Central Drug Research Institute, Pharmaceutis Division, Chattar Manzil Palace, Lucknow, Uttar Pradesh, India.
Expert Opin Drug Deliv. 2010 Sep;7(9):993-1011. doi: 10.1517/17425247.2010.510830.
In recent decades a new colloidal drug delivery system based on layer-by-layer (LbL) technology has emerged, which offers promising means of delivering bioactive agents, specifically biological macromolecules including peptides and DNA. Nano-engineered capsules specifically fabricated from biocompatible and biodegradable polyelectrolytes (PEs) can provide a better option for encapsulation of cells thereby protecting cells from immunological molecules in the body, and their selective permeability can ensure the survival of encapsulated cells.
This review encompasses a strategic approach to fabricate nano-engineered microcapsules through meticulous selection of polyelectrolytes and core materials based on LbL technology. The content of the article provides evidence for its wide array of applications in medical therapeutics, as indicated by the quantity of research and patents in this area. Recent developments and approaches for tuning drug release, biocompatibility and cellular interaction are discussed thoroughly.
This review aims to provide an overview on the development of LbL capsules with specific orientation towards drug and macromolecular delivery and its integration with other drug delivery systems, such as liposomes.
Selection of PEs for the fabrication of LbL microcapsules has a profound effect on stability, drug release, biocompatibility and encapsulation efficacy. The release can be easily modulated by varying different physicochemical as well as physiological conditions. Scale-up approaches for the fabrication of LbL microcapsules by means of automation must be considered to improve the possibility of application of LbL microcapsules on a large scale.
近几十年来,一种基于层层(LbL)技术的新型胶体药物输送系统已经出现,为输送生物活性剂,特别是包括肽和 DNA 在内的生物大分子提供了有前途的手段。专门由生物相容和可生物降解的聚电解质(PE)制成的纳米工程胶囊可以为封装细胞提供更好的选择,从而保护细胞免受体内免疫分子的影响,其选择性渗透性可以确保封装细胞的存活。
本综述包括通过基于 LbL 技术的精心选择聚电解质和核心材料来构建纳米工程微胶囊的策略方法。本文的内容提供了其在医学治疗中广泛应用的证据,这反映在该领域的研究和专利数量上。本文还深入讨论了调节药物释放、生物相容性和细胞相互作用的最新进展和方法。
本综述旨在概述 LbL 胶囊的发展,特别是针对药物和大分子输送,并将其与其他药物输送系统(如脂质体)集成。
用于制造 LbL 微胶囊的 PE 的选择对稳定性、药物释放、生物相容性和封装效率有深远的影响。通过改变不同的物理化学和生理条件,可以轻松调节释放。必须考虑通过自动化来扩大 LbL 微胶囊的制造规模,以提高 LbL 微胶囊大规模应用的可能性。