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Sep 13, 2024 -
Dormancy-inducing 3D-engineered matrix uncovers mechanosensitive and drug protective FHL2-p21 signaling axis
ZIP Archive - 41.4 MB -
MD5: 5ca356fb6da275168a13643f9fbaf2c4
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Sep 13, 2024 -
Dormancy-inducing 3D-engineered matrix uncovers mechanosensitive and drug protective FHL2-p21 signaling axis
ZIP Archive - 477.5 KB -
MD5: 525373b920cb94ca438f6180f6d7530d
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Sep 13, 2024 -
Dormancy-inducing 3D-engineered matrix uncovers mechanosensitive and drug protective FHL2-p21 signaling axis
ZIP Archive - 1.1 MB -
MD5: 36dda40fe06a2a4703fd8f029eceb541
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Sep 13, 2024 -
Dormancy-inducing 3D-engineered matrix uncovers mechanosensitive and drug protective FHL2-p21 signaling axis
ZIP Archive - 826.5 KB -
MD5: 8666bf2997d0a79d9d4083a5841c1ded
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Sep 13, 2024 -
Dormancy-inducing 3D-engineered matrix uncovers mechanosensitive and drug protective FHL2-p21 signaling axis
ZIP Archive - 814.6 KB -
MD5: f379ac900aef5b2880680a7fc7e73953
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Sep 13, 2024 -
Dormancy-inducing 3D-engineered matrix uncovers mechanosensitive and drug protective FHL2-p21 signaling axis
ZIP Archive - 98.7 MB -
MD5: 195d21b01342e0415f1f1c8b30c4f5b2
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Sep 13, 2024 -
Dormancy-inducing 3D-engineered matrix uncovers mechanosensitive and drug protective FHL2-p21 signaling axis
ZIP Archive - 378.7 KB -
MD5: 9607964ff1c4a8bbd71800bd90c8e1e5
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Sep 13, 2024 -
Dormancy-inducing 3D-engineered matrix uncovers mechanosensitive and drug protective FHL2-p21 signaling axis
ZIP Archive - 159.8 MB -
MD5: ecf6d7eb82c378f9907f6874d4b0c14b
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Aug 15, 2024
Moreno-Jiménez, Inéz; Heinig, Sharen; Heras, Unai; Maichl, Daniela Simone; Strifler, Susanne; Leich-Zbat, Ellen; Blouin, Stéphane; Fratzl, Peter; Fratzl-Zelman, Nadja; Jundt, Franziska; Cipitria, Dr. Amaia, 2024, "3D osteocyte lacunar morphometry of human bone biopsies with high resolution microCT: from monoclonal gammopathy to newly diagnosed multiple myeloma", https://doi.org/10.17617/3.5BPJUP, Edmond, V1
Osteocytes are mechanosensitive, bone-embedded cells which are connected via dendrites in a lacuno-canalicular network and regulate bone resorption and formation balance. Alterations in osteocyte lacunar volume, shape and density have been identified in conditions of aging, osteoporosis and osteolytic bone metastasis, indicating patterns of impaire... |
ZIP Archive - 106.5 MB -
MD5: e4e415e1f498a207d91f910d8c6d0f0d
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