Faculty of Chemical Engineering and Protection of the Environment, "Gheorghe Asachi" Technical University, 700050 Iasi, Romania.
Academy of Romanian Scientists, 50085 Bucharest, Romania.
Molecules. 2021 May 6;26(9):2735. doi: 10.3390/molecules26092735.
Periodontal diseases are worldwide health problems that negatively affect the lifestyle of many people. The long-term effect of the classical treatments, including the mechanical removal of bacterial plaque, is not effective enough, causing the scientific world to find other alternatives. Polymer-drug systems, which have different forms of presentation, chosen depending on the nature of the disease, the mode of administration, the type of polymer used, etc., have become very promising. Hydrogels, for example (in the form of films, micro-/nanoparticles, implants, inserts, etc.), contain the drug included, encapsulated, or adsorbed on the surface. Biologically active compounds can also be associated directly with the polymer chains by covalent or ionic binding (polymer-drug conjugates). Not just any polymer can be used as a support for drug combination due to the constraints imposed by the fact that the system works inside the body. Biopolymers, especially polysaccharides and their derivatives and to a lesser extent proteins, are preferred for this purpose. This paper aims to review in detail the biopolymer-drug systems that have emerged in the last decade as alternatives to the classical treatment of periodontal disease.
牙周病是全球性的健康问题,严重影响着许多人的生活方式。传统治疗方法(包括机械去除细菌斑块)的长期效果并不理想,这促使科学界寻找其他替代方法。聚合物-药物系统具有不同的表现形式,根据疾病的性质、给药方式、所使用的聚合物类型等因素进行选择,具有很大的应用前景。例如,水凝胶(以薄膜、微/纳米颗粒、植入物、插入物等形式存在)包含被包裹、包封或吸附在表面上的药物。生物活性化合物也可以通过共价或离子键直接与聚合物链结合(聚合物-药物缀合物)。由于系统在体内运行的限制,并非任何聚合物都可以用作药物组合的载体。为此,生物聚合物,尤其是多糖及其衍生物,以及在较小程度上的蛋白质,是首选。本文旨在详细综述过去十年中出现的作为牙周病传统治疗方法替代方案的生物聚合物-药物系统。