首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >A rapid method for creating drug implants: translating laboratory-based methods into a scalable manufacturing process.
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A rapid method for creating drug implants: translating laboratory-based methods into a scalable manufacturing process.

机译:创建药物植入物的快速方法:将基于实验室的方法转换为可扩展的制造过程。

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Low compliance with medication is the major cause of poor outcome in schizophrenia treatment. While surgically implantable solvent-cast pellets were produced to improve outcome by increased compliance with medication, this process is laborious and time-consuming, inhibiting its broader application (Siegel et al., Eur J Pharm Biopharm 2006;64:287-293). In this study, the previous fabrication process was translated to a continuous and scalable extrusion method. Extrusion processes were modified based on in vitro release studies, drug load consistency examination, and surface morphology analysis using scanning electron microscopy. Afterward, optimized haloperidol implants were implanted into rats for preliminary analysis of biocompatibility. Barrel temperature, screw speed and resulting processing pressure influenced surface morphology and drug release. Data suggest that fewer surface pores shift the mechanism from bulk to surface PLGA degradation and longer lag period. Results demonstrate that extrusion is a viable process for manufacturing antipsychotic implants.
机译:对药物的依从性低是精神分裂症治疗效果差的主要原因。虽然产生了可通过外科手术植入的溶剂浇铸药丸,以通过增加对药物的依从性来改善结局,但该过程费力且费时,抑制了其更广泛的应用(Siegel等人,Eur J Pharm Biopharm 2006; 64:287-293)。在这项研究中,以前的制造过程被转换为连续且可扩展的挤压方法。基于体外释放研究,药物负载一致性检查和使用扫描电子显微镜的表面形态分析,对挤出工艺进行了修改。然后,将优化的氟哌啶醇植入物植入大鼠体内,以初步分析其生物相容性。机筒温度,螺杆转速和所产生的加工压力会影响表面形态和药物释放。数据表明,更少的表面孔隙将机理从体积降解转移到了表面PLGA降解和更长的滞后时间。结果表明,挤出是制造抗精神病植入物的可行方法。

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