壳聚糖包覆脂质纳米粒在治疗危重病药物传递中的应用潜力:综述。
Unveiling the potential of chitosan-coated lipid nanoparticles in drug delivery for management of critical illness: a review.
机构信息
Department of Pharmaceutical Technology, 30167 Jadavpur University , Jadavpur, Kolkata, West Bengal 700032, India.
78467 Dr. Dayaram Patel Pharmacy College , Bardoli 394601, India.
出版信息
Z Naturforsch C J Biosci. 2024 May 10;79(5-6):107-124. doi: 10.1515/znc-2023-0181. Print 2024 May 27.
Chitosan (CT), a natural, cationic, chemically stable molecule, biocompatible, biodegradable, nontoxic, polysaccharide derived from the deacetylation of chitin, has very uniquely surfaced as a material of promise for drug delivery and biomedical applications. For the oral, ocular, cutaneous, pulmonary, and nose-to-brain routes, CT-coated nanoparticles (CTCNPs) have numerous advantages, consisting of improved controlled drug release, physicochemical stability, improved cell and tissue interactions, and increased bioavailability and efficacy of the active ingredient. CTCNPs have a broad range of therapeutic properties including anticancer, antiviral, antifungal, anti-inflammatory, antibacterial properties, treating neurological disorders, and other diseases. This has led to substantial research into the many potential uses of CT as a drug delivery vehicle. CT has also been employed in a wide range of biomedical processes, including bone and cartilage tissue regeneration, ocular tissue regeneration, periodontal tissue regeneration, heart tissue regeneration, and wound healing. Additionally, CT has been used in cosmeceutical, bioimaging, immunization, and gene transfer applications. CT exhibits a number of biological activities, which are the basis for its remarkable potential for use as a drug delivery vehicle, and these activities are covered in detail in this article. The alterations applied to CT to obtain the necessary properties have been described.
壳聚糖(CT)是一种天然的、带正电荷的、化学稳定的、生物相容的、可生物降解的、无毒的多糖,由壳聚糖的脱乙酰化衍生而来,它作为药物传递和生物医学应用的有前途的材料已经非常独特。对于口服、眼部、皮肤、肺部和鼻脑途径,壳聚糖涂层纳米颗粒(CTCNP)具有许多优点,包括改善的控制药物释放、物理化学稳定性、改善的细胞和组织相互作用以及活性成分的生物利用度和功效的提高。CTCNP 具有广泛的治疗特性,包括抗癌、抗病毒、抗真菌、抗炎、抗菌特性、治疗神经紊乱和其他疾病。这导致了对 CT 作为药物传递载体的许多潜在用途的大量研究。CT 还广泛应用于生物医学过程,包括骨和软骨组织再生、眼部组织再生、牙周组织再生、心脏组织再生和伤口愈合。此外,CT 还用于美容、生物成像、免疫和基因转移应用。CT 表现出多种生物学活性,这些活性是其作为药物传递载体的显著潜力的基础,本文详细介绍了这些活性。还描述了为获得必要特性而对 CT 进行的修饰。