Mitarotonda Romina, Giorgi Exequiel, Eufrasio-da-Silva Tatiane, Dolatshahi-Pirouz Alireza, Mishra Yogendra Kumar, Khademhosseini Ali, Desimone Martin F, De Marzi Mauricio, Orive Gorka
Laboratorio de Inmunología, Instituto de Ecología y Desarrollo Sustentable (INEDES) CONICET-UNLu, Departamento de Ciencias Básicas, Universidad Nacional de Luján, Ruta 5 y Avenida Constitución (6700) Lujan, Buenos Aires, Argentina.
Department of Health Technology, Technical University of Denmark (DTU), 2800 Kgs. Lyngby, Denmark; Radboud University Medical Center, Radboud Institute for Molecular Life Sciences, Department of Dentistry - Regenerative Biomaterials, Philips van Leydenlaan 25, 6525EX Nijmegen, the Netherlands.
Biomater Adv. 2022 Apr;135:212726. doi: 10.1016/j.bioadv.2022.212726. Epub 2022 Apr 22.
The development of nanoparticles (NPs) with potential therapeutic uses represents an area of vast interest in the scientific community during the last years. Recently, the pandemic caused by COVID-19 motivated a race for vaccines creation to overcome the crisis generated. This is a good demonstration that nanotechnology will most likely be the basis of future immunotherapy. Moreover, the number of publications based on nanosystems has significantly increased in recent years and it is expected that most of these developments can go on to experimentation in clinical stages soon. The therapeutic use of NPs to combat different diseases such as cancer, allergies or autoimmune diseases will depend on their characteristics, their targets, and the transported molecules. This review presents an in-depth analysis of recent advances that have been developed in order to obtain novel nanoparticulate based tools for the treatment of allergies, autoimmune diseases and for their use in vaccines. Moreover, it is highlighted that by providing targeted delivery an increase in the potential of vaccines to induce an immune response is expected in the future. Definitively, the here gathered analysis is a good demonstration that nanotechnology will be the basis of future immunotherapy.
近年来,具有潜在治疗用途的纳米颗粒(NPs)的开发成为科学界极为关注的领域。最近,由COVID-19引发的大流行促使人们竞相研发疫苗以克服所产生的危机。这充分表明纳米技术很可能会成为未来免疫疗法的基础。此外,近年来基于纳米系统的出版物数量显著增加,预计这些进展中的大多数很快就能进入临床阶段进行试验。纳米颗粒用于对抗癌症、过敏或自身免疫性疾病等不同疾病的治疗用途将取决于它们的特性、靶点以及所运输的分子。本综述对为获得用于治疗过敏、自身免疫性疾病及其在疫苗中应用的新型纳米颗粒工具所取得的最新进展进行了深入分析。此外,还强调通过提供靶向递送,预计未来疫苗诱导免疫反应的潜力将会增加。确切地说,这里收集的分析充分表明纳米技术将成为未来免疫疗法的基础。