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冻干稳定了临床阶段的核心交联聚合物胶束,以克服冷链供应挑战。

Lyophilization stabilizes clinical-stage core-crosslinked polymeric micelles to overcome cold chain supply challenges.

机构信息

Department of Nanomedicine and Theranostics, Institute for Experimental Molecular Imaging, Faculty of Medicine, RWTH Aachen University, Aachen, Germany.

Department of Pharmaceutics, Utrecht University, Utrecht, The Netherlands.

出版信息

Biotechnol J. 2021 Jun;16(6):e2000212. doi: 10.1002/biot.202000212. Epub 2021 Feb 11.

Abstract

BACKGROUND

CriPec technology enables the generation of drug-entrapped biodegradable core-crosslinked polymeric micelles (CCPM) with high drug loading capacity, tailorable size, and drug release kinetics. Docetaxel (DTX)-entrapped CCPM, also referred to as CPC634, have demonstrated favorable pharmacokinetics, tolerability, and enhanced tumor uptake in patients. Clinical efficacy evaluation is ongoing. CPC634 is currently stored (shelf life > 5 years) and shipped as a frozen aqueous dispersion at temperatures below -60°C, in order to prevent premature release of DTX and hydrolysis of the core-crosslinks. Consequently, like other aqueous nanomedicine formulations, CPC634 relies on cold chain supply, which is unfavorable for commercialization. Lyophilization can help to bypass this issue.

METHODS AND RESULTS

Freeze-drying methodology for CCPM was developed by employing CPC634 as a model formulation, and sucrose and trehalose as cryoprotectants. We studied the residual moisture content and reconstitution behavior of the CPC634 freeze-dried cake, as well as the size, polydispersity index, morphology, drug retention, and release kinetics of reconstituted CPC634. Subsequently, the freeze-drying methodology was validated in an industrial setting, yielding a CPC634 freeze-dried cake with a moisture content of less than 0.1 wt%. It was found that trehalose-cryoprotected CPC634 could be rapidly reconstituted in less than 5 min at room temperature. Critical quality attributes such as size, morphology, drug retention, and release kinetics of trehalose-cryoprotected freeze-dried CPC634 upon reconstitution were identical to those of non-freeze-dried CPC634.

CONCLUSION

Our findings provide proof-of-concept for the lyophilization of drug-containing CCPM and our methodology is readily translatable to large-scale manufacturing for future commercialization.

摘要

背景

CriPec 技术能够生成载药的可生物降解的核交联聚合物胶束(CCPM),具有高载药能力、可调节的粒径和药物释放动力学。载多西紫杉醇(DTX)的 CCPM,也称为 CPC634,已在患者中显示出良好的药代动力学、耐受性和增强的肿瘤摄取。临床疗效评估正在进行中。CPC634 目前以冷冻状态储存(保质期>5 年)和运输,在低于-60°C 的温度下以冷冻的水性分散体形式运输,以防止 DTX 的过早释放和核交联的水解。因此,与其他水性纳米药物制剂一样,CPC634 依赖于冷链供应,这不利于商业化。冷冻干燥可以帮助解决这个问题。

方法和结果

采用 CPC634 作为模型制剂,以蔗糖和海藻糖作为冷冻保护剂,开发了 CCPM 的冷冻干燥方法。研究了 CPC634 冷冻干燥饼的残余水分含量和复溶行为,以及复溶后 CPC634 的粒径、多分散指数、形态、药物保留率和释放动力学。随后,在工业环境中验证了冷冻干燥方法,得到了水分含量低于 0.1wt%的 CPC634 冷冻干燥饼。结果表明,海藻糖保护的 CPC634 可以在室温下不到 5 分钟内快速复溶。海藻糖保护的冷冻干燥 CPC634 的关键质量属性,如复溶后的粒径、形态、药物保留率和释放动力学,与非冷冻干燥的 CPC634 相同。

结论

我们的研究结果为载药 CCPM 的冷冻干燥提供了概念验证,并且我们的方法易于转化为大规模生产,以用于未来的商业化。

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