BIOFORGE (Group for Advanced Materials and Nanobiotechnology), CIBER-BBN, University of Valladolid, 47011 Valladolid, Spain.
Curr Drug Targets. 2018 Feb 19;19(4):360-379. doi: 10.2174/1389450117666160201114617.
Drug delivery systems that are able to control the release of bioactive molecules and designed to carry drugs to target sites are of particular interest for tissue therapy. Moreover, systems comprising materials that can respond to environmental stimuli and promote self-assembly and higher order supramolecular organization are especially useful in the biomedical field. Objetive: This review focuses on biomaterials suitable for this purpose and that include elastin-like recombinamers (ELRs), a class of proteinaceous polymers bioinspired by natural elastin, designed using recombinant technologies. The self-assembly and thermoresponsive behaviour of these systems, along with their biodegradability, biocompatibility and well-defined composition as a result of their tailormade design, make them particularly attractive for controlled drug delivery.
ELR-based delivery systems that allow targeted delivery are reviewed, especially ELR-drug recombinant fusion constructs, ELR-drug systems chemically bioconjugated in their monomeric and soluble forms, and drug encapsulation by nanoparticle-forming ELRs. Subsequently, the review focuses on those drug carriers in which smart release is triggered by pH or temperature with a particular focus on cancer treatments. Systems for controlled drug release based on depots and hydrogels that act as both a support and reservoir in which drugs can be stored will be described, and their applications in drug delivery discussed. Finally, smart drug-delivery systems not based on ELRs, including those comprising proteins, synthetic polymers and non-polymeric systems, will also be briefly discussed.
Several different constructions based on ELRs are potential candidates for controlled drug delivery to be applied in advanced biomedical treatments.
能够控制生物活性分子释放并设计用于将药物递送到靶部位的药物传递系统对于组织治疗特别感兴趣。此外,由能够响应环境刺激并促进自组装和更高阶超分子组织的材料组成的系统在生物医学领域特别有用。目的:本文综述了适用于该目的的生物材料,包括弹性蛋白样重组体(ELR),这是一类受天然弹性蛋白启发的蛋白质聚合物,采用重组技术设计。这些系统的自组装和温敏行为,以及它们的可生物降解性、生物相容性和由于其定制设计而具有明确组成,使它们特别适合用于控制药物释放。结果:本文综述了允许靶向递送的基于 ELR 的递药系统,特别是 ELR-药物重组融合构建体、以单体和可溶性形式化学生物偶联的 ELR-药物系统,以及由形成纳米颗粒的 ELR 包封的药物。随后,本文重点介绍了那些通过 pH 值或温度触发智能释放的药物载体,特别关注癌症治疗。本文还将描述基于储库和水凝胶的控释药物释放系统,这些系统既可以作为药物储存的支撑物,也可以作为药物储存的储库,并讨论它们在药物传递中的应用。最后,还将简要讨论不基于 ELR 的智能药物传递系统,包括包含蛋白质、合成聚合物和非聚合物系统的药物传递系统。结论:几种基于 ELR 的不同构建体是用于先进生物医学治疗的控释药物的潜在候选物。