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低,GSH 水平升高。这提示,TAC 可激活 Sirt1/P53 信号 716-725.
2+
通路活性,促进 GSH 与 Cu 的螯合作用,从而减少线粒 [12] RIT U,VERMA R,KAUSHIK S,et al. Hesperetin-
体代谢障碍与蛋白质毒性应激,最终改善铜死亡相关心 supplemented soybean and ginger hydroalcoholic extracts
肌损伤。 alleviate diabetic cardiomyopathy in streptozotocin in‐
综上所述,TAC可改善大鼠DCM,其作用机制可能 duced diabetic rats by modulating NF-κB/MMP-9/TIMPs
pathway[J]. S Afr N J Bot,2025,179:11-21.
2+
与激活Sirt1/P53信号通路活性,促进GSH与Cu 的螯合
[13] 黄继汉,黄晓晖,陈志扬,等. 药理试验中动物间和动物
作用,抑制心肌细胞铜死亡有关。
与人体间的等效剂量换算[J]. 中国临床药理学与治疗
参考文献
学,2004,9(9):1069-1072.
[ 1 ] GU K F,LI X K,XIANG W Z,et al. The relationship be‐
[14] KYRIAZIS I D,HOFFMAN M,GAIGNEBET L,et al.
tween serum copper and overweight/obesity:a meta-
KLF5 is induced by FOXO1 and causes oxidative stress
analysis[J]. Biol Trace Elem Res,2020,194(2):336-347.
and diabetic cardiomyopathy[J]. Circ Res,2021,128(3):
[ 2 ] JOMOVA K,MAKOVA M,ALOMAR S Y,et al. Essen‐
335-357.
tial metals in health and disease[J]. Chem Biol Interact,
[15] TSANG T,DAVIS C I,BRADY D C. Copper biology[J].
2022,367:110173.
Curr Biol,2021,31(9):R421-R427.
[ 3 ] TSVETKOV P,COY S,PETROVA B,et al. Copper in‐
[16] CAPPELLETTI P,BINDA E,TUNESI M,et al. Recombi‐
duces cell death by targeting lipoylated TCA cycle proteins
nant human tat-Hsp70-2:a tool for neuroprotection[J].
[J]. Science,2022,375(6586):1254-1261.
Protein Expr Purif,2017,138:18-24.
[ 4 ] HUO S Q,WANG Q,SHI W,et al. ATF3/SPI1/SLC31A1
[17] TSYMBAL S A,REFELD A G,KUCHUR O A. The p53
signaling promotes cuproptosis induced by advanced gly‐
tumor suppressor and copper metabolism:an unrevealed
cosylation end products in diabetic myocardial injury[J].
but important link[J]. Mol Biol (Mosk),2022,56(6):
Int J Mol Sci,2023,24(2):1667.
1057-1071.
[ 5 ] ZHANG W,QIAN S H,TANG B,et al. Resveratrol inhi-
[18] ALFADUL S M,MATNUROV E M,VARAKUTIN A E,
bits ferroptosis and decelerates heart failure progression
et al. Metal-based anticancer complexes and p53:how
via Sirt1/P53 pathway activation[J]. J Cell Mol Med,
much do we know?[J]. Cancers (Basel),2023,15(10):
2023,27(20):3075-3089.
2834.
[ 6 ] 王淼,孙宏宇,田明 . 延胡索总生物碱提取工艺研究[J].
[19] URSINI F,MAIORINO M. Lipid peroxidation and ferrop‐
黑龙江医药,2015,28(4):760-762.
tosis:the role of GSH and GPx4[J]. Free Radic Biol Med,
[ 7 ] LI J Y,WU J X,HUANG J Y,et al. Uncovering the effect
2020,152:175-185.
and mechanism of Corydalis Rhizoma on myocardial in‐
[20] LIU J,TANG H,CHEN F Q,et al. NFE2L2 and
farction through an integrated network pharmacology ap‐
SLC25A39 drive cuproptosis resistance through GSH me‐
proach and experimental verification[J]. Front Pharmacol,
tabolism[J]. Sci Rep,2024,14(1):29579.
2022,13:927488.
[21] KARBASFOROOSHAN H,KARIMI G. The role of
[ 8 ] 程连芝,周家梅,马俊龙,等 . 延胡索乙素通过抑制 p38
SIRT1 in diabetic cardiomyopathy[J]. Biomed Pharmaco‐
MAPK 信号通路介导的小胶质细胞活化改善糖尿病大
ther,2017,90:386-392.
鼠神经病理性疼痛[J]. 中国中药杂志,2022,47(9):
[22] JIANG D H,LI M H,YU Y,et al. microRNA-34a aggra‐
2533-2540.
vates coxsackievirus B3-induced apoptosis of cardiomyo‐
[ 9 ] 李君,齐雅芝,唐娅,等. 延胡索总生物碱对慢性脑缺血
cytes through the SIRT1-p53 pathway[J]. J Med Virol,
大鼠海马沉默信息调节因子 1/肿瘤抑制基因 P53 蛋白
2019,91(9):1643-1651.
信号通路的调控作用及其机制研究[J]. 中国脑血管病杂
[23] MA S X,SUN L Y,WU W H,et al. USP22 protects
志,2023,20(12):837-845.
against myocardial ischemia-reperfusion injury via the
[10] JOBBAGY S,VITTURI D A,SALVATORE S R,et al.
SIRT1-p53/SLC7A11-dependent inhibition of ferroptosis-
Electrophiles modulate glutathione reductase activity via
induced cardiomyocyte death[J]. Front Physiol,2020,11:
alkylation and upregulation of glutathione biosynthesis[J].
551318.
Redox Biol,2019,21:101050.
(收稿日期:2024-11-19 修回日期:2025-02-14)
[11] 韩旭,王璇,余芝,等 . STZ 制备糖尿病大鼠模型影响因
(编辑:唐晓莲)
素的研究进展[J]. 中国实验动物学报,2020,28(5):
· 806 · China Pharmacy 2025 Vol. 36 No. 7 中国药房 2025年第36卷第7期