A High-Throughput Flow System to Probe Biomechanics of Pathophysiology

Information

  • Research Project
  • 8263037
  • ApplicationId
    8263037
  • Core Project Number
    R21GM103435
  • Full Project Number
    8R21GM103435-03
  • Serial Number
    103435
  • FOA Number
    RFA-RR-09-001
  • Sub Project Id
  • Project Start Date
    8/1/2010 - 13 years ago
  • Project End Date
    9/30/2013 - 10 years ago
  • Program Officer Name
    FRIEDMAN, FRED K.
  • Budget Start Date
    5/1/2012 - 12 years ago
  • Budget End Date
    9/30/2013 - 10 years ago
  • Fiscal Year
    2012
  • Support Year
    03
  • Suffix
  • Award Notice Date
    4/5/2012 - 12 years ago

A High-Throughput Flow System to Probe Biomechanics of Pathophysiology

DESCRIPTION (provided by applicant): A High-Throughput Flow System to Probe Biomechanics of Pathophysiology Recent advances in cell culture modalities and high-throughput screening technology have vastly expanded our potential for biological discovery, and have opened the door toward therapeutic advances in the development of new compounds and cell-based therapies for treatment of a wide range of diseases. Nevertheless, current systems do not have the capability to probe cellular function in the context of the complex biomechanical environments that dictate the fate and functional phenotype of multiple cell types comprising diverse tissue milieus in vivo. Here we propose to develop and implement a dynamic high-throughput flow system that delivers programmable, time- varying fluid dynamic waveforms to cultured cells grown in individual wells of a commercially available 96-well plate. This platform should allow the systematic investigation of signaling pathways in biological systems whose function and dysfunction critically depends on the fluid mechanical environment. Development of this instrument will enable better understanding of human pathophysiology and lead to the discovery of new therapeutic targets or modalities for clinical interventions for a broad range of diseases and clinical and research applications. PUBLIC HEALTH RELEVANCE: Narrative A High-Throughput Flow System to Probe Biomechanics of Pathophysiology This project aims to develop, for the first time, a high-throughput instrument capable of culturing cells in a conventional 96-well plate and applying precise mechanical forces to them. This capability will enable new and more efficient methods to investigate cardiovascular diseases, blood disorders, cancer and other conditions using more realistic laboratory models, and will accelerate the development of safer and more efficacious therapeutic treatments for these diseases.

IC Name
NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES
  • Activity
    R21
  • Administering IC
    GM
  • Application Type
    8
  • Direct Cost Amount
    182036
  • Indirect Cost Amount
    61636
  • Total Cost
    243672
  • Sub Project Total Cost
  • ARRA Funded
    False
  • CFDA Code
    859
  • Ed Inst. Type
  • Funding ICs
    NIGMS:243672\
  • Funding Mechanism
    Non-SBIR/STTR RPGs
  • Study Section
    ZRR1
  • Study Section Name
    Special Emphasis Panel
  • Organization Name
    CHARLES STARK DRAPER LABORATORY
  • Organization Department
  • Organization DUNS
    066587478
  • Organization City
    CAMBRIDGE
  • Organization State
    MA
  • Organization Country
    UNITED STATES
  • Organization Zip Code
    021393539
  • Organization District
    UNITED STATES