XU Bowen,LI Jie,DAN Wenchao,et al.Medication Laws of Chinese Materia Medica in Regulating Tumor-associated Oncosis Based on Network Pharmacology[J].zhongguo zhongyiyao xinxi zazhi,2021,28(2):12-18.[doi:10.19879/j.cnki.1005-5304.201912127]
基于网络药理学探讨中药调控肿瘤相关性细胞胀亡用药规律
- Title:
- Medication Laws of Chinese Materia Medica in Regulating Tumor-associated Oncosis Based on Network Pharmacology
- 文章编号:
- 1005-5304(2021)02-0012-07
- Keywords:
- oncosis; network pharmacology; malignant tumor; material basis; medication laws
- 分类号:
- R273;R285.5
- 文献标志码:
- A
- 摘要:
- 目的 探讨中药调控肿瘤相关性细胞胀亡的物质基础及用药规律。方法 通过检索KEGG、GeneCards、OMIM数据库获取细胞胀亡的作用靶点,以类药性≥0.18为条件,通过中药系统药理学数据库与分析平台(TCMSP)筛选出可作用于靶点的化合物及中药,并构建靶点-化合物、化合物-中药、靶点-化合物-中药网络。依据2015年版《中华人民共和国药典》及《中药学》确定药物的性味归经,分析用药规律。结果 共获得34个可作用于细胞胀亡的靶点,可匹配到候选化合物的靶点11个,得到70个候选化合物和324味中药。可干预细胞胀亡的药味以苦、甘、辛为主,药性以寒居多,主要归肝、肺、胃经。结论 本研究较系统地探讨了中药干预肿瘤相关性细胞胀亡的物质基础,总结了相关中药的一般规律,可为中西医结合临床及干预细胞胀亡相关中药新药研发提供思路和依据。
- Abstract:
- Objective To investigate the material basis and medication laws of Chinese materia medica in regulating tumor-associated oncosis. Methods The targets of oncosis were obtained by searching the KEGG, GeneCards, and OMIM. On the condition of drug-like property (DL) ≥ 0.18, compounds and Chinese materia medica acting on the targets were selected from the TCMSP, and the target-compound, compound- Chinese materia medica, target-compound-Chinese materia medica networks were constructed. According to Chinese Pharmacopoeia and Chinese Materia Medica, property, taste and meridian tropism of each Chinese materia medica were identified, and the medication laws were analyzed. Results A total of 34 targets for oncosis were obtained, among which 11 targets were matched to compounds. 70 candidate compounds and 324 kinds of Chinese materia medica were obtained. The results of frequency statistics showed that bitter, sweet and pungent were the main properties which could interfere oncosis, the tastes were mainly cold, and the meridian tropism belonged to liver, lung and stomach. Conclusion This study systematically explores the material basis of TCM intervention in tumor-associated oncosis, summarizes the general rules of Chinese materia medica, and provides ideas and basis for the future clinical application of integrated traditional Chinese and Western medicine and the development of new TCM medicine for intervention in cell oncosis.
参考文献/References:
[1] MAJNO G, JORIS I. Apoptosis, oncosis, and necrosis. An overview of cell death[J]. American Journal of Pathology,1995,146(1):3-15. [2] LEPPO J. Imaging cell injury and death[J]. Current Cardiology Reports,2003,5(1):40-44. [3] PRIYA W L, MAXIMILIAN B. Oncosis:An important non-apoptotic mode of cell death[J]. Experimental & Molecular Pathology,2012, 93(3):302-308. [4] AKIMOTO M, HAYASHI J I, NAKAE S, et al. Interleukin-33 enhances programmed oncosis of ST2L-positive low-metastatic cells in the tumour microenvironment of lung cancer[J]. Cell death & Disease, 2016,7(1):2057. [5] 王维明,周香,郑志强.