Effects of spaceflight on cancellous and cortical bone in proximal femur in growing rats

Bone Reports - Tập 14 - Trang 100755 - 2021
Amanda Gamboa1, Adam J. Branscum2, Dawn A. Olson1, Lara H. Sattgast1, Urszula T. Iwaniec1,3, Russell T. Turner1,3
1Skeletal Biology Laboratory, School of Biological and Population Health Sciences, Oregon State University, Corvallis, OR 97331, USA
2Biostatistics Program, School of Biological and Population Health Sciences, Oregon State University, Corvallis, OR 97331, USA
3Center for Healthy Aging Research, Oregon State University, Corvallis, OR, 97331, USA

Tài liệu tham khảo

Backup, 1994, Spaceflight results in reduced mRNA levels for tissue-specific proteins in the musculoskeletal system, Am. J. Phys., 266, E567 Bikle, 1999, The response of bone to unloading, J. Bone Miner. Metab., 17, 233, 10.1007/s007740050090 Blaber, 2014, Mechanical unloading of bone in microgravity reduces mesenchymal and hematopoietic stem cell-mediated tissue regeneration, Stem Cell Res., 13, 181, 10.1016/j.scr.2014.05.005 Cavolina, 1997, The effects of orbital spaceflight on bone histomorphometry and messenger ribonucleic acid levels for bone matrix proteins and skeletal signaling peptides in ovariectomized growing rats, Endocrinology, 138, 1567, 10.1210/endo.138.4.5040 Durnova, 1996, Investigation of tibial bones of the rats exposed on board “Spacelab-2”:histomorphometric analysis, Aviakosm. Ekolog. Med., 30, 21 Evans, 1998, Spaceflight has compartment- and gene-specific effects on mRNA levels for bone matrix proteins in rat femur, J. Appl. Physiol., 84, 2132, 10.1152/jappl.1998.84.6.2132 Gerbaix, 2017, One-month spaceflight compromises the bone microstructure, tissue-level mechanical properties, osteocyte survival and lacunae volume in mature mice skeletons, Sci. Rep., 7, 2659, 10.1038/s41598-017-03014-2 Jee, 1983, Effects of spaceflight on trabecular bone in rats, Am. J. Phys., 244, R310 Keune, 2015, Effects of spaceflight on bone microarchitecture in the axial and appendicular skeleton in growing ovariectomized rats, Sci. Rep., 5, 18671, 10.1038/srep18671 Keune, 2016, Spaceflight-induced vertebral bone loss in ovariectomized rats is associated with increased bone marrow adiposity and no change in bone formation, NPJ Microgravity, 2, 16016, 10.1038/npjmgrav.2016.16 Keyak, 2009, Reduction in proximal femoral strength due to long-duration spaceflight, Bone, 44, 449, 10.1016/j.bone.2008.11.014 Lang, 2006, Adaptation of the proximal femur to skeletal reloading after long-duration spaceflight, J. Bone Miner. Res., 21, 1224, 10.1359/jbmr.060509 Luo, 2000, Effects of mechanical stress/strain and estrogen on cancellous bone structure predicted by fuzzy decision, IEEE Trans. Biomed. Eng., 47, 344, 10.1109/10.827295 Morey, 1978, Inhibition of bone formation during space flight, Science, 201, 1138, 10.1126/science.150643 Morey-Holton, 2000, Animal housing influences the response of bone to spaceflight in juvenile rats, J. Appl. Physiol., 88, 1303, 10.1152/jappl.2000.88.4.1303 Moyer, 2016, Evaluation of rodent spaceflight in the NASA animal enclosure module for an extended operational period (up to 35 days), NPJ Microgravity, 2, 16002, 10.1038/npjmgrav.2016.2 Patterson-Buckendahl, 1987, Fragility and composition of growing rat bone after one week in spaceflight, Am. J. Phys., 252, R240 Scolaro, 2017, Management and radiographic outcomes of femoral head fractures, J. Orthop. Traumatol., 