Creative Optimization and Industrial Research of Freeze Drying Process of the Cardiomyopeptidin for Injection

Cardiomyopeptidin is a kind of biological drug used in the perioperative period of cardiac surgery, and the main ingredient of it can help to repair myocardial damage. In the production of cardiomyopeptidin for injection, vacuum freeze drying is a key technology. However, it has to face many difficu...

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Main Authors: Hongyu San, Qingwei Meng, Linlin Liu, Lei Zhang, Jian Du
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2018-08-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/631
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spelling doaj-6d133d0849104333836da498a12b49c92021-02-17T20:58:34ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162018-08-017010.3303/CET1870201Creative Optimization and Industrial Research of Freeze Drying Process of the Cardiomyopeptidin for Injection Hongyu SanQingwei MengLinlin LiuLei ZhangJian DuCardiomyopeptidin is a kind of biological drug used in the perioperative period of cardiac surgery, and the main ingredient of it can help to repair myocardial damage. In the production of cardiomyopeptidin for injection, vacuum freeze drying is a key technology. However, it has to face many difficulties such as the long cycle of freeze drying process (78 h) and large deviation of quality in group which reduce the efficiency of product. Currently, the study of freeze drying process of cardiomyopeptidin for injection is rare. The experiments in this paper were conducted by a miniature freeze dryer, cutting down the cycle of freeze drying process to an ideal value (45 h) and diminishing the deviation of quality in group. At present, many key factors of freeze drying process of the cardiomyopeptidin have been investigated, the optimized freeze drying program successfully cuts down the cycle to 36 h in the pilot freeze dryer. Luckily, the research also found a new auxiliary material which could greatly improve the efficiency of freeze drying. This paper provides a new way for the research of freeze drying process of biological drugs. https://www.cetjournal.it/index.php/cet/article/view/631
collection DOAJ
language English
format Article
sources DOAJ
author Hongyu San
Qingwei Meng
Linlin Liu
Lei Zhang
Jian Du
spellingShingle Hongyu San
Qingwei Meng
Linlin Liu
Lei Zhang
Jian Du
Creative Optimization and Industrial Research of Freeze Drying Process of the Cardiomyopeptidin for Injection
Chemical Engineering Transactions
author_facet Hongyu San
Qingwei Meng
Linlin Liu
Lei Zhang
Jian Du
author_sort Hongyu San
title Creative Optimization and Industrial Research of Freeze Drying Process of the Cardiomyopeptidin for Injection
title_short Creative Optimization and Industrial Research of Freeze Drying Process of the Cardiomyopeptidin for Injection
title_full Creative Optimization and Industrial Research of Freeze Drying Process of the Cardiomyopeptidin for Injection
title_fullStr Creative Optimization and Industrial Research of Freeze Drying Process of the Cardiomyopeptidin for Injection
title_full_unstemmed Creative Optimization and Industrial Research of Freeze Drying Process of the Cardiomyopeptidin for Injection
title_sort creative optimization and industrial research of freeze drying process of the cardiomyopeptidin for injection
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2018-08-01
description Cardiomyopeptidin is a kind of biological drug used in the perioperative period of cardiac surgery, and the main ingredient of it can help to repair myocardial damage. In the production of cardiomyopeptidin for injection, vacuum freeze drying is a key technology. However, it has to face many difficulties such as the long cycle of freeze drying process (78 h) and large deviation of quality in group which reduce the efficiency of product. Currently, the study of freeze drying process of cardiomyopeptidin for injection is rare. The experiments in this paper were conducted by a miniature freeze dryer, cutting down the cycle of freeze drying process to an ideal value (45 h) and diminishing the deviation of quality in group. At present, many key factors of freeze drying process of the cardiomyopeptidin have been investigated, the optimized freeze drying program successfully cuts down the cycle to 36 h in the pilot freeze dryer. Luckily, the research also found a new auxiliary material which could greatly improve the efficiency of freeze drying. This paper provides a new way for the research of freeze drying process of biological drugs.
url https://www.cetjournal.it/index.php/cet/article/view/631
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AT qingweimeng creativeoptimizationandindustrialresearchoffreezedryingprocessofthecardiomyopeptidinforinjection
AT linlinliu creativeoptimizationandindustrialresearchoffreezedryingprocessofthecardiomyopeptidinforinjection
AT leizhang creativeoptimizationandindustrialresearchoffreezedryingprocessofthecardiomyopeptidinforinjection
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