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Macrophage deficiency in osteopetrotic (op/op) mice inhibits activation of satellite cells and prevents hypertrophy in single soleus fibers.

Abstract
Effects of macrophage on the responses of soleus fiber size to hind limb unloading and reloading were studied in osteopetrotic homozygous (op/op) mice with inactivated mutation of macrophage colony-stimulating factor (M-CSF) gene and in wild-type (+/+) and heterozygous (+/op) mice. The basal levels of mitotically active and quiescent satellite cell (-46 and -39% vs. +/+, and -40 and -30% vs. +/op) and myonuclear number (-29% vs. +/+ and -28% vs. +/op) in fibers of op/op mice were significantly less than controls. Fiber length and sarcomere number in op/op were also less than +/+ (-22%) and +/op (-21%) mice. Similar trend was noted in fiber cross-sectional area (CSA, -15% vs. +/+, P = 0.06, and -14% vs. +/op, P = 0.07). The sizes of myonuclear domain, cytoplasmic volume per myonucleus, were identical in all types of mice. The CSA, length, and the whole number of sarcomeres, myonuclei, and mitotically active and quiescent satellite cells, as well as myonuclear domain, in single muscle fibers were decreased after 10 days of unloading in all types of mice, although all of these parameters in +/+ and +/op mice were increased toward the control values after 10 days of reloading. However, none of these levels in op/op mice were recovered. Data suggest that M-CSF and/or macrophages are important to activate satellite cells, which cause increase of myonuclear number during fiber hypertrophy. However, it is unclear why their responses to general growth and reloading after unloading are different.
AuthorsT Ohira, X D Wang, T Ito, F Kawano, K Goto, T Izawa, H Ohno, T Kizaki, Y Ohira
JournalAmerican journal of physiology. Cell physiology (Am J Physiol Cell Physiol) Vol. 308 Issue 10 Pg. C848-55 (May 15 2015) ISSN: 1522-1563 [Electronic] United States
PMID25788575 (Publication Type: Journal Article, Research Support, Non-U.S. Gov't)
CopyrightCopyright © 2015 the American Physiological Society.
Topics
  • Animals
  • Disease Models, Animal
  • Hypertrophy (metabolism, prevention & control)
  • Macrophages (pathology)
  • Male
  • Mice
  • Muscle Fibers, Skeletal (pathology)
  • Muscle, Skeletal (metabolism)
  • Muscular Atrophy (metabolism)
  • Myoblasts (metabolism)
  • Osteopetrosis (metabolism)
  • Satellite Cells, Skeletal Muscle (metabolism)

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