Literature DB >> 21791433

Efficient differentiation and function of human macrophages in humanized CSF-1 mice.

Chozhavendan Rathinam1, William T Poueymirou, Jose Rojas, Andrew J Murphy, David M Valenzuela, George D Yancopoulos, Anthony Rongvaux, Elizabeth E Eynon, Markus G Manz, Richard A Flavell.   

Abstract

Humanized mouse models are useful tools to understand pathophysiology and to develop therapies for human diseases. While significant progress has been made in generating immunocompromised mice with a human hematopoietic system, there are still several shortcomings, one of which is poor human myelopoiesis. Here, we report that human CSF-1 knockin mice show augmented frequencies and functions of human myeloid cells. Insertion of human CSF1 into the corresponding mouse locus of Balb/c Rag2(-/-) γc(-/-) mice through VELOCIGENE technology resulted in faithful expression of human CSF-1 in these mice both qualitatively and quantitatively. Intra-hepatic transfer of human fetal liver derived hematopoietic stem and progenitor cells (CD34(+)) in humanized CSF-1 (CSF1(h/h)) newborn mice resulted in more efficient differentiation and enhanced frequencies of human monocytes/macrophages in the bone marrow, spleens, peripheral blood, lungs, liver and peritoneal cavity. Human monocytes/macrophages obtained from the humanized CSF-1 mice show augmented functional properties including migration, phagocytosis, activation and responses to LPS. Thus, humanized mice engineered to express human cytokines will significantly help to overcome the current technical challenges in the field. In addition, humanized CSF-1 mice will be a valuable experimental model to study human myeloid cell biology.

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Year:  2011        PMID: 21791433     DOI: 10.1182/blood-2010-12-326926

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  62 in total

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Review 3.  Human lymphohematopoietic reconstitution and immune function in immunodeficient mice receiving cotransplantation of human thymic tissue and CD34(+) cells.

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4.  Human hematopoietic stem cell maintenance and myeloid cell development in next-generation humanized mouse models.

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Review 5.  Engineering humanized mice for improved hematopoietic reconstitution.

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Review 6.  Use of Humanized Mice to Study the Pathogenesis of Autoimmune and Inflammatory Diseases.

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Review 7.  Current humanized mouse models for studying human immunology and HIV-1 immuno-pathogenesis.

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Authors:  Jonathan Hasselmann; Morgan A Coburn; Whitney England; Dario X Figueroa Velez; Sepideh Kiani Shabestari; Christina H Tu; Amanda McQuade; Mahshad Kolahdouzan; Karla Echeverria; Christel Claes; Taylor Nakayama; Ricardo Azevedo; Nicole G Coufal; Claudia Z Han; Brian J Cummings; Hayk Davtyan; Christopher K Glass; Luke M Healy; Sunil P Gandhi; Robert C Spitale; Mathew Blurton-Jones
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9.  Mice engrafted with human hematopoietic stem cells support a human myeloid cell inflammatory response in vivo.

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Review 10.  Animal models for HIV/AIDS research.

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