Kondiah Pariksha J, Choonara Yahya E, Kondiah Pierre P D, Marimuthu Thashree, Kumar Pradeep, du Toit Lisa C, Pillay Viness
Wits Advanced Drug Delivery Platform Research Unit, Department of Pharmacy and Pharmacology, School of Therapeutic Sciences, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, 7 York Road, Parktown 2193, South Africa.
Molecules. 2016 Nov 21;21(11):1580. doi: 10.3390/molecules21111580.
Biodegradable, stimuli-responsive polymers are essential platforms in the field of drug delivery and injectable biomaterials for application of bone tissue engineering. Various thermo-responsive hydrogels display water-based homogenous properties to encapsulate, manipulate and transfer its contents to the surrounding tissue, in the least invasive manner. The success of bioengineered injectable tissue modified delivery systems depends significantly on their chemical, physical and biological properties. Irrespective of shape and defect geometry, injectable therapy has an unparalleled advantage in which intricate therapy sites can be effortlessly targeted with minimally invasive procedures. Using material testing, it was found that properties of stimuli-responsive hydrogel systems enhance cellular responses and cell distribution at any site prior to the transitional phase leading to gelation. The substantially hydrated nature allows significant simulation of the extracellular matrix (ECM), due to its similar structural properties. Significant current research strategies have been identified and reported to date by various institutions, with particular attention to thermo-responsive hydrogel delivery systems, and their pertinent focus for bone tissue engineering. Research on future perspective studies which have been proposed for evaluation, have also been reported in this review, directing considerable attention to the modification of delivering natural and synthetic polymers, to improve their biocompatibility and mechanical properties.
可生物降解的、刺激响应性聚合物是药物递送和用于骨组织工程应用的可注射生物材料领域的重要平台。各种热响应性水凝胶呈现出水基均匀特性,以最少侵入性的方式封装、操控并将其内含物转移至周围组织。生物工程化可注射组织改良递送系统的成功很大程度上取决于其化学、物理和生物学特性。无论形状和缺损几何形状如何,可注射疗法都具有无与伦比的优势,即可以通过微创程序轻松靶向复杂的治疗部位。通过材料测试发现,刺激响应性水凝胶系统的特性在导致凝胶化的过渡阶段之前增强了细胞反应和细胞在任何部位的分布。由于其相似的结构特性,高度水合的性质允许对细胞外基质(ECM)进行显著模拟。迄今为止,各机构已确定并报道了大量当前的研究策略,特别关注热响应性水凝胶递送系统及其对骨组织工程的相关重点。本综述还报道了已提出用于评估的未来前瞻性研究,将大量注意力引向对天然和合成聚合物递送的改性,以改善其生物相容性和机械性能。