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Teodora Georgieva
Director, GEMM Core | Assistant Research Professor
BIO5 Institute
Full Page
Overview
Research
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Collaboration
(12)
Marlys Witte
Mutual work: 4 Publications
Collaboration Details
David Besselsen
Mutual work: 5 Publications
Collaboration Details
Jennifer Barton
Mutual work: 1 Grant﹒1 Supervisor﹒1 Proposal
Collaboration Details
Thomas Doetschman
Mutual work: 4 Publications﹒1 Supervisor
Collaboration Details
Yana Zavros
Mutual work: 2 Grants﹒6 Proposals
Collaboration Details
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Grants
(2)
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Publications
(11)
Recent
Cutting edge: Characterization of low copy number human angiotensin-converting enzyme 2 hACE2)transgenic mice as an improved model of SARS-CoV-2 infection.
2024
transgenic mice,
sars-cov-2 infection,
ace2 characterization,
human ace2,
animal models
beta;IV-spectrin as a stalk cell-intrinsic regulator of VEGF signaling
2022
cell biology,
signal transduction,
vascular biology,
protein regulation,
spectrin function
Kallikrein 6 enzyme deficiency in the colon attenuates the Apc-mutant colon carcinogenesis
2022
enzyme deficiency,
colon carcinogenesis,
apc-mutant,
kallikrein 6,
colon
Mouse model of a human STAT4 point mutation that predisposes to disseminated Coccidiomycosis DCM)
2022
genetics,
immunology,
infectious diseases,
molecular biology,
animal models
βIV-spectrin as a stalk cell-intrinsic regulator of VEGF signaling
2021
cell signaling,
protein regulation,
cell biology,
gene expression,
cytoskeleton dynamics
Identification of Mfn2-S249 as a Phosphoregulatory Switch of Mitochondrial Fusion Dynamics
2021
mitochondrial dynamics,
protein phosphorylation,
cell biology,
mitochondrial fusion,
signal transduction
Abnormal lymphatic phenotype in a CRISPR mouse model of the human lymphedema-causing Connexin 47 R260C point mutation
2021
lymphatic system,
genetic mutation,
crispr mouse model,
lymphedema,
connexin 47
ABNORMAL LYMPHATIC PHENOTYPE IN A CRISPR MOUSE MODEL OF THE HUMAN LYMPHEDEMA-CAUSING CONNEXIN47 R260C POINT MUTATION
2021
lymphatic system,
genetics,
mouse model,
crispr,
lymphedema
A Novel Cut and Paste Method for In Situ Replacement of cMyBP-C Reveals a New Role for cMyBP-C in the Regulation of Contractile Oscillations
2020
cardiac muscle,
protein regulation,
myocardial function,
gene editing,
contractile proteins
Gene Editing With CRISPR/Cas9 RNA-Directed Nuclease
2017
genetic engineering,
biotechnology,
molecular biology,
gene therapy,
genomics