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Profil bibliographique

John C. Moore

Informations fournies par OpenAlex. Research Africa ne déduit ni nationalité, ni poste, ni coordonnées personnelles.

18Publications signalées
1090Citations signalées
1Affiliations récentes

Les institutions déclarées

Les domaines associés

Zebrafish Biomedical Research ApplicationsCongenital heart defects researchAngiogenesis and VEGF in CancerCRISPR and Genetic EngineeringImmune Cell Function and Interaction

Les publications récentes

Accès ouvert 2016 article OpenAlex

Single-cell imaging of normal and malignant cell engraftment into optically clear prkdc-null SCID zebrafish

John C. Moore, Qin Tang, Nora Torres Yordán, Finola E. Moore et autres

Cell transplantation into immunodeficient mice has revolutionized our understanding of regeneration, stem cell self-renewal, and cancer; yet models for direct imaging of engrafted cells has been limited. Here, we characterize zebrafish with mutations in recombination activating gene 2 (rag2), DNA-dependent protein kinase …

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75 citations The Journal of Experimental Medicine
Accès ouvert 2016 article OpenAlex

T Cell Immune Deficiency in zap70 Mutant Zebrafish

John C. Moore, Timothy S. Mulligan, Nora Torres Yordán, Daniel Castranova et autres

ZAP70 [zeta-chain (TCR)-associated protein kinase, 70-kDa], is required for T cell activation. ZAP70 deficiencies in humans and null mutations in mice lead to severe combined immune deficiency. Here, we describe a zap70 loss-of-function mutation in zebrafish (zap70y442) that was created using transcription …

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65 citations Molecular and Cellular Biology
2016 conference-abstract OpenAlex

Abstract 4177: Dynamic visualization of cancer cell engraftment into immune compromised zebrafish

John C. Moore, Qin Tang, Nora Torres Yordán, Timothy S. Mulligan et autres

Abstract Cell transplantation into immune compromised mice has transformed our understanding of cancer and is now the gold standard for assessing therapeutic responses in vivo. However, mouse models are expensive and engraftment is often difficult to visualize directly. To overcome these challenges, …

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0 citations Cancer Research
Accès ouvert 2016 article OpenAlex

Single-cell transcriptional analysis of normal, aberrant, and malignant hematopoiesis in zebrafish

Finola E. Moore, Elaine G. Garcia, Riadh Lobbardi, Esha Jain et autres

Hematopoiesis culminates in the production of functionally heterogeneous blood cell types. In zebrafish, the lack of cell surface antibodies has compelled researchers to use fluorescent transgenic reporter lines to label specific blood cell fractions. However, these approaches are limited by the availability …

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82 citations The Journal of Experimental Medicine
Accès ouvert 2016 article OpenAlex

Imaging tumour cell heterogeneity following cell transplantation into optically clear immune-deficient zebrafish

Qin Tang, John C. Moore, Myron S. Ignatius, Inês M. Tenente et autres

Cancers contain a wide diversity of cell types that are defined by differentiation states, genetic mutations and altered epigenetic programmes that impart functional diversity to individual cells. Elevated tumour cell heterogeneity is linked with progression, therapy resistance and relapse. Yet, imaging of …

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91 citations Nature Communications
Accès ouvert 2014 article OpenAlex

Normal and Malignant Muscle Cell Transplantation into Immune Compromised Adult Zebrafish

Inês M. Tenente, Qin Tang, John C. Moore, David M. Langenau

Zebrafish have become a powerful tool for assessing development, regeneration, and cancer. More recently, allograft cell transplantation protocols have been developed that permit engraftment of normal and malignant cells into irradiated, syngeneic, and immune compromised adult zebrafish. These models when coupled with …

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17 citations Journal of Visualized Experiments
Accès ouvert 2014 article OpenAlex

Distinct Notch signaling outputs pattern the developing arterial system

Aurélie Quillien, John C. Moore, Masahiro Shin, Arndt F. Siekmann et autres

Differentiation of arteries and veins is essential for the development of a functional circulatory system. In vertebrate embryos, genetic manipulation of Notch signaling has demonstrated the importance of this pathway in driving artery endothelial cell differentiation. However, when and where Notch activation …

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123 citations Development

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