ; Xuan ZHANG
Chinese Journal of Tissue Engineering Research 2025;29(7):1414-1421
BACKGROUND:Solute carrier family 1 member 5(SLC1A5)plays a potential role in a variety of diseases,but the exact mechanism of action is unclear.The construction of stable SLC1A5 overexpression and knockdown cell models can provide a powerful experimental tool for in-depth study of the exact role and mechanism of SLC1A5 in diseases and the discovery of potential therapeutic targets. OBJECTIVE:To construct lentiviral vectors for overexpression and knockdown of mouse SLC1A5 and establish stable transfected RAW264.7 cell lines,so as to provide an experimental foundation for further investigation of the role of SLC1A5 in inflammation. METHODS:Primers were designed and synthesized based on the SLC1A5 gene sequence,and the gene segment was amplified using polymerase chain reaction.Subsequently,the target gene segment was directionally inserted into the GV492 vector plasmid,which had been digested with AgeI/NheI enzymes,to construct recombinant lentiviral plasmids.Positive clones were further selected,and their sequences were confirmed.The pHelper1.0 plasmid vector and pHelper2.0 plasmid vector,along with the target plasmid vector,was co-cultured with 293T cells for transfection,resulting in the production and titration of lentiviral stocks.Furthermore,RAW264.7 cells were cultured in vitro,and the working concentration of puromycin was determined.Lentiviruses were separately co-cultured with RAW264.7 cells,and transfection efficiency was determined by measuring fluorescence intensity.Stable transfected cells were selected using puromycin,and real-time fluorescence quantitative PCR and western blot assay were employed to assess the gene and protein expression levels of SLC1A5 in stably transfected cell lines. RESULTS AND CONCLUSION:(1)Sequencing results indicated a perfect match between the sequencing and target sequences,confirming the successful construction of recombinant lentiviral vectors.(2)The titer for the overexpression SLC1A5 lentivirus was 1×109 TU/mL,while the titer for the knockdown SLC1A5 lentivirus was 3×109 TU/mL.(3)The working concentration of puromycin for RAW264.7 cells was determined to be 3 μg/mL.(4)The optimal conditions for transfecting RAW264.7 cells with overexpression/knockdown expression of SLC1A5 lentivirus involved the use of HiTransG P transfection enhancer with a multiplicity of infection value of 50.(5)A significant upregulation of the gene and protein expression levels of SLC1A5 was detected in cell lines stably overexpressing SLC1A5,while gene and protein expression levels of SLC1A5 were significantly decreased in the knockdown stable cell lines.These findings indicate that lentiviral vectors for mouse SLC1A5 overexpression and knockdown have been successfully constructed and a stably transfected RAW264.7 cell line has been obtained.
5.Yiqi Yangyin Huazhuo Tongluo Formula alleviates diabetic podocyte injury by regulating miR-21a-5p/FoxO1/PINK1-mediated mitochondrial autophagy.
Kelei GUO ; Yingli LI ; Chenguang XUAN ; Zijun HOU ; Songshan YE ; Linyun LI ; Liping CHEN ; Li HAN ; Hua BIAN
Journal of Southern Medical University 2025;45(1):27-34
OBJECTIVES:
To investigate the protective effect of Yiqi Yangyin Huazhuo Tongluo Formula (YYHT) against high glucose-induced injury in mouse renal podocytes (MPC5 cells) and the possible mechanism.
METHODS:
Adult Wistar rats were treated with 19, 38, and 76 g/kg YYHT or saline via gavage for 7 days to prepare YYHT-medicated or blank sera for treatment of MPC5 cells cultured in high glucose (30 mmol/L) prior to transfection with a miR-21a-5p inhibitor or a miR-21a-5p mimic. The changes in miR-21a-5p expressions and the mRNA levels of FoxO1, PINK1, and Parkin in the treated cells were detected with qRT-PCR, and the protein levels of nephrin, podocin, FoxO1, PINK1, and Parkin were detected with Western blotting. Autophagic activity in the cells were evaluated with MDC staining. The effect of miR-21a-5p mimic on FoxO1 transcription and the binding of miR-21a-5p to FoxO1 were examined with luciferase reporter gene assay and radioimmunoprecipitation assay.
