您当前的位置:
首页 >
文章列表页 >
Cuscutae Semen-Lycii Fructus Improves Spermatogenesis in Rat Model of Oligoasthenozoospermia by Inhibiting Oxidative Stress-induced Blood-testis Barrier Damage via Regulating SIRT1/Nrf2 Signaling Pathway
更新时间:2025-08-04
    • Cuscutae Semen-Lycii Fructus Improves Spermatogenesis in Rat Model of Oligoasthenozoospermia by Inhibiting Oxidative Stress-induced Blood-testis Barrier Damage via Regulating SIRT1/Nrf2 Signaling Pathway

    • The latest research has found that dodder wolfberry can regulate the SIRT1/Nrf2 pathway, inhibit oxidative stress, improve blood testis barrier damage, and enhance spermatogenic function in oligoasthenozoospermia rats.
    • Chinese Journal of Experimental Traditional Medical Formulae   Vol. 31, Issue 17, Pages: 29-38(2025)
    • DOI:10.13422/j.cnki.syfjx.20250144    

      CLC: R268;R285;R242
    • Received:06 November 2024

      Accepted:11 February 2025

      Published Online:11 February 2025

      Published:05 September 2025

    移动端阅览

  • DUAN Wen,ZHANG Xiaojing,DING Wenjie,et al.Cuscutae Semen-Lycii Fructus Improves Spermatogenesis in Rat Model of Oligoasthenozoospermia by Inhibiting Oxidative Stress-induced Blood-testis Barrier Damage via Regulating SIRT1/Nrf2 Signaling Pathway[J].Chinese Journal of Experimental Traditional Medical Formulae,2025,31(17):29-38. DOI: 10.13422/j.cnki.syfjx.20250144.

  •  
  •  

0

Views

71

下载量

0

CSCD

Alert me when the article has been cited
提交
Tools
Download
Export Citation
Share
Add to favorites
Add to my album

Related Articles

Renal Protective Mechanism of Danggui Shaoyaosan in db/db Mice Based on RhoA/ROCK/NF-κB Signaling Pathway
Mechanisms of Traditional Chinese Medicine in Treatment of Traumatic Optic Neuropathy: A Review
Mechanistic Study on Combined Application of Arsenic Trioxide and Its Dimethylarsinic Acid Metabolite in Promoting Apoptosis of Acute Promyelocytic Leukemia NB4 Cells
Mechanism of Yitangkang Prescription in Improving Metabolic-inflammatory Imbalance in Diabetic Kidney Disease by Cross-organ Regulation of Mast Cell Network

Related Author

HOU Luyu
ZHANG Yuanyuan
SHI Wenjing
GUO Shilong
WANG Zixuan
ZHENG Linlin
GUO Dengzhou
NING Zhihao

Related Institution

Graduate School, Hebei University of Chinese Medicine
The Third Hospital of Hebei Medical University
The First Affiliated Hospital of Hebei University of Chinese Medicine
Hebei Provincial Technology Innovation Center for Traditional Chinese Medicine Spleen and Kidney Diseases
Liaoning University of Traditional Chinese Medicine(TCM)
0