Chain Cecilia Yamil, Daza Millone María Antonieta, Cisneros José Sebastián, Ramirez Eduardo Alejandro, Vela María Elena
Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas (INIFTA- Universidad Nacional de La Plata (UNLP)- Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET)), La Plata, Argentina.
Front Chem. 2021 Jan 7;8:605307. doi: 10.3389/fchem.2020.605307. eCollection 2020.
The development of drug carriers based in lipid nanoparticles (LNPs) aims toward the synthesis of non-toxic multifunctional nanovehicles that can bypass the immune system and allow specific site targeting, controlled release and complete degradation of the carrier components. Among label free techniques, Surface Plasmon Resonance (SPR) biosensing is a versatile tool to study LNPs in the field of nanotherapeutics research. SPR, widely used for the analysis of molecular interactions, is based on the immobilization of one of the interacting partners to the sensor surface, which can be easily achieved in the case of LNPs by hydrophobic attachment onto commercial lipid- capture sensor chips. In the last years SPR technology has emerged as an interesting strategy for studying molecular aspects of drug delivery that determines the efficacy of the nanotherapeutical such as LNPs' interactions with biological targets, with serum proteins and with tumor extracelullar matrix. Moreover, SPR has contributed to the obtention and characterization of LNPs, gathering information about the interplay between components of the formulations, their response to organic molecules and, more recently, the quantification and molecular characterization of exosomes. By the combination of available sensor platforms, assay quickness and straight forward platform adaptation for new carrier systems, SPR is becoming a high throughput technique for LNPs' characterization and analysis.
基于脂质纳米颗粒(LNP)的药物载体的研发旨在合成无毒的多功能纳米载体,这种载体能够避开免疫系统,实现特定部位靶向、控释以及载体成分的完全降解。在无标记技术中,表面等离子体共振(SPR)生物传感是纳米治疗研究领域中研究LNP的一种通用工具。SPR广泛用于分子相互作用分析,其基于将一种相互作用分子固定在传感器表面,对于LNP而言,通过疏水作用附着在商用脂质捕获传感器芯片上即可轻松实现。近年来,SPR技术已成为研究药物递送分子层面的一种有趣策略,这些层面决定了纳米治疗药物的疗效,比如LNP与生物靶点、血清蛋白以及肿瘤细胞外基质的相互作用。此外,SPR有助于LNP的获取和表征,收集有关制剂成分之间相互作用、它们对有机分子的反应以及最近有关外泌体的定量和分子表征的信息。通过结合现有的传感器平台、检测速度以及对新载体系统的直接平台适配,SPR正成为一种用于LNP表征和分析的高通量技术。