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鹿茸治疗肝损伤的研究进展
基金项目(Foundation): 吉林省预算内基本建设资金(创新能力建设)项目(2024C016-10); 吉林省教育厅科学技术研究项目(JJKH20250580KJ); 吉林省梅花鹿高效育种与产品开发国际合作重点实验室项目(YDZJ202502CXJD077); 东丰综合实验站(梅花鹿)项目(2025)
邮箱(Email): jiaboyin@jlau.edu.cn
DOI:
发布时间: 2026-03-11
出版时间: 2026-03-11
网络发布时间: 2026-03-11
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摘要:

肝损伤是指肝脏因病毒感染、药物毒性、酒精滥用、自身免疫性疾病、遗传等多种因素导致肝脏出现结构和功能异常。目前,肝损伤治疗在现有手段效用、病理机制应对及天然药物转化等方面存在的诸多问题,迫切需要寻找有效的肝损伤治疗方法。鹿茸作为哺乳动物唯一周期再生器官,是我国传统用于治疗各种组织器官损伤修复的名贵药材。研究表明鹿茸及其制品通过抗炎、抗氧化、促进肝细胞再生等多途径发挥肝脏保护作用。基于此,本文综述了鹿茸及鹿茸制品对肝损伤修复的作用机制,为鹿茸及鹿茸制品在肝损伤修复中的应用奠定基础。

Abstract:

Liver injury refers to the structural and functional abnormalities of the liver caused by various factors such as viral infection, drug toxicity, alcohol abuse, autoimmune diseases, and genetics. At present, there are many problems in the treatment of liver injury in terms of the effectiveness of existing methods, the response to pathological mechanisms and the transformation of natural drugs, which urgently require the search for effective treatment methods for liver injury. Deer antler, as the only periodically regenerating organ of mammals, is a precious traditional Chinese medicinal material used for treating and repairing various tissue and organ injuries. Studies have shown that deer antler and its products exert liver-protective effects through multiple pathways such as anti-inflammation, antioxidation, and promotion of liver cell regeneration. Based on this, this paper reviews the mechanism of action of deer antler and deer antler products in liver injury repair, laying the foundation for the application of deer antler and deer antler products in liver injury repair.

参考文献

[1] 王瑶, 刘春娜, 张羽翀等. 五味子总多糖及总木脂素对小鼠急性肝损伤作用的比较研究[J]. 中国老年保健医学. 2019, 17(6): 20–23.

[2] Stine JG, Lewis JH. Current and future directions in the treatment and prevention of drug-induced liver injury: a systematic review. Expert Rev Gastroenterol Hepatol. 2016,10(4):517-36.

[3] 刘运超,张颖,秦树存等.南蛇藤素在代谢相关脂肪性肝病防治中的研究进展[J]. 生理学报. 2023,75(05):682-689.

[4] Linhong Fan, Wenxiang Fan, et al. Mechanochemical assisted extraction as a green approach in preparation of bioactive components extraction from natural products - A review,Trends in Food Science & Technology. 2022,129:98-110.

[5] 于伟. 马鹿茸提取物与黑木耳多糖协同作用对糖尿病小鼠生理功能的影响[D]. 东北林业大学, 2011.

[6] 李雄智, 刘振, 周李生等. 鹿茸再生过程中血管与神经的协同机制研究进展[J]. 经济动物学报. 2024, 28(3): 272–276.

[7] 王子未, 李艳君, 李琳等. 鹿茸促血管新生修复心肌梗死大鼠心肌损伤的实验研究[J]. 中国中西医结合杂志. 2019, 39(8): 965–970.

[8] 叶子豪, 李吉萍, 王东旭等. 鹿茸干细胞对大鼠坐骨神经损伤的再生修复作用[J]. 经济动物学报. 2024, 28(3): 178–187.

[9] Tacke F,Zimmermann HW. Liver inflammation and fibrosis[J]. J Hepatol. 2014, 60(6): 1386-1395.

[10] Pinzani M. Liver fibrosis[J]. Springer Semin Immunopathol. 1999,21(4):475-90.

[11] Arthur MJ. Fibrogenesis II. Metalloproteinases and their inhibitors in liver fibrosis[J]. Am J Physiol Gastrointest Liver Physiol. 2000,279(2):G245-9.

[12] Milani S, Herbst H, Schuppan D, et al. Procollagen Expression by Nonparenchymal Rat Liver Cells in Experimental Biliary Fibrosis[J]. Gastroenterology. 1990, 98(1): 175–184.

