浏览全部资源
扫码关注微信
长春中医药大学吉林省人参科学研究院,长春 130117
硕士研究生。研究方向:中药化学。E-mail:bzl299801@163.com
高级实验师,硕士。研究方向:中药大健康产品开发及生物学机制。E-mail:lwsm126030@126.com
纸质出版日期:2022-11-15,
收稿日期:2022-03-12,
修回日期:2022-09-27,
扫 描 看 全 文
白竹林,赵大庆,陈静静等.人参-茯苓药对抗衰老活性条件筛选及机制研究 Δ[J].中国药房,2022,33(21):2584-2589.
Zhulin ,ZHAO Daqing,CHEN Jingjing,et al.Study on activity conditions screening and mechanism of Panax ginseng-Poria cocos pairagainst aging BAI[J].ZHONGGUO YAOFANG,2022,33(21):2584-2589.
白竹林,赵大庆,陈静静等.人参-茯苓药对抗衰老活性条件筛选及机制研究 Δ[J].中国药房,2022,33(21):2584-2589. DOI: 10.6039/j.issn.1001-0408.2022.21.05.
Zhulin ,ZHAO Daqing,CHEN Jingjing,et al.Study on activity conditions screening and mechanism of Panax ginseng-Poria cocos pairagainst aging BAI[J].ZHONGGUO YAOFANG,2022,33(21):2584-2589. DOI: 10.6039/j.issn.1001-0408.2022.21.05.
目的
2
筛选人参-茯苓药对抗衰老的最佳配伍比例及给药条件,并探讨其作用机制。
方法
2
制备不同配伍比例(1∶1、1∶2、2∶1、1∶4、4∶1
,m
/
m
)的人参-茯苓药对提取物,并以酿酒酵母为衰老模型生物,采用MTT法绘制酿酒酵母生长曲线,筛选人参-茯苓药对的最佳配伍比例、给药浓度和给药时间点,检测酿酒酵母细胞内抗氧化酶[超氧化物歧化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT)]活性和活性氧(ROS)、丙二醛(MDA)水平以及三磷酸腺苷(ATP)含量和线粒体膜电位(MMP),检测酿酒酵母细胞内SOD1、CTT1、GSH1、ATP1、MRS1、CDC19
mRNA的表达水平。
结果
2
人参-茯苓药对抗衰老的最佳配伍比例为1∶4(
m
/
m
),最佳给药浓度为220 μg/mL,最佳给药时间点为第28 h。人参-茯苓药对1∶4提取物可显著升高酿酒酵母细胞内SOD、POD、CAT活性,ATP含量和MMP以及CTT1、GSH1、MRS1
mRNA表达水平(
P
<0.01),显著降低MDA、ROS水平和SOD1、ATP1、CDC19
mRNA表达水平(
P
<0.05或
P
<0.01)。
结论
2
人参-茯苓药对以1∶4(
m
/
m
)配伍时对酿酒酵母的抗衰老作用较好,其作用机制可能与正向调控酿酒酵母细胞氧化应激以及能量代谢有关。
OBJECTIVE
2
To screen the best compatibility ratio and administration conditions of
Panax ginseng
-
Poria cocos
pair against aging, and investigate its mechanism.
METHODS
2
P. ginseng
-
P. cocos
pair extracts with different compatibility ratios (1∶1, 1∶2, 2∶1, 1∶4, 4∶1,
m
/
m
) were prepared; taking
Saccharomyces cerevisiae
as the aging model organism, the
S. cerevisiae
growth curve was drawn by MTT method, the best compatibility ratio,administration concentration and administration time point of
P. ginseng
-
P. cocos
pair were screened out; the activities of antioxidant related enzymes [superoxide dismutase (SOD), peroxidase (POD), catalase (CAT)], the levels of reactive oxygen species (ROS) and malondialdehyde (MDA), the content of adenosine triphosphate (ATP), and the mitochondrial membrane potential (MMP) in
S. cerevisiae
cells were detected; mRNA expressions of SOD1, CTT1, GSH1, ATP1, MRS1 and CDC19 were also detected.
RESULTS
2
The optimal ratio of
P. ginseng
-
P. cocos
pair for anti-aging activity was 1∶4 (
m
/
m
), the optimal administration concentration was 220 μg/mL, and the optimal administration time point was the 28th hour. The extracts of
P. ginseng
-
P. cocos
pair (1∶4,
m
/
m
) could significantly increase the activities of SOD, POD and CAT, ATP content, MMP,mRNA expression of CTT1, GSH1 and MRS1 (
P
<0.01), but decrease the levels of MDA and ROS, mRNA expressions of SOD1, ATP1 and CDC19 (
P
<0.05 or
P
<0.01).
CONCLUSIONS
2
P. ginseng
-
P. cocos
pair (1∶4,
m
/
m
) has a good anti-aging effect on
S. cerevisiae
,its mechanism may be related to the positive regulation of oxidative stress and energy metabolism of
S. cerevisiae
cell.
人参茯苓药对配伍比例酿酒酵母抗衰老氧化应激能量代谢
Poria cocosdrug paircompatibility ratioSaccharomyces cerevisiaeanti-agingoxidative stressenergy metabolism
国家卫生健康委老龄健康司发布《2020年度国家老龄事业发展公报》[J].上海护理,2021,21(11):19.