18, 235, 10.1007/s10195-017-0445-z Shirazi-Fard, 2013, Previous exposure to simulated microgravity does not exacerbate bone loss during subsequent exposure in the proximal tibia of adult rats, Bone, 56, 461, 10.1016/j.bone.2013.07.004 Sibonga, 2013, Spaceflight-induced bone loss: is there an osteoporosis risk?, Curr Osteoporos Rep, 11, 92, 10.1007/s11914-013-0136-5 Sibonga, 2007, Recovery of spaceflight-induced bone loss: bone mineral density after long-duration missions as fitted with an exponential function, Bone, 41, 973, 10.1016/j.bone.2007.08.022 Smith, 2020, Inhibition of myostatin prevents microgravity-induced loss of skeletal muscle mass and strength, PLoS One, 15 Spengler, 1983, Effects of spaceflight on structural and material strength of growing bone, Proc. Soc. Exp. Biol. Med., 174, 224, 10.3181/00379727-174-41729 Sun, 2010, Evaluation of the nutrient-upgraded rodent food bar for rodent spaceflight experiments, Nutrition, 26, 1163, 10.1016/j.nut.2009.09.018 Tavella, 2012, Bone turnover in wild type and pleiotrophin-transgenic mice housed for three months in the international Space Station (ISS), PLoS One, 7, 10.1371/journal.pone.0033179 Tou, 2003, Evaluation of NASA Foodbars as a standard diet for use in short-term rodent space flight studies, Nutrition, 19, 947, 10.1016/j.nut.2003.08.005 Tsuda, 2017, Epidemiology of fragility fractures and fall prevention in the elderly: a systematic review of the literature, Curr Orthop Pract, 28, 580, 10.1097/BCO.0000000000000563 Turner, 1995, Effects of short-term spaceflight and recombinant human growth hormone (rhGH) on bone growth in young rats, Aviat. Space Environ. Med., 66, 763 Turner, 1995, Spaceflight results in depressed cancellous bone formation in rat humeri, Aviat. Space Environ. Med., 66, 770 Turner, 2000, Invited review: what do we know about the effects of spaceflight on bone?, J. Appl. Physiol., 89, 840, 10.1152/jappl.2000.89.2.840 Turner, 2019, Effects of a four-day spaceflight and recombinant human growth hormone on cancellous bone microarchitecture in femoral head of rapidly growing male mice, Matters Select, 5 Vico, 1993, Histomorphometric analyses of cancellous bone from COSMOS 2044 rats, J. Appl. Physiol., 75, 2203, 10.1152/jappl.1993.75.5.2203 Westerlind, 1995, The skeletal effects of spaceflight in growing rats: tissue-specific alterations in mRNA levels for TGF-beta, J. Bone Miner. Res., 10, 843, 10.1002/jbmr.5650100603 Westerlind, 1997, Estrogen regulates the rate of bone turnover but bone balance in ovariectomized rats is modulated by prevailing mechanical strain, Proc. Natl. Acad. Sci. U. S. A., 94, 4199, 10.1073/pnas.94.8.4199 Wronski, 1983, Effect of spaceflight on periosteal bone formation in rats, Am. J. Phys., 244, R305 Wronski, 1987, Histomorphometric analysis of rat skeleton following spaceflight, Am. J. Phys., 252, R252 Wronski, 1998, Lack of effect of spaceflight on bone mass and bone formation in group-housed rats, J. Appl. Physiol., 85, 279, 10.1152/jappl.1998.85.1.279 Zerath, 2000, Spaceflight inhibits bone formation independent of corticosteroid status in growing rats, J. Bone Miner. Res., 15, 1310, 10.1359/jbmr.2000.15.7.1310 Zernicke, 1990, Spaceflight effects on biomechanical and biochemical properties of rat vertebrae, Am. J. Phys., 258, R1327 Zhang, 1998, The effects of spaceflight on mRNA levels for cytokines in proximal tibia of ovariectomized rats, Aviat. Space Environ. Med., 69, 626