| Literature DB >> 28371409 |
Tatiana Uynuk-Ool1, Miriam Rothdiener1, Brandan Walters2, Miriam Hegemann3, Julian Palm1, Phong Nguyen1, Tanja Seeger4, Ulrich Stöckle5, Jan P Stegemann2, Wilhelm K Aicher3, Bodo Kurz6, Melanie L Hart1, Gerd Klein4, Bernd Rolauffs7.
Abstract
Controlling mesenchymal stromal cell (MSC) shape is a novel method for investigating and directing MSC behaviour in vitro. it was hypothesized that specifigc MSC shapes can be generated by using stiffness-defined biomaterial surfaces and by applying cyclic tensile forces. Biomaterials used were thin and thick silicone sheets, fibronectin coating, and compacted collagen type I sheets. The MSC morphology was quantified by shape descriptors describing dimensions and membrane protrusions. Nanoscale stiffness was measured by atomic force microscopy and the expression of smooth muscle cell (SMC) marker genes (ACTA2, TAGLN, CNN1) by quantitative reverse-transcription polymerase chain reaction. Cyclic stretch was applied with 2.5% or 5% amplitudes. Attachment to biomaterials with a higher stiffness yielded more elongated MSCs with fewer membrane protrusions compared with biomaterials with a lower stiffness. For cyclic stretch, compacted collagen sheets were selected, which were associated with the most elongated MSC shape across all investigated biomaterials. As expected, cyclic stretch elongated MSCs during stretch. One hour after cessation of stretch, however, MSC shape was rounder again, suggesting loss of stretch-induced shape. Different shape descriptor values obtained by different stretch regimes correlated significantly with the expression levels of SMC marker genes. Values of approximately 0.4 for roundness and 3.4 for aspect ratio were critical for the highest expression levels of ACTA2 and CNN1. Thus, specific shape descriptor values, which can be generated using biomaterial-associated stiffness and tensile forces, can serve as a template for the induction of specific gene expression levels in MSC.Entities:
Keywords: MSC; aspect ratio; biomaterial; circularity; compacted collagen; cyclic stretch; mesenchymal stromal cell; myogenic differentiation; nanoscale stiffness; roundness; shape; shape descriptor; silicone; solidity
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Year: 2017 PMID: 28371409 DOI: 10.1002/term.2263
Source DB: PubMed Journal: J Tissue Eng Regen Med ISSN: 1932-6254 Impact factor: 3.963