131 Publications (Page 1 of 6)
2021
Sclerostin Depletion Induces Inflammation in the Bone Marrow of MiceDonham, Cristine⋅Donham, Cristine⋅Chicana, Betsabel⋅Chicana, Betsabel⋅Robling, Alexander G⋅Robling, Alexander G⋅Mohamed, Asmaa⋅Mohamed, Asmaa⋅Elizaldi, Sonny⋅Elizaldi, Sonny⋅Chi, Michael⋅Chi, Michael⋅Freeman, Brian⋅Freeman, Brian⋅Millan, Alberto⋅Millan, Alberto⋅Murugesh, Deepa K⋅Murugesh, Deepa K⋅Hum, Nicholas R⋅Hum, Nicholas R⋅⋅⋅Loots, Gabriela G⋅Loots, Gabriela G⋅Manilay, Jennifer O and Manilay, Jennifer OInternational Journal of Molecular Sciences, vol. 22, (no. 17), 2021.
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2020
An osteocalcin-deficient mouse strain without endocrine abnormalitiesDiegel, Cassandra R⋅Diegel, Cassandra R⋅Diegel, Cassandra R⋅Hann, Steven⋅Hann, Steven⋅Hann, Steven⋅Ayturk, Ugur M⋅Ayturk, Ugur M⋅Ayturk, Ugur M⋅Hu, Jennifer C⋅Hu, Jennifer C⋅Hu, Jennifer C⋅Lim, Kyung-eun⋅Lim, Kyung-eun⋅Lim, Kyung-eun⋅Droscha, Casey J⋅Droscha, Casey J⋅Droscha, Casey J⋅Madaj, Zachary B⋅Madaj, Zachary B⋅Madaj, Zachary B⋅Foxa, Gabrielle E⋅Foxa, Gabrielle E⋅Foxa, Gabrielle E⋅Izaguirre, Isaac⋅Izaguirre, Isaac⋅Izaguirre, Isaac⋅Paracha, Noorulain⋅Paracha, Noorulain⋅Paracha, Noorulain⋅Pidhaynyy, Bohdan⋅Pidhaynyy, Bohdan⋅Pidhaynyy, Bohdan⋅Dowd, Terry L⋅Dowd, Terry L⋅Dowd, Terry L⋅Robling, Alexander G⋅Robling, Alexander G⋅Robling, Alexander G⋅Warman, Matthew L⋅Warman, Matthew L⋅Warman, Matthew L⋅Williams, Bart O⋅Williams, Bart O and Williams, Bart OPLoS Genetics, vol. 16, (no. 5), May 2020.
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Combination therapy in the Col1a2 G610C mouse model of Osteogenesis Imperfecta reveals an additive effect of enhancing LRP5 signaling and inhibiting TGFβ signaling on trabecular bone but not on cortical boneKaupp, Shannon⋅Horan, Dan J⋅Lim, Kyung-Eun⋅Feldman, Henry A⋅Robling, Alexander G⋅Warman, Matthew L and Jacobsen, Christina MBone, vol. 131, pp. 115084, 2020-Feb.
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Combination therapy in the Col1a2G610C mouse model of Osteogenesis Imperfecta reveals an additive effect of enhancing LRP5 signaling and inhibiting TGFβ signaling on trabecular bone but not on cortical boneKaupp, Shannon⋅Horan, Dan J⋅Lim, Kyung-Eun⋅Feldman, Henry A⋅Robling, Alexander G⋅Warman, Matthew L and Jacobsen, Christina MBone, vol. 131, pp. 115084, February 2020.
