44 Publications (Page 1 of 2)
2023
Engineering a Pro-Osteogenic Secretome through the Transient Silencing of the Gene Encoding Secreted Frizzled Related Protein 1. International Journal of Molecular Sciences
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Osteocytes: New Kids on the Block for Cancer in Bone Therapy. Cancers
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2019
2D and 3D In Vitro Co-Culture for Cancer and Bone Cell Interaction StudiesMarino, Silvia⋅Marino, S.⋅Bishop, R.T.⋅Bishop, Ryan T⋅de Ridder, Daniëlle⋅Ridder, D.⋅Delgado Calle, Jesus⋅Delgado-Calle, J.⋅Reagan, M.R. and Reagan, Michaela RMethods in molecular biology (Clifton, N.J.), vol. 1914, pp. 98, 2019-00-00.
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Aplidin (plitidepsin) is a novel anti-myeloma agent with potent anti-resorptive activity mediated by direct effects on osteoclastsDelgado-Calle, Jesus⋅Delgado Calle, Jesus⋅Kurihara, Noriyoshi⋅Kurihara, Noriyoshi⋅Atkinson, Emily G⋅Atkinson, Emily G⋅Nelson, Jessica⋅Nelson, Jessica⋅Miyagawa, Kazuaki⋅Miyagawa, Kazuaki⋅Galmarini, Carlos Maria⋅Galmarini, Carlos Maria⋅Roodman, G David⋅Roodman, G David⋅Bellido, Teresita and Bellido, TeresitaOncotarget, vol. 10, (no. 28), pp. 2721, 2019-Apr-12.
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2017
Control of Bone Anabolism in Response to Mechanical Loading and PTH by Distinct Mechanisms Downstream of the PTH ReceptorDelgado‐Calle, Jesus⋅Delgado Calle, Jesus⋅Delgado-Calle, Jesus⋅Tu, Xiaolin⋅Tu, Xiaolin⋅Tu, Xiaolin⋅Pacheco‐Costa, Rafael⋅Pacheco-Costa, Rafael⋅Pacheco-Costa, Rafael⋅McAndrews, Kevin⋅McAndrews, Kevin⋅McAndrews, Kevin⋅Edwards, Rachel⋅Edwards, Rachel⋅Edwards, Rachel⋅Pellegrini, Gretel G⋅Pellegrini, Gretel G⋅Pellegrini, Gretel G⋅Kuhlenschmidt, Kali⋅Kuhlenschmidt, Kali⋅Kuhlenschmidt, Kali⋅Olivos, Naomie⋅Olivos, Naomie⋅Olivos, Naomie⋅Robling, Alexander⋅Robling, Alexander⋅Robling, Alexander⋅Peacock, Munro⋅Peacock, Munro⋅Peacock, Munro⋅Plotkin, Lilian I⋅Plotkin, Lilian I⋅Plotkin, Lilian I⋅Bellido, Teresita⋅Bellido, Teresita and Bellido, TeresitaJournal of Bone and Mineral Research, vol. 32, (no. 3), pp. 535, 2017-03-00.
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Epigenetic Regulation of Sost/sclerostin Expressiondel Real, Álvaro⋅Riancho, José A and Delgado Calle, JesusCurrent Molecular Biology Reports, vol. 3, (no. 2), pp. 93, 2017-06-00.
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New Insights Into the Local and Systemic Functions of Sclerostin: Regulation of Quiescent Bone Lining Cells and Beige Adipogenesis in Peripheral Fat DepotsDelgado‐Calle, Jesus⋅Delgado Calle, Jesus⋅Bellido, Teresita and Bellido, TeresitaJournal of Bone and Mineral Research, vol. 32, (no. 5), pp. 891, 2017-05-00.
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Osteoclasts Control Lipid Secretion to Regulate Breast Cancer Bone MetastasisDelgado Calle, JesusEndocrinology, vol. 158, (no. 3), pp. 460, 2017-03-01.
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Osteocytes and Their Messengers as Targets for the Treatment of Multiple MyelomaDelgado Calle, JesusClinical Reviews in Bone and Mineral Metabolism, vol. 15, (no. 1), pp. 56, 20170300.
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Sclerostin: an Emerging Target for the Treatment of Cancer-Induced Bone DiseaseMcDonald, Michelle and Delgado Calle, JesusCurrent Osteoporosis Reports, vol. 15, (no. 6), pp. 541, 20171200.
