1.The Role of Skeletal Muscle Satellite Cells-mediated Muscle Regeneration in The Treatment of Age-related Sarcopenia
Wei-Xiu JI ; Jia-Lin LÜ ; Yi-Fan MA ; Yun-Gang ZHAO
Progress in Biochemistry and Biophysics 2025;52(8):2033-2050
Age-related sarcopenia is a progressive, systemic skeletal muscle disorder associated with aging. It is primarily characterized by a significant decline in muscle mass, strength, and physical function, rather than being an inevitable consequence of normal aging. Despite ongoing research, there is still no globally unified consensus among physicians regarding the diagnostic criteria and clinical indicators of this condition. Nonetheless, regardless of the diagnostic standards applied, the prevalence of age-related sarcopenia remains alarmingly high. With the global population aging at an accelerating rate, its incidence is expected to rise further, posing a significant public health challenge. Age-related sarcopenia not only markedly increases the risk of physical disability but also profoundly affects patients’ quality of life, independence, and overall survival. As such, the development of effective prevention and treatment strategies to mitigate its dual burden on both societal and individual health has become an urgent and critical priority. Skeletal muscle regeneration, a vital physiological process for maintaining muscle health, is significantly impaired in age-related sarcopenia and is considered one of its primary underlying causes. Skeletal muscle satellite cells (MSCs), also known as muscle stem cells, play a pivotal role in generating new muscle fibers and maintaining muscle mass and function. A decline in both the number and functionality of MSCs is closely linked to the onset and progression of sarcopenia. This dysfunction is driven by alterations in intrinsic MSC mechanisms—such as Notch, Wnt/β‑Catenin, and mTOR signaling pathways—as well as changes in transcription factors and epigenetic modifications. Additionally, the MSC microenvironment, including both the direct niche formed by skeletal muscle fibers and their secreted cytokines, and the indirect niche composed of extracellular matrix proteins and various cell types, undergoes age-related changes. Mitochondrial dysfunction and chronic inflammation further contribute to MSC impairment, ultimately leading to the development of sarcopenia. Currently, there are no approved pharmacological treatments for age-related sarcopenia. Nutritional intervention and exercise remain the cornerstone of therapeutic strategies. Adequate protein intake, coupled with sufficient energy provision, is fundamental to both the prevention and treatment of this condition. Adjuvant therapies, such as dietary supplements and caloric restriction, offer additional therapeutic potential. Exercise promotes muscle regeneration and ameliorates sarcopenia by acting on MSCs through various mechanisms, including mechanical stress, myokine secretion, distant cytokine signaling, immune modulation, and epigenetic regulation. When combined with a structured exercise regimen, adequate protein intake has been shown to be particularly effective in preventing age-related sarcopenia. However, traditional interventions may be inadequate for patients with limited mobility, poor overall health, or advanced sarcopenia. Emerging therapeutic strategies—such as miRNA mimics or inhibitors, gut microbiota transplantation, and stem cell therapy—present promising new directions for MSC-based interventions. This review comprehensively examines recent advances in MSC-mediated muscle regeneration in age-related sarcopenia and systematically discusses therapeutic strategies targeting MSC regulation to enhance muscle mass and strength. The goal is to provide a theoretical foundation and identify future research directions for the prevention and treatment of this increasingly prevalent condition.
2.The neurophysiological mechanisms of exercise-induced improvements in cognitive function.