RESULTS:
MPC5 cells exposed to high glucose showed significantly increased miR-21a-5p expression, lowered expressions of FoxO1, PINK1, and Parkin1 mRNAs, and reduced levels of FoxO1, PINK1, parkin, nephrin, and podocin proteins and autophagic activity. Treatment of the exposed cells with YYHT-medicated sera and miR-21a-5p inhibitor both significantly enhanced the protein expressions of nephrin and podocin, inhibited the expression of miR-21a-5p, increased the mRNA and protein expressions of FoxO1, PINK1 and Parkin, and upregulated autophagic activity of the cells. Transfection with miR-21a-5p mimic effectively inhibited the transcription of FoxO1 and promoted the binding of miR-21a-5p to FoxO1 in MPC5 cells, and these effects were obviously attenuated by treatment with YYHT-medicated sera.
CONCLUSIONS
YYHT-medicated sera alleviate high glucose-induced injury in MPC5 cells by regulating miR-21a-5p/FoxO1/PINK1-mediated mitochondrial autophagy.
Animals
;
MicroRNAs/genetics*
;
Podocytes/pathology*
;
Drugs, Chinese Herbal/pharmacology*
;
Autophagy/drug effects*
;
Rats, Wistar
;
Protein Kinases/metabolism*
;
Rats
;
Forkhead Box Protein O1
;
Mice
;
Mitochondria/drug effects*
;
Ubiquitin-Protein Ligases/metabolism*
;
Glucose
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Diabetic Nephropathies
;
Male
;
Membrane Proteins/metabolism*
;
Intracellular Signaling Peptides and Proteins
6.Yiqi Yangyin Huazhuo Tongluo Formula alleviates diabetic podocyte injury by regulating miR-21a-5p/FoxO1/PINK1-mediated mitochondrial autophagy
Kelei GUO ; Yingli LI ; Chenguang XUAN ; Zijun HOU ; Songshan YE ; Linyun LI ; Liping CHEN ; Li HAN ; Hua BIAN
Journal of Southern Medical University 2025;45(1):27-34
Objective To investigate the protective effect of Yiqi Yangyin Huazhuo Tongluo Formula(YYHT)against high glucose-induced injury in mouse renal podocytes(MPC5 cells)and the possible mechanism.Methods Adult Wistar rats were treated with 19,38,and 76 g/kg YYHT or saline via gavage for 7 days to prepare YYHT-medicated or blank sera for treatment of MPC5 cells cultured in high glucose(30 mmol/L)prior to transfection with a miR-21a-5p inhibitor or a miR-21a-5p mimic.The changes in miR-21a-5p expressions and the mRNA levels of FoxO1,PINK1,and Parkin in the treated cells were detected with qRT-PCR,and the protein levels of nephrin,podocin,FoxO1,PINK1,and Parkin were detected with Western blotting.Autophagic activity in the cells were evaluated with MDC staining.The effect of miR-21a-5p mimic on FoxO1 transcription and the binding of miR-21a-5p to FoxO1 were examined with luciferase reporter gene assay and radioimmunoprecipitation assay.Results MPC5 cells exposed to high glucose showed significantly increased miR-21a-5p expression,lowered expressions of FoxO1,PINK1,and Parkin1 mRNAs,and reduced levels of FoxO1,PINK1,parkin,nephrin,and podocin proteins and autophagic activity.Treatment of the exposed cells with YYHT-medicated sera and miR-21a-5p inhibitor both significantly enhanced the protein expressions of nephrin and podocin,inhibited the expression of miR-21a-5p,increased the mRNA and protein expressions of FoxO1,PINK1 and Parkin,and upregulated autophagic activity of the cells.Transfection with miR-21a-5p mimic effectively inhibited the transcription of FoxO1 and promoted the binding of miR-21a-5p to FoxO1 in MPC5 cells,and these effects were obviously attenuated by treatment with YYHT-medicated sera.Conclusion YYHT-medicated sera alleviate high glucose-induced injury in MPC5 cells by regulating miR-21a-5p/FoxO1/PINK1-mediated mitochondrial autophagy.
7.UPLC-Q-TOF-MS combined with network pharmacology reveals effect and mechanism of Gentianella turkestanorum total extract in ameliorating non-alcoholic steatohepatitis.
