Patel Ankit, Rasheed Aliyah, Reilly Isiah, Pareek Zil, Hansen Mattia, Haque Zayn, Simon-Fajardo Daniela, Davies Chloe, Tummala Akash, Reinhardt Karlyn, Bustabad Alexandria, Shaw Maxwell, Robins Jasmine, Vera Gomez Karolaent, Suphakorn Thitisuda, Camacho Gemelgo Mariana, Law Ashley, Lin Kristina, Hospedales Elizabeth, Haley Harrison, Perez Martinez Jean Pierre, Khan Saifullah, DeCanio Jessica, Padgett Malcolm, Abramov Artem, Nanjundan Meera
Department of Cell Biology, Microbiology and Molecular Biology, University of South Florida, 4202 East Fowler Avenue, Tampa, FL 33620, USA.
Pharmaceuticals (Basel). 2022 Nov 10;15(11):1380. doi: 10.3390/ph15111380.
One promising frontier within the field of Medical Botany is the study of the bioactivity of plant metabolites on human health. Although plant metabolites are metabolic byproducts that commonly regulate ecological interactions and biochemical processes in plant species, such metabolites also elicit profound effects on the cellular processes of human and other mammalian cells. In this regard, due to their potential as therapeutic agents for a variety of human diseases and induction of toxic cellular responses, further research advances are direly needed to fully understand the molecular mechanisms induced by these agents. Herein, we focus our investigation on metabolites from the and plant families, for which several plant species are found within the state of Florida in Hillsborough County. Specifically, we compare the molecular mechanisms by which metabolites and/or plant extracts from these plant families modulate the cytoskeleton, protein trafficking, and cell signaling to mediate functional outcomes, as well as a discussion of current gaps in knowledge. Our efforts to lay the molecular groundwork in this broad manner hold promise in supporting future research efforts in pharmacology and drug discovery.
医学植物学领域一个有前景的前沿方向是研究植物代谢产物对人类健康的生物活性。尽管植物代谢产物是通常调节植物物种生态相互作用和生化过程的代谢副产物,但这些代谢产物也会对人类和其他哺乳动物细胞的细胞过程产生深远影响。在这方面,由于它们作为多种人类疾病治疗剂的潜力以及诱导细胞毒性反应,迫切需要进一步的研究进展来全面了解这些物质诱导的分子机制。在此,我们将研究重点放在来自[具体植物科1]和[具体植物科2]植物家族的代谢产物上,在希尔斯伯勒县的佛罗里达州境内发现了这两个植物家族的几种植物物种。具体而言,我们比较了这些植物家族的代谢产物和/或植物提取物调节细胞骨架、蛋白质运输和细胞信号传导以介导功能结果的分子机制,并讨论了当前知识上的空白。我们以这种广泛方式奠定分子基础的努力有望为未来的药理学和药物发现研究工作提供支持。