Control of Bone Matrix Properties by Osteocytes

被引:48
作者
Creecy, Amy [1 ]
Damrath, John G. [2 ]
Wallace, Joseph M. [1 ]
机构
[1] Indiana Univ Purdue Univ, Dept Biomed Engn, Indianapolis, IN 46202 USA
[2] Purdue Univ, Weldon Sch Biomed Engn, W Lafayette, IN 47907 USA
基金
美国国家卫生研究院;
关键词
perilacunar remodeling; lacunocanalicular network; extracellular matrix; collagen; mineral; mechanical loading; INDUCED SOLUTE TRANSPORT; MECHANICAL-PROPERTIES; FLUID-FLOW; OSTEOCLAST DIFFERENTIATION; REGULATORY MECHANISMS; CATHEPSIN K; COLLAGEN; LACUNAR; CELL; OSTEOBLASTS;
D O I
10.3389/fendo.2020.578477
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Osteocytes make up 90-95% of the cellular content of bone and form a rich dendritic network with a vastly greater surface area than either osteoblasts or osteoclasts. Osteocytes are well positioned to play a role in bone homeostasis by interacting directly with the matrix; however, the ability for these cells to modify bone matrix remains incompletely understood. With techniques for examining the nano- and microstructure of bone matrix components including hydroxyapatite and type I collagen becoming more widespread, there is great potential to uncover novel roles for the osteocyte in maintaining bone quality. In this review, we begin with an overview of osteocyte biology and the lacunar-canalicular system. Next, we describe recent findings from in vitro models of osteocytes, focusing on the transitions in cellular phenotype as they mature. Finally, we describe historical and current research on matrix alteration by osteocytes in vivo, focusing on the exciting potential for osteocytes to directly form, degrade, and modify the mineral and collagen in their surrounding matrix.
引用
收藏
页数:10
相关论文
共 104 条
[1]   Weaning triggers a decrease in receptor activator of nuclear factor-κB ligand expression, widespread osteoclast apoptosis, and rapid recovery of bone mass after lactation in mice [J].
Ardeshirpour, Laleh ;
Dann, Pamela ;
Adams, Douglas J. ;
Nelson, Tracey ;
VanHouten, Joshua ;
Horowitz, Mark C. ;
Wysolmerski, John J. .
ENDOCRINOLOGY, 2007, 148 (08) :3875-3886
[2]   Material and mechanical properties of bones deficient for fibrillin-1 or fibrillin-2 microfibrils [J].
Arteaga-Solis, Emilio ;
Sui-Arteaga, Lee ;
Kim, Minwook ;
Schaffler, Mitchell B. ;
Jepsen, Karl J. ;
Pleshko, Nancy ;
Ramirez, Francesco .
MATRIX BIOLOGY, 2011, 30 (03) :188-194
[3]   IDG-SW3 Osteocyte Differentiation and Bone Extracellular Matrix Deposition Are Enhanced in a 3D Matrix Metalloproteinase-Sensitive Hydrogel [J].
Aziz, Aaron H. ;
Wilmoth, Rachel L. ;
Ferguson, Virginia L. ;
Bryant, Stephanie J. .
ACS APPLIED BIO MATERIALS, 2020, 3 (03) :1666-1680
[4]   SOST/sclerostin, an osteocyte-derived negative regulator of bone formation [J].
Bezooijen, RL ;
ten Dijke, P ;
Papapoulos, SE ;
Löwik, CWGM .
CYTOKINE & GROWTH FACTOR REVIEWS, 2005, 16 (03) :319-327
[5]   Proteolytic activity of human osteoclast cathepsin K - Expression, purification, activation, and substrate identification [J].
Bossard, MJ ;
Tomaszek, TA ;
Thompson, SK ;
Amegadzie, BY ;
Hanning, CR ;
Jones, C ;
Kurdyla, JT ;
McNulty, DE ;
Drake, FH ;
Gowen, M ;
Levy, MA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (21) :12517-12524
[6]   Osteoclast differentiation and activation [J].
Boyle, WJ ;
Simonet, WS ;
Lacey, DL .
NATURE, 2003, 423 (6937) :337-342
[7]   Prolonged unloading in growing rats reduces cortical osteocyte lacunar density and volume in the distal tibia [J].
Britz, Hayley M. ;
Carter, Yasmin ;
Jokihaara, Jarkko ;
Leppanen, Olli V. ;
Jarvinen, Teppo L. N. ;
Belev, George ;
Cooper, David M. L. .
BONE, 2012, 51 (05) :913-919
[8]   Bone embrittlement and collagen modifications due to high-dose gamma-irradiation sterilization [J].
Burton, Brianne ;
Gaspar, Anne ;
Josey, David ;
Tupy, Jindra ;
Grynpas, Marc D. ;
Willett, Thomas L. .
BONE, 2014, 61 :71-81
[9]   Potential role for a specialized 3 integrin-based structure on osteocyte processes in bone mechanosensation [J].
Cabahug-Zuckerman, Pamela ;
Stout, Randy F., Jr. ;
Majeska, Robert J. ;
Thi, Mia M. ;
Spray, David C. ;
Weinbaum, Sheldon ;
Schaffler, Mitchell B. .
JOURNAL OF ORTHOPAEDIC RESEARCH, 2018, 36 (02) :642-652
[10]   Abnormal Type I Collagen Post-translational Modification and Crosslinking in a Cyclophilin B KO Mouse Model of Recessive Osteogenesis Imperfecta [J].
Cabral, Wayne A. ;
Perdivara, Irina ;
Weis, MaryAnn ;
Terajima, Masahiko ;
Blissett, Angela R. ;
Chang, Weizhong ;
Perosky, Joseph E. ;
Makareeva, Elena N. ;
Mertz, Edward L. ;
Leikin, Sergey ;
Tomer, Kenneth B. ;
Kozloff, Kenneth M. ;
Eyre, David R. ;
Yamauchi, Mitsuo ;
Marini, Joan C. .
PLOS GENETICS, 2014, 10 (06)