Burke Neurological Institute
Menu
Skip to main content
Our Team
Contact Us
Donate
Clinical Trials
Search form
Search
About Us
Conditions
Faculty / Research Labs & Core Facilities
News & Impact
Future Talent
Events
About Us
+
About the Institute
Our Mission & Vision
Our History
Our Leadership
Our Boards
Our Team
Affiliations & Partners
Funding Sources
Brand Toolkit
Research Compliance
Campus Guide
Covid-19 Guidelines for Vendors
Contact Us
Conditions
+
Neurological Conditions
Stroke
Spinal Cord Injury
Traumatic Brain Injury
Cerebral Palsy
Neurodegenerative Diseases
Retinal Degenerative Diseases
Neurological Recovery
Motor Recovery
Pain & Sensory Recovery
Cognitive Recovery
Vision Recovery
Find a Clinical Trial
Inquire About Trials
Research Registry
Center for Pain & Sensory
Center for Vision Repair
Resilience Program
Campus Guide
Faculty / Research Labs & Core Facilities
+
Research Labs & Cores
Cho Lab
Friel Lab
Gibson Lab
Hollis Lab
Marshel Lab
Prusky Lab
Ratan Lab
Sahni Lab
Travis Lab
Willis Lab
Yoshida Lab
Imaging Core
SCI Core
Research Methods
News & Impact
+
Recent News & Impact
News
Publications
Grants
Presentations
Future Talent
+
Programs & Opportunities
Open Job Positions
Summer Science
Intro to Neuroscience
NeuroAcademy
Postdoctoral Fellow
Graduate Medical Fellow
Undergraduate
High School
Events
+
Upcoming Events
Archived Events
Webinar Series
Ratan Lab
News & Impact
Focus
People
Projects
Impact
Clinical Trials
You are here
Home
>
Inhibiting metalloenzyme prevents damage caused by brain bleeding
Inhibiting metalloenzyme prevents damage caused by brain bleeding
NEWS:
In the Media
March 3, 2016
Media Outlet:
Chemical & Engineering News
Published Media:
Inhibiting metalloenzyme prevents damage caused by brain bleeding
Cho Lab
/
Ratan Lab
PUBLICATION:
Journal Article
Karuppagounder SS, Alim I, Khim SJ, Bourassa MW, Sleiman SF, John R, Thinnes CC, Yeh TL, Demetriades M, Neitemeier S, Cruz D, Gazaryan I, Killilea DW, Morgenstern L, Xi G, Keep RF, Schallert T, Tappero RV, Zhong J, Cho S, Maxfield FR, Holman TR, Culmsee C, Fong GH, Su Y, Ming GL, Song H, Cave JW, Schofield CJ, Colbourne F, Coppola G, Ratan RR
Therapeutic targeting of oxygen-sensing prolyl hydroxylases abrogates ATF4-dependent neuronal death and improves outcomes after brain hemorrhage in several rodent models
Sci Transl Med. 2016 Mar 2;8(328):328ra29. doi: 10.1126/scitranslmed.aac6008.
Abstract on PubMed
Featured Researchers and Members
Saravanan S. Karuppagounder, Ph.D.
Former Director
Spinal Cord Injury Core
Laboratory for Neural Redox Biology and Homeostatic Transcription
Former Assistant Professor of Research in Neuroscience
Weill Cornell Medicine
Ishraq Alim, Ph.D.
Former Postdoctoral Fellow
Laboratory for Neural Redox Biology and Homeostatic Transcription
Megan Bourassa, Ph.D.
Former Postdoctoral Fellow
Laboratory for Neural Redox Biology and Homeostatic Transcription
Sunghee Cho, Ph.D.
Lab Director
Stroke Neuroimmunology Laboratory
Professor
Weill Cornell Medicine
John W. Cave, Ph.D.
Former Lab Director
Laboratory for Neuronal Specification
Former Assistant Professor
Weill Cornell Medicine
Innovation Advisor - Science and Technology at Latent Knowledge
InVitro Cell Research, LLC
Jian Zhong, Ph.D.
Former Lab Director
Molecular Regeneration and NeuroImaging Laboratory
Former Associate Professor
Weill Cornell Medicine
Rajiv R. Ratan, M.D., Ph.D.
Chief Executive Officer
Burke Professor, Associate Dean (affiliate)
Weill Cornell Medicine
Associated
Research Labs:
Ratan Lab
Cho Lab
Conditions & Recovery
Motor Recovery
Write and walk again.
Stroke
Stroke is the leading cause of disability in the U.S.
Research Methods
Drug Discovery