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Continuous synthesis, crystallization, and isolation (CSCI) of an API: process model-controlled enzymatic synthesis of beta-lactam antibiotics

Continuous synthesis, crystallization, and isolation (CSCI) of an API: process model-controlled enzymatic synthesis of beta-lactam antibiotics
API 的连续合成、结晶和分离 (CSCI):过程模型控制的 β-内酰胺抗生素酶促合成
批准号:
9982224
负责人:
ANDREAS S BOMMARIUS
金额:
$47.23万
依托单位国家:
美国
项目类别:
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-09-01 至 2023-05-31

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Project Summary Manufacturing of drugs in continuous processes, instead of the traditional batch processing, is envisioned to lead to more consistent product quality, faster ramp-up in times of shortages, such as during outbreaks of pandemics, and less environmental impact of the production plants. We propose to demonstrate the concept of continuous synthesis, crystallization, and isolation (CSCI) on the example of enzyme-catalyzed beta-lactam antibiotics active pharmaceutical ingredient (API) production. Cephalexin and amoxicillin, representative for cephalosporins and penicillins, respectively, will be our target products. As the FDA has issued Guidances regarding precautions against cross-contamination for both penicillins and cephalosporins, redesign of beta-lactam manufacturing plants towards dedicated facilities will be pertinent and advantageous. Key features of our process include employment of i) an established biocatalyst, Pen G acylase, ii) a recently developed improved kinetic model, and iii) reactive crystallization to enhance selectivity and reduce cycle time. We propose to develop novel integrated reactors and separators as well as an overall process model, to support PAT and process control around a chosen operating point. Our design is intended to enable beta-lactam API production in dedicated, compact, less capital-intensive plants, which in turn is envisioned to lead to better access to medicines for patients and ultimately to less expensive drugs.
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会议论文
Selectivity and kinetic modeling of penicillin G acylase variants for the synthesis of cephalexin under a broad range of substrate concentrations.
在广泛的底物浓度范围内合成头孢氨苄的青霉素 G 酰基转移酶变体的选择性和动力学模型。
DOI: 10.1002/bit.28214
发表时间: 2022
期刊: Biotechnology and bioengineering
影响因子: 3.8
作者: [Harris,PatrickR, Grover,MarthaA, Rousseau,RonaldW, Bommarius,AndreasS]
通讯作者: Bommarius,AndreasS
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