Ciofani Gianni, Genchi Giada Graziana, Mattoli Virgilio, Mazzolai Barbara, Bandiera Antonella
Istituto Italiano di Tecnologia, Center for Micro-BioRobotics @SSSA , Viale Rinaldo Piaggio 34, 56025 Pontedera (Pisa) , Italy +39050883019 ; +39050883497 ;
Expert Opin Drug Deliv. 2014 Oct;11(10):1507-12. doi: 10.1517/17425247.2014.926885. Epub 2014 Jun 7.
Mimicking the structure of natural proteins by recombinant biopolymers is a useful approach for the development of novel bioactive biomaterials with desired properties, that help elucidate molecular interactions in biological systems and elaborate strategies for tissue engineering and drug delivery purposes. Structurally based on elastin repeated motifs, recombinant human elastin-like polypeptides (HELPs) represent excellent examples of bio-inspired polymers proposed for tissue engineering, and recently exploited also for drug delivery applications. This Editorial reports on the latest advances in the research on HELP biopolymers for drug delivery and targeting applications. The main findings will be summarized with emphasis on the 'smart' properties of HELPs, which render this class of biopolymers particularly interesting in the whole biomedicine field. Considerations about further improvements of the current HELP-based systems will be provided, and a demonstration of the huge potential of HELPs in becoming leading material for drug delivery will be attempted.
通过重组生物聚合物模拟天然蛋白质的结构,是开发具有所需特性的新型生物活性生物材料的一种有用方法,有助于阐明生物系统中的分子相互作用,并为组织工程和药物递送目的制定详细策略。重组人弹性蛋白样多肽(HELPs)在结构上基于弹性蛋白重复基序,是为组织工程提出的受生物启发的聚合物的优秀实例,最近也被用于药物递送应用。这篇社论报道了用于药物递送和靶向应用的HELP生物聚合物研究的最新进展。将总结主要发现,重点强调HELPs的“智能”特性,这些特性使这类生物聚合物在整个生物医学领域特别受关注。将提供关于当前基于HELP的系统进一步改进的思考,并尝试证明HELPs在成为药物递送领先材料方面的巨大潜力。