中国药学(英文版) ›› 2022, Vol. 31 ›› Issue (1): 31-46.DOI: 10.5246/jcps.2022.01.004
高涛1, 刘蕾2,*(), 吴燕3,*(), 杜权1,*()
收稿日期:
2021-09-20
修回日期:
2021-10-21
接受日期:
2021-11-05
出版日期:
2022-01-12
发布日期:
2022-01-13
通讯作者:
刘蕾, 吴燕, 杜权
作者简介:
基金资助:
Tao Gao1, Lei Liu2,*(), Yan Wu3,*(), Quan Du1,*()
Received:
2021-09-20
Revised:
2021-10-21
Accepted:
2021-11-05
Online:
2022-01-12
Published:
2022-01-13
Contact:
Lei Liu, Yan Wu, Quan Du
摘要:
王氏保赤丸是一个具有180多年应用历史的中药复方。本研究利用大鼠给药模型, 对王氏保赤丸的临床前安全性进行了研究。在28天的给药实验期间, 对SD大鼠进行每日1次的灌胃给药, 对高、中、低剂量组而言, 给药剂量分别为60 mg/kg/day、600 mg/kg/day和1500 mg /kg/day。给药结束后, 进行15天的恢复期观察。以枸橼酸莫沙必利为参照药物, 给药剂量为37.5 mg/kg/day, 与王氏保赤丸的高剂量组保持一致。各剂量组在临床观察、摄食量、体重、脏器系数、血液生化、组织病理学等方面均未见不良反应, 并且也未见肠黑变现象的发生。在血液学实验中, 发现王氏保赤丸高剂量组的某些大鼠的血常规指标出现异常变化, 但在恢复期后基本回归正常, 这种可逆性的影响可能源于受损的大鼠肠道屏障。同时, 我们在枸橼酸莫沙必利给药组中也观察到了这一现象。除常规的组织病理学检测外, 我们还利用高通量基因测序技术进行了研究, 也未发现对细胞通路明显的毒性作用。综上所述, 实验动物在28天的给药期内, 对王氏保赤丸具有良好的耐受性。
Supporting:
高涛, 刘蕾, 吴燕, 杜权. 传统中药王氏保赤丸的临床前毒理研究[J]. 中国药学(英文版), 2022, 31(1): 31-46.
Tao Gao, Lei Liu, Yan Wu, Quan Du. Preclinical safety evaluation of WangShiBaoChiWan[J]. Journal of Chinese Pharmaceutical Sciences, 2022, 31(1): 31-46.
Figure 1. Body weights of WSBCW-treated rats in a toxicity test of 28 d. Ctrl, rats of the control group that were treated with saline; Low, rats of the low-dosage group that were treated with WSBCW of 60 mg/kg; Medium, rats of the medium-dosage group that were treated with WSBCW of 600 mg/kg; High, rats of the high-dosage group that were treated with WSBCW of 1500 mg/kg. Data are presented as mean ± SD (Student’s t-test, n = 6).
Figure 2. Food intakes of WSBCW-treated rats in a toxicity test of 28 d. Ctrl, rats of the control group that were treated with saline; Low, rats of the low-dosage group that were treated with WSBCW of 60 mg/kg; Medium, rats of the medium-dosage group that were treated with WSBCW of 600 mg/kg; High, rats of the high-dosage group that were treated with WSBCW of 1500 mg/kg. Data are presented as mean ± SD (Student’s t-test, n = 6).
Figure 4. Histopathology of WSBCW-treated rats. Representative photomicrographs of H&E stained sections of the liver and the jejunum of male mice (200× original magnification).
Figure 5. Effects on the length of intestinal villi. Quantitative results of intestinal villi length of rats under indicated treatments. The data are presented as mean ± SD (student’s t-test, n = 3); *P < 0.05; **P < 0.01; ***P < 0.001; ****P < 0.0001; ns no significant.
Table 1. Summary of serum biochemistry data of WSBCW-treated rats at the end of the administration period. ALB, albumin (reference ranges: 38-ic); ALP, alkaline phosphatase (40–442); ALT, alanine aminotransferase (22–137); AMY, amylase (502–1113); T-BIL, total bilirubin (4–7); BUN, blood urea nitrogen (2.5–6.6); CA, calcium (2.4–2.7); PHOS, phosphorus (0.74–2.26); CRE, creatinine (ic-53); GLU, glucose (6.6–13.7); NA+, sodium (133–144); K+, potassium (3.6–5.3); TP, total protein (66–88); GLOB, globulin (12–35); HEM, hemolysin. Data are presented as mean ± SD.
