Floyd Hypoxia, Cognition, and Aging Lab | UT Southwestern, Dallas, Texas

https://labs.utsouthwestern.edu/floyd-hypoxia-cognition-and-aging-lab

We study the impact of disease-related hypoxic stress with aging upon synaptic plasticity, white matter connectivity, and cognitive performance.

Risk of Space Radiation-Induced Lung Carcinogenesis | Story Lab | UT Southwestern, Dallas, Texas

https://labs.utsouthwestern.edu/story-lab/research/astronaut-safety-determining-risk-space-radiation-induced-cancers/risk-space

One of the goals of our lab is to understand how radiation from the deep space environment will impact the risk of lung carcinogenesis in male and female astronauts, particularly in the context of a manned mission to Mars.

Mitophagy in cardiac disease and aging | UT Southwestern, Dallas, Texas

https://labs.utsouthwestern.edu/node/3301/

Mitophagy in cardiac disease and aging

Mechanisms of AOB plasticity | Meeks Lab | UT Southwestern, Dallas, Texas

https://labs.utsouthwestern.edu/meeks-lab/research/mechanisms-aob-plasticity

Learn about Mechanisms of AOB plasticity

Office of Research Integrity - UT Southwestern, Dallas, Texas

https://www.utsouthwestern.edu/research/research-support/ori.html

The Office of Research Integrity ensures that research is carried out both with the highest standards of scientific rigor and with the highest ethical standards.

Enhancement of Solubility and Bioavailability of β-Lapachone Using Cyclodextrin Inclusion Complexes

https://labs.utsouthwestern.edu/sites/default/files/2022-11/32_Nasongkla_Pharm_RES.pdf

We hy- pothesize that binding of �-lap inside the hydrophobic cavity of cyclodextrins will drive the dynamic equilibrium of �-lap from solid state to the solution state (Fig. 1), thereby increas- ing the drug solubility.

Regulation of calcineurin by RCAN1 | Rothermel Lab | UT Southwestern, Dallas, Texas

https://labs.utsouthwestern.edu/rothermel-lab/research/regulation-calcineurin-rcan1

Regulation of calcineurin by RCAN1

public-disclosure-of-interests-as-of-December-2021-complete-without-disclosure.pdf

https://www.utsouthwestern.edu/research/research-support/conflict-of-interest/public-disclosure-of-interests-as-of-December-2021-complete-without-disclosure.pdf

Last Name First Name Job Title COI Statement State Abbas Hibah RASSO-RESEARCH ASSOCIATES Complete Without Disclosure Abbas Ali Medical Student Complete Without Disclosure Abbas Laila Fatima Medical Student Complete Without Disclosure Abbe Marisa Kristine Affiliated Individual Complete Without

Metabolic Hallmarks of Cancer | Corbin Lab | UT Southwestern, Dallas, Texas

https://labs.utsouthwestern.edu/corbin-lab/research/metabolic-hallmarks-cancer

Metabolic reprogramming is now firmly established as a hallmark of cancer

Mechanisms of experience and activity-dependent development of synapses and circuits by genes linked to neurodevelopmental disorders | Huber Lab | UT Southwestern, Dallas, Texas

https://labs.utsouthwestern.edu/huber-lab/research/mechanisms-experience-and-activity-dependent-development-synapses-and-circuits

We study the cellular, synaptic and molecular mechanisms of synapse and circuit development and how this is regulated by genes implicated in autism and schizophrenia.