TY - JOUR
T1 - 221S-1a inhibits endothelial proliferation in pathological angiogenesis through ERK/c-Myc signaling
AU - Yao, Xinye
AU - Xue, Yanbo
AU - Ma, Qiang
AU - Bai, Yajun
AU - Jia, Pu
AU - Zhang, Yiman
AU - Lai, Baochang
AU - He, Shuting
AU - Ma, Qiong
AU - Zhang, Junbo
AU - Tian, Hongyan
AU - Yin, Qian
AU - Zheng, Xiaohui
AU - Zheng, Xiaopu
N1 - Publisher Copyright:
© 2023 The Authors
PY - 2023/8/5
Y1 - 2023/8/5
N2 - Pathological angiogenesis plays a major role in many disease processes, including cancer and diabetic retinopathy. Antiangiogenic therapy is a potential management for pathologic angiogenesis. The novel synthetic compound 221S-1a, derived from captopril, tanshinol and borneol, may have antiangiogenic properties. On the basis of MS, NMR and HPLC analysis, the structure of 221S-1a was identified. The cellular uptake and metabolism of this compound was also observed. Next, the antiangiogenic properties of 221S-1a were evaluated in tumor-xenograft and OIR models in vivo. The inhibitory properties of 221S-1a on endothelial cell proliferation, migration, tube formation and sprouting were detected in vitro. Furthermore, 221S-1a induced G1/S phase arrest was detected by PI staining flow cytometry analysis and Cyclin D, Cyclin E expression. 221S-1a inhibited ERK1/2 activation and nuclear translocation, in addition to downregulation of c-Myc, a transcription factor that regulates cell cycle progression. Molecular docking indicated the interaction of 221S-1a with the ATP-binding site of ERK2, leading to the inhibition of ERK2 phosphorylation and a concomitant inhibition of ERK1 phosphorylation. In conclusion, 221S-1a inhibited the G1/S phase transition by blocking the ERK1/2/c-Myc pathway to reduce tumor and OIR retinal angiogenesis. These novel findings suggest that 221S-1a is a potential pharmacologic candidate for treating pathological angiogenesis.
AB - Pathological angiogenesis plays a major role in many disease processes, including cancer and diabetic retinopathy. Antiangiogenic therapy is a potential management for pathologic angiogenesis. The novel synthetic compound 221S-1a, derived from captopril, tanshinol and borneol, may have antiangiogenic properties. On the basis of MS, NMR and HPLC analysis, the structure of 221S-1a was identified. The cellular uptake and metabolism of this compound was also observed. Next, the antiangiogenic properties of 221S-1a were evaluated in tumor-xenograft and OIR models in vivo. The inhibitory properties of 221S-1a on endothelial cell proliferation, migration, tube formation and sprouting were detected in vitro. Furthermore, 221S-1a induced G1/S phase arrest was detected by PI staining flow cytometry analysis and Cyclin D, Cyclin E expression. 221S-1a inhibited ERK1/2 activation and nuclear translocation, in addition to downregulation of c-Myc, a transcription factor that regulates cell cycle progression. Molecular docking indicated the interaction of 221S-1a with the ATP-binding site of ERK2, leading to the inhibition of ERK2 phosphorylation and a concomitant inhibition of ERK1 phosphorylation. In conclusion, 221S-1a inhibited the G1/S phase transition by blocking the ERK1/2/c-Myc pathway to reduce tumor and OIR retinal angiogenesis. These novel findings suggest that 221S-1a is a potential pharmacologic candidate for treating pathological angiogenesis.
KW - 221S-1a
KW - Cell cycle arrest
KW - ERK1/2
KW - Pathological angiogenesis
KW - c-Myc
UR - https://www.scopus.com/pages/publications/85161029443
U2 - 10.1016/j.ejphar.2023.175805
DO - 10.1016/j.ejphar.2023.175805
M3 - 文章
C2 - 37247812
AN - SCOPUS:85161029443
SN - 0014-2999
VL - 952
JO - European Journal of Pharmacology
JF - European Journal of Pharmacology
M1 - 175805
ER -