Peña-Corona Sheila I, Hernández-Parra Héctor, Bernal-Chávez Sergio A, Mendoza-Muñoz Néstor, Romero-Montero Alejandra, Del Prado-Audelo María Luisa, Cortés Hernán, Ateşşahin Dilek Arslan, Habtemariam Solomon, Almarhoon Zainab M, Abdull Razis Ahmad Faizal, Modu Babagana, Sharifi-Rad Javad, Leyva-Gómez Gerardo
Departamento de Farmacia, Facultad de Química, Universidad Nacional Autónoma de México, Ciudad de México, Mexico.
Departamento de Farmacología, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, Ciudad de México, Mexico.
Front Pharmacol. 2023 Jun 6;14:1206334. doi: 10.3389/fphar.2023.1206334. eCollection 2023.
Being the first or second cause of death worldwide, cancer represents the most significant clinical, social, and financial burden of any human illness. Despite recent progresses in cancer diagnosis and management, traditional cancer chemotherapies have shown several adverse side effects and loss of potency due to increased resistance. As a result, one of the current approaches is on with the search of bioactive anticancer compounds from natural sources. Neopeltolide is a marine-derived macrolide isolated from deep-water sponges collected off Jamaica's north coast. Its mechanism of action is still under research but represents a potentially promising novel drug for cancer therapy. In this review, we first illustrate the general structural characterization of neopeltolide, the semi-synthetic derivatives, and current medical applications. In addition, we reviewed its anticancer properties, primarily based on studies, and the possible clinical trials. Finally, we summarize the recent progress in the mechanism of antitumor action of neopeltolide. According to the information presented, we identified two principal challenges in the research, i) the effective dose which acts neopeltolide as an anticancer compound, and ii) to unequivocally establish the mechanism of action by which the compound exerts its antiproliferative effect.
癌症作为全球第一或第二大致死原因,是所有人类疾病中最重大的临床、社会和经济负担。尽管近期在癌症诊断和治疗方面取得了进展,但传统的癌症化疗已显示出多种不良副作用,且由于耐药性增加导致药效丧失。因此,当前的方法之一是寻找来自天然来源的生物活性抗癌化合物。新佩托利德是一种从牙买加北海岸采集的深水海绵中分离出的海洋大环内酯类化合物。其作用机制仍在研究中,但它是一种潜在的有前景的新型癌症治疗药物。在本综述中,我们首先阐述新佩托利德、半合成衍生物的一般结构特征以及当前的医学应用。此外,我们主要基于研究回顾了其抗癌特性以及可能的临床试验。最后,我们总结了新佩托利德抗肿瘤作用机制的最新进展。根据所提供的信息,我们确定了该研究中的两个主要挑战,一是作为抗癌化合物起作用的新佩托利德的有效剂量,二是明确确定该化合物发挥其抗增殖作用的作用机制。