周玉枝,闫明亮,高丽,等.衰老动物模型的研究及其在抗衰老药物活性筛选中的应用[J].中草药,2017,48(6):1061-1071.
HE C,ZHOU C K,KENNEDY B K. The yeast replicative aging model[J]. Biochim Biophys Acta Mol Basis Dis,2018,1864(9 Pt A):2690-2696.
WU Z,SONG L,LIU S Q,et al. Tanshinones extend chronological lifespan in budding yeast Saccharomyces cerevisiae[J]. Appl Microbiol Biotechnol,2014,98(20):8617-8628.
孙伟正.中医衰老学说[J].中国老年保健医学,2005,3(1):3-6.
郭林.基于数据挖掘技术的茯苓配伍规律研究[D].南宁:广西中医药大学,2017.
张敏.古代抗衰老方剂用药规律研究[D].北京:中国中医科学院,2018.
孙卫东.解读《神农本草经》之人参功效[J].人参研究,2017,29(1):62-64.
邓桃妹,彭代银,俞年军,等.茯苓化学成分和药理作用研究进展及质量标志物的预测分析[J].中草药,2020,51(10):2703-2717.
陈曦,孙旭.温病四大家医案中的人参用药及药症规律研究[J].长春中医药大学学报,2020,36(6):1115-1118.
陈东元.《伤寒杂病论》中人参的配伍规律及其学术思想探析[D].昆明:云南中医学院,2015.
王敏,廖林锋,孙晓宇,等.延衰组合物对酵母细胞寿命及氧化应激的研究[J].食品研究与开发,2021,42(12):1-7.
陈静静,白雪媛,边帅,等.基于酿酒酵母体系的人参皂苷抗衰老活性筛选及评价[J].食品工业科技,2022,43(1):1-9.
MEDKOUR Y,MOHAMMAD K,ARLIA-CIOMMO A,et al. Mechanisms by which PE21,an extract from the white willow Salix alba,delays chronological aging in budding yeast[J]. Oncotarget,2019,10(56):5780-5816.
乔巨慧.人参总皂苷对果蝇衰老及相关行为的调控和分子机制研究[D].长春:长春中医药大学,2021.
周玥,王亚平,王建伟,等.人参皂苷Rg1在造血干/祖细胞连续移植中对延缓细胞衰老的作用与去乙酰化酶6/核因子-κB信号轴的关系[J].解剖学报,2015,46(5):623-628.
赵莹,刘金平,卢丹,等.人参皂苷Re促进自然衰老大鼠学习记忆作用及其机理的研究[J].中药新药与临床药理,2007,18(1):20-22.
田耀博,赵大庆,李香艳,等.人参多糖通过抑制ROS水平和凋亡保护H2O2诱导的心肌细胞氧化应激损伤[J].华中师范大学学报(自然科学版),2018,52(2):240-247.
段超,许刚豪,王冬冬,等.茯苓发酵液多糖含量分析及其抗氧化性能研究[J].日用化学品科学,2016,39(2):31-34.
FANG C L,PAUL C R,DAY C H,et al. Poria cocos (Fu- ling) targets TGFβ/Smad7 associated collagen accumulation and enhances Nrf2-antioxidant mechanism to exert anti-skin aging effects in human dermal fibroblasts[J]. Environ Toxicol,2021,36(5):729-736.
LEE S G,KIM M M. Pachymic acid promotes induction of autophagy related to IGF-1 signaling pathway in WI-38 cells[J]. Phytomedicine,2017,36:82-87.
王郅媛,王友升,李丽萍.抗衰老研究新模型:酵母细胞活性氧代谢研究进展[J].食品科学,2012,33(7):354-358.
时桂芹,任菲,谢冰宗,等.高糖胁迫对酿酒酵母抗氧化活性及代谢的影响[J].食品工业科技,2019,40(20):94-100.
谢红军,旦增久美,雪嘎,等.芫参颗粒对正常小鼠抗氧化和抗缺氧作用的研究[J].中国药房,2020,31(19):2371-2375.
张晓茹.在发酵过程中,植物乳杆菌对酿酒酵母氧化代谢的调控[D].北京:北京化工大学,2020.
林梦姣,刘德果,赵姣,等.益肾通癃汤对前列腺癌裸鼠模型Nrf-2、SOD1的影响[J/OL].中医药信息,2022.[2022-09-27]. http://kns.cnki.net/kcms/detail/23.1194.r. 20220916.1011.006http://kns.cnki.net/kcms/detail/23.1194.r.20220916.1011.006.
袁方.酵母抗老化研究[D].大连:大连工业大学,2014.
刘珂娣,段佳林,苏晶,等.紫铆花素对PC12细胞氧化应激损伤的保护作用及对线粒体功能的影响研究[J].中国药房,2020,31(24):2974-2981.
吕妍,张艳丽,张展鹏,等. ATP1通过调节氧化应激促进白念珠菌逃逸巨噬细胞杀伤的研究[J].中华皮肤科杂志,2020,53(7):519-524.
GRIGNASCHI E,CEREGHETTI G,GRIGOLATO F, et al. A hydrophobic low-complexity region regulates aggregation of the yeast pyruvate kinase Cdc19 into amyloid-like aggregates in vitro[J]. J Biol Chem,2018,293(29):11424-11432.
胡传旺,李巧玉,周朝晖,等.酱醪细菌菌株的分离及功能分析[J].微生物学通报,2017,44(8):1899-1907.
0
浏览量
0
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构