Jian-Xiu LIU ; Bai-Le WU ; Di-Zhi WANG ; Xing-Tian LI ; Yan-Wei YOU ; Lei-Zi MIN ; Xin-Dong MA
Acta Physiologica Sinica 2025;77(3):504-522
The neurophysiological mechanisms by which exercise improves cognitive function have not been fully elucidated. A comprehensive and systematic review of current domestic and international neurophysiological evidence on exercise improving cognitive function was conducted from multiple perspectives. At the molecular level, exercise promotes nerve cell regeneration and synaptogenesis and maintains cellular development and homeostasis through the modulation of a variety of neurotrophic factors, receptor activity, neuropeptides, and monoamine neurotransmitters, and by decreasing the levels of inflammatory factors and other modulators of neuroplasticity. At the cellular level, exercise enhances neural activation and control and improves brain structure through nerve regeneration, synaptogenesis, improved glial cell function and angiogenesis. At the structural level of the brain, exercise promotes cognitive function by affecting white and gray matter volumes, neural activation and brain region connectivity, as well as increasing cerebral blood flow. This review elucidates how exercise improves the internal environment at the molecular level, promotes cell regeneration and functional differentiation, and enhances the brain structure and neural efficiency. It provides a comprehensive, multi-dimensional explanation of the neurophysiological mechanisms through which exercise promotes cognitive function.
Animals
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Humans
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Brain/physiology*
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Cognition/physiology*
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Exercise/physiology*
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Nerve Regeneration/physiology*
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Neuronal Plasticity/physiology*
3.Effect and mechanism of combined use of active components of Buyang Huanwu Decoction in ameliorating neuronal injury induced by OGD/R.
Cun-Yan DAN ; Meng-Wei RONG ; Xiu LOU ; Tian-Qing XIA ; Bao-Guo XIAO ; Hong GUO ; Cun-Gen MA ; Li-Juan SONG
China Journal of Chinese Materia Medica 2025;50(4):1098-1110
Buyang Huanwu Decoction(BYHWD), as one of the classic formulas in traditional Chinese medicine(TCM) for the treatment of cerebral ischemic stroke(CIS), has demonstrated definite effects in clinical practice. However, the material basis and mechanism of treatment have not been systematically elucidated. This study employed network pharmacology and molecular docking to analyze the potential targets and mechanisms of blood-and brain-penetrating active components of BYHWD in reducing cell apoptosis in CIS. Cell experiments were then carried out to validate the prediction results. In the experiments, five active components including hydroxysafflor yellow A( HSYA), tetramethylpyrazine( TMP), astragaloside Ⅳ( AS-Ⅳ), amygdalin( AMY), and paeoniflorin(PF) were selected to explore the pharmacological effects of BYHWD. HT22 cells were treated with BYHWD, and the cell counting kit-8(CCK-8) method was employed to examine the toxic and side effects of BYHWD. A cell model of oxygen-glucose deprivation/reoxygenation( OGD/R) was constructed, with apoptosis and pyroptosis as the main screening indicators. The levels of lactate dehydrogenase(LDH) and glutathione(GSH) were measured to assess the cell membrane integrity. Flow cytometry was employed to detect apoptosis, and the activities of caspase-3 and caspase-1 were measured to clarify the status of apoptosis and pyroptosis. ELISA was employed to determine the levels of interleukin(IL)-1β and IL-18 to confirm pyroptosis. HSYA and AMY were identified in this study as the active components regulating apoptosis and pyroptosis. TUNEL was employed to detect the apoptosis rate, and Western blot was employed to determine the expression levels of apoptosis-related proteins B-cell lymphoma-2(Bcl-2), Bcl-2-associated X protein(Bax), and caspase-3, which confirmed that the anti-apoptotic effect of the combined component group was superior to that of the single component groups. The molecular docking results revealed strong binding affinity of HSYA and AMY with SDF-1α and CXCR4.AMD3100, a selective antagonist of CXCR4, was then used for intervention. The results of Western blot showed alterations in the expression levels of apoptosis-associated proteins, SDF-1α, and CXCR4. In conclusion, HSYA and AMY influence cellular apoptosis by modulating the SDF-1α/CXCR4 signaling cascade.
Drugs, Chinese Herbal/chemistry*
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Apoptosis/drug effects*
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Animals
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Neurons/cytology*
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Mice
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Molecular Docking Simulation
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Cell Line
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Glucose/metabolism*
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Humans
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Neuroprotective Agents/pharmacology*
4.Randomized, double-blind, parallel-controlled, multicenter, equivalence clinical trial of Jiuwei Xifeng Granules(Os Draconis replaced by Ostreae Concha) for treating tic disorder in children.
