首页> 外文OA文献 >Biodegradable Synthetic Polymers: Raw-materials And Production Methods Of Microparticles For Drug Delivery And Controlled Release [polímeros Sintéticos Biodegradáveis: Matérias-primas E Métodos De Produção De Micropartículas Para Uso Em Drug Delivery E Liberação Controlada]
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Biodegradable Synthetic Polymers: Raw-materials And Production Methods Of Microparticles For Drug Delivery And Controlled Release [polímeros Sintéticos Biodegradáveis: Matérias-primas E Métodos De Produção De Micropartículas Para Uso Em Drug Delivery E Liberação Controlada]

机译:可生物降解的合成聚合物:用于药物输送和控释的微粒的原料和生产方法[可生物降解的合成聚合物:用于药物输送和控释的微粒的原料和生产方法]

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摘要

Microparticles produced from synthetic polymers have been widely used in the pharmaceutical field for encapsulation of drugs. These microparticles show several advantages such as drug protection, mucoadhesion, gastro-resistance, improved bioavailability and increased patient's compliance. In addition, it is possible to use lower amount of drug to achieve therapeutic efficiency with reduced local/ systemic adverse side effects and low toxicity. Synthetic polymers used for the production of microparticles are classified as biodegradable or non-biodegradable, being the former more popular since these do not need to be removed after drug release. Production of polymeric microparticles can be used for encapsulation of hydrophilic and hydrophobic drugs, by emulsification following solvent extraction/ evaporation, coacervation, methods that are revised in this paper, including advantages, disadvantages and viability of each methodology. Selection of methodology and synthetic polymer depends of the therapeutic purpose, as well as simplicity, reproducibility and possibility to scale up.
机译:由合成聚合物生产的微粒已广泛用于制药领域的药物封装中。这些微粒显示出多种优势,例如药物保护,粘膜粘附,抗胃粘膜,改善的生物利用度和提高患者的依从性。另外,可以使用较少量的药物来达到治疗效果,同时减少局部/全身不良副作用并降低毒性。用于生产微粒的合成聚合物被分类为可生物降解的或不可生物降解的,前者更受欢迎,因为在药物释放后不需要将它们除去。聚合物微粒的生产可用于亲水性和疏水性药物的封装,方法是在溶剂萃取/蒸发,凝聚后进行乳化,本文对方法进行了修订,包括每种方法的优缺点和可行性。方法和合成聚合物的选择取决于治疗目的,以及简便性,可重复性和扩大规模的可能性。

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