1.Integrating Transcriptomics and 3D Organoids to Investigate Mechanism of Periplaneta americana Extract Against Lung Adenocarcinoma
Qiong MA ; Chunxia HUANG ; Jiawei HE ; Yuting BAI ; Xingyue LIU ; Yuxuan XIONG ; Yang ZHONG ; Hengzhou LAI ; Yuling JIANG ; Xueke LI ; Qian WANG ; Yifeng REN ; Xi FU ; Funeng GENG ; Taoqing WU ; Ping XIAO ; Fengming YOU
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(11):124-132
ObjectiveTo evaluate the antitumor activity of Periplaneta americana extract(PAE) against human-derived lung adenocarcinoma organoids(LUAD-PDOs) and to elucidate its potential mechanism based on transcriptomics. MethodsFresh tumor and adjacent normal tissues from patients with LUAD were collected to construct LUAD-PDOs and normal lung organoid(Nor-PDOs) models using 3D organoid culture technology. The effective intervention concentration of PAE was determined using the cell counting kit-8(CCK-8) assay. Experimental groups included the model group(LUAD-PDOs), normal group, model administration group(LUAD-PDOs+PAE), and normal administration group(Nor-PDOs+PAE). Hematoxylin-eosin(HE) staining was used to observe the pathological structures of PDOs, immunohistochemistry(IHC) was performed to detect the expressions of the proliferation marker Ki-67 and lung adenocarcinoma differentiation markers cytokeratin-7(CK-7) and Napsin A, TUNEL staining was applied to detect cell apoptosis. RNA sequencing(RNA-Seq) was conducted to identify differentially expressed genes(DEGs), followed by Gene Ontology(GO), Kyoto Encyclopedia of Genes and Genomes(KEGG), and Gene Set Enrichment Analysis(GSEA), alongside protein-protein interaction(PPI) network analysis to screen core mechanisms. Finally, key targets were validated by integrating external database analysis with immunofluorescence(IF). ResultsNor-PDOs and LUAD-PDOs that highly recapitulated the pathological characteristics of the primary tissues were successfully established. The CCK-8 assay determined that the effective intervention concentration of PAE was 16 g·L-1. Morphological observation showed that Nor-PDOs exhibited lumen-forming structures, whereas LUAD-PDOs displayed dense, solid structures. CCK-8 and TUNEL assays revealed that, compared with the model group, PAE intervention inhibited the proliferation of LUAD-PDOs and promoted apoptosis in LUAD cells, while showing no significant effect on the viability of Nor-PDOs. Transcriptomic analysis identified 719 DEGs that were significantly reversed after PAE intervention(347 up-regulated and 372 down-regulated)(P<0.05). GO enrichment analysis indicated that DEGs in the model administration group were significantly enriched in biological processes related to cell cycle regulation compared to the model group. KEGG pathway analysis revealed that PAE affected pathways related to proliferation and metabolism, including pathways in cancer and the p53 signaling pathway. GSEA further confirmed that PAE significantly enhanced the activity of the p53 signaling pathway(P<0.05). PPI network analysis indicated that breast cancer type 1 susceptibility protein(BRCA1) and checkpoint kinase 1(CHEK1) were the core down-regulated targets in the p53 pathway. IF verified the high expression of BRCA1 and CHEK1 in LUAD-PDOs and their significant downregulation after PAE intervention(P<0.05). Furthermore, survival analysis based on The Cancer Genome Atlas(TCGA) database indicated that low expression of BRCA1 and CHEK1 was significantly associated with prolonged overall survival in patients with LUAD(P<0.05). ConclusionPAE effectively inhibits proliferation of LUAD-PDOs and promotes their apoptosis, its anti-tumor mechanism is potentially associated with the activation of the p53 signaling pathway, with BRCA1 and CHEK1 genes likely serving as key downstream targets for the effects of PAE.