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2016
Bidirectional Notch Signaling and Osteocyte-Derived Factors in the Bone Marrow Microenvironment Promote Tumor Cell Proliferation and Bone Destruction in Multiple MyelomaDelgado-Calle, Jesus⋅Delgado-Calle, Jesus⋅Delgado Calle, Jesus⋅Delgado-Calle, Jesus⋅Anderson, Judith⋅Anderson, Judith⋅Anderson, Judith⋅Anderson, Judith⋅Cregor, Meloney D⋅Cregor, Meloney D⋅Cregor, Meloney D⋅Cregor, Meloney D⋅Hiasa, Masahiro⋅Hiasa, Masahiro⋅Hiasa, Masahiro⋅Hiasa, Masahiro⋅Chirgwin, John M⋅Chirgwin, John M⋅Chirgwin, John M⋅Chirgwin, John M⋅Carlesso, Nadia⋅Carlesso, Nadia⋅Carlesso, Nadia⋅Carlesso, Nadia⋅Yoneda, Toshiyuki⋅Yoneda, Toshiyuki⋅Yoneda, Toshiyuki⋅Yoneda, Toshiyuki⋅Mohammad, Khalid S⋅Mohammad, Khalid S⋅Mohammad, Khalid S⋅Mohammad, Khalid S⋅Plotkin, Lilian I⋅Plotkin, Lilian I⋅Plotkin, Lilian I⋅Plotkin, Lilian I⋅Roodman, G David⋅Roodman, G David⋅Roodman, G David⋅Roodman, G David⋅Bellido, Teresita⋅Bellido, Teresita⋅Bellido, Teresita and Bellido, TeresitaCancer research, vol. 76, (no. 5), pp. 1100, 2016-Mar-01.
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Generation and characterization of two immortalized human osteoblastic cell lines useful for epigenetic studies.
Generation and characterization of two immortalized human osteoblastic cell lines useful for epigenetic studies.
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Genetic Sost Deletion and Pharmacological Inhibition of Sclerostin Prevent Multiple Myeloma-Induced Bone Loss without Affecting Tumor GrowthDelgado-Calle, Jesus⋅Delgado-Calle, Jesus⋅Delgado Calle, Jesus⋅Anderson, Judith⋅Anderson, Judith⋅Anderson, Judith⋅Cregor, Meloney D⋅Cregor, Meloney D⋅Cregor, Meloney D⋅Zhou, Dan⋅Zhou, Dan⋅Zhou, Dan⋅Plotkin, Lilian I⋅Plotkin, Lilian I⋅Plotkin, Lilian I⋅Bellido, Teresita M⋅Bellido, Teresita M⋅Bellido, Teresita M⋅Roodman, G. David⋅Roodman, G. David and Roodman, G. DavidBlood, vol. 128, (no. 22), pp. 1136, 2016-12-02.
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Protection From Glucocorticoid-Induced Osteoporosis by Anti-Catabolic Signaling in the Absence of Sost/SclerostinSato, Amy Y⋅Sato, Amy Y⋅Sato, Amy Y⋅Cregor, Meloney⋅Cregor, Meloney⋅Cregor, Meloney⋅Delgado Calle, Jesus⋅Delgado‐Calle, Jesus⋅Delgado-Calle, Jesus⋅Condon, Keith W⋅Condon, Keith W⋅Condon, Keith W⋅Allen, Matthew R⋅Allen, Matthew R⋅Allen, Matthew R⋅Peacock, Munro⋅Peacock, Munro⋅Peacock, Munro⋅Plotkin, Lilian I⋅Plotkin, Lilian I⋅Plotkin, Lilian I⋅Bellido, Teresita⋅Bellido, Teresita and Bellido, TeresitaJournal of Bone and Mineral Research, vol. 31, (no. 10), pp. 1802, 2016-10-00.
