1.Mechanism of Fresh Cutting of Traditional Chinese Medicine: Discussion on Integration of Traditional Wisdom and Modern Technology
Wenjie BAO ; Lingyun ZHONG ; Wenhua WU ; Congmin LIU ; Zixin CHEN ; Xingmei LU ; Hengli TONG ; Yi HUANG
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(7):282-290
Fresh-cut processing constitutes a pivotal technique in the origin processing of Chinese medicinal materials, with a long history documented in multiple materia medica. In recent years, it has garnered national policy support for its ability to prevent component loss and low processing efficiency associated with traditional drying-before-cutting methods. As of August 2025, 26 provinces and municipalities nationwide have cumulatively published 789 species for fresh-cut processing. Among these, 78 were included in the 2025 edition of the Pharmacopoeia of the People's Republic of China. However, the practice continues to face common challenges and difficulties, including ambiguous scientific understanding, fragmented standards, limited quality control approaches, and poor process stability. Based on this, this paper synthesises years of research findings to systematically elucidate the core mechanisms of fresh-cut processing. These encompass alterations to herbal tissue structure during cutting, post-processing changes in constituents, and physiological-biochemical processes such as plant stress responses and shifts in endogenous enzyme activity. It also summarises influencing factors, including inherent herbal properties, cutting timing and methods, and environmental conditions like temperature, humidity, and microbial presence. Based on this overview of fresh-cutting mechanisms, subsequent research should advance in four directions:Clarifying the scientific principles of fresh-cutting, overcoming technical bottlenecks, upgrading intelligent equipment, and establishing quality standards and evaluation systems. This study provides a theoretical foundation and scientific basis for future research on fresh-cutting in traditional Chinese medicine(TCM), promoting its deeper practical application within the industry and contributing to the high-quality development of TCM industry and the modernization of TCM.
2.Mechanisms of Traditional Chinese Medicine in Treatment of Ulcerative Colitis Based on AMPK Signaling Pathway: A Review
Keqiu YAN ; Xiaoyu ZHANG ; Yifan CAI ; Wenjie XIAO ; Xinkun BAO ; Guangjun SUN ; Aizhen LIN
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(7):341-351
Ulcerative colitis (UC), a chronic relapsing inflammatory bowel disease, involves multifaceted pathological mechanisms such as intestinal barrier dysfunction, immune dysregulation, and oxidative stress. Current therapeutic strategies remain limited in efficacy and safety. In recent years, the adenosine monophosphate-activated protein kinase (AMPK) signaling pathway has emerged as a pivotal therapeutic target for UC due to its central role in energy metabolism, inflammatory regulation, and intestinal homeostasis. This article systematically reviewed the mechanisms by which traditional Chinese medicine (TCM) prevented and treated UC through the regulation of the AMPK signaling pathway, with a focus on elucidating AMPK's multidimensional regulatory network in inflammatory signaling crosstalk, alleviating oxidative stress, restoring intestinal immune balance, repairing the intestinal barrier, and modulating gut microbiota. Leveraging its unique advantages of multi-target engagement and low toxicity, TCM demonstrates promising potential in UC treatment and has become a focal area of research. By systematically summarizing and synthesizing the existing literature on TCM-mediated AMPK pathway modulation in UC, this review aims to provide a theoretical foundation for advancing mechanistic research and clinical interventions in UC.