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Skeletal loading regulates breast cancer-associated osteolysis in a loading intensity-dependent fashionFan, Yao⋅Fan, Yao⋅Fan, Yao⋅Fan, Yao⋅Jalali, Aydin⋅Jalali, Aydin⋅Jalali, Aydin⋅Jalali, Aydin⋅Chen, Andy⋅Chen, Andy⋅Chen, Andy⋅Chen, Andy⋅Zhao, Xinyu⋅Zhao, Xinyu⋅Zhao, Xinyu⋅Zhao, Xinyu⋅Liu, Shengzhi⋅Liu, Shengzhi⋅Liu, Shengzhi⋅Liu, Shengzhi⋅Teli, Meghana⋅Teli, Meghana⋅Teli, Meghana⋅Teli, Meghana⋅Guo, Yunxia⋅Guo, Yunxia⋅Guo, Yunxia⋅Guo, Yunxia⋅Li, Fangjia⋅Li, Fangjia⋅Li, Fangjia⋅Li, Fangjia⋅Li, Junrui⋅Li, Junrui⋅Li, Junrui⋅Li, Junrui⋅Siegel, Amanda⋅Siegel, Amanda⋅Siegel, Amanda⋅Siegel, Amanda⋅Yang, Lianxiang⋅Yang, Lianxiang⋅Yang, Lianxiang⋅Yang, Lianxiang⋅Liu, Jing⋅Liu, Jing⋅Liu, Jing⋅Liu, Jing⋅Na, Sungsoo⋅Na, Sungsoo⋅Na, Sungsoo⋅Na, Sungsoo⋅Agarwal, Mangilal⋅Agarwal, Mangilal⋅Agarwal, Mangilal⋅Agarwal, Mangilal⋅Robling, Alexander G⋅Robling, Alexander G⋅Robling, Alexander G⋅Robling, Alexander G⋅Nakshatri, Harikrishna⋅Nakshatri, Harikrishna⋅Nakshatri, Harikrishna⋅Nakshatri, Harikrishna⋅Li, Bai-Yan⋅Li, Bai-Yan⋅Li, Bai-Yan⋅Li, Bai-Yan⋅Yokota, Hiroki⋅Yokota, Hiroki⋅Yokota, Hiroki and Yokota, HirokiBone research, vol. 8, (no. 1), pp. 9, 2020-00-00.
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The mTORC2 component Rictor is required for load‐induced bone formation in late‐stage skeletal cellsLewis, Karl J⋅Yi, Xin⋅Wright, Christian S⋅Pemberton, Emily Z⋅Bullock, Whitney A⋅Thompson, William R and Robling, Alexander GJBMR Plus, 2020-04-17.
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The Osteocyte: New InsightsRobling, Alexander G and Bonewald, Lynda FAnnual Review of Physiology, vol. 82, (no. 1), pp. 506, 20200210.
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YAP and TAZ Mediate Osteocyte Perilacunar/Canalicular RemodelingKegelman, Christopher D⋅Kegelman, Christopher D⋅Coulombe, Jennifer C⋅Coulombe, Jennifer C⋅Jordan, Kelsey M⋅Jordan, Kelsey M⋅Horan, Daniel J⋅Horan, Daniel J⋅Qin, Ling⋅Qin, Ling⋅Robling, Alexander G⋅Robling, Alexander G⋅Ferguson, Virginia L⋅Ferguson, Virginia L⋅Bellido, Teresita M⋅Bellido, Teresita M⋅Boerckel, Joel D and Boerckel, Joel DJournal of Bone and Mineral Research, vol. 35, (no. 1), pp. 210, January 2020.
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2019
Differential changes in bone strength of two inbred mouse strains following administration of a sclerostin-neutralizing antibody during growthMathis, Noah J⋅Mathis, Noah J⋅Adaniya, Emily N⋅Adaniya, Emily N⋅Smith, Lauren M⋅Smith, Lauren M⋅Robling, Alexander G⋅Robling, Alexander G⋅Jepsen, Karl J⋅Jepsen, Karl J⋅Schlecht, Stephen H and Schlecht, Stephen HPloS one, vol. 14, (no. 4), pp. e0214520, 2019-00-00.
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Expression of a Degradation‐Resistant β‐Catenin Mutant in Osteocytes Protects the Skeleton From Mechanodeprivation‐Induced Bone WastingBullock, Whitney A⋅Bullock, Whitney A⋅Bullock, Whitney A⋅Hoggatt, April M⋅Hoggatt, April M⋅Hoggatt, April M⋅Horan, Daniel J⋅Horan, Daniel J⋅Horan, Daniel J⋅Lewis, Karl J⋅Lewis, Karl J⋅Lewis, Karl J⋅Yokota, Hiroki⋅Yokota, Hiroki⋅Yokota, Hiroki⋅Hann, Steven⋅Hann, Steven⋅Hann, Steven⋅Warman, Matthew L⋅Warman, Matthew L⋅Warman, Matthew L⋅Sebastian, Aimy⋅Sebastian, Aimy⋅Sebastian, Aimy⋅Loots, Gabriela G⋅Loots, Gabriela G⋅Loots, Gabriela G⋅Pavalko, Fredrick M⋅Pavalko, Fredrick M⋅Pavalko, Fredrick M⋅Robling, Alexander G⋅Robling, Alexander G and Robling, Alexander GJournal of Bone and Mineral Research, vol. 34, (no. 10), pp. 1975, October 2019.
