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Personalised 3D Printed Fast-Dissolving Tablets for Managing Hypertensive Crisis: In-Vitro/In-Vivo Studies

机译:用于管理高血压危机的个性化3D印刷快速溶解片:在体外/体内研究

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摘要

Hypertensive crisis (HC) is an emergency health condition which requires an effective management strategy. Over the years, various researchers have developed captopril based fast-dissolving formulations to manage HC; however, primarily, the question of personalisation remains unaddressed. Moreover, commercially these formulations are available as in fixed-dose combinations or strengths, so the titration of dose according to patient’s prerequisite is challenging to achieve. The recent emergence of 3D printing technologies has given pharmaceutical scientists a way forward to develop personalised medicines keeping in view patients individual needs. The current project, therefore, is aimed at addressing the limitations as mentioned above by developing fast-dissolving captopril tablets using 3D printing approach. Captopril unloaded (F1) and loaded (F2-F4) filaments were successfully produced with an acceptable drug loading and mechanical properties. Various captopril formulations (F2–F4) were successfully printed using fused deposition modelling technique. The results revealed that the formulations (F2 and F3) containing superdisintegrant had a faster extent of dissolution and in-vivo findings were endorsing these results. The present study has successfully exhibited the utilisation of additive manufacturing approach to mend the gap of personalisation and manufacturing fast-dissolving captopril 3D printed tablets. The procedure adopted in the present study may be used for the development of fused deposition modelling (FDM) based fast-dissolving 3D printed tablets.
机译:高血压危机(HC)是一种紧急健康状况,需要有效的管理策略。多年来,各种研究人员已经开发了基于卡托普利的快速溶解配方来管理HC;然而,主要是,个性化问题仍然是未解决的。此外,商业上这些配方可用作固定剂量组合或强度,因此根据患者的先决条件滴定剂量是具有挑战性的。最近的3D印刷技术的出现给出了制药科学家的方式,以便在观点的个人需求中展开个性化药物。因此,目前的项目旨在通过使用3D印刷方法开发快速溶解的卡托普利片剂来解决上述限制。 Captopril卸载(F1)和装载(F2-F4)丝,通过可接受的药物负载和机械性能成功地生产。使用融合沉积建模技术成功打印各种卡托普利制剂(F2-F4)。结果表明,含有超二聚体的制剂(F2和F3)具有更快的溶解程度和体内发现均有这些结果。本研究成功地展现利用添加剂制造方法来修补个性化和制造快速溶解的卡托普利3D印刷片剂的间隙。本研究中采用的程序可用于开发基于融合沉积建模(FDM)的快速溶解3D印刷片。

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