3.Establishment of a method for acquisition, perfusion, preservation and transportation of the genetically modified donor pig kidneys
Feiyan ZHU ; Yaobo ZHAO ; Hongfang ZHAO ; Taiyun WEI ; Wenjie CHENG ; Kai LIU ; Yuexiao BAO ; Yaling LOU ; Hongjiang WEI ; Kaixiang XU
Organ Transplantation 2025;16(2):272-279
Objective To establish a method for acquisition, perfusion, preservation and transportation of the genetically modified pig kidneys. Methods An eight genetically modified pig was utilized as experimental subject. Prior to kidneys procurement, the health status of the pig was assessed through hematology examination, and the vascular structure of the kidneys was examined using imaging techniques. Following kidneys acquisition, the pig kidneys were perfused and subsequently packaged into the cryogenic storage container labeled "For Organ Transportation Only" for interprovincial transport after communicating the transportation process with transportation department. To evaluate pathological damage to the pig kidneys, a serious of methods were employed such as hematoxylin-eosin (HE) staining, real-time fluorescent quantitative polymerase chain reaction (RT-qPCR), terminal deoxynucleotidyl transferase-mediated dUTP nick-end labeling (TUNEL) fluorescence staining and enzyme-linked immune absorbent assay (ELISA). Results The preoperative examination of the eight genetically modified pig showed that the serum creatinine was 73.2 μmol/L, blood urea nitrogen was 2.8 mmol/L and hemoglobin was 116 g/L, all within the normal range, indicating normal renal function. CT angiography revealed no lesions in the pig kidneys, and no dilation, stenosis or premature branching of the blood vessels. The total time of obtaining the left and right kidneys from the eight genetically modified pig was (125 ± 10) min, with a blood loss of (20 ± 2) mL. The warm ischemia times were 3 min and 7 min, respectively. The perfusion and trimming times of the left and right kidneys were 36 min and 41 min, respectively. After perfusion, both kidneys were white and moist. The cold preservation and transportation time was 8 h. HE staining showed that some glomeruli were shrunk, and the lumens of the surrounding renal tubules were slightly depressed and swollen with partial inner membrane shedding and microvacuoles formed when the kidneys were preserved for 8 h. The level of cysteinyl aspartate-specific proteinase-3 messenger RNA in the kidneys tissue gradually increased with the extension of cold preservation time after 2 h (P<0.05). TUNEL fluorescence staining showed that only a small number of cells underwent apoptosis after 8 h of cold preservation, which was not significantly different from that at 0 h (P>0.05). ELISA results showed that the contents of lactate dehydrogenase (LDH) and creatinine in the preservation solution remained relatively stable, but the content of kidney injury molecule 1 (KIM-1) gradually increased with the extension of preservation time, suggesting that the pig kidneys had mild injury. Conclusions By establishing methods for acquisition, perfusion, preservation and transportation of the kidneys from genetically modified donor pig, it is possible to effectively and reliably use genetically modified pig kidneys for xenotransplantation.
4.Clinical Application and Pharmacological Mechanism of Sishenwan in Treatment of Ulcerative Colitis: A Review
Keqiu YAN ; Xiaoyu ZHANG ; Sifeng JIA ; Yuyu DUAN ; Zixing QIAN ; Yifan CAI ; Junyi SHEN ; Wenjie XIAO ; Xinkun BAO ; Guangjun SUN ; Aizhen LIN
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(21):261-270
Ulcerative colitis (UC), a chronic, non-specific inflammatory bowel disease with typical symptoms such as abdominal pain, diarrhea, and bloody stools, demonstrates a high relapse rate and difficulty in curing. Sishenwan, first recorded in Internal Medicine Abstract (Nei Ke Zhai Yao), are a classic prescription for treating diarrhea caused by deficiency of the spleen and kidney Yang. The core therapeutic principle of Sishenwan is warming and tonifying the spleen and kidney, and astringing the intestine and stopping diarrhea. In recent years, Sishenwan have demonstrated distinct advantages in the clinical treatment of UC. The pathogenesis of UC involves multiple factors, including immune dysregulation and gut microbiota imbalance. Although Western medicine is effective in the short term, its side effects, high relapse rate, and resistance associated with long-term use pose substantial challenges. Sishenwan have shown excellent clinical outcomes in the treatment of UC due to deficiency of the spleen and kidney Yang. Modern clinical studies indicate that Sishenwan, used alone or in combination with Western medicine or other Chinese medicine compound prescriptions, significantly improve the clinical efficacy in treating UC due to deficiency of the spleen and kidney Yang. Sishenwan effectively alleviate core symptoms such as mucus, pus, and blood in stools, and persistent abdominal pain, reduce Mayo scores and the relapse rate, and improve patients' quality of life. Research on the material basis reveals that Sishenwan contain multiple active ingredients such as psoralen, isopsoralen, and evodiamine. Mechanism studies indicate that Sishenwan inhibit the inflammatory cascade reactions by regulating the signal network through multiple targets. Sishenwan regulate cellular immunity and restore intestinal immune homeostasis. At the microecological level, Sishenwan promote the intestinal barrier repair through the "microbiota-metabolism-immunity" axis. The current research still needs to be deepened in aspects such as the mining of specific biomarkers for syndromes and the exploration of the collaborative mechanism of traditional Chinese and Western medicine. In the future, a full-chain system covering syndrome differentiation, targeting, and monitoring needs to be constructed for promoting the paradigm transformation of Sishenwan into precision drugs. This review systematically explains the treatment mechanism of Sishenwan regarding the combination of disease and syndrome and its multi-target regulatory characteristics, providing a theoretical basis and transformation direction for the treatment of UC with integrated traditional Chinese and Western medicine.