Qiu-Han CAI ; Cheng-Liang ZHONG ; Si-Yuan HU ; Xin-Min LI ; Zhi-Chun XU ; Hui CHEN ; Ying HUA ; Jun-Hong WANG ; Ji-Hong TANG ; Bing-Xiang MA ; Xiu-Xia WANG ; Ai-Zhen WANG ; Meng-Qing WANG ; Wei ZHANG ; Chun WANG ; Yi-Qun TENG ; Yi-Hui SHAN ; Sheng-Xuan GUO
China Journal of Chinese Materia Medica 2025;50(6):1699-1705
Jiuwei Xifeng Granules have become a Chinese patent medicine in the market. Because the formula contains Os Draconis, a top-level protected fossil of ancient organisms, the formula was to be improved by replacing Os Draconis with Ostreae Concha. To evaluate whether the improved formula has the same effectiveness and safety as the original formula, a randomized, double-blind, parallel-controlled, equivalence clinical trial was conducted. This study enrolled 288 tic disorder(TD) of children and assigned them into two groups in 1∶1. The treatment group and control group took the modified formula and original formula, respectively. The treatment lasted for 6 weeks, and follow-up visits were conducted at weeks 2, 4, and 6. The primary efficacy endpoint was the difference in Yale global tic severity scale(YGTSS)-total tic severity(TTS) score from baseline after 6 weeks of treatment. The results showed that after 6 weeks of treatment, the declines in YGTSS-TSS score showed no statistically significant difference between the two groups. The difference in YGTSS-TSS score(treatment group-control group) and the 95%CI of the full analysis set(FAS) were-0.17[-1.42, 1.08] and those of per-protocol set(PPS) were 0.29[-0.97, 1.56], which were within the equivalence boundary [-3, 3]. The equivalence test was therefore concluded. The two groups showed no significant differences in the secondary efficacy endpoints of effective rate for TD, total score and factor scores of YGTSS, clinical global impressions-severity(CGI-S) score, traditional Chinese medicine(TCM) response rate, or symptom disappearance rate, and thus a complete evidence chain with the primary outcome was formed. A total of 6 adverse reactions were reported, including 4(2.82%) cases in the treatment group and 2(1.41%) cases in the control group, which showed no statistically significant difference between the two groups. No serious suspected unexpected adverse reactions were reported, and no laboratory test results indicated serious clinically significant abnormalities. The results support the replacement of Os Draconis by Ostreae Concha in the original formula, and the efficacy and safety of the modified formula are consistent with those of the original formula.
Adolescent
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Child
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Child, Preschool
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Female
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Humans
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Male
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Double-Blind Method
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Drugs, Chinese Herbal/therapeutic use*
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Tic Disorders/drug therapy*
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Treatment Outcome
5.Research Progress of Targeting BCL-2 and MCL-1 in Relapsed/Refractory Acute Myeloid Leukemia--Review.
Qian-Ying MA ; Zi-Xiu WEI ; Juan CHENG
Journal of Experimental Hematology 2025;33(3):918-921
Poor prognosis and high mortality rate are frequently observed in patients with relapsed/refractory acute myeloid leukemia (R/R AML), and there is no standard salvage therapy for these patients. As a method to evade apoptosis, cancer cells often upregulate anti-apoptotic proteins BCL-2 and MCL-1. Recently, venetoclax-based combination therapies have demonstrated promising prospects in treating R/R AML. However, the prevalent use of venetoclax comes with a new challenge of resistance. Upregulation of BCL-1 and/or MCL-1 is the main cause of venetoclax resistance and preemptively targeting BCL-2/BCL-XL/MCL-1 can be used to delay or forestall drug resistance. Thus, selective targeting of BCL-2 and MCL-1 is a viable treatment strategy. This review reports the latest clinical progress on targeting BCL-2 and MCL-1 in R/R AML.