Wu DAI ; Dong-Xuan ZHENG ; Ruo-Yu GENG ; Li-Mei WEN ; Bo-Wei JU ; Qiang HOU ; Ya-Li GUO ; Xiang GAO ; Jun-Ping HU ; Jian-Hua YANG
China Journal of Chinese Materia Medica 2025;50(7):1938-1948
This study aims to reveal the effect and mechanism of Gentianella turkestanorum total extract(GTI) in ameliorating non-alcoholic steatohepatitis(NASH). UPLC-Q-TOF-MS was employed to identify the chemical components in GTI. SwissTarget-Prediction, GeneCards, OMIM, and TTD were utilized to screen the targets of GTI components and NASH. The common targets shared by GTI components and NASH were filtered through the STRING database and Cytoscape 3.9.0 to identify core targets, followed by GO and KEGG enrichment analysis. AutoDock was used for molecular docking of key components with core targets. A mouse model of NASH was established with a methionine-choline-deficient high-fat diet. A 4-week drug intervention was conducted, during which mouse weight was monitored, and the liver-to-brain ratio was measured at the end. Hematoxylin-eosin staining, Sirius red staining, and oil red O staining were employed to observe the pathological changes in the liver tissue. The levels of various biomarkers, including aspartate aminotransferase(AST), alanine aminotransferase(ALT), hydroxyproline(HYP), total cholesterol(TC), triglycerides(TG), low-density lipoprotein cholesterol(LDL-C), high-density lipoprotein cholesterol(HDL-C), malondialdehyde(MDA), superoxide dismutase(SOD), and glutathione(GSH), in the serum and liver tissue were determined. RT-qPCR was conducted to measure the mRNA levels of interleukin 1β(IL-1β), interleukin 6(IL-6), tumor necrosis factor α(TNF-α), collagen type I α1 chain(COL1A1), and α-smooth muscle actin(α-SMA). Western blotting was conducted to determine the protein levels of IL-1β, IL-6, TNF-α, and potential drug targets identified through network pharmacology. UPLC-Q-TOF/MS identified 581 chemical components of GTI, and 534 targets of GTI and 1 157 targets of NASH were screened out. The topological analysis of the common targets shared by GTI and NASH identified core targets such as IL-1β, IL-6, protein kinase B(AKT), TNF, and peroxisome proliferator activated receptor gamma(PPARG). GO and KEGG analyses indicated that the ameliorating effect of GTI on NASH was related to inflammatory responses and the phosphoinositide 3-kinase(PI3K)/AKT pathway. The staining results demonstrated that GTI ameliorated hepatocyte vacuolation, swelling, ballooning, and lipid accumulation in NASH mice. Compared with the model group, high doses of GTI reduced the AST, ALT, HYP, TC, and TG levels(P<0.01) while increasing the HDL-C, SOD, and GSH levels(P<0.01). RT-qPCR results showed that GTI down-regulated the mRNA levels of IL-1β, IL-6, TNF-α, COL1A1, and α-SMA(P<0.01). Western blot results indicated that GTI down-regulated the protein levels of IL-1β, IL-6, TNF-α, phosphorylated PI3K(p-PI3K), phosphorylated AKT(p-AKT), phosphorylated inhibitor of nuclear factor kappa B alpha(p-IκBα), and nuclear factor kappa B(NF-κB)(P<0.01). In summary, GTI ameliorates inflammation, dyslipidemia, and oxidative stress associated with NASH by regulating the PI3K/AKT/NF-κB signaling pathway.
Animals
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Non-alcoholic Fatty Liver Disease/genetics*
;
Mice
;
Network Pharmacology
;
Male
;
Drugs, Chinese Herbal/administration & dosage*
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Chromatography, High Pressure Liquid
;
Liver/metabolism*
;
Mice, Inbred C57BL
;
Humans
;
Mass Spectrometry
;
Tumor Necrosis Factor-alpha/metabolism*
;
Disease Models, Animal
;
Molecular Docking Simulation
8.The design and application of a genu valgum gait recognition model based on triple attention mechanism and spatial hierarchical pooling strategy.
