Preparation and Application of Cross-linked Alginate Nanoparticles as Drug Carrier: A Review

Jing Jie Chia, K. Shameli, Mostafa Yusefi, R. R. Ali, Vekes, Balasundram, Sin-Yeang Teow
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引用次数: 5

Abstract

Nanotechnology also called as nanotech is referring to the science, technology and engineering to synthesis, manipulation and investigation of materials and devices at nanoscales. Nanoparticles (NPs) owns a special place in nanotechnology due to their extreme-small size, multifunctionality, and modifiable surface for wide range of applications especially in new drug delivery application as the stability, solubility, biocompatibility and drugs releasing of NPs are highly controllable. The variation of nanomaterials with different physiochemical and morphological properties will affect the materials-living cells interaction and determination of the route of clearance and potential toxic effects. Thus, it requires more cross-disciplinary research on the designing and developing of drugs delivery NPs based on the diagnosis and treatment of devastating diseases. Biopolymers-based NPs have gained great attention for drug delivery system over the past few decades compared to other materials-based NPs such as liposomes, ceramics and lipids as well as magnetic NPs. There are extensive studies and developments of biopolymers-based NPs for drug delivery and tissue engineering as it capable of controlling the release of drugs, stabilizing labile molecules from degradation, and site-specific drug targeting. Alginate is an anionic copolymer that extracted from algae. The NPs composed alginate have become one of the most extensively researched materials for biomedical applications such as tissue engineering, wound dressing, protein/enzyme carrier and drug delivery due to its biodegradability, biocompatibility, non-toxicity and mucoadhesive properties. Furthermore, by physiochemical crosslinking and cooperating with other polymers, the mechanical strength, cell affinity and drug release profile can be modified and improved. In this brief review paper, several aspects about using alginate or crosslinked alginate for drug delivery application will be discussed, mainly focus on the structure and properties of alginate such as biocompatibility, immunogenicity and biodegradability, as well as the effect of mucoadhesion and pH sensitivity of using alginate in drug delivery nanoparticles developments.
交联海藻酸盐纳米颗粒药物载体的制备及应用研究进展
纳米技术也被称为纳米技术,是指在纳米尺度上合成、操纵和研究材料和器件的科学、技术和工程。纳米粒子具有体积小、功能多、表面可修饰等特点,在纳米技术中有着特殊的地位,特别是在新药输送领域,纳米粒子的稳定性、溶解度、生物相容性和药物释放具有高度可控性。具有不同物理化学和形态特性的纳米材料的变化将影响材料与活细胞的相互作用以及清除途径和潜在毒性作用的确定。因此,它需要更多的跨学科研究,设计和开发基于诊断和治疗毁灭性疾病的给药NPs。在过去的几十年里,与脂质体、陶瓷、脂质以及磁性纳米粒子等其他材料纳米粒子相比,生物聚合物纳米粒子在药物传递系统中得到了广泛的关注。基于生物聚合物的NPs在药物传递和组织工程方面有广泛的研究和发展,因为它能够控制药物的释放,稳定不稳定分子的降解,以及特定位点的药物靶向。藻酸盐是从藻类中提取的阴离子共聚物。海藻酸盐组成的NPs因其生物可降解性、生物相容性、无毒性和黏附性而成为生物医学领域应用最广泛的材料之一,如组织工程、伤口敷料、蛋白质/酶载体和药物输送。此外,通过物理化学交联和与其他聚合物的协同作用,可以修饰和提高其机械强度、细胞亲和力和药物释放谱。本文将从几个方面对藻酸盐或交联藻酸盐在给药领域的应用进行综述,主要从藻酸盐的生物相容性、免疫原性和生物降解性等结构和性质,以及藻酸盐在给药纳米颗粒开发中的黏附作用和pH敏感性等方面进行综述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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