牛高密度脂蛋白和双结构域模拟高密度脂蛋白肽抑制小鼠肿瘤发展。

Feng Su, Anantharamaiah Gm, Mayakonda N Palgunachari, C Roger White, Holly Stessman, Yanyuan Wu, Jay Vadgama, Richard Pietras, Dorothy Nguyen, Srinivasa T Reddy, Robin Farias-Eisner
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引用次数: 5

摘要

越来越多的文献支持高密度脂蛋白中载脂蛋白在治疗包括癌症在内的促炎性疾病中的作用。我们研究了牛高密度脂蛋白(bHDL)和三种双结构域肽,即AEM-28及其类似物AEM-28-2和HM-10/10,是否影响卵巢癌和结肠癌小鼠模型的肿瘤生长和发育。我们证明bHDL抑制小鼠结直肠癌细胞系ct26介导的肺肿瘤发展和小鼠卵巢癌细胞系id8介导的肿瘤负荷。我们还证明,虽然双结构域肽在不同程度上抑制小鼠和人类卵巢癌和结肠癌细胞系的细胞活力,但对正常人类结肠上皮细胞或NIH3T3小鼠成纤维细胞没有抑制作用。双结构域肽在BALB/c小鼠中皮下或在鼠粮中给予可降低CT26细胞介导的肿瘤负荷、肿瘤生长和肿瘤传播。接受bHDL和双结构域肽治疗的小鼠血浆溶血磷脂酸(LPA)水平显著降低,表明通过影响促炎脂质积累和/或合成来降低LPA水平可能是bHDL和双结构域肽抑制肿瘤发展的机制之一。我们的研究表明,基于高密度脂蛋白存在的载脂蛋白的治疗方法可能是治疗卵巢和结肠上皮腺癌的新药物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Bovine HDL and Dual Domain HDL-Mimetic Peptides Inhibit Tumor Development in Mice.

Bovine HDL and Dual Domain HDL-Mimetic Peptides Inhibit Tumor Development in Mice.

Bovine HDL and Dual Domain HDL-Mimetic Peptides Inhibit Tumor Development in Mice.

Bovine HDL and Dual Domain HDL-Mimetic Peptides Inhibit Tumor Development in Mice.

A growing body of literature supports the role of apolipoproteins present in HDL in the treatment of pro-inflammatory diseases including cancer. We examined whether bovine HDL (bHDL) and three dual-domain peptides, namely AEM-28 and its analog AEM-28-2, and HM-10/10, affect tumor growth and development in mouse models of ovarian and colon cancer. We demonstrate that bHDL inhibits mouse colorectal cancer cell line CT26-mediated lung tumor development, and mouse ovarian cancer cell line ID8-mediated tumor burden. We also demonstrate that, although to different degrees, dual-domain peptides inhibit cell viability of mouse and human ovarian and colon cancer cell lines, but not that of normal human colonic epithelial cells or NIH3T3 mouse fibroblasts. Dual-domain peptides administered subcutaneously or in a chow diet decrease CT26 cell-mediated tumor burden, tumor growth, and tumor dissemination in BALB/c mice. Plasma levels of lysophosphatidic acid (LPA) are significantly reduced in mice that received bHDL and the dual-domain peptides, suggesting that reduction by effecting accumulation and/or synthesis of pro-inflammatory lipids may be one of the mechanisms for the inhibition of tumor development by bHDL and the dual-domain peptides. Our studies suggest that therapeutics based on apolipoproteins present in HDL may be novel agents for the treatment of epithelial adenocarcinomas of the ovary and colon.

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