2.Thyroid Hormone Network Regulation in MASLD: Mechanisms and Targeted Therapies
Wen-Ping XIAO ; Yang MA ; Heng GUAN ; Sha WAN ; Wen HAN ; Bing-Bing LUO ; Wu-Feng WANG ; Fang LIU
Progress in Biochemistry and Biophysics 2026;53(3):643-661
Metabolic dysfunction-associated steatotic liver disease (MASLD) has become the most prevalent chronic liver disease worldwide, affecting approximately 32%-38% of the adult population and posing a growing public health burden. MASLD represents a continuous disease spectrum ranging from simple steatosis to metabolic dysfunction-associated steatohepatitis (MASH), progressive hepatic fibrosis, cirrhosis, and ultimately hepatocellular carcinoma (HCC). The pathological core of MASLD lies in disruption of hepatic lipid metabolic homeostasis, characterized by an imbalance among de novo lipogenesis, fatty acid β-oxidation, and very-low-density lipoprotein (VLDL)-mediated lipid export. This metabolic disequilibrium subsequently drives inflammatory injury and fibrotic progression. Among the multiple regulatory pathways involved, thyroid hormone (TH) signaling has emerged as a central regulator of hepatic metabolic homeostasis. The liver is a major peripheral target organ of TH action, where TH predominantly exerts its metabolic effects through thyroid hormone receptor β (TRβ). Large-scale epidemiological studies and meta-analyses have demonstrated that hypothyroidism is significantly associated with increased MASLD prevalence, more severe histological injury, and advanced hepatic fibrosis, suggesting that dysregulation of TH signaling may participate throughout the entire MASLD disease spectrum. At the molecular level, TH regulates hepatic lipid metabolism by coordinating suppression of lipogenesis, enhancement of mitochondrial fatty acid oxidation, and promotion of VLDL assembly and secretion through integrated genomic actions of the T3-TRβ axis and non-genomic signaling pathways. Across different stages of MASLD, TH signaling exerts stage-dependent protective effects. In the steatosis stage, TH improves metabolic flexibility by modulating insulin sensitivity, glucose metabolism, and lipid droplet clearance, thereby alleviating early lipotoxic stress. During progression to MASH, TH attenuates inflammatory amplification by improving mitochondrial homeostasis, suppressing activation of the NOD-like receptor family pyrin domain containing 3 (NLRP3) inflammasome, and modulating the gut-liver axis microenvironment. In advanced stages, TH signaling influences hepatic stellate cell activation and extracellular matrix deposition, partly through interaction with the transforming growth factor-β (TGF-β)/SMAD pathway, while alterations in intrahepatic TH availability, mediated by dynamic changes in iodothyronine deiodinase 1 (DIO1), contribute to fibrosis progression and hepatocellular dedifferentiation. In hepatocellular carcinoma, coordinated downregulation of TRβ and DIO1 establishes a tumor-associated hypothyroid state that promotes metabolic reprogramming and tumor progression. The clinical relevance of TH signaling in MASLD has been underscored by the recent approval of Resmetirom, a liver-targeted TRβ‑selective agonist, for the treatment of non-cirrhotic MASH with moderate-to-severe fibrosis (F2-F3). This approval represents a landmark transition from mechanistic understanding to metabolism-centered precision therapy in MASLD. Clinical trials have demonstrated that Resmetirom not only improves key histological endpoints, including MASH resolution and fibrosis regression, but also favorably modulates atherogenic lipid profiles, highlighting the therapeutic potential of selectively targeting hepatic TH pathways. This review systematically summarizes the multidimensional regulatory roles of TH across the MASLD disease spectrum and discusses emerging diagnostic and therapeutic implications of TH-based interventions, aiming to inform future mechanistic research and optimize clinical management strategies.
