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Bio-Inspired/-Functional Colloidal Core-Shell Polymeric-Based NanoSystems: Technology Promise in Tissue Engineering, Bioimaging and NanoMedicine

机译:生物启发/功能胶体核壳聚合物纳米系统:组织工程,生物成像和纳米医学中的技术承诺。

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Modern breakthroughs in the fields of proteomics and DNA micro-arrays have widened the horizons of nanotechnology for applications with peptides and nucleic acids. Hence, biomimetic interest in the study and formulation of nanoscaled bio-structures, -materials, -devices and -therapeutic agent delivery vehicles has been recently increasing. Many of the currently–investigated functionalized bio-nanosystems draw their inspiration from naturally-occurring phenomenon, prompting the integration of molecular signals and mimicking natural processes, at the cell, tissue and organ levels. Technologically, the ability to obtain spherical nanostructures exhibiting combinations of several properties that neither individual material possesses on its own renders colloidal core-shell architectured nanosystems particularly attractive. The three main developments presently foreseen in the nanomedicine sub-arena of nanobiotechnology are: sensorization (biosensors/biodetection), diagnosis (biomarkers/bioimaging) and drug, protein or gene delivery (systemic vs. localized/targeted controlled–release systems). Advances in bio-applications such as cell-labelling/cell membrane modelling, agent delivery and targeting, tissue engineering, organ regeneration, nanoncology and immunoassay strategies, along the major limitations and potential future and advances are highlighted in this review. Herein, is an attempt to address some of the most recent works focusing on bio-inspired and -functional polymeric-based core-shell nanoparticulate systems aimed for agent delivery. It is founded, mostly, on specialized research and review articles that have emerged during the last ten years.
机译:蛋白质组学和DNA微阵列领域的现代突破,拓宽了用于肽和核酸的纳米技术的视野。因此,近来对仿生的研究兴趣在纳米级生物结构,材料,设备和治疗剂输送工具的研究和配制中。目前正在研究的许多功能化生物纳米系统均从自然现象中汲取灵感,从而促进了分子信号的整合并在细胞,组织和器官水平上模仿了自然过程。从技术上讲,获得球形纳米结构表现出几种特性的组合的能力,这两种材料都没有单独拥有,这使胶体核-壳结构纳米系统特别有吸引力。当前在纳米生物技术的纳米医学子领域中预见的三个主要发展是:传感化(生物传感器/生物检测),诊断(生物标志物/生物成像)以及药物,蛋白质或基因的递送(系统性与局部/靶向/控释系统)。这篇综述重点介绍了生物应用的进展,例如细胞标记/细胞膜建模,试剂递送和靶向,组织工程,器官再生,纳米技术和免疫测定策略,以及主要的局限性和潜在的未来。在此,试图解决一些最近的工作,这些工作集中在以生物启发和功能化的,基于聚合物的核-壳纳米粒子系统为目标的药物递送。它主要建立在过去十年间出现的专门研究和评论文章上。

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