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Published on: February 22, 2020
NCR1 Expression Identifies Canine Natural Killer Cell Subsets with Phenotypic Similarity to Human Natural Killer
Jennifer A Foltz1, Srinivas S Somanchi2, Yanwen Yang2
1Department of Pediatrics-Research, MD Anderson Cancer Center, The University of Texas, Houston, TX, USA; Health Science Center, Graduate School of Biomedical Sciences, The University of Texas, Houston, TX, USA.
Abstract:
Canines spontaneously develop many cancers similar to humans - including osteosarcoma, leukemia, and lymphoma - offering the opportunity to study immune therapies in a genetically heterogeneous and immunocompetent environment. However, a lack of antibodies recognizing canine NK cell markers has resulted in suboptimal characterization and unknown purity of NK cell products, hindering the development of canine models of NK cell adoptive immunotherapy. To this end, we generated a novel antibody to canine NCR1 (NKp46), the putative species-wide marker of NK cells, enabling purification of NK cells for further characterization. We demonstrate that CD3-/NKp46+ cells in healthy and osteosarcoma-bearing canines have phenotypic similarity to human CD3-/NKp46+ NK cells, expressing mRNA for CD16 and the natural cytotoxicity receptors NKp30, NKp44, and NKp80. Functionally, we demonstrate with the calcein release assay that canine CD3-/NKp46+ cells kill canine tumor cell lines without prior sensitization and secrete IFN-γ, TNF-α, IL-8, IL-10, and granulocyte-macrophage colony-stimulating factor as measured by Luminex. Similar to human NK cells, CD3-/NKp46+ cells expand rapidly on feeder cells expressing 4-1BBL and membrane-bound IL-21 (median = 20,283-fold in 21 days). Furthermore, we identify a minor Null population (CD3-/CD21-/CD14-/NKp46-) with reduced cytotoxicity against osteosarcoma cells, but similar cytokine secretion as CD3-/NKp46+ cells. Null cells in canines and humans have reduced expression of NKG2D, NKp44, and CD16 compared to NKp46+ NK cells and can be induced to express NKp46 with further expansion on feeder cells. In conclusion, we have identified and characterized canine NK cells, including an NKp46- subset of canine and human NK cells, using a novel anti-canine NKp46 antibody, and report robust ex vivo expansion of canine NK cells sufficient for adoptive immunotherapy.
Insights
Researchers developed a new antibody to identify and purify canine Natural Killer (NK) cells, crucial for cancer immunotherapy research. This breakthrough enables robust expansion of canine NK cells for potential therapeutic applications in dogs and humans.
Area of Science:
- Immunology
- Veterinary Oncology
- Cell Therapy
Background:
- Canine cancers mirror human malignancies, presenting opportunities for comparative immune therapy research.
- Limited availability of antibodies for canine NK cell markers has hindered research and therapeutic development.
- Accurate characterization and purity assessment of NK cell products are essential for adoptive immunotherapy.
Purpose of the Study:
- To generate a novel antibody targeting canine NCR1 (NKp46), a key NK cell marker.
- To characterize canine NK cells and assess their potential for adoptive immunotherapy.
- To investigate the expansion capabilities of canine NK cells ex vivo.
Main Methods:
- Development of a novel antibody against canine NCR1 (NKp46).
- Phenotypic and functional characterization of canine CD3-/NKp46+ cells.
- Assessment of cytokine secretion using Luminex and cytotoxicity via calcein release assay.
- Ex vivo expansion of NK cells on feeder cells.
Main Results:
- The novel anti-NKp46 antibody successfully identified and purified canine NK cells.
- Canine NK cells exhibit phenotypic and functional similarities to human NK cells, including cytotoxicity and cytokine secretion (IFN-γ, TNF-α, IL-8, IL-10, GM-CSF).
- Canine NK cells demonstrated robust ex vivo expansion (median 20,283-fold in 21 days) on feeder cells.
- A minor NKp46- subset (Null cells) was identified with distinct characteristics and potential for NKp46 induction.
Conclusions:
- A novel anti-canine NKp46 antibody enables effective identification and characterization of canine NK cells.
- Canine NK cells are functionally potent and can be expanded ex vivo to sufficient numbers for adoptive immunotherapy.
- This research provides a foundation for developing canine NK cell-based immunotherapies for cancer.
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