Publication: STAT3-Mediated Astrocyte Reactivity Associated with Brain Metastasis Contributes to Neurovascular Dysfunction.
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Identifiers
Date
2020-12-15
Authors
Sarmiento Soto, Manuel
Larkin, James R
Martin, Chris
Khrapitchev, Alexandre A
Maczka, Melissa
Economopoulos, Vasiliki
Scott, Helen
Escartin, Carole
Bonvento, Gilles
Serres, Sebastien
Advisors
Journal Title
Journal ISSN
Volume Title
Publisher
American Association for Cancer Research
Abstract
Astrocytes are thought to play a pivotal role in coupling neural activity and cerebral blood flow. However, it has been shown that astrocytes undergo morphologic changes in response to brain metastasis, switching to a reactive phenotype, which has the potential to significantly compromise cerebrovascular function and contribute to the neurological sequelae associated with brain metastasis. Given that STAT3 is a key regulator of astrocyte reactivity, we aimed here to determine the impact of STAT3-mediated astrocyte reactivity on neurovascular function in brain metastasis. Rat models of brain metastasis and ciliary neurotrophic factor were used to induce astrocyte reactivity. Multimodal imaging, electrophysiology, and IHC were performed to determine the relationship between reactive astrocytes and changes in the cerebrovascular response to electrical and physiological stimuli. Subsequently, the STAT3 pathway in astrocytes was inhibited with WP1066 to determine the role of STAT3-mediated astrocyte reactivity, specifically, in brain metastasis. Astrocyte reactivity associated with brain metastases impaired cerebrovascular responses to stimuli at both the cellular and functional level and disrupted astrocyte-endothelial interactions in both animal models and human brain metastasis samples. Inhibition of STAT3-mediated astrocyte reactivity in rats with brain metastases restored cerebrovascular function, as shown by in vivo imaging, and limited cerebrovascular changes associated with tumor growth. Together these findings suggest that inhibiting STAT3-mediated astrocyte reactivity may confer significant improvements in neurological outcome for patients with brain metastases and could potentially be tested in other brain tumors. SIGNIFICANCE: These findings demonstrate that selectively targeting STAT3-mediated astrocyte reactivity ameliorates the cerebrovascular dysfunction associated with brain metastasis, providing a potential therapeutic avenue for improved patient outcome.
Description
MeSH Terms
Animals
Astrocytes
Cell Line, Tumor
Cerebrovascular Circulation
Female
Humans
Magnetic Resonance Spectroscopy
Multimodal Imaging
Pyridines
Rats
Rats, Inbred Strains
Tyrphostins
Astrocytes
Cell Line, Tumor
Cerebrovascular Circulation
Female
Humans
Magnetic Resonance Spectroscopy
Multimodal Imaging
Pyridines
Rats
Rats, Inbred Strains
Tyrphostins
DeCS Terms
Neoplasias encefálicas
Astrocitos
Encéfalo
Metástasis de la neoplasia
Factor neurotrófico ciliar
Inmunohistoquímica
Electrofisiología
Astrocitos
Encéfalo
Metástasis de la neoplasia
Factor neurotrófico ciliar
Inmunohistoquímica
Electrofisiología
CIE Terms
Keywords
Brain Neoplasms, Ciliary Neurotrophic Factor, Laser Speckle Contrast Imaging, Neoplasms, Experimental, STAT3 Transcription Factor
Citation
Sarmiento Soto M, Larkin JR, Martin C, Khrapitchev AA, Maczka M, Economopoulos V, et al. STAT3-Mediated Astrocyte Reactivity Associated with Brain Metastasis Contributes to Neurovascular Dysfunction. Cancer Res. 2020 Dec 15;80(24):5642-5655.