Humans
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Leukemia, Myeloid, Acute/drug therapy*
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Myeloid Cell Leukemia Sequence 1 Protein
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Proto-Oncogene Proteins c-bcl-2
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Drug Resistance, Neoplasm
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Bridged Bicyclo Compounds, Heterocyclic/therapeutic use*
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Sulfonamides/therapeutic use*
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Recurrence
6.Glucocorticoid Discontinuation in Patients with Rheumatoid Arthritis under Background of Chinese Medicine: Challenges and Potentials Coexist.
Chuan-Hui YAO ; Chi ZHANG ; Meng-Ge SONG ; Cong-Min XIA ; Tian CHANG ; Xie-Li MA ; Wei-Xiang LIU ; Zi-Xia LIU ; Jia-Meng LIU ; Xiao-Po TANG ; Ying LIU ; Jian LIU ; Jiang-Yun PENG ; Dong-Yi HE ; Qing-Chun HUANG ; Ming-Li GAO ; Jian-Ping YU ; Wei LIU ; Jian-Yong ZHANG ; Yue-Lan ZHU ; Xiu-Juan HOU ; Hai-Dong WANG ; Yong-Fei FANG ; Yue WANG ; Yin SU ; Xin-Ping TIAN ; Ai-Ping LYU ; Xun GONG ; Quan JIANG
Chinese journal of integrative medicine 2025;31(7):581-589
OBJECTIVE:
To evaluate the dynamic changes of glucocorticoid (GC) dose and the feasibility of GC discontinuation in rheumatoid arthritis (RA) patients under the background of Chinese medicine (CM).
METHODS:
This multicenter retrospective cohort study included 1,196 RA patients enrolled in the China Rheumatoid Arthritis Registry of Patients with Chinese Medicine (CERTAIN) from September 1, 2019 to December 4, 2023, who initiated GC therapy. Participants were divided into the Western medicine (WM) and integrative medicine (IM, combination of CM and WM) groups based on medication regimen. Follow-up was performed at least every 3 months to assess dynamic changes in GC dose. Changes in GC dose were analyzed by generalized estimator equation, the probability of GC discontinuation was assessed using Kaplan-Meier curve, and predictors of GC discontinuation were analyzed by Cox regression. Patients with <12 months of follow-up were excluded for the sensitivity analysis.
RESULTS:
Among 1,196 patients (85.4% female; median age 56.4 years), 880 (73.6%) received IM. Over a median 12-month follow-up, 34.3% (410 cases) discontinued GC, with significantly higher rates in the IM group (40.8% vs. 16.1% in WM; P<0.05). GC dose declined progressively, with IM patients demonstrating faster reductions (median 3.75 mg vs. 5.00 mg in WM at 12 months; P<0.05). Multivariate Cox analysis identified age <60 years [P<0.001, hazard ratios (HR)=2.142, 95% confidence interval (CI): 1.523-3.012], IM therapy (P=0.001, HR=2.175, 95% CI: 1.369-3.456), baseline GC dose ⩽7.5 mg (P=0.003, HR=1.637, 95% CI: 1.177-2.275), and absence of non-steroidal anti-inflammatory drugs use (P=0.001, HR=2.546, 95% CI: 1.432-4.527) as significant predictors of GC discontinuation. Sensitivity analysis (545 cases) confirmed these findings.
CONCLUSIONS
RA patients receiving CM face difficulties in following guideline-recommended GC discontinuation protocols. IM can promote GC discontinuation and is a promising strategy to reduce GC dependency in RA management. (Trial registration: ClinicalTrials.gov, No. NCT05219214).
