Close-up of a pipette resting in a beaker of liquid among glass lab beakers.

Translational Biology & Engineering Program

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Overview

Program Overview

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Glass beakers and a flask on a white lab bench in a translational biology and engineering lab.
Program Areas of Focus

Focus Areas

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  • Repair and Regenerate Heart Tissue

    The heart has an innate ability to repair itself, but it’s lost over time. TBEP researchers are decoding how to teach it to remember, by developing ways to deliver cells, molecules and biomaterials into the heart to allow it to regenerate after an injury, such as a heart attack.

    This also means creating a cardiac environment that will accept such therapy. This could come with a new biomaterial that helps stem cells function in the heart, or strategies to break down scar tissue in order to deliver such cells effectively.

    Glass beakers and a flask on a white lab bench in a translational biology and engineering lab.
  • Repair and Regenerate Heart Tissue

    The heart has an innate ability to repair itself, but it’s lost over time. TBEP researchers are decoding how to teach it to remember, by developing ways to deliver cells, molecules and biomaterials into the heart to allow it to regenerate after an injury, such as a heart attack.

    This also means creating a cardiac environment that will accept such therapy. This could come with a new biomaterial that helps stem cells function in the heart, or strategies to break down scar tissue in order to deliver such cells effectively.

    Glass beakers and a flask on a white lab bench in a translational biology and engineering lab.
  • Repair and Regenerate Heart Tissue

    The heart has an innate ability to repair itself, but it’s lost over time. TBEP researchers are decoding how to teach it to remember, by developing ways to deliver cells, molecules and biomaterials into the heart to allow it to regenerate after an injury, such as a heart attack.

    This also means creating a cardiac environment that will accept such therapy. This could come with a new biomaterial that helps stem cells function in the heart, or strategies to break down scar tissue in order to deliver such cells effectively.

    Glass beakers and a flask on a white lab bench in a translational biology and engineering lab.
  • Repair and Regenerate Heart Tissue

    The heart has an innate ability to repair itself, but it’s lost over time. TBEP researchers are decoding how to teach it to remember, by developing ways to deliver cells, molecules and biomaterials into the heart to allow it to regenerate after an injury, such as a heart attack.

    This also means creating a cardiac environment that will accept such therapy. This could come with a new biomaterial that helps stem cells function in the heart, or strategies to break down scar tissue in order to deliver such cells effectively.

    Glass beakers and a flask on a white lab bench in a translational biology and engineering lab.
  • Repair and Regenerate Heart Tissue

    The heart has an innate ability to repair itself, but it’s lost over time. TBEP researchers are decoding how to teach it to remember, by developing ways to deliver cells, molecules and biomaterials into the heart to allow it to regenerate after an injury, such as a heart attack.

    This also means creating a cardiac environment that will accept such therapy. This could come with a new biomaterial that helps stem cells function in the heart, or strategies to break down scar tissue in order to deliver such cells effectively.

    Glass beakers and a flask on a white lab bench in a translational biology and engineering lab.
  • Repair and Regenerate Heart Tissue

    The heart has an innate ability to repair itself, but it’s lost over time. TBEP researchers are decoding how to teach it to remember, by developing ways to deliver cells, molecules and biomaterials into the heart to allow it to regenerate after an injury, such as a heart attack.

    This also means creating a cardiac environment that will accept such therapy. This could come with a new biomaterial that helps stem cells function in the heart, or strategies to break down scar tissue in order to deliver such cells effectively.

    Glass beakers and a flask on a white lab bench in a translational biology and engineering lab.
Program Highlights

Innovation Highlights

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  • Glass beakers and a flask on a white lab bench in a translational biology and engineering lab.

    Innovation Highlight Title Goes Here

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  • Fluorescence microscopy image of cells with nuclei stained blue and pink.

    Innovation Highlight Title Goes Here

    Lorem ipsum dolor sit amet, consectetur adipiscing elit. Suspendisse varius enim in eros elementum tristique. Duis cursus, mi quis viverra ornare, eros dolor interdum.
  • Glass beakers and a flask on a white lab bench in a translational biology and engineering lab.

    Innovation Highlight Title Goes Here

    Lorem ipsum dolor sit amet, consectetur adipiscing elit. Suspendisse varius enim in eros elementum tristique. Duis cursus, mi quis viverra ornare, eros dolor interdum.
Capabilities

Program Capabilities

“Medical imaging and microscopy
Animal surgery and physiological monitoring
Advanced preclinical models of CVD
Genomic and proteomic methods to detect biomarkers
Biomaterial synthesis and characterization
Polymer processing and coating
Microfabrication of in vitro diagnostic devices”

By the Numbers

Program Impact

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