3.Current Status and Reflections on Key Technologies and Methods for Clinical Research Design and Evaluation of Traditional Chinese Medicine in Spleen and Stomach Diseases
Fang LU ; Ping WANG ; Liqun BIAN ; Lin LYU ; Mengli XIAO ; Tai ZHANG ; Xudong TANG
Journal of Traditional Chinese Medicine 2026;67(5):498-503
Clinical trials represent a pivotal stage in the development of pharmaceutical drugs. Nevertheless, given the unique characteristics of traditional Chinese medicine (TCM) and the diagnostic and treatment principle of syndrome differentiation and treatment in TCM, the clinical evaluation techniques and methods that can comprehensively reflect the characteristics of TCM and are tailored to its specificities are still in need of refinement and innovation. This paper systematically summarizes the key techniques and methods for designing and evaluating the clinical research on the treatment of the spleen and stomach diseases with TCM from three aspects including clinical research design, evaluation, and platform construction, compares domestic and international research landscapes, and proposes for future directions. It is suggested that a multidimensional evaluation system integrating modern medicine and TCM theory should be established, and further innovation is needed in TCM research design and methodologies, leveraging intelligent devices and technologies powered by next-generation information technology to transform clinical data into high-quality TCM evidence. Moreover, standardized and shared platforms for TCM clinical data should be accelerated, so as to provide references for the design, implementation, and evaluation of future clinical research on the treatment of the spleen and stomach diseases with TCM.
4.Activation of α7nAChR optimises thermogenesis in brown adipose tissue of obese mice
Wencheng TIAN ; Sutong WANG ; Hesong FAN ; Yan LI ; Ping JIANG ; Xiao LI
Acta Universitatis Medicinalis Anhui 2026;61(7):1191-1199
ObjectiveTo investigate the mechanism by which activation of α7nicotinic acetylcholine receptors (α7nAChR) optimizes brown adipose tissue (BAT) thermogenesis in obese mice. MethodsObesity was induced in C57BL/6J mice via a high-fat diet. Fifty 8-week-old mice were randomly assigned to five groups: low-fat diet (Control), high-fat diet (HFD), high-fat diet plus a β3-adrenergic receptor agonist (HFD+β3), high-fat diet plus a β3-adrenergic receptor agonist and an α7nAChR selective agonist (HFD+β3+GTS-21), and high-fat diet plus a β3-adrenergic receptor agonist and an α7nAChR selective antagonist (HFD+β3+α-BGT). Haematoxylin and eosin (HE) staining was used to evaluate BAT morphology. Transmission electron microscopy was performed to assess mitochondrial number and lipid droplet morphology in adipocytes. ELISA was used to measure levels of tumour necrosis factor-α (TNF-α), interleukin(IL)-1β,IL-10, transforming growth factor-β (TGF-β), cyclic adenosine monophosphate (cAMP), and norepinephrine (NE). RT-qPCR was conducted to determine mRNA expression levels of vascular endothelial growth factor A (VEGF-A), nitric oxide synthase 2 (NOS2), arginase 1 (Arg1), uncoupling protein 1 (UCP1), PR domain-containing protein 16 (PRDM16), and peroxisome proliferator-activated receptor γ coactivator-1α (PGC-1α) in BAT. Immunohistochemistry was used to detect macrophage markers (CD31, CD86, and CD206). Protein expression levels of UCP1, α7nAChR, nuclear factor-κB p65(NF-κB p65), phosphorylated Janus kinase 2 (p-JAK2), and phosphorylated signal transducer and activator of transcription 3 (p-STAT3) were analyzed by Western blot. ResultsCompared with the Control group, the HFD group showed enlarged lipid droplets and reduced mitochondrial numbers in adipocytes, accompanied by increased TNF-α and IL-1β and decreased IL-10, TGF-β, Arg1, and VEGF-A (all P<0.01). Compared with the HFD+β3 group, the HFD+β3+GTS-21 group showed a smaller lipid droplet area and a higher mitochondrial number, along with reduced levels of pro-inflammatory factors, NOS2, and NF-κB p65, and increased levels of anti-inflammatory factors, Arg1, and phosphorylation of JAK2 and STAT3 (all P<0.01). ConclusionActivation of α7nAChR in combination with a β3-adrenergic receptor agonist effectively enhances thermogenesis, alleviates local adipose tissue hypoxia, and shifts the local inflammatory phenotype toward an M2-like state, thereby reducing inflammation in brown adipose tissue and improving its thermogenic capacity.
