Transfusable neutrophil progenitors as cellular therapy for the prevention of invasive fungal infections

Author:

Sykes David B123,Martinelli Michelle M123,Negoro Paige4,Xu Shuying4,Maxcy Katrina123,Timmer Kyle4,Viens Adam L4,Alexander Natalie J4,Atallah Johnny14ORCID,Snarr Brendan D5,Baistrocchi Shane R5,Atallah Natalie J14,Hopke Alex67,Scherer Allison14,Rosales Ivy8,Irimia Daniel67,Sheppard Donald C5,Mansour Michael K14ORCID

Affiliation:

1. Harvard Medical School , Boston, Massachusetts, USA

2. Center for Regenerative Medicine , Boston, Massachusetts, USA

3. Harvard Stem Cell Institute , Boston, Massachusetts, USA

4. Division of Infectious Diseases, Massachusetts General Hospital , Boston, Massachusetts, USA

5. Research Institute of the McGill University Health Center , Montreal, Canada

6. BioMEMS, Massachusetts General Hospital , Boston, Massachusetts, USA

7. Department of Surgery, Massachusetts General Hospital , Boston, Massachusetts, USA

8. Department of Pathology, Massachusetts General Hospital , Boston, Massachusetts, USA

Abstract

Abstract The use of mature neutrophil (granulocyte) transfusions for the treatment of neutropenic patients with invasive fungal infections (IFIs) has been the focus of multiple clinical trials. Despite these efforts, the transfusion of mature neutrophils has resulted in limited clinical benefit, likely owing to problems of insufficient numbers and the very short lifespan of these donor cells. In this report, we employed a system of conditionally immortalized murine neutrophil progenitors that are capable of continuous expansion, allowing for the generation of unlimited numbers of homogenous granulocyte-macrophage progenitors (GMPs). These GMPs were assayed in vivo to demonstrate their effect on survival in 2 models of IFI: candidemia and pulmonary aspergillosis. Mature neutrophils derived from GMPs executed all cardinal functions of neutrophils. Transfused GMPs homed to the bone marrow and spleen, where they completed normal differentiation to mature neutrophils. These neutrophils were capable of homing and extravasation in response to inflammatory stimuli using a sterile peritoneal challenge model. Furthermore, conditionally immortalized GMP transfusions significantly improved survival in models of candidemia and pulmonary aspergillosis. These data confirm the therapeutic benefit of prophylactic GMP transfusions in the setting of neutropenia and encourage development of progenitor cellular therapies for the management of fungal disease in high-risk patients.

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Immunology,Immunology and Allergy

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