Franz-Montan Michelle, Ribeiro Lígia Nunes de Morais, Volpato Maria Cristina, Cereda Cintia Maria Saia, Groppo Francisco Carlos, Tofoli Giovana Randomille, de Araújo Daniele Ribeiro, Santi Patrizia, Padula Cristina, de Paula Eneida
a Department of Physiological Sciences, Piracicaba Dental School , University of Campinas - UNICAMP , Piracicaba , Brazil.
b Department of Biochemistry and Tissue Biology, Institute of Biology , University of Campinas - UNICAMP , Campinas , Brazil.
Expert Opin Drug Deliv. 2017 May;14(5):673-684. doi: 10.1080/17425247.2016.1227784. Epub 2016 Sep 1.
Topical anesthesia is widely used in dentistry to reduce pain caused by needle insertion and injection of the anesthetic. However, successful anesthesia is not always achieved using the formulations that are currently commercially available. As a result, local anesthesia is still one of the procedures that is most feared by dental patients. Drug delivery systems (DDSs) provide ways of improving the efficacy of topical agents. Areas covered: An overview of the structure and permeability of oral mucosa is given, followed by a review of DDSs designed for dental topical anesthesia and their related clinical trials. Chemical approaches to enhance permeation and anesthesia efficacy, or to promote superficial anesthesia, include nanostructured carriers (liposomes, cyclodextrins, polymeric nanoparticle systems, solid lipid nanoparticles, and nanostructured lipid carriers) and different pharmaceutical dosage forms (patches, bio- and mucoadhesive systems, and hydrogels). Physical methods include pre-cooling, vibration, iontophoresis, and microneedle arrays. Expert opinion: The combination of different chemical and physical methods is an attractive option for effective topical anesthesia in oral mucosa. This comprehensive review should provide the readers with the most relevant options currently available to assist pain-free dental anesthesia. The findings should be considered for future clinical trials.
局部麻醉在牙科中被广泛应用,以减轻因注射针头和麻醉剂所引起的疼痛。然而,使用目前市面上现有的制剂并非总能成功实现麻醉效果。因此,局部麻醉仍是牙科患者最惧怕的操作之一。药物递送系统(DDSs)提供了提高局部用药剂功效的方法。涵盖领域:本文首先概述了口腔黏膜的结构和渗透性,随后综述了用于牙科局部麻醉的药物递送系统及其相关临床试验。增强渗透和麻醉效果或促进表面麻醉的化学方法包括纳米结构载体(脂质体、环糊精、聚合物纳米颗粒系统、固体脂质纳米颗粒和纳米结构脂质载体)以及不同的药物剂型(贴片、生物和粘膜粘附系统以及水凝胶)。物理方法包括预冷却、振动、离子导入和微针阵列。专家观点:不同化学和物理方法的结合是实现口腔黏膜有效局部麻醉的一个有吸引力的选择。这篇全面的综述应为读者提供目前最相关的选择,以辅助实现无痛牙科麻醉。这些研究结果应在未来的临床试验中予以考虑。