Beyond Bioactive Glass Composition: Using Morphology to Improve in Vitro and in Vivo Performance
Bioactive glasses can easily be shaped into granules, spheres, discs, fibers, or three‐dimensional scaffolds. The resulting morphology not only affects handling properties; it has a direct influence on various glass properties, including results of acellular immersion experiments or in vitro studies with cells or bacteria, but also on in vivo ...
Meixin Su+5 more
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Stem/progenitor cell-based therapy for Duchenne muscular dystrophy. [PDF]
Tominari T, Sathyaprakash C, Aoki Y.
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In vitro evidence for disappearance of erythroid progenitor T suppressor cells following allogeneic bone marrow transplantation for severe aplastic anemia [PDF]
KF Mangan+3 more
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Metal‐organic frameworks (MOFs) have been synthesized using calcium (Ca‐MOF), magnesium (Mg‐MOF), and as hybrids (Ca/Mg‐MOF) for bone healing applications. MOFs are integrated into hydrogel polymer networks for injectable, sprayable, and coating applications.
Cho‐E Choi+4 more
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Establishing disease-specific thresholds for automated hematopoietic progenitor cell counting in hematological malignancies. [PDF]
Taka O, Thedsawad A, Owattanapanich W.
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Magnetic Bioprinting and Actuation of Stretchable Muscle Tissue
Human and murine myoblasts labeled with iron oxide nanoparticles are magnetically bioprinted into wrench‐shaped tissues, which are then anchored between two magnetic needles. Mechanical stretching of these tissues enhances both their maturation and functional performance. Abstract Engineering tissues with precise, long‐lasting shapes and the capability
Noam Demri+6 more
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Murine hematopoietic progenitor cell lines with erythroid and megakaryocyte potential. [PDF]
Wu R+14 more
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Recent advances in diagnostics have accelerated the development of miniaturized wearable technologies for the continuous monitoring of diseases. This paradigm is shifting healthcare away from invasive, centralized blood tests toward decentralized monitoring, using alternative body biofluids.
Lanka Tata Rao+2 more
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The citrullinating enzyme PADI4 governs progenitor cell proliferation and translation in developing hair follicles. [PDF]
Patil KV+11 more
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Complement-dependent killing of human hematopoietic progenitor cells with noncomplement-fixing monoclonal antibodies in an antiglobulin assay [PDF]
J H Fitchen, C Russo, S Ferrone
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