青蒿琥酯诱导胃癌BGC-823细胞死亡的实验研究[J].浙江医学,2017,39(14):1151-1154. [6] PETERS A A, JAMALUDIN S Y N, YAPA K T D S, et al. Oncosis and apoptosis induction by activation of an overexpressed ion channel in breast cancer cells[J]. Oncogene,2017,36(46):6490-6500. [7] 张亮.依布硒诱导多发性骨髓瘤细胞胀亡及其分子机制的研究[D].重庆:第三军医大学,2014. [8] 张彦琼,李梢.网络药理学与中医药现代研究的若干进展[J].中国药理学与毒理学杂志,2015,29(6):883-892. [9] TIAN S, WANG J, LI Y, et al. Drug-likeness analysis of traditional Chinese medicines:Prediction of drug-likeness using machine learning approaches[J]. Molecular Pharmaceutics,2012, 9(10):2875-2886. [10] 国家药典委员会.中华人民共和国药典:一部[M].北京:中国医药科技出版社,2015. [11] 周祯祥,唐德才.中药学[M].北京:中国中医药出版社,2016. [12] YAGAMI T, YAMAMOTO Y, KOMA H. Pathophysiological roles of intracellular proteases in neuronal development and neurological diseases[J]. Molecular Neurobiology,2019,56(5):3090-3112. [13] 曹建方.七氟醚后处理减轻离体大鼠心肌缺血再灌注损伤的作用机制研究[D].苏州:苏州大学,2015. [14] 王俊,蔡治方,刘尧,等.重症急性胰腺炎大鼠血清高迁移率族蛋白-1对胰腺腺泡细胞死亡方式的影响[J].中国普外基础与临床杂志,2014, 21(3):295-299. [15] 蔡红伟,谭榜宪,李贤富,等.不同剂量分割模式照射Eca109细胞死亡方式与毒性的初步研究[J].川北医学院学报,2016,31(4):479-482,489. [16] 王志震,杜芳芳,王平,等.6MV-X线单次高剂量照射肺腺癌细胞Anip973的超微结构观察[J].肿瘤防治研究,2013,40(10):935-938. [17] LUO D, NI Q, JI A, et al. Dehydroabietic acid derivative QC4 induces gastric cancer cell death via oncosis and apoptosis[J]. BioMed Research International,2016,2016:1-10. [18] 孙玉学.小檗碱诱导胶质瘤死亡方式及其干扰脂肪酸代谢的研究[D].长春:吉林大学,2018. [19] 崔敏.OEL和Fluopsin C的抗肿瘤活性及机制研究[D].济南:山东大学,2012. [20] 杨美春,方刚,李林,等.莪术油注射液对人卵巢癌SKOV3细胞胀亡及Bcl-2表达的影响[J].中国中医药信息杂志,2009,16(10):34-35,80. [21] 黄利华.青蒿琥酯诱导人急性白血病原代细胞凋亡、胀亡的作用机制研究[J].实用医学杂志,2012,28(5):705-707. [22] 高健.活性天然皂苷的合成、衍生物制备及抗肿瘤活性研究[D].济南:山东大学,2012. [23] 裴琴玉.“右旋糖酐-磁性层状复合氢氧化物-氟尿嘧啶”给药系统引发人胃癌细胞死亡的表型特征[D].银川:宁夏医科大学,2019. [24] 赵慧.汉黄芩素抑制胃癌的作用及其机制研究[D].济南:山东大学, 2018. [25] 赵婉,姜海,王知斌,等.贝母属植物的药理作用概述[J].上海中医药杂志,2018,52(11):97-100. [26] 张慧锋,郭淑英,申蕾,等.熊果酸诱导SKOV3细胞凋亡与线粒体凋亡通路[J].中药药理与临床,2015,31(2):140-142. [27] 秦春明,侯华新,黎丹戎,等.大黄素致鼻咽癌细胞CNE-1胀亡和线粒体膜通透性的研究[J].求医问药(学术版),2011,9(6):14-15. [28] 傅士龙.中草药单体木蝴蝶苷B介导的抗恶性淋巴瘤的新策略和机制探讨[D].苏州:苏州大学,2014. [29] 申琳,徐志尧,王远敏,等.基于网络药理学的丹参抗肿瘤的作用机制探讨[J].天津药学,2019,31(4):1-8. [30] 杨云英,何莎莎,王岩,等.基于网络药理学探讨仙鹤草治疗结肠癌的作用机制[J].消化肿瘤杂志(电子版),2019,11(3):282-289. [31] 唐伟智,侯恩存.基于网络药理学及分子对接探讨苦参碱抗肿瘤机制[J].亚太传统医药,2019,15(7):173-177. [32] 张立虎,李冬冬,萧伟,等.基于网络药理学与分子对接法预测银杏叶提取物的抗炎机制[J].中国实验方剂学杂志,2018,24(7):192-198. [33] 朱双全.紫苏化学成分及药理学研究进展概要[J].生物化工,2018, 4(2):148-149,152. [34] 许可嘉,赵雨坤,顾灏,等.基于网络药理学方法的雷公藤药理、毒理机制研究[J].中国中西医结合杂志,2018,38(8):1006-1010. [35] 邓丽,饶本强.线粒体代谢调控:清热解毒中药复方JC724抗肿瘤机制[J].肿瘤代谢与营养电子杂志,2017,4(4):445-452. [36] 贺用和,韩静.论“风”与肿瘤转移[J].中国中医基础医学杂志,2006, 12(2):124-126.
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备注/Memo
基金项目:国家自然科学基金(81273946、81473463、81774289);北京市科技计划(D161100005116004);北京市科技专项(Z171100001117128);中国中医科学院基本科研业务费自主选题项目(ZZ11-028)
更新日期/Last Update:
2021-01-25