用于持续释放生长因子的纳米金刚石基可注射水凝胶:制备、表征及体外分析

Nanodiamond-based injectable hydrogel for sustained growth factor release: Preparation, characterization and in vitro analysis.

作者信息

Pacelli Settimio, Acosta Francisca, Chakravarti Aparna R, Samanta Saheli G, Whitlow Jonathan, Modaresi Saman, Ahmed Rafeeq P H, Rajasingh Johnson, Paul Arghya

机构信息

BioIntel Research Laboratory, Department of Chemical and Petroleum Engineering, School of Engineering, University of Kansas, Lawrence, KS, United States.

Department of Internal Medicine, Cardiovascular Research Institute, University of Kansas Medical Center, Kansas City, KS, United States.

出版信息

Acta Biomater. 2017 Aug;58:479-491. doi: 10.1016/j.actbio.2017.05.026. Epub 2017 May 19.

Abstract

UNLABELLED

Nanodiamonds (NDs) represent an emerging class of carbon nanomaterials that possess favorable physical and chemical properties to be used as multifunctional carriers for a variety of bioactive molecules. Here we report the synthesis and characterization of a new injectable ND-based nanocomposite hydrogel which facilitates a controlled release of therapeutic molecules for regenerative applications. In particular, we have formulated a thermosensitive hydrogel using gelatin, chitosan and NDs that provides a sustained release of exogenous human vascular endothelial growth factor (VEGF) for wound healing applications. Addition of NDs improved the mechanical properties of the injectable hydrogels without affecting its thermosensitive gelation properties. Biocompatibility of the generated hydrogel was verified by in vitro assessment of apoptotic gene expressions and anti-inflammatory interleukin productions. NDs were complexed with VEGF and the inclusion of this complex in the hydrogel network enabled the sustained release of the angiogenic growth factor. These results suggest for the first time that NDs can be used to formulate a biocompatible, thermosensitive and multifunctional hydrogel platform that can function both as a filling agent to modulate hydrogel properties, as well as a delivery platform for the controlled release of bioactive molecules and growth factors.

STATEMENT OF SIGNIFICANCE

One of the major drawbacks associated with the use of conventional hydrogels as carriers of growth factors is their inability to control the release kinetics of the loaded molecules. In fact, in most cases, a burst release is inevitable leading to diminished therapeutic effects and unsuccessful therapies. As a potential solution to this issue, we hereby propose a strategy of incorporating ND complexes within an injectable hydrogel matrix. The functional groups on the surface of the NDs can establish interactions with the model growth factor VEGF and promote a prolonged release from the polymer network, therefore, providing a longer therapeutic effect. Our strategy demonstrates the efficacy of using NDs as an essential component for the design of a novel injectable nanocomposite system with improved release capabilities.

摘要

未标注

纳米金刚石(NDs)是一类新兴的碳纳米材料,具有良好的物理和化学性质,可作为多种生物活性分子的多功能载体。在此,我们报告了一种新型可注射的基于ND的纳米复合水凝胶的合成与表征,该水凝胶有助于治疗分子的控释,用于再生应用。特别是,我们使用明胶、壳聚糖和NDs配制了一种热敏水凝胶,可在伤口愈合应用中持续释放外源性人血管内皮生长因子(VEGF)。添加NDs改善了可注射水凝胶的机械性能,而不影响其热敏凝胶化特性。通过对凋亡基因表达和抗炎白细胞介素产生的体外评估,验证了所生成水凝胶的生物相容性。NDs与VEGF复合,将该复合物包含在水凝胶网络中能够实现血管生成生长因子的持续释放。这些结果首次表明,NDs可用于配制生物相容性、热敏性和多功能水凝胶平台,该平台既可以作为调节水凝胶性质的填充剂,又可以作为生物活性分子和生长因子控释的递送平台。

重要性声明

与使用传统水凝胶作为生长因子载体相关的一个主要缺点是它们无法控制负载分子的释放动力学。事实上,在大多数情况下,突发释放是不可避免的,导致治疗效果降低和治疗失败。作为解决这一问题的潜在方案,我们在此提出一种将ND复合物掺入可注射水凝胶基质中的策略。NDs表面的官能团可以与模型生长因子VEGF建立相互作用,并促进从聚合物网络中的延长释放,因此,提供更长的治疗效果。我们的策略证明了使用NDs作为设计具有改进释放能力的新型可注射纳米复合系统的关键成分的有效性。

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