5.Clinical Application and Pharmacological Mechanism of Sishenwan in Treatment of Ulcerative Colitis: A Review
Keqiu YAN ; Xiaoyu ZHANG ; Sifeng JIA ; Yuyu DUAN ; Zixing QIAN ; Yifan CAI ; Junyi SHEN ; Wenjie XIAO ; Xinkun BAO ; Guangjun SUN ; Aizhen LIN
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(21):261-270
Ulcerative colitis (UC), a chronic, non-specific inflammatory bowel disease with typical symptoms such as abdominal pain, diarrhea, and bloody stools, demonstrates a high relapse rate and difficulty in curing. Sishenwan, first recorded in Internal Medicine Abstract (Nei Ke Zhai Yao), are a classic prescription for treating diarrhea caused by deficiency of the spleen and kidney Yang. The core therapeutic principle of Sishenwan is warming and tonifying the spleen and kidney, and astringing the intestine and stopping diarrhea. In recent years, Sishenwan have demonstrated distinct advantages in the clinical treatment of UC. The pathogenesis of UC involves multiple factors, including immune dysregulation and gut microbiota imbalance. Although Western medicine is effective in the short term, its side effects, high relapse rate, and resistance associated with long-term use pose substantial challenges. Sishenwan have shown excellent clinical outcomes in the treatment of UC due to deficiency of the spleen and kidney Yang. Modern clinical studies indicate that Sishenwan, used alone or in combination with Western medicine or other Chinese medicine compound prescriptions, significantly improve the clinical efficacy in treating UC due to deficiency of the spleen and kidney Yang. Sishenwan effectively alleviate core symptoms such as mucus, pus, and blood in stools, and persistent abdominal pain, reduce Mayo scores and the relapse rate, and improve patients' quality of life. Research on the material basis reveals that Sishenwan contain multiple active ingredients such as psoralen, isopsoralen, and evodiamine. Mechanism studies indicate that Sishenwan inhibit the inflammatory cascade reactions by regulating the signal network through multiple targets. Sishenwan regulate cellular immunity and restore intestinal immune homeostasis. At the microecological level, Sishenwan promote the intestinal barrier repair through the "microbiota-metabolism-immunity" axis. The current research still needs to be deepened in aspects such as the mining of specific biomarkers for syndromes and the exploration of the collaborative mechanism of traditional Chinese and Western medicine. In the future, a full-chain system covering syndrome differentiation, targeting, and monitoring needs to be constructed for promoting the paradigm transformation of Sishenwan into precision drugs. This review systematically explains the treatment mechanism of Sishenwan regarding the combination of disease and syndrome and its multi-target regulatory characteristics, providing a theoretical basis and transformation direction for the treatment of UC with integrated traditional Chinese and Western medicine.
6.Suoquan Runchang Prescription Improves Senile Constipation in Mice by Promoting Expressions of SCF and c-Kit
Guangjun SUN ; Xiaoyu ZHANG ; Xinkun BAO ; Wenjie XIAO ; Aizhen LIN
Journal of Guangzhou University of Traditional Chinese Medicine 2025;42(4):956-961
Objective To observe the therapeutic effect of Suoquan Runchang Prescription for senile mice with constipation and its mechanism of action.Methods Senile Kunming mice were randomly divided into constipation group,Suoquan Runchang Prescription group,ISCK03[stem cell factor(SCF),receptor tyrosine kinase(c-Kit)signaling pathway inhibitor]group,Suoquan Runchang Prescription+ISCK03 group,and normal group,with 12 mice in each group.Except for the normal group,a constipation model was constructed by gavage of 150 mg/kg Compound Diphenoxylate Suspension in all groups of senile Kunming mice.After successful modeling,each group was treated for two weeks.At the end of the intervention,the fecal particles count and fecal water content were detected,the serum levels of interleukin(IL)-1β,IL-6,motilin,gastrin,5-hydroxytryptamine(5-HT),and vasoactive intestinal peptide(VIP)were detected by enzyme-linked immunosorbent assay(ELISA),and the changes in gastric emptying rate and small intestine propulsion rate were determined,the pathologic changes of colonic tissues were detected by hematoxylin-eosin(HE)staining,and protein expressions of SCF and c-Kit in the colonic tissues was detected by Western Blot.Results Compared with the normal group,the disrupted cellular structure,thinner muscle layer,damaged mucosal epithelium were seen in the constipation group,and the fecal particle count,fecal water content,serum motilin,gastrin and 5-HT levels,gastric emptying rate,small intestine propulsion rate,the protein expression levels of SCF and c-Kit in colonic tissues were decreased,and the serum IL-1 β,IL-6 and VIP levels were increased,the differences being statistically significant(P<0.05).Compared with the constipation group,the colonic tissues damage were improved in Suoquan Runchang Prescription group,the fecal particle count,fecal water content,serum motilin,gastrin and 5-HT levels,gastric emptying rate,small intestine propulsion rate,protein expression levels of SCF and c-Kit in colonic tissues were elevated,the serum IL-1β,IL-6 and VIP levels were decreased,the difference being statistically significant(P<0.05).The indexes mentioned above in mice of ISCK03 group versus to the results of Suoquan Runchang Prescription group(P<0.05).Compared with Suoquan Runchang Prescription group,the colonic tissues damage showed aggravated in Suoquan Runchang Prescription+ISCK03 group,and the fecal particle count,fecal water content,serum motilin,gastrin and 5-HT levels,gastric emptying rate,small intestine propulsion rate,protein expression levels of SCF and c-Kit in colonic tissues were decreased,the serum IL-1β,IL-6 and VIP levels were increased,the difference being statistically significant(P<0.05).Conclusion Suoquan Runchang Prescription can effectively improve constipation in senile mice,and its therapeutic effect maybe related to the up-regulation of SCF,c-Kit expression,thus promoting intestinal peristalsis.