5.Contamination levels of perfluorinated compounds in water bodies of key river basins in the Yangtze River Delta Region in 2023
Jingxian ZHOU ; Yu’e JIN ; Jinjing MA ; Yuanjie LIN ; Liming XUE ; Hailei QIAN ; Yangyang REN ; Ping XIAO ; Guoquan WANG
Shanghai Journal of Preventive Medicine 2026;38(7):536-542
ObjectiveThis study aimed to provide a scientific basis for the safety management of drinking water by assessing the contamination levels of 21 per- and polyfluoroalkyl substances (PFASs) in water samples collected from the Yangtze River Delta region. MethodsSolid-phase extraction coupled with ultra-high-performance liquid chromatography-tandem mass spectrometry (UHPLC-MS/MS) was employed to determine 21 PFASs in 6 source water samples, 20 treated water samples, and 60 tap water samples collected from 5 administrative districts in the Yangtze River Delta region across four seasons in 2023. The Kruskal-Wallis H test was used to compare differences in PFAS concentrations among the three types of water samples, followed by post hoc pairwise comparisons with Bonferroni correction. Removal efficiencies of target compounds were also calculated. ResultsAmong the 86 samples, 14 PFASs were detected, with 7 compounds detected in 100% of samples. The total concentrations of PFASs in source water, treated water, and tap water ranged from 63.85 to 190.54 ng·L-¹, 55.75 to 774.36 ng·L-¹, and 40.72 to 689.80 ng·L-¹, respectively. The compounds with the highest median concentrations were perfluorobutanoic acid (PFBA) (40.19, 15.20, and 14.05 ng·L-¹), perfluorohexanoic acid (PFHxA) (29.69, 32.62, and 34.24 ng·L-¹), perfluorooctanoic acid (PFOA) (17.65, 39.45, and 36.83 ng·L-¹), and potassium perfluorobutanesulfonic acid (PFBS) (16.99, 24.38, and 23.89 ng·L-¹). Notably, concentrations of PFOA (7.71‒71.63 ng·L-¹) and PFOS (
6.Banxia Shumitang plus Zhizichi Tang Regulates PINK1/Parkin Signaling Pathway-mediated Mitochondrial Autophagy to Prevent and Treat Insomnia with Depression
Chunfeng XIAO ; Peishuai GONG ; Yini ZHANG ; Ping WANG
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(20):33-46
ObjectiveTo investigate the effect and mechanism of Banxia Shumitang plus Zhizichi Tang (BZ) on PTEN-induced kinase 1 (PINK1)/Parkin signaling pathway in regulating mitochondrial autophagy in preventing insomnia with depression. MethodsSeventy-two 6-week-old male Kunming mice were randomized into a normal group, a model group, low-dose, medium-dose, and high-dose BZ groups (BZ-L, BZ-M, BZ-H, 2.92, 5.85, 11.7 g·kg-1), and an estazolam (0.21 mg·kg-1) group. Insomnia model was established on days 1 to 3. p-Chlorophenylalanine (PCPA) was injected intraperitoneally at a dose of 400 mg·kg-1 into mice of the model group and administration groups for 3 consecutive days. Then, the classic depression model was established with chronic unpredictable mild stress (CUMS) for 28 consecutive days. Administration and modeling were performed simultaneously. After gavage, 24 h spontaneous activity test was performed to test sleep state, and sugar preference test and open field test were performed to evaluate anxiety-like state. The morphological changes of the hypothalamus were observed by hematoxylin-eosin (HE) staining, and the number of Nissl bodies was observed by Nissl staining. The ultrastructure of mitochondria was observed by transmission electron microscopy. The mitochondrial membrane potential assay kit (JC-1) was used to examine the mitochondrial function, and a biochemical assay kit was used to measure the ATP content in the hypothalamus. The level of reactive oxygen species (ROS) was determined by the immunofluorescence assay, and the serum levels of 5-hydroxytryptamine (5-HT), noradrenalin (NE), and cortisol (CORT) were determined by enzyme-linked immunosorbent assay (ELISA). Western blot and Real-time quantitative polymerase chain reaction (Real-time PCR) were employed to determine