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流体动力学和界面力对植物细胞悬浮系统的影响。

Effects of hydrodynamic and interfacial forces on plant cell suspension systems.

作者信息

Kieran P M, Malone D M, MacLoughlin P F

机构信息

Department of Chemical Engineering, University College Dublin, Belfield, Ireland.

出版信息

Adv Biochem Eng Biotechnol. 2000;67:139-77. doi: 10.1007/3-540-47865-5_5.

Abstract

Plant cells are perceived to be sensitive to the hydrodynamic environment in conventional bioreactors. Heightened sensitivity, relative to most bacterial cultures, is frequently attributed to larger plant cell sizes, extensive vacuolization and aggregation patterns. Early studies of shear sensitivity focused on cell lysis and/or loss of viability. More recently, an extensive array of sub-lethal responses has been identified. A fuller understanding of these sub-lytic effects may assist in the optimization of large-scale cultivation conditions. This paper reviews recent work on the hydrodynamic shear sensitivity of plant cell systems, under cultivation conditions and in purpose-built shearing devices. The relevance of different approaches to the characterization of the intensity of a given hydrodynamic environment is discussed. Indicators of cell response to hydrodynamic stress are evaluated. The potential significance of cellular defense mechanisms, observed in response to mechanical stimulants, is identified.

摘要

在传统生物反应器中,植物细胞被认为对流体动力学环境敏感。相对于大多数细菌培养物而言,更高的敏感性通常归因于植物细胞更大的尺寸、广泛的液泡化和聚集模式。早期对剪切敏感性的研究集中在细胞裂解和/或活力丧失上。最近,已经确定了一系列广泛的亚致死反应。对这些亚裂解效应的更全面理解可能有助于优化大规模培养条件。本文综述了在培养条件下和专门设计的剪切装置中,植物细胞系统对流体动力学剪切敏感性的最新研究。讨论了不同方法对于表征给定流体动力学环境强度的相关性。评估了细胞对流体动力学应激反应的指标。确定了响应机械刺激而观察到的细胞防御机制的潜在意义。

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