Table 3. Summary of hematology data of WSBCW-treated rats at the end of the administration period. WBC, white blood cell count (reference ranges: 2.10–19.50); LYM, lymphocyte (2.00–14.10); MON, monocyte (0.00–0.98); NEU, neutrophil (0.10–5.40); RBC, red blood cell count (5.30–10.00); HGB, hemoglobin (14.0–18.0); HCT, hematocrit value (35.00–52.00); MCV, mean corpuscular volume (50–62); MCH, mean corpuscular hemoglobin (16.0–23.0); MCHC, mean corpuscular hemoglobin concentration (31.0–40.0); RDW, red blood cell distribution width; RDWs, red blood cell distribution width SD; PTL, platelet count; MPV, mean platelet volume; PCT, procalcitonin (500–1000); PDW, platelet distribution width; PDWs, platelet distribution width SD. Data are presented as mean ± SD.
Figure 8. Comparative study of mosapride- and WSBCW-treated rats. Ctrl, rats of the control group that were treated with saline; WSBCW, rats of the high-dosage group that were treated with WSBCW of 1500 mg/kg; Mosapride, rats of the reference group that were treated with mosapride citrate of 37.5 mg/kg. Data are presented as mean ± SD (Student’s t-test, n = 6). (A) Body weights of the rats; (B) Food intakes; (C) Organ coefficients; (D) Hematology analysis.
Figure 9. Volcano map of the differentially regulated genes. The horizontal axis, fold-change of gene expression compared with the control; vertical axis, statistically difference of gene expression. Red dots indicate the significantly up-regulated genes, and green dots indicate the significantly down-regulated genes.
[1] |
Li, J.Y.; Wang, X.B.; Luo, J.G.; Kong, L.Y. Seasonal variation of alkaloid contents and anti-inflammatory activity of rhizoma coptidis based on fingerprints combined with chemometrics methods. J. Chromatogr. Sci. 2015, 53, 1131–1139.
|
[2] |
Guo, M.Z.; Li, X.S.; Xu, H.R.; Mei, Z.C.; Shen, W.; Ye, X.F. Rhein inhibits liver fibrosis induced by carbon tetrachloride in rats. Acta Pharmacol. Sin. 2002, 23, 739–744.
|
[3] |
Meng, K.W.; Lv, Y.; Yu, L.; Wu, S.L.; Pan, C.E. Effects of emodin and double blood supplies on liver regeneration of reduced size graft liver in rat model. World J. Gastroenterol. 2005, 11, 2941–2944.
|
[4] |
Neyrinck, A.M.; Etxeberria, U.; Taminiau, B.; Daube, G.; Van Hul, M.; Everard, A.; Cani, P.D.; Bindels, L.B.; Delzenne, N.M. Rhubarb extract prevents hepatic inflammation induced by acute alcohol intake, an effect related to the modulation of the gut microbiota. Mol. Nutr. Food Res. 2017, 61, 1500899.
|
[5] |
Ye, X.S.; Feng, Y.B.; Tong, Y.; Ng, K.M.; Tsao, S.; Lau, G.K.K.; Sze, C.; Zhang, Y.B.; Tang, J.; Shen, J.G.; Kobayashi, S. Hepatoprotective effects of Coptidis rhizoma aqueous extract on carbon tetrachloride-induced acute liver hepatotoxicity in rats. J. Ethnopharmacol. 2009, 124, 130–136.
|
[6] |
Kong, W.J.; Wei, J.; Abidi, P.; Lin, M.H.; Inaba, S.; Li, C.; Wang, Y.L.; Wang, Z.Z.; Si, S.Y.; Pan, H.N.; Wang, S.K.; Wu, J.D.; Wang, Y.; Li, Z.R.; Liu, J.W.; Jiang, J.D. Berberine is a novel cholesterol-lowering drug working through a unique mechanism distinct from statins. Nat. Med. 2004, 10, 1344–1351.
