1.Modern research progress on the pharmacological effects and clinical applications of Xuefu zhuyu decoction
Yihang SHEN ; Baojun JU ; Xiao LI ; Miaomiao MA ; Kang XU ; Gentao ZHANG
China Pharmacy 2026;37(13):1762-1767
Xuefu zhuyu decoction is a classic formula for promoting blood circulation and resolving blood stasis, characterised by its remarkable ability to treat different diseases with the same approach. Qi stagnation and blood stasis, the primary syndrome for which this formula is indicated, has been found through modern medical research to be intrinsically linked to a wide range of pathophysiological processes, including microcirculatory disorders, abnormalities in hemorheology, inflammatory responses and endothelial dysfunction; which opens up vast scope for the innovative application of traditional formulas. In terms of pharmacological effect and mechanism, the formula exerts a synergistic regulatory effect across multiple key pathological pathways, including the regulation of coagulation function, the maintenance of vascular structure and function, anti-inflammatory and immunomodulatory actions, the mitigation of oxidative stress, and the modulation of programmed cell death (such as pyroptosis and ferroptosis). This systematically demonstrates its scientific rationale, which is based on integrated regulation through multiple constituents, multiple targets and multiple pathways. In terms of clinical application, the formula has expanded from cardiovascular diseases to multiple disciplines, including gastroenterology, respiratory medicine, urology, neurology, endocrinology, gynaecology and andrology, with evidence-based medical evidence continuing to accumulate. Current research still faces bottlenecks such as a relatively low level of clinical evidence, insufficient systems biology analysis of the mechanisms underlying the compound’s formulation, and a weak correlation between quality control indicators and therapeutic efficacy. Future efforts should focus on conducting multicentre randomised controlled trials for conditions where the formula demonstrates particular efficacy, deepening research into the relationship between integrated pharmacology and spectrum-efficacy relationship, and promoting the precise application and formulation innovation of classical herbal formulas.
2.Modern research progress on the pharmacological effects and clinical applications of Xuefu zhuyu decoction
Yihang SHEN ; Baojun JU ; Xiao LI ; Miaomiao MA ; Kang XU ; Gentao ZHANG
China Pharmacy 2026;37(13):1762-1767
Xuefu zhuyu decoction is a classic formula for promoting blood circulation and resolving blood stasis, characterised by its remarkable ability to treat different diseases with the same approach. Qi stagnation and blood stasis, the primary syndrome for which this formula is indicated, has been found through modern medical research to be intrinsically linked to a wide range of pathophysiological processes, including microcirculatory disorders, abnormalities in hemorheology, inflammatory responses and endothelial dysfunction; which opens up vast scope for the innovative application of traditional formulas. In terms of pharmacological effect and mechanism, the formula exerts a synergistic regulatory effect across multiple key pathological pathways, including the regulation of coagulation function, the maintenance of vascular structure and function, anti-inflammatory and immunomodulatory actions, the mitigation of oxidative stress, and the modulation of programmed cell death (such as pyroptosis and ferroptosis). This systematically demonstrates its scientific rationale, which is based on integrated regulation through multiple constituents, multiple targets and multiple pathways. In terms of clinical application, the formula has expanded from cardiovascular diseases to multiple disciplines, including gastroenterology, respiratory medicine, urology, neurology, endocrinology, gynaecology and andrology, with evidence-based medical evidence continuing to accumulate. Current research still faces bottlenecks such as a relatively low level of clinical evidence, insufficient systems biology analysis of the mechanisms underlying the compound’s formulation, and a weak correlation between quality control indicators and therapeutic efficacy. Future efforts should focus on conducting multicentre randomised controlled trials for conditions where the formula demonstrates particular efficacy, deepening research into the relationship between integrated pharmacology and spectrum-efficacy relationship, and promoting the precise application and formulation innovation of classical herbal formulas.
3.Synergistic effects of autophagy/mitophagy inhibitors and magnolol promote apoptosis and antitumor efficacy.
Yancheng TANG ; Liming WANG ; Tao YI ; Jun XU ; Jigang WANG ; Jiang-Jiang QIN ; Qilei CHEN ; Ka-Man YIP ; Yihang PAN ; Peng HONG ; Yingying LU ; Han-Ming SHEN ; Hu-Biao CHEN
Acta Pharmaceutica Sinica B 2021;11(12):3966-3982
Mitochondria as a signaling platform play crucial roles in deciding cell fate. Many classic anticancer agents are known to trigger cell death through induction of mitochondrial damage. Mitophagy, one selective autophagy, is the key mitochondrial quality control that effectively removes damaged mitochondria. However, the precise roles of mitophagy in tumorigenesis and anticancer agent treatment remain largely unclear. Here, we examined the functional implication of mitophagy in the anticancer properties of magnolol, a natural product isolated from herbal
4.Optimization of preparation of rat kidney decellularized scaffold by combining freeze-thawing with perfusion.
