PO.ET02.07 · 实验与分子治疗

巨大戟烷型二萜类化合物用于BL2型三阴性乳腺癌的评价

Evaluation of ingenane diterpenoids for BL2 triple-negative breast cancer

海报缩略图:巨大戟烷型二萜类化合物用于BL2型三阴性乳腺癌的评价
编号 296 展板 14 时间 4/19 02:00–05:00 区域 Section 13 主讲 Pamela Duarte, BS
分会场 Innovative Therapeutic Modalities and Translational Platforms
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作者与单位 Authors & Affiliations

Pamela R. Duarte, April L. Risinger

Pharmacology, UTHSA, San Antonio, TX

摘要 Abstract

中文摘要
高表达雌激素受体(ER)、孕激素受体(PR)或人表皮生长因子受体2(HER2)的乳腺癌已从受体导向的靶向治疗中获得显著获益。相比之下,缺乏ER、PR和HER2表达的三阴性乳腺癌(TNBC)仍是一项重大的治疗挑战。TNBC中的basal-like 2(BL2,基底样2)分子亚型尤其令人担忧,因为其对标准化疗的病理缓解率极低。我们发现BL2型TNBC细胞系对激活蛋白激酶C(PKC)的二萜类化合物高度敏感,包括巨大戟醇3-当归酸酯(I3A)、tigilanol tiglate和芫花酯甲(yuanhuacine),其效力在纳摩尔至皮摩尔范围。值得注意的是,与其他TNBC细胞系或正常乳腺细胞相比,这些化合物对BL2细胞表现出超过千倍的选择性,提示它们对该适应证可能具有良好的治疗指数。初步证据表明BL2型TNBC细胞系的脆弱性由PKC介导,但尚不清楚哪种或哪些亚型及下游信号通路是亚型特异性细胞毒性所必需的。本项目采用斑马鱼荷瘤模型作为一种策略,以确定这些PKC激动剂在全身给药后的治疗指数,并比较靶向不同PKC亚型的化合物。通过将肿瘤反应与药理学特征分析相结合,本研究旨在明确PKC激活、化合物效力与亚型选择性疗效之间的关系,以确定最有前景的临床前开发候选药物。最终,本研究旨在利用PKC激活作为BL2型TNBC的靶向治疗策略,为这一致命的乳腺癌亚型拓展治疗选择。
查看英文原文 English abstract
Breast cancers with high expression of estrogen receptor (ER), progesterone receptor (PR), or Human Epidermal Growth Factor Receptor 2 (HER2) have benefited dramatically from receptor-directed targeted therapies. In contrast, triple-negative breast cancers (TNBCs), which lack ER, PR, and HER2 expression, remain a significant therapeutic challenge. The basal-like 2 (BL2) molecular subtype of TNBC is of particular concern due to its extremely low rate of pathological response to standard chemotherapy. We found that BL2 TNBC cell lines are highly sensitive to protein kinase C (PKC)-activating diterpenes, including ingenol 3-angelate (I3A), tigilanol tiglate, and yuanhuacine, with potency in the nanomolar to picomolar range. Strikingly, these compounds demonstrate over a thousand-fold selectivity against BL2 cells as compared to other TNBC lines or normal breast cells, suggesting they could have a favorable therapeutic index for this indication. Preliminary evidence indicates that the vulnerability of BL2 TNBC lines is mediated by PKC, although it is unclear which isoform(s) and downstream signaling pathways are required for subtype-specific cytotoxicity. This project uses zebrafish tumor-bearing models as a strategy to establish the therapeutic index of these PKC agonists following systemic administration and to compare compounds that target distinct PKC isoforms. By integrating tumor response with pharmacologic profiling, this work aims to define the relationships between PKC activation, compound potency, and subtype-selective efficacy to identify the most promising candidate for preclinical development. Ultimately, this research aims to leverage PKC activation as a targeted therapeutic strategy for BL2 TNBC, expanding treatment options for this lethal breast cancer subtype.
利益披露 Disclosure
P. R. Duarte, None.. A. L. Risinger, None.

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