Dipartimento di Scienza Applicata e Tecnologia, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129, Torino, Italy.
Pharm Res. 2021 Apr;38(4):707-719. doi: 10.1007/s11095-021-03023-x. Epub 2021 Mar 8.
Present (i) an infrared (IR)-based Process Analytical Technology (PAT) installed in a lab-scale freeze-dryer and (ii) a micro freeze-dryer (MicroFD®) as effective tools for freeze-drying design space calculation of the primary drying stage.
The case studies investigated are the freeze-drying of a crystalline (5% mannitol) and of an amorphous (5% sucrose) solution processed in 6R vials. The heat (K) and the mass (R) transfer coefficients were estimated: tests at 8, 13 and 26 Pa were carried out to assess the chamber pressure effect on K. The design space of the primary drying stage was calculated using these parameters and a well-established model-based approach. The results obtained using the proposed tools were compared to the ones in case K and R were estimated in a lab-scale unit through gravimetric tests and a thermocouple-based method, respectively.
The IR-based method allows a non-gravimetric estimation of the K values while with the micro freeze-dryer gravimetric tests require a very small number of vials. In both cases, the obtained values of K and R, as well as the resulting design spaces, were all in very good agreement with those obtained in a lab-scale unit through the gravimetric tests (K) and the thermocouple-based method (R).
The proposed tools can be effectively used for design space calculation in substitution of other well-spread methods. Their advantages are mainly the less laborious K estimation process and, as far as the MicroFD® is concerned, the possibility of saving time and formulation material when evaluating R.
(i)介绍一种安装在实验室规模冷冻干燥器中的基于红外(IR)的过程分析技术(PAT),以及一种微冷冻干燥器(MicroFD®),作为计算初级干燥阶段冷冻干燥设计空间的有效工具。
研究的案例是在 6R 小瓶中处理的结晶(5%甘露醇)和无定形(5%蔗糖)溶液的冷冻干燥。估计了热(K)和质量(R)传递系数:在 8、13 和 26 Pa 下进行了测试,以评估腔室压力对 K 的影响。使用这些参数和经过验证的基于模型的方法计算了初级干燥阶段的设计空间。使用所提出的工具获得的结果与在实验室规模单元中通过重量法和热电偶法分别估算 K 和 R 的情况下的结果进行了比较。
基于 IR 的方法允许非重量法估算 K 值,而使用微冷冻干燥器进行重量法测试需要非常少的小瓶。在这两种情况下,获得的 K 和 R 值以及由此产生的设计空间,都与通过重量法(K)和热电偶法(R)在实验室规模单元中获得的值非常吻合。
所提出的工具可有效用于设计空间计算,替代其他广泛使用的方法。它们的优点主要是 K 估计过程不那么繁琐,而就 MicroFD®而言,在评估 R 时可以节省时间和配方材料。