[13] Marra F. Hepatic Stellate Cells and the Regulation of Liver Inflammation[J]. Journal of Hepatology. 1999, 31(6): 1120–1130.

[14] Bataller R, Brenner D A. Liver fibrosis[J]. Journal of Clinical Investigation. 2005, 115(2): 209–218.

[15] 李占甲, 陈水平. 北京某医院消化内科肝炎病毒感染的流行病学调查[J]. 标记免疫分析与临床. 2020, 27(3): 361–364.

[16] 王功遂, 王曼曼, 谢秋里等. HBsAg、HBcAg在慢性乙型肝炎肝细胞内的表达及临床意义[J]. 中华肝脏病杂志. 2004(5): 36–38.

[17] Yang J D, Roberts L R. Epidemiology and Management of Hepatocellular Carcinoma[J]. Infectious Disease Clinics of North America. 2010, 24(4): 899–919.

[18] 张娟. 慢性肝病患者乙型丙型丁型肝炎病毒感染情况分析[J]. 检验医学与临床. 2011, 8(15): 1843–1844.

[19] Aslan At, Balaban Hy. Hepatitis E virus: Epidemiology, diagnosis, clinical manifestations, and Treatment[J]. World journal of Gastroenterology. 2020, 26(37).

[20] 吕皓. 鹿茸间充质干细胞对小鼠酒精性肝病的干预和治疗效果[D]. 塔里木大学, 2024.

[21] Wang M, Yu N, Chen L, et al. Identification of an acetaldehyde adduct in human liver DNA and quantitation as N2-ethyldeoxyguanosine. Chem Res Toxicol. 2006 ,19(2):319-24

[22] Kang H, Kim M-B, Park Y-K, et al. A Mouse Model of the Regression of Alcoholic Hepatitis: Monitoring the Regression of Hepatic Steatosis, Inflammation, Oxidative Stress, and NAD+ Metabolism upon Alcohol Withdrawal[J]. The Journal of Nutritional Biochemistry. 2022, 99: 108852.

[23] 吴亚,李艳茹,杨寄镯,等.酒精性肝病发病机制研究现状[J].临床肝胆病杂志. 2020,36(12):2822-2825.

[24] 邱萍, 李相, 孔德松等. 酒精性肝病发病机制研究的新进展[J]. 中国药理学通报. 2014, 30(2): 160–163.

[25] 杨丹, 尚静, 张克等. 足三里注射地塞米松通过降低氧化应激和炎症治疗中重度药物性肝损伤的临床研究[J]. 河北中医药学报. 2024, 39(5): 45-48+62.

[26] Sk L, Jy C, Es Jet al. An Immunological Perspective on the Mechanism of Drug Induced Liver Injury: Focused on Drugs for Treatment of Hepatocellular Carcinoma and Liver Transplantation[J]. International journal of molecular Sciences. 2023, 24(5).

[27] EuropeanAssociationfortheStudyoftheLiver.EASLClinicalPracticeGuidelines:Drug-inducedliverinjury[J].Journalofhepatology. 2019,70(6):1222–1261.

[28] Germani G, Battistella S, Ulinici D, et al. Drug Induced Liver Injury: From Pathogenesis to Liver Transplantation[J]. Minerva Gastroenterology, 2021, 67(1): 50–64.

[29] 张玲莺, 李墨翰, 李乳姝等. 鹿茸多肽研究进展[J]. 肉类研究. 2019, 33(6): 64–69.

[30] 张宸豪, 骆晓峰, 李明光等. 鹿茸多肽对不同诱导剂致人肝细胞系L-02氧化损伤的保护作用[J]. 中国兽医杂志. 2019, 55(9): 30-33+121.

[31] 段冷昕, 李夏, 王楠娅等. 鹿茸多肽促进肝细胞增殖及肝部分切除小鼠的肝再生[J]. 中国药学杂志. 2008(1): 27–30.

[32] 段冷昕. 梅花鹿茸多肽的化学结构及其抗肝纤维化作用[D]. 吉林大学, 2007.

[33] 谢琼, 杜念龙, 易宏锋鹿茸多肽调节Nrf-2/HO-1/NF-κB信号通路减轻非酒精性脂肪肝大鼠小肠黏膜屏障损伤[J]. 中药材. 2023, 46(3): 741–746.

[34] Ma Chunhua , Hongyan L. Protective Effect of Pilose Antler Peptide on Carbon Tetrachloride-Induced Hepatotoxicity in Mice[J]. International Journal of Biological Macromolecules, 2017. 99: 648–654.

