Uzokboev Shakhzodjon, Akhmadbekov Khojimukhammad, Nuritdinova Ra'no, Tawfik Salah M, Lee Yong-Ill
Department of Pharmaceutical Sciences, Pharmaceutical Technical University, Tashkent 100084, Republic of Uzbekistan.
Department of Petrochemicals, Egyptian Petroleum Research Institute (EPRI), Nasr City, Cairo 11727, Egypt.
Beilstein J Nanotechnol. 2024 Aug 22;15:1077-1104. doi: 10.3762/bjnano.15.88. eCollection 2024.
Sensors are applied to many fields nowadays because of their high sensitivity, low cost, time-saving, user-friendly, and excellent selectivity. Current biomedical and pharmaceutical science has one focus on developing nanoparticle-based sensors, especially biopolymeric nanoparticles. Alginate is a widely used biopolymer in a variety of applications. The hydrogel-forming characteristic, the chemical structure with hydroxy and carboxylate moieties, biocompatibility, biodegradability, and water solubility of alginate have expanded opportunities in material and biomedical sciences. Recently, research on alginate-based nanoparticles and their applications has begun. These materials are gaining popularity because of their wide usage potential in the biomedical and pharmaceutical fields. Many review papers describe applications of alginate in the drug delivery field. The current study covers the structural and physicochemical properties of alginate-based nanoparticles. The prospective applications of alginate-based nanomaterials in various domains are discussed, including drug delivery and environmental sensing applications for humidity, heavy metals, and hydrogen peroxide. Moreover, biomedical sensing applications of alginate-based nanoparticles regarding various analytes such as glucose, cancer cells, pharmaceutical drugs, and human motion will also be reviewed in this paper. Future research scopes highlight existing challenges and solutions.
如今,传感器因其高灵敏度、低成本、省时、用户友好以及出色的选择性而被应用于许多领域。当前的生物医学和制药科学有一个重点是开发基于纳米颗粒的传感器,尤其是生物聚合物纳米颗粒。藻酸盐是一种在各种应用中广泛使用的生物聚合物。藻酸盐的水凝胶形成特性、具有羟基和羧酸盐部分的化学结构、生物相容性、生物降解性以及水溶性,为材料和生物医学科学带来了更多机会。最近,关于基于藻酸盐的纳米颗粒及其应用的研究已经开始。这些材料因其在生物医学和制药领域的广泛应用潜力而越来越受欢迎。许多综述文章描述了藻酸盐在药物递送领域的应用。当前的研究涵盖了基于藻酸盐的纳米颗粒的结构和物理化学性质。讨论了基于藻酸盐的纳米材料在各个领域的潜在应用,包括药物递送以及对湿度、重金属和过氧化氢的环境传感应用。此外,本文还将综述基于藻酸盐的纳米颗粒对各种分析物(如葡萄糖、癌细胞、药物和人体运动)的生物医学传感应用。未来的研究范围突出了现有挑战和解决方案。