Multiple calcium patterns of rat osteoblasts under fluidic shear stress.
basic_science · Level V
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- Record sourced from PubMed, PMID 29266507.
- Also identified by DOI 10.1002/jor.23843.
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Abstract
The intracellular calcium ([Ca<sup>2+</sup> ]<sub>i</sub> ) response induced by external forces can be diverse and complex. Using primary osteoblasts from Wistar rats, we found multiple patterns of [Ca<sup>2+</sup> ]<sub>i</sub> responses induced by fluidic shear stress (Fss), including homogeneous non-oscillation and heterogeneous oscillations. These multiple-patterned [Ca<sup>2+</sup> ]<sub>i</sub> responses could be influenced by Fss intensity, cell density, and cell differentiation. Our real-time measurements with free calcium, ATP, ATP without calcium, suramin, apyrase, and thapsigargin confirmed homogeneous [Ca<sup>2+</sup> ]<sub>i</sub> patterns and/or heterogeneous [Ca<sup>2+</sup> ]<sub>i</sub> oscillations with respect to the combined degree of external Ca<sup>2+</sup> influx, and intracellular Ca<sup>2+</sup> release. Our theoretical model supported diverse Fss-induced calcium activities as well. We concluded that a singular factor of Ca<sup>2+</sup> influx or release dominated to produce smooth homogeneous patterns, but combined factors produced oscillatory heterogeneous patterns. © 2017 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 36:2039-2051, 2018.
Medical subject headings
- Calcium
- Microfluidics
- Osteoblasts
- Stress, Mechanical