Adult
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Aged
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Female
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Humans
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Male
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Middle Aged
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Arthritis, Rheumatoid/drug therapy*
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Glucocorticoids/therapeutic use*
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Medicine, Chinese Traditional
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Retrospective Studies
7.Vulnerability of medicinal plant Lamiophlomis rotata under future climate changes
Hong-chao WANG ; Zheng-wei XIE ; Qi-ao MA ; Tie-lin WANG ; Guang YANG ; Xiao-ting XU ; Kai SUN ; Xiu-lian CHI
Acta Pharmaceutica Sinica 2024;59(10):2871-2879
italic>Lamiophlomis rotata is an important medicinal plant species endemic to the Tibetan Plateau, which is prone to strong climate change impacts on its habitable range due to the high sensitivity of the Tibetan Plateau to climate change. Accurate quantification of species vulnerability to climate change is essential for assessing species extinction risk and developing effective conservation strategies. Therefore, we carried out the
8.Effect of Evodiamine on Renal Fibrosis in Rats with Chronic Renal Failure by Regulating SphK1/S1P Signaling Pathway
Xin ZOU ; Bing YU ; Long-Hui XU ; Jun-Wei MA ; Xiu-Juan LIU
Journal of Guangzhou University of Traditional Chinese Medicine 2024;41(6):1560-1566
Objective To investigate the effect of evodiamine on renal fibrosis in rats with chronic renal failure(CRF)by regulating sphingosine kinase 1(SphK1)/S1P signaling pathway.Methods CRF rat model was established by feeding 0.5%adenine diet.The rats after modeling were randomly divided into model group,evodiamine low-and high-dose groups,Niaoduqing Granules group and evodiamine high-dose+K6PC-5(SphK1 activator)group.At the end of intervention,the levels of 24-hour urinary protein(24 h-UTP),serum urea nitrogen(BUN)and serum creatinine(SCr)were detected.The levels of monocyte chemoattractant protein 1(MCP-1)and interleukin 6(IL-6)in serum of rats were detected by enzyme-linked immunosorbent assay(ELISA).The pathological changes of renal tissue and collagen volume fraction(CVF)were observed by hematoxylin-eosin(HE)and Masson staining.The mRNA expressions of transforming growth factor β1(TGF-β1)and type Ⅳcollagen(COL-Ⅳ)in renal tissue were detected by real-time quantitative polymerase chain reaction(qRT-PCR).The protein expressions of SphK1 and S1P in renal tissue were detected by Western Blot.Results Compared with the normal group,the model group showed obvious inflammatory infiltration and collagen fiber deposition,the number of glomeruli decreased in renal tissue,and the expression levels of SCr,BUN,24h-UTP,IL-6,MCP-1,CVF,mRNA expressions of TGF-β1 and COL-Ⅳ,protein expessions of SphK1 and S1P were significantly increased(P<0.05).Compared with the model group,the histopathological changes of the low-dose and high-dose evodiamine groups and the Niaoduqing Granules group was improved,and the expression levels of SCr,BUN,24 h-UTP,IL-6,MCP-1,CVF,mRNA expressions of TGF-β1 and COL-Ⅳ,protein expessions of SphK1 and S1P were significantly decreased.For intergroup comparison of each index,there were differences between the low-dose evodiamine group and the high-dose evodiamine group(P<0.05),but there was no significant difference between the high-dose evodiamine group and the Niaoduqing Granules group(P>0.05).Compared with the high-dose evodiamine group,the histopathological changes of the high-dose evodiamine+K6PC-5 group was further aggravated,and the improvement effect of all indexes were reversed(P<0.05).Conclusion Evodiamine improves renal fibrosis in CRF rats by inhibiting SphK1/S1P signaling pathway.
9.Identification and expression profiling of Dof transcription factor family in Aesculus chinensis.
