Literature DB >> 20015543

The development of a three-dimensional scaffold for ex vivo biomimicry of human acute myeloid leukaemia.

Teresa Mortera Blanco1, Athanasios Mantalaris, Alexander Bismarck, Nicki Panoskaltsis.   

Abstract

Acute myeloid leukaemia (AML) is a cancer of haematopoietic cells that develops in three-dimensional (3-D) bone marrow niches in vivo. The study of AML has been hampered by lack of appropriate ex vivo models that mimic this microenvironment. We hypothesised that fabrication and optimisation of suitable biomimetic scaffolds for culturing leukaemic cells ex vivo might facilitate the study of AML in its native 3-D niche. We evaluated the growth of three leukaemia subtype-specific cell lines, K-562, HL60 and Kasumi-6, on highly porous scaffolds fabricated from biodegradable and non-biodegradable polymeric materials, such as poly (L-lactic-co-glycolic acid) (PLGA), polyurethane (PU), poly (methyl-methacrylate), poly (D, L-lactade), poly (caprolactone), and polystyrene. Our results show that PLGA and PU supported the best seeding efficiency and leukaemic growth. Furthermore, the PLGA and PU scaffolds were coated with extracellular matrix (ECM) proteins, collagen type I (62.5 or 125 microg/ml) and fibronectin (25 or 50 microg/ml) to provide biorecognition signals. The 3 leukaemia subtype-specific lines grew best on PU scaffolds coated with 62.5 microg/ml collagen type I over 6 weeks in the absence of exogenous growth factors. In conclusion, PU-collagen scaffolds may provide a practical model to study the biology and treatment of primary AML in an ex vivo mimicry. Copyright (c) 2009 Elsevier Ltd. All rights reserved.

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Year:  2009        PMID: 20015543     DOI: 10.1016/j.biomaterials.2009.11.094

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  25 in total

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2.  A portable platform for stepwise hematopoiesis from human pluripotent stem cells within PET-reinforced collagen sponges.

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3.  Ex vivo mimicry of normal and abnormal human hematopoiesis.

Authors:  Teresa Mortera-Blanco; Maria Rende; Hugo Macedo; Serene Farah; Alexander Bismarck; Athanasios Mantalaris; Nicki Panoskaltsis
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Review 4.  Anti-Cancer Drug Validation: the Contribution of Tissue Engineered Models.

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6.  Coupling of gelatin to inner surfaces of pore walls in spongy alginate-based scaffolds facilitates the adhesion, growth and differentiation of human bone marrow mesenchymal stromal cells.

Authors:  Yu A Petrenko; R V Ivanov; A Yu Petrenko; V I Lozinsky
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8.  A novel three-dimensional stromal-based model for in vitro chemotherapy sensitivity testing of leukemia cells.

Authors:  Omar S Aljitawi; Dandan Li; Yinghua Xiao; Da Zhang; Karthik Ramachandran; Lisa Stehno-Bittel; Peter Van Veldhuizen; Tara L Lin; Suman Kambhampati; Rama Garimella
Journal:  Leuk Lymphoma       Date:  2013-05-15

9.  The TPO/c-MPL pathway in the bone marrow may protect leukemia cells from chemotherapy in AML Patients.

Authors:  Zeng Dong-Feng; Liu Ting; Zhang Yong; Chang Cheng; Zhang Xi; Kong Pei-Yan
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10.  3D models of the bone marrow in health and disease: yesterday, today and tomorrow.

Authors:  Annamarija Raic; Toufik Naolou; Anna Mohra; Chandralekha Chatterjee; Cornelia Lee-Thedieck
Journal:  MRS Commun       Date:  2018-09-25       Impact factor: 2.566

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