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Nanoparticles and Controlled Delivery for Bioactive Compounds: Outlining Challenges for New Smart-Foods for Health

机译:纳米颗粒和生物活性化合物的受控递送:概述新的智能食品对健康的挑战

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摘要

Nanotechnology is a field of research that has been stressed as a very valuable approach for the prevention and treatment of different human health disorders. This has been stressed as a delivery system for the therapeutic fight against an array of pathophysiological situations. Actually, industry has applied this technology in the search for new oral delivery alternatives obtained upon the modification of the solubility properties of bioactive compounds. Significant works have been made in the last years for testing the input that nanomaterials and nanoparticles provide for an array of pathophysiological situations. In this frame, this review addresses general questions concerning the extent to which nanoparticles offer alternatives that improve therapeutic value, while avoid toxicity, by releasing bioactive compounds specifically to target tissues affected by specific chemical and pathophysiological settings. In this regard, to date, the contribution of nanoparticles to protect encapsulated bioactive compounds from degradation as a result of gastrointestinal digestion and cellular metabolism, to enable their release in a controlled manner, enhancing biodistribution of bioactive compounds, and to allow them to target those tissues affected by biological disturbances has been demonstrated.
机译:纳米技术是一个研究领域,已被强调为预防和治疗各种人类健康疾病的非常有价值的方法。作为用于对抗一系列病理生理状况的治疗性战斗的传递系统,这一点已得到强调。实际上,工业上已经将该技术用于寻找通过改变生物活性化合物的溶解性而获得的新的口服递送替代品。过去几年中,为测试纳米材料和纳米颗粒为一系列病理生理情况提供的投入,已经做出了重要的工作。在此框架中,本综述解决了有关以下问题的一般性问题:纳米颗粒通过释放生物活性化合物专门针对受特定化学和病理生理环境影响的靶组织,从而在提高毒性的同时提高治疗价值,同时避免毒性。在这方面,迄今为止,纳米颗粒的作用是保护封装的生物活性化合物免受胃肠道消化和细胞代谢作用的降解,使其能够以受控方式释放,增强生物活性化合物的生物分布,并使它们能够靶向那些已经证明了受生物干扰影响的组织。

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