7.Effect of poly adenosine diphosphate-ribose polymerase-1 inhibitor fluzoparib on the proliferation and migration of pancreatic cancer cell PANC1
Naiyu QIN ; Minxue XU ; Jie WU ; Wenjie ZHENG ; Wenli SAI ; Lingling PAN ; Feng JIANG ; Mingbing XIAO ; Baijun BAO
Chinese Journal of Pancreatology 2022;22(2):118-122
Objective:To investigate the effects of poly adenosine diphosphate ribose polymerase-1(PARP-1) inhibitor fluzoparib on proliferation, apoptosis and migration of pancreatic cancer PANC1 cells.Methods:PANC1 cells cultured in conventional culture medium were used as control group, and PANC1 cells cultured in the medium containing fluzoparib were used as fluzoparib group. The effects of fluzoparib with different concentrations on the proliferation of PANC1 cells were detected by CCK8 method, and the half inhibitory concentration (IC 50) of fluzoparib on PANC1 cells was calculated. The effect of fluzoparib on apoptosis and cell cycle of PANC1 cells was detected by flow cytometry, and the migration ability of PANC1 cells was detected by cell scratch test and Transwell chamber. Results:Compared with control group, with the increase of fluzoparib concentration and the prolongation of the action time, the cell proliferation activity of PANC1 in fluzoparib group was significantly decreased, and the differences were statistically significant (all P values <0.05). IC 50 of fluzoparib on PANC1 cells cultured for 24 h was 0.03 mmol/L. After 24 h culture, the IC 50 apoptosis rate of fluzoparib group was (32.19±2.48)%, and the apoptosis rate of control group was (21.99±6.30)%. The former was greatly higher than the latter, and the difference was statistically significant ( P<0.05). The proportion of cells in G 2/M phase was (16.28±0.62)% in the fluzoparib group and (11.64±0.88)% in the control group, and the difference between the two groups was statistically significant ( P<0.05). The migration rates of PANC1 cells in IC 50 fluzoparib group in 12 h and 24 h culture were (2.59±1.46)% and (19.76±7.84)%; and those in control group were (27.08±2.17)% and (45.92±3.61)%, respectively. The number of transmembrane cells was (348±19) cells/10 visual field in the fluzoparib group and (587±14) cells/10 visual field in the control group. The migration ability of PANC1 cells in fluzoparib group was significantly lower than that in control group ( P<0.05). Conclusions:Fluzoparib can inhibit the proliferation and migration of PANC1 cells and promote the apoptosis of PANC1 in vitro, which may be an effective drug for the treatment of pancreatic cancer.
8.Qualitative and quantitative analysis of chemical compounds in 3 species of wild Veratrum from Inner Mongolia
Wenjie HAN ; Ping ZHANG ; Fuhou CHANG ; Yuna LIANG ; Hongmei ZHAO ; Baoquan BAO
China Pharmacy 2022;33(8):937-949
OBJECTIVE To conduc t qualitative and quantitative analysis for the chemical compounds in 3 species of wild Veratrum(V. nigrum ,V. maackii ,V. dahuricum )from Inner Mongolia. METHODS HPLC-Q-Exactive-MS/MS technology was used to identify the chemical components of V. nigrum ,V. maackii and V. dahuricum by consulting SciFinder ,ChemSpider database and related literatures and comparing with the reference substance. The contents of polydatin ,oxyresveratrol and resveratrol in 3 species of wild Veratrum were determined by HPLC. RESULTS A total of 31 compounds were identified ,including 13 stilbenes, 11 flavonoids,4 organic acids ,2 glycosides,1 brasilin. Most of the compounds were shared by 2 or 3 species of wild Veratrum, only 2 flavonoids kaempferol and luteolin were owned by V. dahuricum . The total contents of polydatin ,oxyresveratrol and resveratrol in 3 species of wild Veratrum were in the range of 6.618-11.292 mg/g,and the total contents of them in V. nigrum were the highest ,followed by V. maackii and V. dahuricum . The contents of polydatin and resveratrol in V. maackii were the highest ,and the content of oxyresveratrol in V. nigrum was highest. CONCLUSIONS Most of the components of 3 species of wild Veratrum are similar,only kaempferol and luteolin are unique to V. dahuricum . The contents of polydatin ,oxyresveratrol and resveratrol are significantly different among 3 species of wild Veratrum.
