Biomedical Engineering Reference
In-Depth Information
17. Kawaguchi, N., Sundberg, C., Kveiborg, M., Moghadaszadeh, B., Asmar, M., Dietrich, N.,
Thodeti, C.K., Nielsen, F.C., Moller, P., Mercurio, A.M., Albrechtsen, R., Wewer, U.M.:
ADAM12 induces actin cytoskeleton and extracellular matrix reorganization during early
adipocyte differentiation by regulating b1 integrin function. J. Cell Sci. 116, 3893-3904
(2003)
18. Lieber, J.G., Evans, R.M.: Disruption of the vimentin intermediate filament system during
adipose conversion of 3T3-L1 cells inhibits lipid droplet accumulation. J. Cell Sci. 109,
3047-3058 (1996)
19. Katsumi, A., Milanini, J., Kiosses, W.B., del Pozo, M.A., Kaunas, R., Chien, S., Hahn,
K.M., Schwartz, M.A.: Effects of cell tension on the small GTPase Rac. J. Cell Biol. 158,
153-164 (2002)
20. Terracio, L., Miller, B., Borg, T.K.: Effects of cyclic mechanical stimulation of the cellular
components of the heart: in vitro. In Vitro Cell. Dev. Biol. 24, 53-58 (1988)
21. Tanabe, Y., Saito, M., Ueno, A., Nakamura, M., Takeishi, K., Nakayama, K.: Mechanical
stretch augments PDGF receptor b expression and protein tyrosine phosphorylation in
pulmonary artery tissue and smooth muscle cells. Mol. Cell. Biochem. 215, 103-113 (2000)
22. Naruse, K., Yamada, T., Sokabe, M.: Involvement of SA channels in orienting response of
cultured endothelial cells to cyclic stretch. Am. J. Physiol. 274, H1532-H1538 (1998)
23. Sai, X., Naruse, K., Sokabe, M.: Activation of pp60src is critical for stretch-induced
orienting response in fibroblasts. J. Cell Sci. 112, 1365-1373 (1999)
24. Wang, J.G., Miyazu, M., Matsushita, E., Sokabe, M., Naruse, K.: Uniaxial cyclic stretch
induces focal adhesion kinase (FAK) tyrosine phosphorylation followed by mitogen-
activated protein kinase (MAPK) activation. Biochem. Biophys. Res. Commun. 288,
356-361 (2001)
25. Yano, Y., Saito, Y., Narumiya, S., Sumpio, B.E.: Involvement of rho p21 in cyclic strain-
induced tyrosine phosphorylation of focal adhesion kinase (pp125FAK), morphological
changes
and
migration
of
endothelial
cells.
Biochem.
Biophys.
Res.
Commun.
224,
508-515 (1996)
26. Akimoto, T., Ushida, T., Miyaki, S., Akaogi, H., Tsuchiya, K., Yan, Z., Williams, R.S.,
Tateishi, T.: Mechanical stretch inhibits myoblast-to-adipocyte differentiation through Wnt
signaling. Biochem. Biophys. Res. Commun. 329, 381-385 (2005)
27. David, V., Martin, A., Lafage-Proust, M.H., Malaval, L., Peyroche, S., Jones, D.B., Vico,
L., Guignandon, A.: Mechanical loading down-regulates peroxisome proliferator-activated
receptor gamma in bone marrow stromal cells and favors osteoblastogenesis at the expense
of adipogenesis. Endocrinology 148, 2553-2562 (2007)
28. Hanson, A.D., Marvel, S.W., Bernacki, S.H., Banes, A.J., van Aalst, J., Loboa, E.G.:
Osteogenic effects of rest inserted and continuous cyclic tensile strain on hASC lines with
disparate osteodifferentiation capabilities. Ann. Biomed. Eng. 37, 955-965 (2009)
29. Khayat, G., Rosenzweig, D.H., Quinn, T.M.: Low frequency mechanical stimulation
inhibits adipogenic differentiation of C3H10T1/2 mesenchymal stem cells. Differentiation
83, 179-184 (2012)
30. Lee, J.S., Ha, L., Park, J.H., Lim, J.Y.: Mechanical stretch suppresses BMP4 induction of
stem cell adipogenesis via upregulating ERK but not through downregulating Smad or p38.
Biochem. Biophys. Res. Commun. 418, 278-283 (2012)
31. Maul, T.M., Chew, D.W., Nieponice, A., Vorp, D.A.: Mechanical stimuli differentially
control stem cell behavior: morphology, proliferation, and differentiation. Biomech. Model.
Mechanobiol. 10, 939-953 (2011)
32. Sen, B., Xie, Z., Case, N., Ma, M., Rubin, C., Rubin, J.: Mechanical strain inhibits
adipogenesis
in
mesenchymal
stem
cells
by
stimulating
a
durable b-catenin
signal.
Endocrinology 149, 6065-6075 (2008)
33. Turner, N.J., Jones, H.S., Davies, J.E., Canfield, A.E.: Cyclic stretch-induced TGFb1/Smad
signaling inhibits adipogenesis in umbilical cord progenitor cells. Biochem. Biophys. Res.
Commun. 377, 1147-1151 (2008)
Search WWH ::




Custom Search