School of Chemical and Biomedical Engineering, Nanyang Technological University, 62 Nanyang Dr, Singapore, 637459, Singapore.
Ocular Imaging, Singapore Eye Research Institute, 20 College Road Discovery Tower Level 6, The Academia, Singapore, 169856, Singapore.
Sci Rep. 2021 Jan 14;11(1):1470. doi: 10.1038/s41598-020-80542-4.
Small interfering RNA (siRNA) therapy is a promising epigenetic silencing strategy. However, its widespread adoption has been severely impeded by its ineffective delivery into the cellular environment. Here, a biocompatible injectable gelatin-based hydrogel with positive-charge tuned surface charge is presented as an effective platform for siRNA protection and delivery. We demonstrate a two-step synthesis of a gelatin-tyramine (Gtn-Tyr) hydrogel with simultaneous charge tunability and crosslinking ability. We discuss how different physiochemical properties of the hydrogel interact with siSPARC (siRNA for secreted protein, acidic and rich in cysteine), and study the positive-charge tuned gelatin hydrogel as an effective delivery platform for siSPARC in anti-fibrotic treatment. Through in vitro studies using mouse tenon fibroblasts, the positive-charge tuned Gtn-Tyr hydrogel shows sustained siSPARC cellular internalization and effective SPARC silencing with excellent biocompatibility. Similarly, the same hydrogel platform delivering siSPARC in an in vivo assessment employing a rabbit model shows an effective reduction in subconjunctival scarring in post glaucoma filtration surgery, and is non-cytotoxic compared to a commonly used anti-scarring agent, mitomycin-C. Overall, the current siRNA delivery strategy involving the positive-charge tuned gelatin hydrogel shows effective delivery of gene silencing siSPARC for anti-fibrotic treatment. The current charge tunable hydrogel delivery system is simple to fabricate and highly scalable. We believe this delivery platform has strong translational potential for effective siRNA delivery and epigenetic silencing therapy.
小干扰 RNA(siRNA)疗法是一种很有前途的表观遗传沉默策略。然而,由于其无法有效递送至细胞环境中,其广泛应用受到了严重阻碍。在这里,我们提出了一种具有正电荷可调表面电荷的生物相容性可注射明胶基水凝胶,作为保护和递送 siRNA 的有效平台。我们展示了一种两步法合成具有同时可调电荷和交联能力的明胶-酪胺(Gtn-Tyr)水凝胶。我们讨论了水凝胶的不同物理化学性质如何与 siSPARC(针对分泌蛋白、富含半胱氨酸的酸性蛋白的 siRNA)相互作用,并研究了正电荷可调明胶水凝胶作为 siSPARC 在抗纤维化治疗中的有效递送平台。通过使用小鼠腱膜成纤维细胞的体外研究,正电荷可调 Gtn-Tyr 水凝胶显示出持续的 siSPARC 细胞内化和有效的 SPARC 沉默,具有优异的生物相容性。同样,在使用兔模型进行的体内评估中,该相同水凝胶平台递送 siSPARC 可有效减少青光眼滤过术后的结膜下瘢痕形成,与常用的抗瘢痕药物丝裂霉素 C 相比,其无细胞毒性。总的来说,涉及正电荷可调明胶水凝胶的当前 siRNA 递送策略显示出对纤维化治疗的有效基因沉默 siSPARC 的递送效果。当前的电荷可调水凝胶递送系统制造简单且具有高度可扩展性。我们相信,这种递送平台具有很强的转化潜力,可用于有效 siRNA 递送和表观遗传沉默治疗。