|
[7] |
Runfei, S.; Mingyu, S. Research progress of Chinese herbal medicine induces liver injury. Chin. J. Med. 2017, 52, 13–17.
|
[8] |
Yin, S.; Sun, C.; Ji, Y.; Abdolmaleky, H.; Zhou, J.R. Herbal medicine WangShiBaoChiWan improves gastrointestinal health in mice via modulation of intestinal tight junctions and gut microbiota and inhibition of inflammation. Biomed. Pharmacother. 2021, 138, 111426.
|
[9] |
Gao, B. Cytokines, STATs and liver disease. Cell Mol. Immunol. 2005, 2, 92–100.
|
[10] |
Hong, F.; Jaruga, B.; Kim, W.H.; Radaeva, S.; El-Assal, O.N.; Tian, Z.; Nguyen, V.A.; Gao, B. Opposing roles of STAT1 and STAT3 in T cell-mediated hepatitis: regulation by SOCS. J. Clin. Investig. 2002, 110, 1503–1513.
|
[11] |
Kato, A.; Graul-Layman, A.; Edwards, M.J.; Lentsch, A.B. Promotion of hepatic ischemia/reperfusion injury by IL-12 is independent of STAT41. Transplantation. 2002, 73, 1142–1145.
|
[12] |
Shen, X.D.; Ke, B.B.; Zhai, Y.; Gao, F.; Anselmo, D.; Lassman, C.R.; Busuttil, R.W.; Kupiec-Weglinski, J.W. Stat4 and Stat6 signaling in hepatic ischemia/reperfusion injury in mice: HO-1 dependence of Stat4 disruption-mediated cytoprotection. Hepatology. 2003, 37, 296–303.
|
[13] |
Li, N.; Liu, Y.H.; Li, S.L.; Fu, C.Y.; Zhou, R.R.; Huang, Y.; Fan, X.G. Protective role of synthetic oligodeoxynucleotides expressing immunosuppressive TTAGGG motifs in concanavalin A-induced hepatitis. Immunol. Lett. 2013, 151, 54–60.
|
[14] |
Robertson, M.J.; Chang, H.C.; Pelloso, D.; Kaplan, M.H. Impaired interferon-gamma production as a consequence of STAT4 deficiency after autologous hematopoietic stem cell transplantation for lymphoma. Blood. 2005, 106, 963–970.
|
[15] |
Boohaker, R.J.; Xu, B. The versatile functions of ATM kinase. Biomed. J. 2014, 37, 3–9.
|
[16] |
Charni, M.; Rivlin, N.; Molchadsky, A.; Aloni-Grinstein, R.; Rotter, V. p53 in liver pathologies—taking the good with the bad. J. Mol. Med. 2014, 92, 1229–1234.
|
[17] |
Craig, D.G.N.; Lee, P.; Pryde, E.A.; Masterton, G.S.; Hayes, P.C.; Simpson, K.J. Circulating apoptotic and necrotic cell death markers in patients with acute liver injury. Liver Int. 2011, 31, 1127–1136.
|
[18] |
Wilson, C.G.; Tran, J.L.; Erion, D.M.; Vera, N.B.; Febbraio, M.; Weiss, E.J. Hepatocyte-specific disruption of CD36 attenuates fatty liver and improves insulin sensitivity in HFD-fed mice. Endocrinology. 2016, 157, 570–585.
|
[19] |
Miquilena-Colina, M.E.; Lima-Cabello, E.; Sánchez-Campos, S.; García-Mediavilla, M.V.; Fernández-Bermejo, M.; Lozano-Rodríguez, T.; Vargas-Castrillón, J.; Buqué, X.; Ochoa, B.; Aspichueta, P.; González-Gallego, J.; García-Monzón, C. Hepatic fatty acid translocase CD36 upregulation is associated with insulin resistance, hyperinsulinaemia and increased steatosis in non-alcoholic steatohepatitis and chronic hepatitis C. Gut. 2011, 60, 1394–1402.
|
[20] |
Tian, S.; Xue, J.; Song, H.; Du, Q. Regulatory effects of traditional Chinese medicine on intestinal flora. J. Chin. Pharm. Sci. 2020, 29, 161–175.
