LSRE-LCM - Livros e Capítulos de Livros
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- Anthocyanins, effects in mitochondria and metabolismPublication . Marques-da-Silva, Dorinda; Rodrigues, Joaquim Rui; Lagoa, RicardoAlterations in mitochondrial function, cellular redox signaling, and metabolism participate in the etiology and progression of different pathological conditions, such as diabetes, cancer, cardiovascular, and neurodegenerative diseases. Epidemiological, preclinical, and clinical studies indicate that anthocyanins afford therapeutic benefits for these pathologies. It is thus important to revise the effects of anthocyanins on mitochondria and metabolism that hold potential for the development of novel health protective methods. The studies available support the ability of certain anthocyanins to prevent damage to mitochondria and to sustain its function. Evidence is more compelling for cyanidin and delphinidin compounds, but promising data could also be found for malvidin, pelargonidin, and protocatechuic acid. Additionally, berry extracts also demonstrated positive outcomes in different models of neurodegeneration, endothelial dysfunction, myocardial damage, metabolic disorders, longevity, and cancer. At the molecular level, major anthocyanins can modulate the expression and activity of mitochondrial proteins, apoptotic and biogenesis factors, antioxidant defenses, inflammation, and the AMPK pathway. Noteworthy, anthocyanins could balance abnormalities in ROS production, respiration, and mitochondrial fragmentation in cells exposed to toxicants or oxidizing agents.
- Towards the Development of Delivery Systems of Bioactive Compounds With Eyes Set on PharmacokineticsPublication . Silva, João S.; Marques-da-Silva, Dorinda; Lagoa, RicardoDelivery systems carrying natural bioactive compounds for enhanced targeting and controlled release are capturing increasing attention. High loadings and sustained release are common design goals. However, in the case of compounds naturally present in human nutrition and physiology, further efforts are justified to optimize their bioactivity and promote clinical success. In this work, it is proposed a specific attention to the regulation of drug temporal presentation as important factor to obtain novel multifunctional delivery systems meeting higher therapeutic efficiencies. Case studies on the relation between drug release dynamics and biological responses are presented for some major delivery strategies and different bioactive molecules. Pharmacokinetic essential concepts and issues concerning the multi-target mode of action typical of the pharmacological properties of natural compounds are discussed in the perspective of improving the development of efficient drug formulations. Several classes of controlled release systems are considered through the chapter, and laboratory setups for testing films and particulate delivery systems are detailed, as well as the application of models for kinetic analysis. Descriptions are illustrated with experimental results obtained with caffeine and epicatechin in our laboratory. Future investigations will benefit from preclinical and clinical evaluation of the new formulations developed by emerging approaches and tools that are being suggested by diverse authors.