the expression of PINK1, Parkin, microtubule-associated protein 1 light chain 3 (LC3), and isolator protein 1 (p62) at protein and mRNA levels, respectively. ResultsThe 24 h spontaneous activity test showed that compared with the normal group, the model group did not exhibit circadian rhythm characteristics in their spontaneous activity time, while the circadian rhythm characteristics were restored in each treatment group (P<0.05). The sucrose preference test indicated that compared with that in the normal group, the sucrose preference rate in the model group reduced (P<0.01), and compared with that in the model group, the sucrose preference rate in each treatment group increased (P<0.01). The open field test revealed that compared with the normal group, the model group exhibited decreased movement distance, average speed, frequency of visits to the central area, and time spent in the central area (P<0.01), and compared with those in the model group, these parameters in each treatment group increased (P<0.05, P<0.01). HE staining showed that compared with the normal group, the model group exhibited disarrangement of neurons in the hypothalamus, enlarged intercellular space, and severe nuclear condensation, while the degree of hypothalamic neuronal damage in each treatment group was alleviated. Nissl staining indicated that compared with the normal group, the model group demonstrated aggravated neuronal damage and increased damaged cells (P<0.01). Compared with that in the model group, the number of damaged cells in each treatment group decreased (P<0.01). Transmission electron microscopy showed that compared with the normal group, the model group exhibited mitochondrial swelling and rupture in the hypothalamus, with visible autophagic lysosomes in the cytoplasm. Compared with those in the model group, only a few autophagic lysosomes were observed in the BZ-L group, and the degree of mitochondrial swelling and rupture was alleviated in the other treatment groups. ROS immunofluorescence assay showed that compared with the normal group, the model group displayed enhanced red fluorescence intensity of mitochondrial ROS (P<0.01), which was attenuated in each treatment group (P<0.01). Mitochondrial membrane potential assay showed that compared with the normal group, the model group had declined mitochondrial membrane potential (P<0.01), which was recovered in each treatment group (P<0.05, P<0.01). The biochemical assay of ATP levels indicated that compared with the normal group, the model group exhibited decreased ATP content (P<0.01), which rebound in each treatment group (P<0.05, P<0.01). ELISA showed that compared with the normal group, the model group exhibited decreased 5-HT content and increased NE and CORT content (P<0.01). Compared with the model group, each treatment group showed increased 5-HT content (P<0.01) and reduced NE content (P<0.01) and CORT content (P<0.05, P<0.01). Western blot of the hypothalamus showed that compared with the normal group, the model group exhibited downregulated protein levels of PINK1, Parkin, and LC3 (P<0.01) and upregulated protein level of p62 (P<0.01). Compared with the model group, each treatment group showed upregulated protein levels of PINK1, Parkin, and LC3 (P<0.05, P<0.01) and downregulated protein level of p62 (P<0.05, P<0.01). Real-time PCR showed that compared with the normal group, the model group exhibited downregulated mRNA levels of PINK1, Parkin, and LC3 (P<0.01) and upregulated mRNA level of p62 (P<0.01). Compared with the model group, each treatment group showed upregulated mRNA levels of PINK1, Parkin, and LC3 (P<0.01) and downregulated mRNA level of p62 (P<0.01). ConclusionBZ can ameliorate the insomnia and anxiety state of mice by regulating PINK1/Parkin signaling pathway to improve the mitochondrial function, enhance mitochondrial autophagy, protect neurons, and repair damaged nerve cells.