[35] 李夏, 段冷昕, 王楠娅等. 鹿茸多肽对四氯化碳所致小鼠急性肝损伤的保护作用[J]. 中国药学杂志. 2007(24): 1864–1866.

[36] 齐艳萍. 鹿茸的化学成分及对肝损伤的修复作用[J]. 甘肃中医. 2010, 23(1): 61–63.

[37] 周霖, 王肖辉, 荆自伟等. 鹿茸多肽对四氯化碳诱导的小鼠肝纤维化的保护作用及其机制研究[J]. 中药新药与临床药理, 2021, 32(3): 338–345.

[38] 郭忠奎, 钟雪平, 陈晓光. 鹿茸精对小鼠实验性肝损伤的保护作用[J]. 中国社区医师(综合版). 2007(18): 10.

[39] 覃燕妮. 鹿茸水提物对四氯化碳致小鼠肝损伤的防护作用研究[J]. 中国药业. 2016, 25(23): 33–38.

[40] Tang Y, Fan M, Choi Y-J, et al. Protective Effect of Sika Deer (Cervus nippon) Velvet Antler Extract against Cisplatin-Induced Kidney and Liver Injury in a Prostate Cancer PC-3 Cell Xenograft Model[J]. Journal of Chemistry. 2018, 2018(1): 6705156.

[41] He G, Zhao Q, Zhao Y, et al. Deer Antler Based Active Ingredients Have Protective Effects on LPS/d-GalN-Induced Acute Liver Injury in Mice through MAPK and NF-κB Signalling Pathways[J]. Pharmaceutical Biology. 2022, 60(1): 1077–1087.

[42] 陈晓光. 鹿茸多糖抗肝损伤作用的生化药理学研究[D]. 吉林大学, 2004.

[43] Rong X, Yang Y, Zhang G, Zhang H, Li C, Wang Y. Antler stem cells as a novel stem cell source for reducing liver fibrosis[J]. Cell Tissue Res. 2020 ,379(1):195-206.

[44] 王东旭, 任晶, 李吉萍等. 鹿茸干细胞来源外泌体调控NF-κB信号通路预防小鼠酒精性肝损伤[J]. 中国组织工程研究. 2023, 27(24): 3824–3830.

[45] 谢敏, 朱至明, 欧兰芳. 鹿茸粉的制备与临床疗效观察[J]. 河南中医学院学报. 2006(4): 70.

[46] 邢锐, 杨杰, 吴文蓉等. 梅花鹿鹿茸粉对酒精性肝损伤小鼠血液及肝脏指标的影响[J]. 畜牧与饲料科学. 2015, 36(4): 47–49.

[47] 齐艳萍, 李和平, 夏彦玲. 鹿茸粉及鹿茸醇提物对小鼠药物性肝损伤的作用[J]. 中国兽医杂志. 2010, 46(11): 21–23.

[48] 齐艳萍, 李和平. 鹿茸粉对CCl_(4)及APAP肝损伤小鼠蛋白合成贮备功能的影响[J]. 黑龙江八一农垦大学学报. 2010, 22(4): 61–63.

[49] 夏彦玲, 李和平, 刘伟石等. 鹿茸粉对四氯化碳急性肝损伤小鼠肝脏超微结构的影响[J]. 东北农业大学学报. 2010, 41(7): 100–103.

[50] 祁雪, 刘秀梅, 陈晓光. 鹿茸口服液对小鼠实验性肝损伤的保护作用[J]. 中药药理与临床. 2004(1): 42–43.

[51] Kang J, Zhang T, Wang H, et al. Chitosan nanoparticles loaded with velvet antler polypeptides for intervention in autoimmune hepatitis[J]. Food Bioscience. 2024, 62: 105102.

[52] 张佳琪. 花鹿茸多糖的结构表征及其体外保肝、抗衰老作用的研究[D]. 吉林农业大学. 2024.

基本信息:

中图分类号:R285

引用信息:

[1]颜辛芮,张俣,宋军,等.鹿茸治疗肝损伤的研究进展[J].经济动物学报().

基金信息:

吉林省预算内基本建设资金(创新能力建设)项目(2024C016-10); 吉林省教育厅科学技术研究项目(JJKH20250580KJ); 吉林省梅花鹿高效育种与产品开发国际合作重点实验室项目(YDZJ202502CXJD077); 东丰综合实验站(梅花鹿)项目(2025)

发布时间:

2026-03-11

出版时间:

2026-03-11

网络发布时间:

2026-03-11

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