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Loss of Nmp4 optimizes osteogenic metabolism and secretion to enhance bone qualityShao, Yu⋅Shao, Yu⋅Shao, Yu⋅Shao, Yu⋅Shao, Yu⋅Shao, Yu⋅Shao, Yu⋅Shao, Yu⋅Wichern, Emily⋅Wichern, Emily⋅Wichern, Emily⋅Wichern, Emily⋅Wichern, Emily⋅Wichern, Emily⋅Wichern, Emily⋅Wichern, Emily⋅Childress, Paul J⋅Childress, Paul J⋅Childress, Paul J⋅Childress, Paul J⋅Childress, Paul J⋅Childress, Paul J⋅Childress, Paul J⋅Childress, Paul J⋅Adaway, Michele⋅Adaway, Michele⋅Adaway, Michele⋅Adaway, Michele⋅Adaway, Michele⋅Adaway, Michele⋅Adaway, Michele⋅Adaway, Michele⋅Misra, Jagannath⋅Misra, Jagannath⋅Misra, Jagannath⋅Misra, Jagannath⋅Misra, Jagannath⋅Misra, Jagannath⋅Misra, Jagannath⋅Misra, Jagannath⋅Klunk, Angela⋅Klunk, Angela⋅Klunk, Angela⋅Klunk, Angela⋅Klunk, Angela⋅Klunk, Angela⋅Klunk, Angela⋅Klunk, Angela⋅Burr, David B⋅Burr, David B⋅Burr, David B⋅Burr, David B⋅Burr, David B⋅Burr, David B⋅Burr, David B⋅Burr, David B⋅Wek, Ronald C⋅Wek, Ronald C⋅Wek, Ronald C⋅Wek, Ronald C⋅Wek, Ronald C⋅Wek, Ronald C⋅Wek, Ronald C⋅Wek, Ronald C⋅Mosley, Amber L⋅Mosley, Amber L⋅Mosley, Amber L⋅Mosley, Amber L⋅Mosley, Amber L⋅Mosley, Amber L⋅Mosley, Amber L⋅Mosley, Amber L⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Robling, Alexander G⋅Robling, Alexander G⋅Robling, Alexander G⋅Robling, Alexander G⋅Robling, Alexander G⋅Robling, Alexander G⋅Robling, Alexander G⋅Robling, Alexander G⋅Brustovetsky, Nickolay⋅Brustovetsky, Nickolay⋅Brustovetsky, Nickolay⋅Brustovetsky, Nickolay⋅Brustovetsky, Nickolay⋅Brustovetsky, Nickolay⋅Brustovetsky, Nickolay⋅Brustovetsky, Nickolay⋅Hamilton, James⋅Hamilton, James⋅Hamilton, James⋅Hamilton, James⋅Hamilton, James⋅Hamilton, James⋅Hamilton, James⋅Hamilton, James⋅Jacobs, Kylie⋅Jacobs, Kylie⋅Jacobs, Kylie⋅Jacobs, Kylie⋅Jacobs, Kylie⋅Jacobs, Kylie⋅Jacobs, Kylie⋅Jacobs, Kylie⋅Vashishth, Deepak⋅Vashishth, Deepak⋅Vashishth, Deepak⋅Vashishth, Deepak⋅Vashishth, Deepak⋅Vashishth, Deepak⋅Vashishth, Deepak⋅Vashishth, Deepak⋅Stayrook, Keith R⋅Stayrook, Keith R⋅Stayrook, Keith R⋅Stayrook, Keith R⋅Stayrook, Keith R⋅Stayrook, Keith R⋅Stayrook, Keith R⋅Stayrook, Keith R⋅Allen, Matthew R⋅Allen, Matthew R⋅Allen, Matthew R⋅Allen, Matthew R⋅Allen, Matthew R⋅Allen, Matthew R⋅Allen, Matthew R⋅Allen, Matthew R⋅Wallace, Joseph M⋅Wallace, Joseph M⋅Wallace, Joseph M⋅Wallace, Joseph M⋅Wallace, Joseph M⋅Wallace, Joseph M⋅Wallace, Joseph M⋅Wallace, Joseph M⋅Bidwell, Joseph P⋅Bidwell, Joseph P⋅Bidwell, Joseph P⋅Bidwell, Joseph P⋅Bidwell, Joseph P⋅Bidwell, Joseph P⋅Bidwell, Joseph P and Bidwell, Joseph PAmerican journal of physiology. Endocrinology and metabolism, vol. 316, (no. 5), pp. E772, 2019-05-01.
