Kumar Parida Vishal, Arora Rashmi, Sharma Teenu
Chitkara College of Pharmacy, Rajpura, Punjab, India.
J Biomater Sci Polym Ed. 2025 Feb;36(2):247-271. doi: 10.1080/09205063.2024.2397215. Epub 2024 Sep 4.
Silk proteins, viz., sericin, fibroin and their modified forms etc., have been thoroughly researched as natural biopolymers for the development of varied nanomaterials exhibiting diverse biomedical applications. The silk proteins are extracted from the cocoons by degumming and treatment with soaps, followed by dissolution and dialysis against water. These proteins exhibit distinct mechanical and physicochemical characteristics including biocompatibility, controlled biodegradability, self-assembling traits, chemical modifiability, and adaptability, thus making it an ideal drug delivery vehicle. In this regard, silk protein-derived drug delivery systems have been reported as efficient carrier to encapsulate and stabilize the wide variety of pharmacological molecules, enzymes, proteins, vaccines, and even DNA, allowing them to remain active for a longer period of time. Further, different delivery carriers researched employing these proteins for multitude of applications include hydrogels, sponges, fibres, scaffolds and particulate delivery systems. Additionally, the chemical modification of silk proteins has further opened avenues for development of other modified silk proteins with improved physicochemical traits and hence exhibiting enormous potential in development of varied bioenhanced carrier systems. The current article thus provides the holistic information of characteristics, types of silk protein-based delivery carriers, and their fabrication techniques, while emphasizing the applications of different silk proteins in biomedicine and drug delivery.
丝蛋白,即丝胶蛋白、丝素蛋白及其修饰形式等,作为天然生物聚合物已被深入研究,用于开发具有多种生物医学应用的各种纳米材料。丝蛋白是通过脱胶和用肥皂处理从蚕茧中提取的,然后溶解并对水进行透析。这些蛋白质具有独特的机械和物理化学特性,包括生物相容性、可控的生物降解性、自组装特性、化学可修饰性和适应性,因此使其成为理想的药物递送载体。在这方面,丝蛋白衍生的药物递送系统已被报道为一种有效的载体,可封装和稳定多种药理分子、酶、蛋白质、疫苗甚至DNA,使它们能够在更长时间内保持活性。此外,研究使用这些蛋白质用于多种应用的不同递送载体包括水凝胶、海绵、纤维、支架和颗粒递送系统。此外,丝蛋白的化学修饰进一步为开发具有改善的物理化学特性的其他修饰丝蛋白开辟了道路,因此在开发各种生物增强载体系统方面具有巨大潜力。因此,本文提供了基于丝蛋白的递送载体的特性、类型及其制造技术的全面信息,同时强调了不同丝蛋白在生物医学和药物递送中的应用。