自噬
TRPV1型
体内
细胞凋亡
体外
化学
生物传感器
细胞生物学
生物
生物化学
生物技术
受体
瞬时受体电位通道
作者
Lijuan Ma,Boyi Li,Jinchen Ma,Chunyuan Wu,Nan Li,Kailin Zhou,Yun Yan,Mingshuang Li,Xiaoyan Hu,Hao Yan,Qi Wang,Yanfei Zheng,Zhisheng Wu
标识
DOI:10.1016/j.apsb.2023.01.004
摘要
Oligoasthenospermia is the primary cause of infertility. However, there are still enormous challenges in the screening of critical candidates and targets of oligoasthenospermia owing to its complex mechanism. In this study, stem cell factor (SCF), c-kit, and transient receptor potential vanilloid 1 (TRPV1) biosensors were successfully established and applied to studying apoptosis and autophagy mechanisms. Interestingly, the detection limit reached 2.787 × 10−15 g/L, and the quantitative limit reached 1.0 × 10−13 g/L. Furthermore, biosensors were used to investigate the interplay between autophagy and apoptosis. Schisandrin A is an excellent candidate to form a system with c-kit similar to SCF/c-kit with a detection constant (KD) of 5.701 × 10−11 mol/L, whereas it had no affinity for SCF. In addition, it also inhibited autophagy in oligoasthenospermia through antagonizing TRPV1 with a KD of up to 4.181 × 10−10 mol/L. In addition, in vivo and in vitro experiments were highly consistent with the biosensor. In summary, high-potency schisandrin A and two potential targets were identified, through which schisandrin A could reverse the apoptosis caused by excessive autophagy during oligoasthenospermia. Our study provides promising insights into the discovery of effective compounds and potential targets via a well-established in vitro-in vivo strategy.
科研通智能强力驱动
Strongly Powered by AbleSci AI