PO.TB03.01 · 肿瘤生物学
评估新型药用化合物对肝癌的治疗效果
Evaluation of novel medicinal compounds for therapeutic efficacy against liver cancer
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
肝细胞癌(HCC)是最常见的肝癌类型,占病例的90%以上,仍是一个重大的全球健康问题。早期HCC可通过肝切除术或肝移植治疗,但晚期疾病由于治疗抵抗和广泛的耐药而预后不良。Sorafenib是晚期HCC的一线酪氨酸激酶抑制剂,仅在总生存期上带来适度获益,突显了对新治疗方法的迫切需求。这一需求在里奥格兰德河谷(RGV)尤为迫切,由于肥胖、糖尿病、代谢功能障碍相关脂肪性肝病(MASLD)、肝炎感染的高发率以及有限的医疗可及性,该地区的肝癌发病率和死亡率均高于全国平均水平。为解决这些区域性和全球性差异,本研究评估了四种具有药用优势的分子:1. DB5 OTFE,2. DBMG-5,3. DBNJ-1,以及 4. DB-3-OCAS 的潜在抗癌作用。在这四种化合物中,1号和4号是核心带有beta-内酰胺部分的天然产物模拟物,通过多步骤程序合成。2号化合物是大环稠合的gamma-内酯,3号是从植物中分离的五环三萜。人类HCC细胞系SK-HEP1、Hep G2、C3A和Huh7将用每种化合物的对数稀释液(10 mM DMSO储液)处理,并使用MTT活力实验评估以测定IC₅₀值。相差显微镜将用于观察形态变化并确认细胞活力。我们假设这些天然化合物将对肝癌细胞表现出剂量依赖性细胞毒性,且至少有一种与Sorafenib相比具有显著更低的IC₅₀值。预期结果包括汇合度降低、细胞形态改变,以及鉴定出具有强杀细胞活性的先导化合物。最有效的化合物随后将进行其功能团的结构优化,然后重新对HCC细胞系进行评估并与Sorafenib比较以评估其治疗潜力。长期目标包括开展机制研究,并可能推进至体内模型。这项研究支持开发具有本地相关性的疗法,旨在减少RGV的肝癌差异,并为寻找可及的、基于天然产物的HCC治疗方法这一更广泛探索作出贡献。
查看英文原文 English abstract
Hepatocellular carcinoma (HCC), the most common type of liver cancer, makes up over 90% of cases and remains a significant global health issue. Early-stage HCC can be treated with hepatectomy or liver transplant, but advanced disease has a poor outlook due to treatment resistance and widespread drug resistance. Sorafenib, the first-line tyrosine kinase inhibitor for advanced HCC, provides only modest gains in overall survival, highlighting the urgent need for new treatments. This need is especially urgent in the Rio Grande Valley (RGV), where liver cancer rates and mortality are higher than the national average due to high rates of obesity, diabetes, metabolic dysfunction-associated steatotic liver disease (MASLD), hepatitis infections, and limited healthcare access. To address these regional and global disparities, this study evaluates four medicinally privileged molecules: 1. DB5 OTFE, 2. DBMG-5, 3. DBNJ-1, and 4. DB-3-OCAS, for their potential anti-cancer effects. Out of these four compounds, 1 and #4 are natural product mimics with beta-lactam moiety at the core, synthesized by a multi-step procedure. Compound#2 is a macrocycle-fused gamma-lactone and #3 is a pentacyclic triterpene, isolated from plants. Human HCC cell lines SK-HEP1, Hep G2, C3A, and Huh7 will be treated with logarithmic dilutions of each compound (10 mM DMSO stocks) and assessed using the MTT viability assay to determine IC₅₀ values. Phase-contrast microscopy will be used to observe morphological changes and confirm cell viability. We hypothesize that these natural compounds will exhibit dose-dependent cytotoxicity against liver cancer cells and that at least one will have significantly lower IC₅₀ values compared to Sorafenib. Expected outcomes include decreased confluency, alterations in cell morphology, and the identification of a lead compound with strong cell-killing activity. The most effective compound will then undergo structural optimization of its functional groups, followed by re-evaluation against HCC cell lines and comparison with Sorafenib to assess its therapeutic potential. Long-term goals include conducting mechanistic studies and potentially progressing to in vivo models. This research supports developing locally relevant therapies aimed at reducing liver cancer disparities in the RGV and contributes to the broader search for accessible, natural-product-based treatments for HCC.
利益披露 Disclosure
A. M. Tripathi, None..
V. Nagati, None..
Y. AbuchardAnaya, None..
K. Renteria, None..
D. Soto, None..
M. Salazar, None..
S. C. Chauhan, None..
D. Bandyopadhyay, None.