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Lrp4 Mediates Bone Homeostasis and Mechanotransduction through Interaction with Sclerostin In VivoBullock, Whitney A⋅Bullock, Whitney A⋅Bullock, Whitney A⋅Hoggatt, April M⋅Hoggatt, April M⋅Hoggatt, April M⋅Horan, Daniel J⋅Horan, Daniel J⋅Horan, Daniel J⋅Elmendorf, Andrew J⋅Elmendorf, Andrew J⋅Elmendorf, Andrew J⋅Sato, Amy Y⋅Sato, Amy Y⋅Sato, Amy Y⋅Bellido, Teresita⋅Bellido, Teresita⋅Bellido, Teresita⋅Loots, Gabriela G⋅Loots, Gabriela G⋅Loots, Gabriela G⋅Pavalko, Fredrick M⋅Pavalko, Fredrick M⋅Pavalko, Fredrick M⋅Robling, Alexander G⋅Robling, Alexander G and Robling, Alexander GiScience, vol. 20, (no. C), pp. 215, 2019-Oct-25.
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Osteocytes and mechanical loading: The Wnt connectionBullock, Whitney A⋅Pavalko, Frederick M and Robling, Alexander GOrthodontics & Craniofacial Research, vol. 22, (no. S1), pp. 179, May 2019.
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Twist1 Inactivation in Dmp1-Expressing Cells Increases Bone Mass but Does Not Affect the Anabolic Response to Sclerostin NeutralizationLewis, Karl J⋅Lewis, Karl J⋅Choi, Roy B⋅Choi, Roy B-J⋅Pemberton, Emily Z⋅Pemberton, Emily Z⋅Bullock, Whitney A⋅Bullock, Whitney A⋅Firulli, Anthony B⋅Firulli, Anthony B⋅Robling, Alexander G and Robling, Alexander GInternational journal of molecular sciences, vol. 20, (no. 18), pp. 4427, 2019-Sep-09.
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2018
Conditional Deletion of Sost in MSC‐Derived Lineages Identifies Specific Cell‐Type Contributions to Bone Mass and B‐Cell DevelopmentYee, Cristal S⋅Manilay, Jennifer O⋅Chang, Jiun C⋅Hum, Nicholas R⋅Murugesh, Deepa K⋅Bajwa, Jamila⋅Mendez, Melanie E⋅Economides, Aris E⋅Horan, Daniel J⋅Robling, Alexander G and Loots, Gabriela GJournal of Bone and Mineral Research, vol. 33, (no. 10), pp. 1759, October 2018.
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Finite Element Analysis of the Mouse Distal Femur with Tumor Burden in Response to Knee Loading.Jiang, Feifei⋅Jiang, Feifei⋅Jiang, Feifei⋅Liu, Shengzhi⋅Liu, Shengzhi⋅Liu, Shengzhi⋅Chen, Andy⋅Chen, Andy⋅Chen, Andy⋅Li, Bai-Yan⋅Li, Bai-Yan⋅Li, Bai-Yan⋅Robling, Alexander G⋅Robling, Alexander G⋅G. Robling, Alexander⋅Chen, Jie⋅Chen, Jie⋅Chen, Jie⋅Yokota, Hiroki⋅Yokota, Hiroki and Yokota, HirokiInternational journal of orthopaedics (Hong Kong), vol. 5, (no. 1), pp. 863-871, 2018.
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Finite-element analysis of the mouse proximal ulna in response to elbow loading.Jiang, Feifei⋅Jiang, Feifei⋅Jiang, Feifei⋅Jiang, Feifei⋅Jalali, Aydin⋅Jalali, Aydin⋅Jalali, Aydin⋅Jalali, Aydin⋅Deguchi, Chie⋅Deguchi, Chie⋅Deguchi, Chie⋅Deguchi, Chie⋅Chen, Andy⋅Chen, Andy⋅Chen, Andy⋅Chen, Andy⋅Liu, Shengzhi⋅Liu, Shengzhi⋅Liu, Shengzhi⋅Liu, Shengzhi⋅Kondo, Rika⋅Kondo, Rika⋅Kondo, Rika⋅Kondo, Rika⋅Minami, Kazumasa⋅Minami, Kazumasa⋅Minami, Kazumasa⋅Minami, Kazumasa⋅Horiuchi, Takashi⋅Horiuchi, Takashi⋅Horiuchi, Takashi⋅Horiuchi, Takashi⋅Li, Bai-Yan⋅Li, Bai-Yan⋅Li, Bai-Yan⋅Li, Bai-Yan⋅Robling, Alexander G⋅Robling, Alexander⋅Robling, Alexander⋅Robling, Alexander G.⋅Chen, Jie⋅Chen, Jie⋅Chen, Jie⋅Chen, Jie⋅Yokota, Hiroki⋅Yokota, Hiroki⋅Yokota, Hiroki and Yokota, HirokiJournal of bone and mineral metabolism, July 30, 2018.
