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在搅拌罐生物反应器中培养的细胞悬浮液中抗炎化合物的产生。

Production of anti-inflammatory compounds in cell suspension cultivated in stirred tank bioreactor.

作者信息

Pérez-Hernández Juanita, Nicasio-Torres María Del Pilar, Sarmiento-López Luis Gerardo, Rodríguez-Monroy Mario

机构信息

Centro de Desarrollo de Productos Bióticos (CEPROBI) Instituto Politécnico Nacional (IPN) Yautepec Morelos Mexico.

Centro de Investigación Biomédica del Sur (CIBIS) Instituto Mexicano del Seguro Social (IMSS) Xochitepec Morelos Mexico.

出版信息

Eng Life Sci. 2019 Jan 2;19(3):196-205. doi: 10.1002/elsc.201800134. eCollection 2019 Mar.

Abstract

is a plant used for the treatment of inflammatory processes. Scopoletin, tomentin, and sphaeralcic acid were identified as the compounds with anti-inflammatory and immunomodulatory effects. Successful establishment of the cell culture in Erlenmeyer flasks has been reported previously. The aim of this study was to evaluate the ability of cells in suspension from grown in a stirred tank bioreactor and demonstrate their capacity to produce bioactive compounds. Cells in suspension grown at 200 rpm reached a maximal cell biomass in dry weight at 19.11 g/L and produced 3.47 mg/g of sphaeralcic acid. The mixture of scopoletin and tomentin was only detected at the beginning of the culture (12.13 μg/g). Considering that the profile of dissolved oxygen during the cultures was lesser than 15%, it is possible that the low growth at 100 rpm could be due to oxygen limitations or to cell sedimentation. At 400 rpm, a negative effect on cell viability could be caused by the increase in the hydrodynamic stress, including the impeller tip, average shear rate, and Reynolds number. The sphaeralcic acid content in the cell suspension of obtained in the bioreactor was two orders of magnitude greater than that reported for the culture grown in Erlenmeyer flasks.

摘要

是一种用于治疗炎症过程的植物。东莨菪素、绒毛亭和球花酸被鉴定为具有抗炎和免疫调节作用的化合物。先前已有在锥形瓶中成功建立细胞培养的报道。本研究的目的是评估在搅拌罐生物反应器中生长的悬浮细胞的能力,并证明其产生生物活性化合物的能力。以200 rpm转速生长的悬浮细胞干重达到最大细胞生物量19.11 g/L,并产生3.47 mg/g的球花酸。东莨菪素和绒毛亭的混合物仅在培养开始时被检测到(12.13 μg/g)。考虑到培养过程中溶解氧水平低于15%,100 rpm时生长缓慢可能是由于氧气限制或细胞沉降。在400 rpm时,包括叶轮尖端、平均剪切速率和雷诺数在内的流体动力应力增加可能对细胞活力产生负面影响。在生物反应器中获得的细胞悬浮液中的球花酸含量比在锥形瓶中培养所报道的含量高两个数量级。

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