Pharmacology, Pharmacy and Pharmaceutical Technology Department, Faculty of Pharmacy, University of Santiago de Compostela (USC), Santiago de Compostela, Spain; Paraquasil Group, Health Research Institute of Santiago de Compostela (FIDIS), Santiago de Compostela, Spain; Institute of Materials (iMATUS), University of Santiago de Compostela (USC), Santiago de Compostela, Spain.
CIBER in Bioengineering, Biomaterials and Nanomedicine, CIBER-BBN, Madrid, Spain; Institute for Bioengineering of Catalonia (IBEC), The Barcelona Institute of Science and Technology, Baldiri Reixac 10-12, Barcelona 08028, Spain.
Adv Colloid Interface Sci. 2023 Mar;313:102867. doi: 10.1016/j.cis.2023.102867. Epub 2023 Feb 28.
Liquid crystals (LCs) possess unique physicochemical properties, translatable into a wide range of applications. To date, lipidic lyotropic LCs (LLCs) have been extensively explored in drug delivery and imaging owing to the capability to encapsulate and release payloads with different characteristics. The current landscape of lipidic LLCs in biomedical applications is provided in this review. Initially, the main properties, types, methods of fabrication and applications of LCs are showcased. Then, a comprehensive discussion of the main biomedical applications of lipidic LLCs accordingly to the application (drug and biomacromolecule delivery, tissue engineering and molecular imaging) and route of administration is examined. Further discussion of the main limitations and perspectives of lipidic LLCs in biomedical applications are also provided. STATEMENT OF SIGNIFICANCE: Liquid crystals (LCs) are those systems between a solid and liquid state that possess unique morphological and physicochemical properties, translatable into a wide range of biomedical applications. A short description of the properties of LCs, their types and manufacturing procedures is given to serve as a background to the topic. Then, the latest and most innovative research in the field of biomedicine is examined, specifically the areas of drug and biomacromolecule delivery, tissue engineering and molecular imaging. Finally, prospects of LCs in biomedicine are discussed to show future trends and perspectives that might be utilized. This article is an ampliation, improvement and actualization of our previous short forum article "Bringing lipidic lyotropic liquid crystal technology into biomedicine" published in TIPS.
液晶(LCs)具有独特的物理化学性质,可应用于广泛的领域。迄今为止,由于能够封装和释放具有不同特性的有效载荷,脂质溶致液晶(LLCs)已在药物传递和成像中得到了广泛的探索。本综述提供了脂质 LLC 在生物医学应用中的当前情况。首先,展示了 LCs 的主要性质、类型、制造方法和应用。然后,根据应用(药物和生物大分子传递、组织工程和分子成像)和给药途径,全面讨论了脂质 LLC 的主要生物医学应用。还进一步讨论了脂质 LLC 在生物医学应用中的主要局限性和前景。
液晶(LCs)是介于固体和液体之间的系统,具有独特的形态和物理化学性质,可应用于广泛的生物医学领域。对 LCs 的性质、类型和制造工艺进行简短描述,作为主题的背景。然后,检查了生物医学领域最新和最具创新性的研究,特别是药物和生物大分子传递、组织工程和分子成像领域。最后,讨论了 LCs 在生物医学中的前景,以展示未来可能利用的趋势和前景。本文是我们之前在 TIPS 上发表的简短论坛文章“将脂质溶致液晶技术引入生物医学”的扩充、改进和实现。