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Induction of Lrp5 HBM-causing mutations in Cathepsin-K expressing cells alters bone metabolism.Kang, Kyung Shin⋅Kang, Kyung Shin⋅Hong, Jung Min⋅Hong, Jung Min⋅Horan, Daniel J⋅Horan, Daniel J⋅Lim, Kyung-Eun⋅Lim, Kyung-Eun⋅Bullock, Whitney A⋅Bullock, Whitney A⋅Bruzzaniti, Angela⋅Bruzzaniti, Angela⋅Hann, Steven⋅Hann, Steven⋅Warman, Matthew L⋅Warman, Matthew L⋅Robling, Alexander G and Robling, Alexander GBone, vol. 120, pp. 166-175, October 25, 2018.
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Inhibition of CaMKK2 Enhances Fracture Healing by Stimulating Indian Hedgehog Signaling and Accelerating Endochondral OssificationWilliams, Justin N⋅Williams, Justin N⋅Williams, Justin N⋅Williams, Justin N⋅JN, Williams⋅Williams, Justin N⋅Kambrath, Anuradha Valiya⋅Kambrath, Anuradha Valiya⋅Kambrath, Anuradha Valiya⋅AV, Kambrath⋅Kambrath, Anuradha Valiya⋅Kambrath, Anuradha Valiya⋅Patel, Roshni B⋅Patel, Roshni B⋅Patel, Roshni B⋅Patel, Roshni B⋅Patel, Roshni B⋅RB, Patel⋅Kang, Kyung Shin⋅Kang, Kyung Shin⋅KS, Kang⋅Kang, Kyung Shin⋅Kang, Kyung Shin⋅Kang, Kyung Shin⋅Mével, Elsa⋅E, Mével⋅Mével, Elsa⋅Mével, Elsa⋅Mével, Elsa⋅Mével, Elsa⋅Li, Yong⋅Li, Yong⋅Y, Li⋅Li, Yong⋅Li, Yong⋅Li, Yong⋅Cheng, Ying‐Hua⋅Cheng, Ying-Hua⋅Cheng, Ying‐Hua⋅Cheng, Ying‐Hua⋅Cheng, Ying‐Hua⋅YH, Cheng⋅Pucylowski, Austin J⋅Pucylowski, Austin J⋅Pucylowski, Austin J⋅Pucylowski, Austin J⋅Pucylowski, Austin J⋅AJ, Pucylowski⋅Hassert, Mariah A⋅Hassert, Mariah A⋅Hassert, Mariah A⋅Hassert, Mariah A⋅Hassert, Mariah A⋅MA, Hassert⋅Voor, Michael J⋅Voor, Michael J⋅Voor, Michael J⋅MJ, Voor⋅Voor, Michael J⋅Voor, Michael J⋅Kacena, Melissa A⋅Kacena, Melissa A⋅Kacena, Melissa A⋅MA, Kacena⋅Kacena, Melissa A⋅Kacena, Melissa A⋅Thompson, William R⋅Thompson, William R⋅Thompson, William R⋅Thompson, William R⋅WR, Thompson⋅Thompson, William R⋅Warden, Stuart J⋅Warden, Stuart J⋅Warden, Stuart J⋅Warden, Stuart J⋅Warden, Stuart J⋅SJ, Warden⋅Burr, David B⋅Burr, David B⋅Burr, David B⋅Burr, David B⋅Burr, David B⋅DB, Burr⋅U, Sankar⋅Allen, Matthew R⋅Allen, Matthew R⋅Allen, Matthew R⋅Allen, Matthew R⋅Allen, Matthew R⋅Robling, Alexander G⋅Robling, Alexander G⋅Robling, Alexander G⋅Robling, Alexander G⋅Robling, Alexander G⋅Sankar, Uma⋅Sankar, Uma⋅Sankar, Uma⋅Sankar, Uma and Sankar, UmaJournal of Bone and Mineral Research, vol. 33, (no. 5), pp. 944, May 2018.
