Ferrari Gustavo, Thives Mello Arthur, Melo Gilberto, de Mello Roesler Carlos Rodrigo, Salmoria Gean Vitor, de Souza Pinto Luiz Paulo, de Mello Gindri Izabelle
Iaso Biodelivery Fabricação de Dispositivos com Liberação de Fármacos LTDA, Florianópolis, Brazil.
Mechanical Engineering Department, Biomechanical Engineering Laboratory, University Hospital and Federal University of Santa Catarina (UFSC), Florianópolis, Brazil.
Drug Dev Ind Pharm. 2021 Oct;47(10):1535-1545. doi: 10.1080/03639045.2022.2043354. Epub 2022 Feb 27.
To provide a systematic map of the nature and extent of preclinical research concerning drug-releasing polymeric implants.
By summarizing available data, this mapping review can guide the development of new drug-delivery devices.
studies assessing drug-delivery implants were reviewed. A study protocol was registered at Open Science Framework. The association of polymers with prominent drugs, manufacturing processes, geometries, treatments, and anatomical locations was assessed using the VOSviewer software. The release periods were also evaluated.
A total of 423 articles, published between 1975 and 2020, were included and grouped into a framework with nine main categories. More than half of studies were published between 2010 and 2020. Among 201 individual polymers or combinations, the most investigated were PLGA, PCL, PLA, Silicone (SIL), EVA, and PU. Similarly, from 232 individual drugs or combinations, the most prominent were dexamethasone (DEX; anti-inflammatory), paclitaxel (PTX; anticancer), fluoruracil (anticancer), ciprofloxacin (CFX) hydrochloride (antibiotic), and gentamicin (GS; antibiotic). A total of 51 manufacturing processes were encountered, of which the most reported were solvent evaporation, compression molding (CM), extrusion (EX), electrospinning (ELS), and melt molding (MM). Among 38 implant geometries, cylinder (CIL) was the most prominent, followed by disk, square film, circular film (FCIR), and undefined film. Release times varied greatly, although the majority of articles ranged between 5 and 300 d.
Drug-delivery implants were highly heterogeneous due to its applicability for multiple health conditions. Most implants were made of PLGA and most drugs assessed presented anti-inflammatory, antibiotic, or anticancer effects. Solvent evaporation and CIL were the most prominent manufacturing process and geometry, respectively.
提供关于药物释放聚合物植入物的临床前研究的性质和范围的系统图谱。
通过总结现有数据,本图谱综述可为新型药物递送装置的开发提供指导。
对评估药物递送植入物的研究进行综述。一项研究方案已在开放科学框架中注册。使用VOSviewer软件评估聚合物与主要药物、制造工艺、几何形状、治疗方法和解剖位置之间的关联。还评估了释放期。
共纳入1975年至2020年间发表的423篇文章,并将其分为一个包含九个主要类别的框架。超过一半的研究发表于2010年至2020年之间。在201种单独的聚合物或组合中,研究最多的是聚乳酸-羟基乙酸共聚物(PLGA)、聚己内酯(PCL)、聚乳酸(PLA)、硅酮(SIL)、乙烯-醋酸乙烯共聚物(EVA)和聚氨酯(PU)。同样,在232种单独的药物或组合中,最突出的是地塞米松(DEX;抗炎药)、紫杉醇(PTX;抗癌药)、氟尿嘧啶(抗癌药)、盐酸环丙沙星(CFX;抗生素)和庆大霉素(GS;抗生素)。共遇到51种制造工艺,其中报道最多的是溶剂蒸发、压缩成型(CM)、挤出(EX)、静电纺丝(ELS)和熔融成型(MM)。在38种植入物几何形状中,圆柱体(CIL)最为突出,其次是圆盘、方形薄膜、圆形薄膜(FCIR)和未定义薄膜。释放时间差异很大,尽管大多数文章报道的时间在5至300天之间。
由于药物递送植入物适用于多种健康状况,因此其具有高度的异质性。大多数植入物由PLGA制成,评估的大多数药物具有抗炎、抗生素或抗癌作用。溶剂蒸发和圆柱体分别是最突出的制造工艺和几何形状。