7.Banxia Shumitang plus Zhizichi Tang Regulates PINK1/Parkin Signaling Pathway-mediated Mitochondrial Autophagy to Prevent and Treat Insomnia with Depression
Chunfeng XIAO ; Peishuai GONG ; Yini ZHANG ; Ping WANG
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(20):33-46
ObjectiveTo investigate the effect and mechanism of Banxia Shumitang plus Zhizichi Tang (BZ) on PTEN-induced kinase 1 (PINK1)/Parkin signaling pathway in regulating mitochondrial autophagy in preventing insomnia with depression. MethodsSeventy-two 6-week-old male Kunming mice were randomized into a normal group, a model group, low-dose, medium-dose, and high-dose BZ groups (BZ-L, BZ-M, BZ-H, 2.92, 5.85, 11.7 g·kg-1), and an estazolam (0.21 mg·kg-1) group. Insomnia model was established on days 1 to 3. p-Chlorophenylalanine (PCPA) was injected intraperitoneally at a dose of 400 mg·kg-1 into mice of the model group and administration groups for 3 consecutive days. Then, the classic depression model was established with chronic unpredictable mild stress (CUMS) for 28 consecutive days. Administration and modeling were performed simultaneously. After gavage, 24 h spontaneous activity test was performed to test sleep state, and sugar preference test and open field test were performed to evaluate anxiety-like state. The morphological changes of the hypothalamus were observed by hematoxylin-eosin (HE) staining, and the number of Nissl bodies was observed by Nissl staining. The ultrastructure of mitochondria was observed by transmission electron microscopy. The mitochondrial membrane potential assay kit (JC-1) was used to examine the mitochondrial function, and a biochemical assay kit was used to measure the ATP content in the hypothalamus. The level of reactive oxygen species (ROS) was determined by the immunofluorescence assay, and the serum levels of 5-hydroxytryptamine (5-HT), noradrenalin (NE), and cortisol (CORT) were determined by enzyme-linked immunosorbent assay (ELISA). Western blot and Real-time quantitative polymerase chain reaction (Real-time PCR) were employed to determine the expression of PINK1, Parkin, microtubule-associated protein 1 light chain 3 (LC3), and isolator protein 1 (p62) at protein and mRNA levels, respectively. ResultsThe 24 h spontaneous activity test showed that compared with the normal group, the model group did not exhibit circadian rhythm characteristics in their spontaneous activity time, while the circadian rhythm characteristics were restored in each treatment group (P<0.05). The sucrose preference test indicated that compared with that in the normal group, the sucrose preference rate in the model group reduced (P<0.01), and compared with that in the model group, the sucrose preference rate in each treatment group increased (P<0.01). The open field test revealed that compared with the normal group, the model group exhibited decreased movement distance, average speed, frequency of visits to the central area, and time spent in the central area (P<0.01), and compared with those in the model group, these parameters in each treatment group increased (P<0.05, P<0.01). HE staining showed that compared with the normal group, the model group exhibited disarrangement of neurons in the hypothalamus, enlarged intercellular space, and severe nuclear condensation, while the degree of hypothalamic neuronal damage in each treatment group was alleviated. Nissl staining indicated that compared with the normal group, the model group demonstrated aggravated neuronal damage and increased damaged cells (P<0.01). Compared with that in the model group, the number of damaged cells in each treatment group decreased (P<0.01). Transmission electron microscopy showed that compared with the normal group, the model group exhibited mitochondrial swelling and rupture in the hypothalamus, with visible autophagic lysosomes in the cytoplasm. Compared with those in the model group, only a few autophagic lysosomes were observed in the BZ-L group, and the degree of mitochondrial swelling and rupture was alleviated in the other treatment groups. ROS immunofluorescence assay showed that compared with the normal group, the model group displayed enhanced red fluorescence intensity of mitochondrial