Russo Stefano, Privitera Anna, Greco Giuliana, Di Pietro Lucia, Cardaci Vincenzo, Carota Giuseppe, Sarpietro Maria Grazia, Caruso Giuseppe
Division of Biochemistry, Mannheim Institute for Innate Immunoscience (MI3), Mannheim Cancer Center (MCC), Medical Faculty Mannheim, Heidelberg University, Mannheim, Germany.
Department of Drug and Health Sciences, University of Catania, Catania, Italy.
J Liposome Res. 2024 Oct 15:1-8. doi: 10.1080/08982104.2024.2415664.
Carnosine is an endogenous dipeptide characterized by a multimodal mechanism of action. However, its clinical potential is limited by serum and cytosolic carnosinases, which significantly reduce its bioavailability. Based on that, different research groups have worked on the development of new strategies able not only to prevent its rapid metabolization but also to improve its distribution and specific targeting. In the present study, the development and characterization of new liposomal formulations loaded with carnosine are described. Nanoliposomes, produced through Thin-Layer Hydration followed by Extrusion method, were first investigated for their physicochemical stability. Photon correlation spectroscopy and electrophoretic light scattering, assessing the stability of the formulations, showed a strong homogeneity-oriented tendency for up to two months. Particle size, polydispersity index, and zeta potential were determined through dynamic light scattering and electrophoretic light scattering, demonstrating an almost neutral charge of the formulation and an effective encapsulation of carnosine. The morphology assessment performed via scanning electron microscopy showed good conformity and polydispersity. Differential scanning calorimetry measurements suggest the ability of carnosine to stabilize the large unilamellar vesicles. Lastly, the newly developed carnosine-loaded liposomal formulations also showed a good safety profile in human microglia.
肌肽是一种具有多模式作用机制的内源性二肽。然而,其临床应用潜力受到血清和胞质肌肽酶的限制,这些酶会显著降低其生物利用度。基于此,不同的研究团队致力于开发新策略,不仅能防止其快速代谢,还能改善其分布和特异性靶向性。在本研究中,描述了载有肌肽的新型脂质体制剂的开发和表征。通过薄层水化法随后挤压法制备的纳米脂质体,首先研究了其物理化学稳定性。通过光子相关光谱和电泳光散射评估制剂的稳定性,结果显示在长达两个月的时间内具有很强的均一化趋势。通过动态光散射和电泳光散射测定粒径、多分散指数和zeta电位,表明制剂几乎呈中性电荷且肌肽有效包封。通过扫描电子显微镜进行的形态评估显示出良好的一致性和多分散性。差示扫描量热法测量表明肌肽能够稳定大单层囊泡。最后,新开发的载有肌肽的脂质体制剂在人小胶质细胞中也显示出良好的安全性。