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Protection from Glucocorticoid-Induced Osteoporosis by Anti-Catabolic Signaling in the Absence of Sost/Sclerostin. Journal of Bone and Mineral Research
Regulation of Osteoblast Function in Myeloma Bone Disease By Semaphorin 4DSuvannasankha, Attaya⋅Suvannasankha, Attaya⋅Suvannasankha, Attaya⋅Suvannasankha, Attaya⋅Crean, Colin D⋅Crean, Colin D⋅Crean, Colin D⋅Crean, Colin D⋅Tompkins, Douglas R⋅Tompkins, Douglas R⋅Tompkins, Douglas R⋅Tompkins, Douglas R⋅Delgado Calle, Jesus⋅Delgado-Calle, Jesus⋅Delgado-Calle, Jesus⋅Delgado-Calle, Jesus⋅Bellido, Teresita M⋅Bellido, Teresita M⋅Bellido, Teresita M⋅Bellido, Teresita M⋅Roodman, G. David⋅Roodman, G. David⋅Roodman, G. David⋅Roodman, G. David⋅Chirgwin, John M⋅Chirgwin, John M⋅Chirgwin, John M and Chirgwin, John MBlood, vol. 128, (no. 22), pp. 4439, 2016-12-02.
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Role and mechanism of action of sclerostin in boneDelgado-Calle, Jesus⋅Delgado Calle, Jesus⋅Sato, Amy Y⋅Sato, Amy⋅Bellido, Teresita and Bellido, TeresitaBone, vol. 96, pp. 37, 2016.
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2015
Analysis of the bone microRNome in osteoporotic fractures.
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Bidirectional Notch Signaling Between Multiple Myeloma (MM) Cells and Osteocytes As a Potential Target to Inhibit Tumor Growth and Osteoclast Recruitment in MMDelgado-Calle, Jesus⋅Delgado-Calle, Jesus⋅Delgado-Calle, Jesus⋅Delgado Calle, Jesus⋅Anderson, Judith⋅Anderson, Judith⋅Anderson, Judith⋅Anderson, Judith⋅Cregor, Meloney D⋅Cregor, Meloney D⋅Cregor, Meloney D⋅Cregor, Meloney D⋅Carlesso, Nadia⋅Carlesso, Nadia⋅Carlesso, Nadia⋅Carlesso, Nadia⋅Mohammad, Khalid S⋅Mohammad, Khalid S⋅Mohammad, Khalid S⋅Mohammad, Khalid S⋅Plotkin, Lilian I⋅Plotkin, Lilian I⋅Plotkin, Lilian I⋅Plotkin, Lilian I⋅Bellido, Teresita M⋅Bellido, Teresita M⋅Bellido, Teresita M⋅Bellido, Teresita M⋅Roodman, G. David⋅Roodman, G. David⋅Roodman, G. David and Roodman, G. DavidBlood, vol. 126, (no. 23), pp. 2977, 2015-12-03.
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Osteocytes and Skeletal PathophysiologyDelgado-Calle, Jesus⋅Delgado Calle, Jesus⋅Bellido, Teresita and Bellido, TeresitaCurrent Molecular Biology Reports, vol. 1, (no. 4), pp. 167, 20151200.
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Osteocytes and Skeletal Pathophysiology.
Osteocytes and Skeletal Pathophysiology.Delgado-Calle, Jesus and Bellido, Teresita.
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Osteocytes mediate the anabolic actions of canonical Wnt/β-catenin signaling in boneTu, Xiaolin⋅Tu, Xiaolin⋅Tu, Xiaolin⋅Delgado-Calle, Jesus⋅Delgado-Calle, Jesus⋅Delgado Calle, Jesus⋅Condon, Keith⋅Condon, Keith⋅Condon, Keith W⋅Maycas, Marta⋅Maycas, Marta⋅Maycas, Marta⋅Zhang, Huajia⋅Zhang, Huajia⋅Zhang, Huajia⋅Carlesso, Nadia⋅Carlesso, Nadia⋅Carlesso, Nadia⋅Taketo, Makoto⋅Taketo, Makoto⋅Taketo, Makoto M⋅Burr, David⋅Burr, David B⋅Burr, David⋅Plotkin, Lilian⋅Plotkin, Lilian I⋅Plotkin, Lilian⋅Bellido, Teresita⋅Bellido, Teresita and Bellido, TeresitaProceedings of the National Academy of Sciences of the United States of America, vol. 112, (no. 5), pp. E486, 20150203.
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2014
A Sclerostin super-producer cell line derived from the human cell line SaOS-2: a new tool for the study of the molecular mechanisms driving Sclerostin expression.
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