ROS (P<0.01), which was attenuated in each treatment group (P<0.01). Mitochondrial membrane potential assay showed that compared with the normal group, the model group had declined mitochondrial membrane potential (P<0.01), which was recovered in each treatment group (P<0.05, P<0.01). The biochemical assay of ATP levels indicated that compared with the normal group, the model group exhibited decreased ATP content (P<0.01), which rebound in each treatment group (P<0.05, P<0.01). ELISA showed that compared with the normal group, the model group exhibited decreased 5-HT content and increased NE and CORT content (P<0.01). Compared with the model group, each treatment group showed increased 5-HT content (P<0.01) and reduced NE content (P<0.01) and CORT content (P<0.05, P<0.01). Western blot of the hypothalamus showed that compared with the normal group, the model group exhibited downregulated protein levels of PINK1, Parkin, and LC3 (P<0.01) and upregulated protein level of p62 (P<0.01). Compared with the model group, each treatment group showed upregulated protein levels of PINK1, Parkin, and LC3 (P<0.05, P<0.01) and downregulated protein level of p62 (P<0.05, P<0.01). Real-time PCR showed that compared with the normal group, the model group exhibited downregulated mRNA levels of PINK1, Parkin, and LC3 (P<0.01) and upregulated mRNA level of p62 (P<0.01). Compared with the model group, each treatment group showed upregulated mRNA levels of PINK1, Parkin, and LC3 (P<0.01) and downregulated mRNA level of p62 (P<0.01). ConclusionBZ can ameliorate the insomnia and anxiety state of mice by regulating PINK1/Parkin signaling pathway to improve the mitochondrial function, enhance mitochondrial autophagy, protect neurons, and repair damaged nerve cells.
8.Effects of Different Modes in Hypoxic Training on Metabolic Improvements in Obese Individuals: a Systematic Review With Meta-analysis on Randomized Controlled Trail
Jie-Ping WANG ; Xiao-Shi LI ; Ru-Wen WANG ; Yi-Yin ZHANG ; Feng-Zhi YU ; Ru WANG
Progress in Biochemistry and Biophysics 2025;52(6):1587-1604
This paper aimed to systematically evaluate the effects of hypoxic training at different fraction of inspired oxygen (FiO2) on body composition, glucose metabolism, and lipid metabolism in obese individuals, and to determine the optimal oxygen concentration range to provide scientific evidence for personalized and precise hypoxic exercise prescriptions. A systematic search was conducted in the Cochrane Library, PubMed, Web of Science, Embase, and CNKI databases for randomized controlled trials and pre-post intervention studies published up to March 31, 2025, involving hypoxic training interventions in obese populations. Meta-analysis was performed using RevMan 5.4 software to assess the effects of different fraction of inspired oxygen (FiO2≤14% vs. FiO2>14%) on BMI, body fat percentage, waist circumference, fasting blood glucose, insulin, HOMA-IR, triglycerides (TG), low-density lipoprotein cholesterol (LDL-C), and high-density lipoprotein cholesterol (HDL-C), with subgroup analyses based on oxygen concentration. A total of 22 studies involving 292 participants were included. Meta-analysis showed that hypoxic training significantly reduced BMI (mean difference (MD)=-2.29,95%CI: -3.42 to -1.17, P<0.000 1), body fat percentage (MD=-2.32, 95%CI: -3.16 to -1.47, P<0.001), waist circumference (MD=-3.79, 95%CI: -6.73 to -0.85, P=0.01), fasting blood glucose (MD=-3.58, 95%CI: -6.23 to -0.93, P=0.008), insulin (MD=-1.60, 95%CI: -2.98 to -0.22, P=0.02), TG (MD=-0.18, 95%CI: -0.25 to -0.12, P<0.001), and LDL-C (MD=-0.25, 95%CI: -0.39 to -0.11, P=0.000 3). Greater improvements were observed under moderate hypoxic conditions with FiO2>14%. Changes in HOMA-IR (MD=-0.74, 95%CI: -1.52 to 0.04,P=0.06) and HDL-C (MD=-0.09, 95%CI: -0.21 to 0.02, P=0.11) were not statistically significant. Hypoxic training can significantly improve body composition, glucose metabolism, and lipid metabolism indicators in obese individuals, with greater benefits observed under moderate hypoxia (FiO>14%). As a key parameter in hypoxic exercise interventions, the precise setting of oxygen concentration is crucial for optimizing intervention outcomes.
