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评估质构仪得出的流变学数据,以预测 gummy 配方在 SSE 3D 打印中的可打印性。

Assessing texturometer-derived rheological data for predicting the printability of gummy formulations in SSE 3D printing.

机构信息

RAPSODEE, IMT Mines Albi, CNRS, University of Toulouse, 81013 Albi, France.

RAPSODEE, IMT Mines Albi, CNRS, University of Toulouse, 81013 Albi, France.

出版信息

Int J Pharm. 2024 Sep 5;662:124471. doi: 10.1016/j.ijpharm.2024.124471. Epub 2024 Jul 15.

DOI:10.1016/j.ijpharm.2024.124471
PMID:39019295
Abstract

Semi-solid extrusion (SSE), an additive manufacturing technique, is gaining significant attention for the printing of thermosensitive drugs. Hydrogels, one of the materials used in SSE, have emerged as a focus in pharmaceutical applications due to their ability to control the release of therapeutic agents spatially and temporally. Understanding the non-Newtonian flow and evaluating the mechanical properties of hydrogel-based materials during extrusion is, however, essential for successful 3D printing. Thus, users often find themselves conducting both rheological and texture profile analyses to characterize the hydrogel. While texturometers are primarily used to evaluate mechanical or sensory properties, viscosity measurements are typically performed using rotational rheometers or viscometers. In this study, we demonstrated how comparable rheological information can be obtained using a texturometer as a capillary rheometer. By preparing similar formulations to a previous study, we compared the rheological data obtained from a rotational rheometer to the data obtained from the texturometer. The means of the parameters obtained by fitting the data from both techniques to the power law model showed insignificant differences. In addition, three clusters were formed based on the flow behaviour and printability of the samples using principal component analysis. Furthermore, the printability was predicted using the samples' consistency and flow indexes, and the regression coefficient was 96.62 and 60.03% for capillary and rotational flow parameters, respectively. This approach thus holds the potential to streamline the time, expertise and equipment required for the rheological characterization of hydrogels for applications in semi-solid extrusion.

摘要

半固态挤出(SSE)是一种增材制造技术,由于其能够在空间和时间上控制治疗剂的释放,因此在制药应用中作为一种关注焦点的水凝胶,已经成为该技术中使用的材料之一。然而,为了成功进行 3D 打印,了解水凝胶基材料在挤出过程中的非牛顿流变性并评估其力学性能是至关重要的。因此,用户通常会发现自己需要同时进行流变学和质地剖面分析来对水凝胶进行特性描述。虽然质构仪主要用于评估机械或感官特性,但通常使用旋转流变仪或粘度计进行粘度测量。在这项研究中,我们展示了如何使用质构仪作为毛细管流变仪来获得可比的流变学信息。通过制备与先前研究类似的配方,我们比较了从旋转流变仪获得的流变数据与从质构仪获得的数据。通过将两种技术获得的数据拟合到幂律模型中得到的参数的平均值没有显着差异。此外,基于主成分分析,使用三个聚类形成了基于样本流动行为和可打印性的聚类。此外,使用样品的稠度和流动指数预测了可打印性,毛细管和旋转流动参数的回归系数分别为 96.62%和 60.03%。因此,这种方法有可能简化水凝胶在半固态挤出应用中的流变学特性所需的时间、专业知识和设备。

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