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Active fraction of ground cherry (Physalis angulata L.) calyces attenuates azoxymethane dextran sulfate sodium‑induced colon carcinogenesis in mice

机译:磨碎的樱桃 (Physalis angulata L.) 花萼的活性部分减弱了嘧氧基甲烷葡聚糖硫酸盐钠诱导的小鼠结肠癌变

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摘要

Physalis angulata L., commonly known as wild tomato or ground cherry, is widely used in tropical and subtropical areas to treat health disorders including inflammation, hepatitis, dermatitis, cancer and diabetes. In Colombia, anti-cancer and anti-inflammatory activity are the most common ethnopharmacological applications of P. angulata calyces. P. angulata dichloromethane fraction (PADF) has significant anti-inflammatory activity. The present study assessed the pharmacological effect of PADF on colorectal cancer (CRC) using cancer and normal human cells and an azoxymethane (AOM)/dextran sulfate sodium (DSS) murine model. MTT and clonogenic assay, cell cycle and apoptosis analysis and mitochondrial membrane potential measurement were employed to evaluate in vitro activity of PADF. PADF selectively induced a cytotoxic effect against CRC cells via apoptosis and G2/M arrest. In the AOM/DSS model, treatment with PADF diminished tumor number and size, affected area and expression of proliferating cell nuclear antigen and promoted colon tissue repair. These effects might be related to the increased expression of p38 pro-apoptotic protein in addition to anti-inflammatory activity of PADF demonstrated by decreased levels of TNF-α, IL-6, and IL-1β. PADF may serve as a potential treatment for CRC. Further investigation is warranted to identify the bioactive components in PADF.
机译:Physalis angulata L.,俗称野生番茄或樱桃粉,广泛用于热带和亚热带地区,用于治疗健康疾病,包括炎症、肝炎、皮炎、癌症和糖尿病。在哥伦比亚,抗癌和抗炎活性是 P. angulata 花萼最常见的民族药理学应用。P. angulata 二氯甲烷组分 (PADF) 具有显着的抗炎活性。本研究使用癌症和正常人类细胞以及嘧基甲烷 (AOM)/葡聚糖硫酸钠 (DSS) 小鼠模型评估了 PADF 对结直肠癌 (CRC) 的药理作用。采用 MTT 和克隆形成测定、细胞周期和细胞凋亡分析以及线粒体膜电位测定来评价 PADF 的体外活性。PADF 通过细胞凋亡和 G2/M 阻滞选择性地诱导对 CRC 细胞的细胞毒作用。在 AOM/DSS 模型中,PADF 治疗减少了肿瘤数量和大小、受影响面积和增殖细胞核抗原的表达,并促进了结肠组织修复。这些影响可能与 p38 促凋亡蛋白表达的增加有关,此外,PADF 的抗炎活性由 TNF-α、IL-6 和 IL-1β 水平降低所证明。PADF 可能作为 CRC 的潜在治疗方法。需要进一步调查以确定 PADF 中的生物活性成分。

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