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代谢预激发作为氧化还原和线粒体治疗诊断学中的一种工具

Metabolic Priming as a Tool in Redox and Mitochondrial Theragnostics.

作者信息

Pinho Sónia A, Anjo Sandra I, Cunha-Oliveira Teresa

机构信息

CNC-Center for Neuroscience and Cell Biology, CIBB-Centre for Innovative Biomedicine and Biotechnology, University of Coimbra, 3060-197 Cantanhede, Portugal.

PDBEB-PhD Programme in Experimental Biology and Biomedicine, Institute of Interdisciplinary Research (IIIUC), University of Coimbra, 3004-504 Coimbra, Portugal.

出版信息

Antioxidants (Basel). 2023 May 10;12(5):1072. doi: 10.3390/antiox12051072.

Abstract

Theragnostics is a promising approach that integrates diagnostics and therapeutics into a single personalized strategy. To conduct effective theragnostic studies, it is essential to create an in vitro environment that accurately reflects the in vivo conditions. In this review, we discuss the importance of redox homeostasis and mitochondrial function in the context of personalized theragnostic approaches. Cells have several ways to respond to metabolic stress, including changes in protein localization, density, and degradation, which can promote cell survival. However, disruption of redox homeostasis can lead to oxidative stress and cellular damage, which are implicated in various diseases. Models of oxidative stress and mitochondrial dysfunction should be developed in metabolically conditioned cells to explore the underlying mechanisms of diseases and develop new therapies. By choosing an appropriate cellular model, adjusting cell culture conditions and validating the cellular model, it is possible to identify the most promising therapeutic options and tailor treatments to individual patients. Overall, we highlight the importance of precise and individualized approaches in theragnostics and the need to develop accurate in vitro models that reflect the in vivo conditions.

摘要

治疗诊断学是一种很有前景的方法,它将诊断和治疗整合为一种个性化策略。为了开展有效的治疗诊断学研究,创建一个能准确反映体内状况的体外环境至关重要。在这篇综述中,我们在个性化治疗诊断方法的背景下讨论氧化还原稳态和线粒体功能的重要性。细胞有多种应对代谢应激的方式,包括蛋白质定位、密度和降解的变化,这些变化可促进细胞存活。然而,氧化还原稳态的破坏会导致氧化应激和细胞损伤,而这与多种疾病有关。应在代谢条件化的细胞中建立氧化应激和线粒体功能障碍模型,以探索疾病的潜在机制并开发新疗法。通过选择合适的细胞模型、调整细胞培养条件并验证细胞模型,有可能确定最有前景的治疗方案并为个体患者量身定制治疗方法。总体而言,我们强调了治疗诊断学中精确和个性化方法的重要性,以及开发能反映体内状况的准确体外模型的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb98/10215850/9545cdb30e04/antioxidants-12-01072-g001.jpg

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