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Frontiers | Above the Matrix: Functional Roles for Apically Localized Integrins
The Role of Gap Junctions and Mechanical Loading on Mineral Formation in a Collagen-I Scaffold Seeded with Osteoprogenitor Cells | Tissue Engineering Part A
At Molloy, a $2M gift for Long Island workforce development | Long Island Business News
Epigenetic dynamics during preimplantation development
M&C - Modern Company Dámský lékařský kosmetický plášť celadonové barvy se stojáčkem a zapínáním na patentky - 34 | MALL.CZ
Cancers | Free Full-Text | VLA-4 Induces Chemoresistance of T Cell Acute Lymphoblastic Leukemia Cells via PYK2-Mediated Drug Efflux
Cancers | Free Full-Text | Constitutive Activation of STAT3 in Myeloma Cells Cultured in a Three-Dimensional, Reconstructed Bone Marrow Model
Pioneer Magazine - Fall 2016 by Utica University - Issuu
Energies | Free Full-Text | Overview of Research Status of DC Bias and Its Suppression in Power Transformers
ADAM15 Is Functionally Associated with the Metastatic Progression of Human Bladder Cancer | PLOS ONE
Adhesion molecules in gamete transport, fertilization, early embryonic development, and implantation—role in establishing a pregnancy in cattle: A review - D'Occhio - 2020 - Molecular Reproduction and Development - Wiley Online Library
Cancers | Free Full-Text | Decoding the Role of CD271 in Melanoma
T cell–induced CSF1 promotes melanoma resistance to PD1 blockade | Science Translational Medicine
Endothelial Cell Migration During Angiogenesis | Circulation Research
Platelet-Rich Plasma Attenuates 30-kDa Fibronectin Fragment–Induced Chemokine and Matrix Metalloproteinase Expression by Meniscocytes and Articular Chondrocytes - Chih-Chien Wang, Chian-Her Lee, Yi-Jen Peng, Donald M. Salter, Herng-Sheng Lee, 2015
The Role of Gap Junctions and Mechanical Loading on Mineral Formation in a Collagen-I Scaffold Seeded with Osteoprogenitor Cells | Tissue Engineering Part A
The Role of Gap Junctions and Mechanical Loading on Mineral Formation in a Collagen-I Scaffold Seeded with Osteoprogenitor Cells | Tissue Engineering Part A
Involvement of microRNA Lethal-7a in the Regulation of Embryo Implantation in Mice | PLOS ONE