|
[21] |
Cao, C.; He, K.; Zeng, Z.; Liu, J.; Cai, W.; Wu, W. Transcriptome-wide identification of differentially expressed genes and long non-coding RNAs in nitroglycerin-tolerant rat aorta. J. Chin. Pharm. Sci. 2021, 29, 725–735.
|
[1] | 吴梦瑶, 刘璐, 张鹏, 张乐乐, 龚云, 杨秀伟. 基于网络药理学和实验验证研究补血益母丸治疗产后腹痛的作用机制[J]. 中国药学(英文版), 2023, 32(9): 691-703. |
[2] | 范博, 杨笑, 胡爽. 涡旋辅助-可切换型溶剂液相微萃取用于中药样品中肉桂酸衍生物的分析[J]. 中国药学(英文版), 2023, 32(7): 551-559. |
[3] | 葛永辉, 汪玲, 许粟, 姜天丽, 王金华. 顶空-气相色谱-离子迁移谱法直接鉴定人工栽培和野生中药材(半枫荷)中的挥发性化合物[J]. 中国药学(英文版), 2023, 32(5): 392-405. |
[4] | 姚昆鹏, 张道平, 刘起立, 蔡虎志, 陈青扬, 陈新宇. 整合生物信息学鉴定与分析急性心肌梗死的特征基因及潜在中药预测[J]. 中国药学(英文版), 2022, 31(12): 912-927. |
[5] | 孙颖光, 岳圆圆, 邵杰敏, 高萌, 邓艳茹, 冯运佳. 康复新液与西瓜霜治疗复发性口腔溃疡疗效比较的meta分析[J]. 中国药学(英文版), 2022, 31(10): 761-772. |
[6] | 鹿梦秋, 梁海珍, 屠鹏飞, 姜勇. 中药九里香两种不同基原植物的药效学比较研究[J]. 中国药学(英文版), 2021, 30(1): 49-57. |
[7] | 田思聪, 薛婧, 宋辉, 杜权. 中药对肠道菌群结构和功能作用的研究[J]. 中国药学(英文版), 2020, 29(3): 161-175. |
[8] | 赵中振, 陈虎彪, 郭平, 梁之桃, 白效龙, 黄丽丽, 刘靖. 中药传统鉴定技术的传承与本草文化推广[J]. 中国药学(英文版), 2020, 29(12): 908-914. |
[9] | 焦豪妍, 徐胜梅, 范春林, 张庆文, 王英. 高良姜指纹图谱的建立及主要成分的定量分析[J]. 中国药学(英文版), 2019, 28(10): 728-738. |
[10] | 田溪, 袁叶, 苏子云, 李德强, 董维冲, 杨秀岭. 溶栓胶囊、血脂康胶囊、心元胶囊和松龄血脉康胶囊对大鼠体内氯吡格雷活性代谢产物药动学的影响[J]. 中国药学(英文版), 2017, 26(3): 187-195. |
[11] | 高杨亚雅, 朱尘琪, 郭爽, 邱百灵, 吴迪, 高也, 梁启慧, 韩南银, 张萍. 高效毛细管电泳法测定传统中药拳参中没食子酸含量[J]. 中国药学(英文版), 2016, 25(10): 747-753. |
[12] | 赵艳, 刘敏, 杨钊, 王少华, 李杨, 杜冠华. UPLC-MS/MS法同时测定消栓通络方中18种成分的含量[J]. 中国药学(英文版), 2014, 23(4): 225-232. |
[13] | 林志燕, 杨荣富, 唐跃年, 田怀平, 张健. UHPLC-MS/MS法在医院制剂多成分含量测定中的应用[J]. 中国药学(英文版), 2014, 23(4): 233-240. |
[14] | 余彩虹, 徐思云, 喻爱明, 刘彦卿, 胡海红, 李丽萍, 余露山, 周慧, 蒋惠娣, 曾苏. 应用shRNA慢病毒技术抑制MCF7/MX100细胞中乳腺癌耐药蛋白的表达和功能[J]. 中国药学(英文版), 2014, 23(11): 743-750. |
[15] | 陈萍, 王培培, 邵国华, 向兰*. 48种中药材的乙酰胆碱酯酶抑制活性研究[J]. , 2013, 22(1): 106-109. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||