9.POU2F1 inhibits miR-29b1/a cluster-mediated suppression of PIK3R1 and PIK3R3 expression to regulate gastric cancer cell invasion and migration.
Yizhi XIAO ; Ping YANG ; Wushuang XIAO ; Zhen YU ; Jiaying LI ; Xiaofeng LI ; Jianjiao LIN ; Jieming ZHANG ; Miaomiao PEI ; Linjie HONG ; Juanying YANG ; Zhizhao LIN ; Ping JIANG ; Li XIANG ; Guoxin LI ; Xinbo AI ; Weiyu DAI ; Weimei TANG ; Jide WANG
Chinese Medical Journal 2025;138(7):838-850
BACKGROUND:
The transcription factor POU2F1 regulates the expression levels of microRNAs in neoplasia. However, the miR-29b1/a cluster modulated by POU2F1 in gastric cancer (GC) remains unknown.
METHODS:
Gene expression in GC cells was evaluated using reverse-transcription polymerase chain reaction (PCR), western blotting, immunohistochemistry, and RNA in situ hybridization. Co-immunoprecipitation was performed to evaluate protein interactions. Transwell migration and invasion assays were performed to investigate the biological behavior of GC cells. MiR-29b1/a cluster promoter analysis and luciferase activity assay for the 3'-UTR study were performed in GC cells. In vivo tumor metastasis was evaluated in nude mice.
RESULTS:
POU2F1 is overexpressed in GC cell lines and binds to the miR-29b1/a cluster promoter. POU2F1 is upregulated, whereas mature miR-29b-3p and miR-29a-3p are downregulated in GC tissues. POU2F1 promotes GC metastasis by inhibiting miR-29b-3p or miR-29a-3p expression in vitro and in vivo . Furthermore, PIK3R1 and/or PIK3R3 are direct targets of miR-29b-3p and/or miR-29a-3p , and the ectopic expression of PIK3R1 or PIK3R3 reverses the suppressive effect of mature miR-29b-3p and/or miR-29a-3p on GC cell metastasis and invasion. Additionally, the interaction of PIK3R1 with PIK3R3 promotes migration and invasion, and miR-29b-3p , miR-29a-3p , PIK3R1 , and PIK3R3 regulate migration and invasion via the phosphatidylinositol 3-kinase/protein kinase B/mammalian target of rapamycin (PI3K/Akt/mTOR) pathway in GC cells. In addition, POU2F1 , PIK3R1 , and PIK3R3 expression levels negatively correlated with miR-29b-3p and miR-29a-3p expression levels in GC tissue samples.
CONCLUSIONS
The POU2F1 - miR-29b-3p / miR-29a-3p-PIK3R1 / PIK3R1 signaling axis regulates tumor progression and may be a promising therapeutic target for GC.
MicroRNAs/metabolism*
;
Humans
;
Stomach Neoplasms/pathology*
;
Cell Line, Tumor
;
Cell Movement/physiology*
;
Phosphatidylinositol 3-Kinases/metabolism*
;
Animals
;
Mice
;
Octamer Transcription Factor-1/metabolism*
;
Mice, Nude
;
Class Ia Phosphatidylinositol 3-Kinase/metabolism*
;
Neoplasm Invasiveness
;
Gene Expression Regulation, Neoplastic/genetics*
;
Male
;
Immunohistochemistry
;
Female
10.An assessment model for efficacy of autologous CD19 chimeric antigen receptor T-cell therapy and relapse or refractory diffuse large B-cell lymphoma risk.
Bin XUE ; Yifan LIU ; Min ZHANG ; Gangfeng XIAO ; Xiu LUO ; Lili ZHOU ; Shiguang YE ; Yan LU ; Wenbin QIAN ; Li WANG ; Ping LI ; Aibin LIANG
Chinese Medical Journal 2025;138(1):108-110

Result Analysis
Print
Save
E-mail