9.Macrophage-mediated tumor-targeted delivery of engineered Salmonella typhi murium VNP20009 in anti-PD1 therapy against melanoma.
Leyang WU ; Lin LI ; Shufeng LI ; Lina LIU ; Wenjie XIN ; Chenyang LI ; Xingpeng YIN ; Xuebo XU ; Feifei BAO ; Zichun HUA
Acta Pharmaceutica Sinica B 2022;12(10):3952-3971
Bacterial antitumor therapy has great application potential given its unique characteristics, including genetic manipulation, tumor targeting specificity and immune system modulation. However, the nonnegligible side effects and limited efficacy of clinical treatment limit their biomedical applications. Engineered bacteria for therapeutic applications ideally need to avoid their accumulation in normal organs and possess potent antitumor activity. Here, we show that macrophage-mediated tumor-targeted delivery of Salmonella typhimurium VNP20009 can effectively reduce the toxicity caused by administrating VNP20009 alone in a melanoma mouse model. This benefits from tumor-induced chemotaxis for macrophages combined with their slow release of loaded strains. Inspired by changes in the tumor microenvironment, including a decrease in intratumoral dysfunctional CD8+ T cells and an increase in PDL1 on the tumor cell surface, macrophages were loaded with the engineered strain VNP-PD1nb, which can express and secrete anti-PD1 nanoantibodies after they are released from macrophages. This novel triple-combined immunotherapy significantly inhibited melanoma tumors by reactivating the tumor microenvironment by increasing immune cell infiltration, inhibiting tumor cell proliferation, remodeling TAMs to an M1-like phenotype and prominently activating CD8+ T cells. These data suggest that novel combination immunotherapy is expected to be a breakthrough relative to single immunotherapy.
10.Genomic Epidemiology of SARS-CoV-2 in Pakistan
Song SHUHUI ; Li CUIPING ; Kang LU ; Tian DONGMEI ; Badar NAZISH ; Ma WENTAI ; Zhao SHILEI ; Jiang XUAN ; Wang CHUN ; Sun YONGQIAO ; Li WENJIE ; Lei MENG ; Li SHUANGLI ; Qi QIUHUI ; Ikram AAMER ; Salman MUHAMMAD ; Umair MASSAB ; Shireen HUMA ; Batool FATIMA ; Zhang BING ; Chen HUA ; Yang YUN-GUI ; Abbasi Ali AMIR ; Li MINGKUN ; Xue YONGBIAO ; Bao YIMING
Genomics, Proteomics & Bioinformatics 2021;19(5):727-740
COVID-19 has swept globally and Pakistan is no exception.To investigate the initial introductions and transmissions of the SARS-CoV-2 in Pakistan,we performed the largest genomic epidemiology study of COVID-19 in Pakistan and generated 150 complete SARS-CoV-2 genome sequences from samples collected from March 16 to June 1,2020.We identified a total of 347 mutated positions,31 of which were over-represented in Pakistan.Meanwhile,we found over 1000 intra-host single-nucleotide variants(iSNVs).Several of them occurred concurrently,indicating possible interactions among them or coevolution.Some of the high-frequency iSNVs in Pakistan were not observed in the global population,suggesting strong purifying selections.The genomic epidemiology revealed five distinctive spreading clusters.The largest cluster consisted of 74 viruses which were derived from different geographic locations of Pakistan and formed a deep hierarchical structure,indicating an extensive and persistent nation-wide transmission of the virus that was probably attributed to a signature mutation(G8371T in ORF 1ab)of this cluster.Further-more,28 putative international introductions were identified,several of which are consistent with the epidemiological investigations.In all,this study has inferred the possible pathways of introduc-tions and transmissions of SARS-CoV-2 in Pakistan,which could aid ongoing and future viral surveillance and COVID-19 control.

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