Xiaoneng SONG ; Kun QIAN ; Xuan HOU ; Yizhe WANG
Journal of Biomedical Engineering 2025;42(5):994-1004
To facilitate the early intelligent screening of pediatric genu valgum, this study develops a deep learning-based gait recognition model tailored for clinical application. The model is constructed upon a three-dimensional residual network architecture and incorporates a triplet attention module alongside a spatial hierarchical pooling module, jointly enhancing feature interaction across temporal, spatial, and channel dimensions. This design ensures an optimal balance between representational capacity and computational efficiency. Evaluated on a self-constructed dataset, the model achieves precision of 98.0%, 97.1%, and 96.5%, recall rates of 97.5%, 97.0%, and 95.0%, and F 1-scores of 0.98, 0.97, and 0.96 on the training, validation, and test sets, respectively, demonstrating excellent recognition performance and strong generalization ability. Ablation experiments confirm the importance of the proposed model's core components in improving performance, and comparative experiments further highlight its significant advantages in recognition accuracy and robustness. Visualization experiments reveal that the model effectively focuses on key regions of gait images, with attention regions aligning closely with clinical anatomical landmarks, thereby enhancing the interpretability of the model's decision-making in clinical applications. In summary, the proposed model not only offers an efficient and reliable technical solution for early intelligent screening of genu valgum in children, but also provides a practical pathway for applying gait recognition technology in medical diagnosis.
Humans
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Gait
;
Deep Learning
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Genu Valgum/physiopathology*
;
Child
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Neural Networks, Computer
;
Algorithms
9.Study on the role of plasma exosome miR-622 in cachexia of hepatocellular carcinoma
Chao QIN ; Jinyan HOU ; Mei ZHU ; Ming GUAN ; Xuan DENG
International Journal of Laboratory Medicine 2025;46(13):1641-1646
Objective To explore the role of plasma exosome microRNA-622(miR-622)in cachexia of hep-atocellular carcinoma(HCC).Methods Select preoperative blood samples from 40 patients with stage Ⅲ-ⅣHCC and 33 patients with non HCC liver benign diseases collected at Huashan Hospital,Fudan University from 2021 to 2024 as the research subjects.Exosomes were isolated from the plasma of patients,human HCC cell lines(HepG2,Hep3B,PLC,Huh7),and the culture supernatants of primary human hepatocytes(PHH)by differential centrifugation.The relative expression level of miR-622 was detected by real-time fluorescence quantitative polymerase chain reaction.The level of lipolysis was assessed by determining the concentration of glycerol and fatty acids in adipocyte culture medium.Results Plasma exosome miR-622 levels in HCC pa-tients were positively correlated with subcutaneous adipose index and visceral adipose index(r=0.516,0.539,P<0.05).HCC cell conditional medium was able to significantly increase the lipolysis level of adipo-cytes.The relative expression levels of miR-622 in exosomes from HCC cells(HepG2,Hep3B,PLC,Huh7)were significantly lower than those in exosomes from PHH,with values of 0.13±0.04,0.28±0.08,0.23±0.07,and 0.24±0.04,respectively,compared to 1.00±0.18 in PHH exosomes.Further studies revealed that plasma exosome of HCC patients treatment was able to lead to a decrease in the relative expression level of miR-622 in adipocytes,as well as an enhancement of lipolysis.Conclusion The expression of plasma exosomal miR-622 is downregulated in HCC patients.HCC cells can deliver miR-622 to adipocytes via exosomes to reg-ulate lipolysis.Plasma exosomal miR-622 may serve as a potential biomarker for predicting HCC cachexia and a therapeutic target.
10.Application value of radiomics in predicting radiation-induced injury in the era of precise radiotherapy
Leran ZHAO ; Yanjie HOU ; Lufeng CHEN ; Xuan WU ; Xianfeng LI
Chinese Journal of Radiological Medicine and Protection 2025;45(3):255-260
Radiotherapy is one of the primary treatment modalities for tumors. In recent years, advancements in radiotherapy technology have enabled radiation to reach target areas with greater precision. However, radiation damage to normal tissue remains unavoidable. Traditional normal tissue complication probability (NTCP) models are widely used to predict such injuries, but they often fail to account for individual and tissue heterogeneity. As an emerging technology, radiomics can provide more comprehensive biological information and shows promise in predicting radiation-induced damage. This article reviews the application value of radiomics in predicting damage to organs at risk in the head and neck, thorax, abdomen, and pelvis.

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