Chen QIN ; Xue-Hua XIE ; Lu LI ; Jun LI ; Yao-Lei MI ; Hui-Yan CAO ; Wei SUN ; Wei MA ; Hui-Hua WAN ; Xiu-Bo LIU
China Journal of Chinese Materia Medica 2024;49(22):6082-6092
Aesculus chinensis is an important medicinal and horticultural plant. Its dried mature seeds, known as "Suoluozi", are a well-known traditional Chinese medicine. Aescins are its main active components, possessing multiple pharmacological activities such as anti-inflammatory and anti-exudative effects. They are widely used in the treatment of diseases such as lumbar disc herniation, postoperative edema, and sports injuries, leading to a continuous increase in market demand in recent years. The DNA binding with one finger(Dof) family is a unique transcription factor family found in the plant kingdom. It plays a crucial role in plant growth, development, stress responses, and regulation of secondary metabolism. However, research on the Dof gene family in A. chinensis is relatively scarce. In this study, we identified 36 AcDof genes from the genome of A. chinensis and analyzed their physicochemical properties, chromosomal localization, phylogenetic relationships, gene structures, cis-acting elements, and expression patterns in different tissues. The results showed that AcDof proteins ranged from 81 to 493 amino acids in length, with molecular weights ranging from 9 270.38 to 55 015.68 and isoelectric points ranging from 4.84 to 10.2. The subcellular localization analysis revealed that 34 AcDof proteins were located in the nucleus, while the remaining two AcDof proteins were located in the chloroplasts. Phylogenetic analysis divided AcDofs into nine subgroups, and gene structure analysis indicated that all AcDof genes possessed a C2-C2 type single zinc finger domain. Gene expression analysis using transcriptome data revealed tissue-specific expression patterns among AcDof family members. Specifically, AcDof04, AcDof02, and AcDof03 exhibited specific expression in seeds, suggesting their potential involvement in the regulation of aescin biosynthesis. This study not only enhances our understanding of the Dof gene family in A. chinensis but also provides important genetic resources for further investigation of the functions and regulatory mechanisms of Dof genes in this species.
Plant Proteins/metabolism*
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Phylogeny
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Gene Expression Regulation, Plant
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Transcription Factors/metabolism*
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Gene Expression Profiling
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Multigene Family
10.Bioequivalence of lamivudine tenofovir tablets in Chinese healthy subjects
Ran MA ; Xin SUI ; Xiu-Jun WU ; Hua-Wei WANG ; Chun-Lei TAO ; Yang XU ; Xiao-Bin LI
The Chinese Journal of Clinical Pharmacology 2023;39(24):3643-3647
Objective To evaluate the bioequivalence of lamivudine tenofovir tablets in Chinese healthy volunteers.Methods A randomized,open,single-dose,two-period,double-crossover drug trial design was conducted.24 subjects were randomly divided into two groups,and administered orally one tablet of test preparation or one tablet of each reference preparation per period under fasting and fed condition respectively.The concentrations of lamivudine and tenofovir in plasma were determined by HPLC-MS/MS.The pharmacokinetic parameters were calculated and the bioequivalence was compared by non-compartment model of WinNonlin 7.0 program.Results The pharmacokinetic parameters of test and reference preparations after fasting oral administration:lamivudine Cmax were(2 777.74±702.55)and(2 985.00±979.23)ng·mL-1,AUC0-t were(11 977.14±2 550.67)and(12 450.22±2 336.41)ng·h·mL-1,AUC0-∞ were(12 177.69±2 526.02)and(12 660.98±2 333.30)ng·h·mL-1,respectively;tenofovir Cmax were(316.72±63.79)and(301.46±79.82)ng·mL-1,AUC0-t were(2 584.72±619.04)and(2 474.94±636.05)ng·h·mL-1,AUC0-∞ were(2 789.87±701.97)and(2 666.35±676.21)ng·h·mL-1,respectively.The pharmacokinetic parameters of test and reference preparations after fed oral administration:lamivudine Cmax were(2 079.46±583.92)and(2 084.28±517.59)ng·mL-1,AUC0-t were(10 628.86±1 751.63)and(10 573.70±2 059.54)ng·h·mL-1,AUC0-∞ were(10 827.86±1 734.39)and(10 791.93±2 098.91)ng·h·mL-1,respectively;tenofovir Cmax were(286.97±85.91)and(271.79±63.64)ng·mL-1,AUC0-t were(3 087.01±707.76)and(3 023.48±612.46)ng·h·mL-1,AUC0-∞ were(3 307.08±746.76)and(3 221.56±672.44)ng·h·mL-1,respectively.The statistical results of the 90%confidence intervals of the geometric mean ratios of Cmax,AUC0-t and AUC0-∞(test preparation/reference preparation)were all within the equivalent range of 80.00%-125.00%.Conclusion The test and reference preparations of lamivudine tenofovir tablets were bioequivalent in healthy Chinese subjects under fasting and fed conditions.

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