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Loss of mechanosensitive sclerostin may accelerate cranial bone growth and regenerationKang, Kyung Shin⋅Lastfogel, Jeff⋅Ackerman, Laurie L⋅Jea, Andrew⋅Robling, Alexander G and Tholpady, Sunil SJournal of neurosurgery, vol. 129, (no. 4), pp. 1091, 2018-Oct.
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Sclerostin neutralization unleashes the osteoanabolic effects of Dkk1 inhibition.Witcher, Phillip C⋅Miner, Sara E⋅Horan, Daniel J⋅Bullock, Whitney A⋅Lim, Kyung-Eun⋅Kang, Kyung Shin⋅Adaniya, Alison L⋅Ross, Ryan D⋅Loots, Gabriela G and Robling, Alexander GJCI insight, vol. 3, (no. 11), June 7, 2018.
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Skeletal cell YAP and TAZ combinatorially promote bone developmentKegelman, Christopher D.⋅Kegelman, Christopher D⋅Kegelman, Christopher D⋅Mason, Devon E⋅Mason, Devon E.⋅Mason, Devon E⋅Dawahare, James H.⋅Dawahare, James H⋅Dawahare, James H⋅Horan, Daniel J.⋅Horan, Daniel J⋅Horan, Daniel J⋅Vigil, Genevieve D⋅Vigil, Genevieve D.⋅Vigil, Genevieve D⋅Howard, Scott S.⋅Howard, Scott S⋅Howard, Scott S⋅Robling, Alexander G.⋅Robling, Alexander G⋅Robling, Alexander G⋅Bellido, Teresita M.⋅Bellido, Teresita M⋅Bellido, Teresita M⋅Boerckel, Joel D⋅Boerckel, Joel D and Boerckel, Joel D.The FASEB Journal, vol. 32, (no. 5), pp. 2721, May 2018.
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The skeletal phenotype of achondrogenesis type 1A is caused exclusively by cartilage defectsBird, Ian M⋅Bird, Ian M⋅Kim, Susie H⋅Kim, Susie H⋅Schweppe, Devin K⋅Schweppe, Devin K⋅Caetano-Lopes, Joana⋅Caetano-Lopes, Joana⋅Robling, Alexander G⋅Robling, Alexander G⋅Charles, Julia F⋅Charles, Julia F⋅Gygi, Steven P⋅Gygi, Steven P⋅Warman, Matthew L⋅Warman, Matthew L⋅Smits, Patrick J and Smits, Patrick JDevelopment (Cambridge, England), vol. 145, (no. 1), pp. dev156588, 2018-01-08.
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Vhl deficiency in osteocytes produces high bone mass and hematopoietic defects.Loots, Gabriela G⋅Robling, Alexander G⋅Chang, Jiun C⋅Murugesh, Deepa K⋅Bajwa, Jamila⋅Carlisle, Cameron⋅Manilay, Jennifer O⋅Wong, Alice⋅Yellowley, Clare E and Genetos, Damian CBone, August 30, 2018.
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2017
Bone Mass and Strength are Significantly Improved in Mice Overexpressing Human WNT16 in OsteocytesAlam, Imranul⋅Alam, Imranul⋅Alam, Imranul⋅Reilly, Austin⋅Reilly, Austin⋅Reilly, Austin M⋅Alkhouli, Mohammed⋅Alkhouli, Mohammed⋅Alkhouli, Mohammed⋅Gerard-O'Riley, Rita L⋅Gerard-O’Riley, Rita⋅Gerard-O’Riley, Rita⋅Kasipathi, Charishma⋅Kasipathi, Charishma⋅Kasipathi, Charishma⋅Oakes, Dana⋅Oakes, Dana⋅Oakes, Dana K⋅Wright, Weston⋅Wright, Weston⋅Wright, Weston B⋅Acton, Dena⋅Acton, Dena⋅Acton, Dena⋅McQueen, Amie⋅McQueen, Amie⋅McQueen, Amie K⋅Patel, Bhavmik⋅Patel, Bhavmik⋅Patel, Bhavmik⋅Lim, Kyung-Eun⋅Lim, Kyung-Eun⋅Lim, Kyung-Eun⋅Robling, Alexander⋅Robling, Alexander⋅Robling, Alexander G⋅Econs, Michael⋅Econs, Michael and Econs, Michael JCalcified Tissue International, vol. 100, (no. 4), pp. 373, 20170400.
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