Alqahtani Mohammed S, Syed Rabbani, Alqahtani Ali S, Almarfadi Omer M, Roni Monzurul A, Sadhu Satya S
Department of Pharmaceutics, College of Pharmacy, King Saud University Riyadh 11451 Saudi Arabia.
Department of Pharmaceutics, Nanomedicine & Biotechnology Research Unit, College of Pharmacy, King Saud University Riyadh 11451 Saudi Arabia
Nanoscale Adv. 2024 Sep 4;6(20):5193-206. doi: 10.1039/d4na00404c.
The effective delivery of messenger ribonucleic acid (mRNA) to specific cell types and target tissues poses a significant challenge in nonviral therapeutic strategies. Lipid-based nanoparticles (LNPs) have emerged as a leading carrier system for delivering mRNA, particularly for infectious diseases, such as COVID-19. This study aimed to describe the synthesis of a novel lipopeptide based on surfactin, a naturally occurring surfactant. Additionally, a series of novel LNPs were rationally designed, based on the modified surfactin, OleSurf, and were formulated and optimized. The physicochemical properties, morphologies, and stabilities of the particles were evaluated. All formulations containing OleSurf produced particles with a diameter <80 nm and an encapsulation efficiency >95%. OleSurf LNPs demonstrated excellent transfection efficiency and luciferase expression with no cytotoxicity, compared to lipofectamine 2000, a known transfection reagent, and were comparable to the DLin-MC3-DMA lipid. OleSurf-based LNPs behaved as efficient mRNA carriers and showed enhanced mRNA-binding capabilities, associated with facilitated intracellular release, endosomal escape, and protection from endonuclease degradation. In addition, OleSurf-LNPs showed a higher mRNA delivery efficiency, a more advantageous biodistribution pattern, and an improved safety profile . Overall, the novel OleSurf LNPs presented an optimal delivery platform for mRNA therapeutics.
在非病毒治疗策略中,将信使核糖核酸(mRNA)有效递送至特定细胞类型和靶组织是一项重大挑战。基于脂质的纳米颗粒(LNP)已成为递送mRNA的主要载体系统,尤其是在诸如COVID-19等传染病的治疗中。本研究旨在描述一种基于天然存在的表面活性剂表面活性素合成新型脂肽的方法。此外,基于修饰后的表面活性素OleSurf合理设计了一系列新型LNP,并对其进行了制备和优化。评估了这些颗粒的物理化学性质、形态和稳定性。所有含有OleSurf的制剂所产生的颗粒直径均<80 nm,包封率>95%。与已知的转染试剂Lipofectamine 2000相比,OleSurf LNP表现出优异的转染效率和荧光素酶表达,且无细胞毒性,与DLin-MC3-DMA脂质相当。基于OleSurf的LNP可作为高效的mRNA载体,具有增强的mRNA结合能力,有助于细胞内释放、内体逃逸以及免受核酸酶降解。此外,OleSurf-LNP显示出更高的mRNA递送效率、更有利的生物分布模式和更好的安全性。总体而言,新型OleSurf LNP为mRNA治疗提供了一个最佳的递送平台。