Dong HU ; Deying ZHANG ; Bo LIU ; Yu ZHOU ; Yihang YU ; Lianju SHEN ; Chunlan LONG ; Xing LIU ; Tao LIN ; Dawei HE ; Guanghui WEI
Chinese Journal of Biotechnology 2019;35(2):307-318
We explored the improved method to prepare decellularized kidney scaffold and provide experimental basis for kidney tissue engineering and renal pathology and toxicology in vitro research. We perfused rat kidneys with PBS (group control) and prepared the decellularized kidney scaffolds with sodium dodecyl sulfate (SDS) (group S), Triton X-100 combined with SDS (group TS), and Triton X-100 combined with SDS after repeated freezing and thawing (group FTS) in different flow velocity. Meanwhile we measured their fluid distributions and vascular resistance. We examined the degree of decellularization of acellular scaffolds by HE, DAPI staining and DNA quantification. We examined the retention of main composition and structural integrity of decellularized scaffolds by Masson, PAS and immunohistochemical staining. We also detected the ultrastructure, cytotoxicity and the level of growth factor of the scaffolds by scanning electron microscope, MTT and ELISA, respectively. The results showed that the time of decellularization in group FTS was less than that in group S and TS. The vascular resistance of scaffolds decellularized at 10 mL/min flow velocity was lower. The fluid distribution in groups S, TS and FTS was different from that in control group. No residual cell was detected by HE and DAPI staining. DNA content was less than 50 ng/mg. Masson, PAS and immunohistochemical staining results showed that there was extracellular collagen, polysaccharide, type I collagen, type IV collagen, fibronectin and laminin in the decellularized scaffolds, and the scanning electron microscope result showed the scaffolds had the honeycomb structure. The cytotoxicity level of decellularized scaffolds was between grade 0 to 1. The level of VEGF, EGF, IGF-1 and PDGF-BB in group FTS were significantly higher than those in group S and TS. In concluding, combining freeze-thawing with perfusion can produce more ideal and effective whole organ decellularized scaffold of rat kidney, and make a foundation for the study of kidney tissue engineering and in vitro pathology and toxicology of kidney.
Animals
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Collagen
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Extracellular Matrix
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Freezing
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Kidney
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Perfusion
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Rats
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Tissue Engineering
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Tissue Scaffolds
5.Effects of antagonistic peptides binding specifically with first and second extracellular loops of CCR5 on colitis rats induced by TNBS
Mei HU ; Yangda SONG ; Sixue LIU ; Yihang SONG ; Ximing SHEN ; Huarong HUANG ; Yingqiang ZHONG
Chinese Journal of Pathophysiology 2017;33(5):902-907
AIM:To study the effects of antagonistic peptides binding specifically with the first and second extracellular loops (ECL1 and ECL2) of C-C chemokine receptor 5 (CCR5) on the colitis rats induced by trinitrobenzenesulfonic acid (TNBS) and the mechanisms.METHODS:The colitis model of SD rats was induced by TNBS (100 mg/kg).The effects of 2 antagonistic peptides at different doses (ECL1:25, 35 and 45 mg/kg;ECL2:15, 25 and 35 mg/kg) on the model rats including the changes of disease activity index (DAI), colon macroscopic damage index (CMDI) and histological grading were observed.The mRNA and protein expression levels of TNF-α and COX-2 in the colonic mucosa were detected by real-time PCR and Western blot, respectively.RESULTS:Compared with model group, the changes of DAI, CMDI and histopathological injury of the rats treated with ECL2 antagonistic peptide HY at an appropriate dose were significantly reduced (P<0.05), and the protein and mRNA expression levels of TNF-α and COX-2 were significantly decreased (P<0.05).However, the effects of ECL1 antagonistic peptide GH on all scores and the expression levels of TNF-α and COX-2 were not obvious.CONCLUSION:ECL2 antagonistic peptide HY relieves TNBS-induced colitis in SD rats via down-regulating the expressions of TNF-α and COX-2 in the colonic mucosa, while the effect of ECL1 antagonist peptide GH was not obvious.

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