The pursuit of ex vivo erythrocyte generation has led to the development of various culture systems that simulate the bone marrow microenvironment. However, these models often fail to fully replicate the hematopoietic niche's complex dynamics. In our research, we employ a comprehensive strategy that emphasizes physiological red blood cell (RBC) differentiation using a minimal cytokine regimen. A key innovation in our approach is the integration of a three-dimensional (3D) silk-based scaffold engineered to mimic both the physical and chemical properties of human bone marrow. This scaffold facilitates critical macrophage-RBC interactions and incorporates fibronectin functionalization to support the formation of erythroblastic island (EBI)-like niches. We observed diverse stages of erythroblast maturation within these niches, driven by the activation of autophagy, which promotes organelle clearance and membrane remodeling. This process leads to reduced surface integrin expression and significantly enhances RBC enucleation. Using a specialized bioreactor chamber, millions of RBCs can be detached from the EBIs and collected in transfusion bags via dynamic perfusion. Inhibition of autophagy through pharmacological agents or alpha4 integrin blockade, disrupted EBI formation, preventing cells from completing their final morphological transformations and remaining trapped in the erythroblast stage. Our findings underscore the importance of the bone marrow niche in maintaining the structural integrity of EBIs and highlight the critical role of autophagy in facilitating organelle clearance during RBC maturation. RNA sequencing analysis further confirmed that these processes are uniquely supported by the 3D silk scaffold, which is essential for enhancing RBC production ex vivo.
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http://dx.doi.org/10.1182/bloodadvances.2024014905 | DOI Listing |
Best Pract Res Clin Haematol
December 2024
Centre for Haematology, Department of Immunology and Inflammation, Imperial College London, London, SW7 2AZ, UK.
Radiological accidents/incidents are common with nearly 400 reported since 1944 exposing about 3000 people to substantial doses of ionizing radiations with 127 deaths. Damage to hematopoietic stem and progenitor cells with resulting bone marrow failure is a common consequence of exposure to whole body acute high-dose and -dose-rate ionizing radiations and is termed hematopoietic-acute radiation syndrome, or H-ARS. Therapy of H-ARS includes transfusions, anti-bacterial and -viral drugs, molecularly-cloned hematopoietic growth factors and hematopoietic cell transplants.
View Article and Find Full Text PDFEur J Dent
March 2025
Department of Oral and Maxillofacial Pathology, Faculty of Oral and Dental Surgery and Medicine, Zagazing University, Zagazing, Egypt.
Objectives: The ultimate goal of stem cell (SC) transplantation is the regeneration of salivary gland function by transplanted SCs differentiating into salivary gland cells. Therefore, this study aimed to evaluate the regenerative capacity of bone marrow-derived mesenchymal stem cells (BM-MSCs) transplantation in irradiated mice using the immunohistochemical markers Ki-67 and CD34.
Material And Methods: Four groups of male mice were included in the study.
Exp Cell Res
March 2025
School of Stomatology, Xuzhou Medical University, Xuzhou, 221007, China; Xuzhou Stomatological Hospital, Xuzhou, 221007, China. Electronic address:
Hydrogel, as the most suitable bio-scaffold material for simulating extracellular matrix, can be used to study the influence of material mechanical properties on cell behavior under 3D conditions. Mechanical stimulation plays an important role in cartilage differentiation, especially for the mechanosensitive cell-bone marrow mesenchymal stem cells (BMSCs). Currently, TRPV4 and Cav1.
View Article and Find Full Text PDFThe patient was a 51-year-old man who was diagnosed as having prostate cancer(adenocarcinoma)in December Year X-3. He underwent total prostatectomy in June Year X-2. The lesions were confined to the right lobe of the prostate.
View Article and Find Full Text PDFObjective: This study aimed to investigate the role of Raf kinase inhibitor protein (RKIP) in degranulation induced by echinococcal cyst fluid (EgCF) in bone marrow-derived mast cells (BMMCs).
Methods: Primary BMMCs were isolated and cultured from the femurs and tibias of RKIP gene knockout (KO) and wild-type (WT) C57BL/6 mice. EgCF-induced degranulation models were established for both groups.
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