MPM-1, an Anticancer agent, is a Marine Eusynstyelamides Mimic
2022-10-25
Autophagy is the natural and conservative degradation of cells. Specifically, it can remove unnecessary or dysfunctional components through lysosomal-dependent regulation mechanisms. Besides, it allows the orderly degradation and recycling of cellular components. It eliminates molecular and subcellular elements through lysosomal-mediated degradation. This includes nucleic acids, proteins, lipids, and organelles to promote homeostasis, differentiation, development, and survival. There are four forms of autophagy: macroautophagy, microautophagy, chaperone-mediated autophagy (CMA), and coprophagy. Moreover, among many molecular changes related to aging, autophagy has become a feature of aging in different species. Autophagy is a highly selective cell clearance pathway, which is related to maintaining cell and tissue homeostasis.
Furthermore, one of the important mechanisms of autophagy is the intracellular degradation pathway mediated by double-membrane vesicles called autophagy. Meanwhile, the regulation of autophagy plays a dual role in tumor inhibition and the promotion of many cancers. The decrease in autophagy is related to the infiltration of regulatory T cells. Nonetheless, regulatory T cells inhibit the immune system and reduce effective immune surveillance, thereby increasing the occurrence of tumors. Autophagy-dependent markers include BRAF change, KRAS mutation, and EGFRvIII mutation. Autophagy interacts with apoptosis to define the apoptosis threshold of tumor cells. Here, we will introduce a marine Eusynstyelamides mimic with potent anticancer activity, MPM-1.
Keywords
A375 | Anticancer | Autophagy | DAMPs | Eusynstyelamides | HSC-3 | Jurkat | MCF-7 | MPM-1 | Ramos



