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流体剪切应力加超声复合刺激对干细胞增殖和成骨的影响。

Effects of compound stimulation of fluid shear stress plus ultrasound on stem cell proliferation and osteogenesis.

作者信息

Jing Lingzhi, Fan Suna, Yao Xiang, Zhang Yaopeng

机构信息

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Shanghai Engineering Research Center of Nano-Biomaterials and Regenerative Medicine, College of Materials Science and Engineering, Donghua University, Shanghai 201620, P.R. China.

Jinan Jinquan Bio-Technology Co. Ltd, Jinan 250101, P.R. China.

出版信息

Regen Biomater. 2021 Nov 18;8(6):rbab066. doi: 10.1093/rb/rbab066. eCollection 2021 Dec.

Abstract

Bone tissue with strong adaptability is often in a complex dynamical microenvironment , which is associated with the pathogenesis and treatment of orthopedic diseases. Therefore, it is of great significance to investigate the effects of corresponding compound stimulation on cell behaviors. Herein, a fluid shear stress (FSS) plus ultrasound stimulation platform suitable for cell studies based on a microfluidic chip was constructed and bone marrow mesenchymal stem cell (BMSC) was chosen as a model cell. The proliferation and osteogenesis of BMSCs under the compound stimulation of FSS plus ultrasound in growth medium without any soluble induction factors were firstly investigated. Single FSS stimulation and static culture conditions were also examined. Results illustrated that suitable single FSS stimulation (about 0.06 dyn/cm) could significantly enhance cell proliferation and osteogenesis simultaneously when compared to the static control, while greater FSS mitigated or even restricted these enhancing effects. Interestingly, ultrasound stimulation combined with this suitable FSS stimulation further accelerated cell proliferation as the intensity of ultrasound increasing. As for the osteogenesis under compound stimulation, it was relatively restricted under lower ultrasound intensity (about 0.075 W/cm), while promoted when the intensity became higher (about 1.75 W/cm). This study suggests that both the cell proliferation and osteogenesis are very responsive to the magnitudes of FSS and ultrasound stimulations and can be both significantly enhanced by proper combination strategies. Moreover, these findings will provide valuable references for the construction of effective cell bioreactors and also the treatment of orthopedic diseases.

摘要

具有强大适应性的骨组织通常处于复杂的动态微环境中,这与骨科疾病的发病机制和治疗相关。因此,研究相应的复合刺激对细胞行为的影响具有重要意义。在此,构建了一种基于微流控芯片的适合细胞研究的流体剪切应力(FSS)加超声刺激平台,并选择骨髓间充质干细胞(BMSC)作为模型细胞。首先研究了在不含任何可溶性诱导因子的生长培养基中,FSS加超声的复合刺激下BMSC的增殖和成骨情况。还考察了单一FSS刺激和静态培养条件。结果表明,与静态对照相比,合适的单一FSS刺激(约0.06达因/平方厘米)可同时显著增强细胞增殖和成骨,而更强的FSS会减轻甚至限制这些增强作用。有趣的是,随着超声强度增加,超声刺激与这种合适的FSS刺激相结合进一步加速了细胞增殖。至于复合刺激下的成骨,在较低超声强度(约0.075瓦/平方厘米)下相对受到限制,而当强度升高(约1.75瓦/平方厘米)时则得到促进。本研究表明,细胞增殖和成骨对FSS和超声刺激的强度都非常敏感,并且可以通过适当的组合策略显著增强。此外,这些发现将为有效细胞生物反应器的构建以及骨科疾病的治疗提供有价值的参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8db/8634505/2407074fe889/rbab066f1.jpg

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