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Bioprocess Forces and Their Impact on Cell Behavior: Implications for Bone Regeneration Therapy

机译:生物过程力及其对细胞行为的影响:对骨再生治疗的意义。

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Bioprocess forces such as shear stress experienced during routine cell culture are considered to be harmful to cells. However, the impact of physical forces on cell behavior is an area of growing interest within the tissue engineering community, and it is widely acknowledged that mechanical stimulation including shear stress can enhance osteogenic differentiation. This paper considers the effects of bioprocess shear stress on cell responses such as survival and proliferation in several contexts, including suspension-adapted cells used for recombinant protein and monoclonal antibody manufacture, adherent cells for therapy in suspension, and adherent cells attached to their growth substrates. The enhanced osteogenic differentiation that fluid flow shear stress is widely found to induce is discussed, along with the tissue engineering of mineralized tissue using perfusion bioreactors. Recent evidence that bioprocess forces produced during capillary transfer or pipetting of cell suspensions can enhance osteogenic responses is also discussed.
机译:常规细胞培养过程中经历的生物过程力(例如剪切应力)被认为对细胞有害。然而,物理力对细胞行为的影响是组织工程界日益关注的一个领域,并且广泛公认的是,包括剪切应力在内的机械刺激可以增强成骨分化。本文考虑了生物过程剪切应力在多种情况下对细胞响应(例如存活和增殖)的影响,包括用于重组蛋白和单克隆抗体生产的悬浮液适应细胞,用于悬浮液治疗的贴壁细胞以及附着在其生长基质上的贴壁细胞。讨论了广泛发现流体剪切应力引起的增强成骨分化,以及使用灌注生物反应器的矿化组织的组织工程。还讨论了在毛细管转移或移液细胞悬液过程中产生的生物过程力可以增强成骨反应的最新证据。

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