Department of Pharmaceutics and Pharmaceutical Technology, Faculty of Pharmacy, Universitas Padjadjaran, Sumedang 45363, Indonesia.
School of Health Sciences, Universiti Sains Malaysia, Kubang Kerian 16150, Kelantan, Malaysia.
Molecules. 2021 Aug 24;26(17):5119. doi: 10.3390/molecules26175119.
α-Mangostin (AMG) is a potent anticancer xanthone that was discovered in mangosteen ( Linn.). AMG possesses the highest opportunity for chemopreventive and chemotherapeutic therapy. AMG inhibits every step in the process of carcinogenesis. AMG suppressed multiple breast cancer (BC) cell proliferation and apoptosis by decreasing the creation of cancerous compounds. Accumulating BC abnormalities and their associated molecular signaling pathways promotes novel treatment strategies. Chemotherapy is a commonly used treatment; due to the possibility of unpleasant side effects and multidrug resistance, there has been substantial progress in searching for alternative solutions, including the use of plant-derived natural chemicals. Due to the limitations of conventional cancer therapy, nanotechnology provides hope for effective and efficient cancer diagnosis and treatment. Nanotechnology enables the delivery of nanoparticles and increased solubility of drugs and drug targeting, resulting in increased cytotoxicity and cell death during BC treatment. This review summarizes the progress and development of AMG's cytotoxicity and the mechanism of death BC cells. The combination of natural medicine and nanotechnology into a synergistic capital will provide various benefits. This information will aid in the development of AMG nanoparticle preparations and may open up new avenues for discovering an effective BC treatment.
α-倒捻子素(AMG)是一种有效的抗癌呫吨酮,在山竹果(Linn.)中被发现。AMG 具有最高的化学预防和化学治疗机会。AMG 抑制了致癌过程的每一个步骤。AMG 通过减少致癌化合物的产生,抑制多种乳腺癌(BC)细胞的增殖和凋亡。BC 异常的积累及其相关的分子信号通路促进了新的治疗策略。化疗是一种常用的治疗方法;由于可能出现不良反应和多药耐药性,人们一直在寻找替代解决方案方面取得了实质性进展,包括使用植物源性天然化学品。由于传统癌症治疗的局限性,纳米技术为有效和高效的癌症诊断和治疗提供了希望。纳米技术使纳米粒子的传递和药物的溶解度增加,以及药物靶向成为可能,从而在 BC 治疗过程中增加了细胞毒性和细胞死亡。本综述总结了 AMG 对 BC 细胞的细胞毒性和死亡机制的研究进展和发展。将天然药物和纳米技术结合成协同资本将带来多种好处。这些信息将有助于开发 AMG 纳米粒子制剂,并可能为发现有效的 BC 治疗方法开辟新途径。