Ruseska Ivana, Fresacher Katja, Petschacher Christina, Zimmer Andreas
Department of Pharmaceutical Technology and Biopharmacy, Institute of Pharmaceutical Sciences, Karl-Franzens-University Graz, Universitätsplatz 1, 8010 Graz, Austria.
Nanomaterials (Basel). 2021 Jun 7;11(6):1508. doi: 10.3390/nano11061508.
Macromolecular biomolecules are currently dethroning classical small molecule therapeutics because of their improved targeting and delivery properties. Protamine-a small polycationic peptide-represents a promising candidate. In nature, it binds and protects DNA against degradation during spermatogenesis due to electrostatic interactions between the negatively charged DNA-phosphate backbone and the positively charged protamine. Researchers are mimicking this technique to develop innovative nanopharmaceutical drug delivery systems, incorporating protamine as a carrier for biologically active components such as DNA or RNA. The first part of this review highlights ongoing investigations in the field of protamine-associated nanotechnology, discussing the self-assembling manufacturing process and nanoparticle engineering. Immune-modulating properties of protamine are those that lead to the second key part, which is protamine in novel vaccine technologies. Protamine-based RNA delivery systems in vaccines (some belong to the new class of mRNA-vaccines) against infectious disease and their use in cancer treatment are reviewed, and we provide an update on the current state of latest developments with protamine as pharmaceutical excipient for vaccines.
由于其靶向性和递送特性的改善,大分子生物分子目前正在取代传统的小分子疗法。鱼精蛋白——一种小的聚阳离子肽——是一个很有前景的候选物。在自然界中,由于带负电荷的DNA磷酸骨架与带正电荷的鱼精蛋白之间的静电相互作用,它在精子发生过程中结合并保护DNA不被降解。研究人员正在模仿这种技术来开发创新的纳米药物递送系统,将鱼精蛋白用作DNA或RNA等生物活性成分的载体。本综述的第一部分重点介绍了鱼精蛋白相关纳米技术领域正在进行的研究,讨论了自组装制造过程和纳米颗粒工程。鱼精蛋白的免疫调节特性引出了第二个关键部分,即鱼精蛋白在新型疫苗技术中的应用。综述了基于鱼精蛋白的RNA递送系统在抗传染病疫苗(有些属于新型mRNA疫苗)中的应用及其在癌症治疗中的用途,并且我们提供了关于鱼精蛋白作为疫苗药用辅料的最新发展现状的更新内容。