Development of improved SRC-3 inhibitors as breast cancer therapeutic agents

转移 癌症研究 乳腺癌 上皮-间质转换 血管生成 癌症 肿瘤进展 癌细胞 细胞生长 转移性乳腺癌 转录因子 化学 生物 医学 内科学 基因 生物化学
作者
Li Qin,Jianwei Chen,Dong Lu,Prashi Jain,Yang Yu,David L. Cardenas,Xiaohui Peng,Xiaobin Yu,Jianming Xu,Jin Wang,Bert W. O’Malley,David M. Lonard
出处
期刊:Endocrine-related Cancer [Bioscientifica]
卷期号:28 (10): 657-670 被引量:16
标识
DOI:10.1530/erc-20-0402
摘要

Steroid receptor coactivators (SRCs) possess specific and distinct oncogenic roles in the initiation of cancer and in its progression to a more aggressive disease. These coactivators interact with nuclear receptors and other transcription factors to boost transcription of multiple genes, which potentiate cancer cell proliferation, migration, invasion, tumor angiogenesis and epithelial–mesenchymal transition (EMT). Targeting SRCs using small molecule inhibitors (SMIs) is a promising approach to control cancer progression and metastasis. By high-throughput screening analysis, we recently identified SI-2 as a potent SRC SMI. To develop therapeutic agents, SI-10 and SI-12, the SI-2 analogs are synthesized that incorporate the addition of F atoms to the SI-2 chemical structure. As a result, these analogs exhibit a significantly prolonged plasma half-life, minimal toxicity and improved hERG activity. Biological functional analysis showed that SI-10 and SI-12 treatment (5–50 nM) can significantly inhibit viability, migration and invasion of breast cancer cells in vitro and repress the growth of breast cancer PDX organoids. Treatment of mice with 10 mg/kg/day of either SI-10 or SI-12 was sufficient to repress the growth of xenograft tumors derived from MDA-MB-231 and LM2 cells. Furthermore, in spontaneous and experimental metastasis mouse models developed from MDA-MB-231 and LM2 cells, respectively, SI-10 and SI-12 effectively inhibited the progression of breast cancer lung metastasis. These results demonstrate that SI-10 and SI-12 are promising therapeutic agents and are specifically effective in blocking tumor metastasis, a key point in tumor progression to a more lethal state that results in patient mortality in the majority of cases.

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