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Differential in vitro and in vivo anti-angiogenic activities of acetal and ketal andrographolide derivatives in HUVEC and zebrafish models

机译:差异在体外和体内抗血管生成活性的缩醛和乙醛肌酮衍生物在Huvec和斑马鱼模型中

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摘要

A series of acetal and ketal derivatives of andrographolide were synthesized and their anti-angiogenic activities were tested in vitro and in vivo using HUVEC and zebrafish models, respectively. These compounds exhibited better angiogenesis inhibitory activity in both models than the parent compound andrographolide ( 1 ). The compounds’ SARs differed for the HUVEC and zebrafish models, in that 14α-ketal 2 showed the best activity for in vivo anti-angiogenesis in zebrafish while 14α-acetals 4 , 5 and 6 had greater in vitro anti-angiogenic activity with HUVECs than the other compounds and 1 . The results suggested that methylene acetals 4 , 5 and 6 were possibly hydrolyzed into 3 or 1 in zebrafish and that 14α-ketal 2 probably did not fully act as a pro-drug of 3 or 1 in zebrafish, instead exerting the anti-angiogenic effect itself or being metabolized into an unknown more active form(s) than 3 and 1 to block in vivo angiogenesis in zebrafish. The underlying molecular mechanisms of compound 2 ’s action were explored and the results indicated that VEGF-stimulated angiogenesis was significantly inhibited by compound 2 via targeting the phosphorylation of VEGFR2 and VEGFR2-mediated downstream angiogenesis signaling pathways. Therefore, this report demonstrates that andrographolide derivative(s) can be developed into therapeutic agent(s) against excessive angiogenesis, including tumor angiogenesis, after further improvement of the potency and stability of this series of andrographolide derivatives.
机译:合成了Andropholide的一系列缩醛和缩酮衍生物,并使用Huvec和斑马鱼模型在体外和体内进行抗血管生成活性。这些化合物在两种型号中表现出比母体化合物的血管生成抑制活性,而不是母体化合物androhogholide(1)。化合物的SARS对于HUVEC和斑马鱼模型不同,因此14α-缩甲醛2显示出在斑马鱼的体内抗血管生成的最佳活性,而14α-缩醛4,5和6具有比HUVEC的体外抗血管生成活性更大其他化合物和1。结果表明,斑马鱼中的亚甲基缩醛4,5和6可能水解成3或1,并且14α-缩甲醛2可能在斑马鱼中没有充分充当3或1的药物,而是施加抗血管生成效果本身或被代谢成未知的更多活性形式,而不是3和1,以在斑马鱼中的体内血管生成中阻断。探索了化合物2作用的潜在分子机制,结果表明,化合物2通过靶向VEGFR2和VEGFR2介导的下游血管生成信号传导途径的磷酸化显着抑制VEGF刺激的血管生成。因此,该报告证明,在进一步改善这一系列的Andropholide衍生物的效力和稳定性之后,可以将Andrographolide衍生物含有过量血管生成的治疗剂,包括肿瘤血管生成,包括肿瘤血管生成。

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