AwardedContract AwardSupplies๐Ÿ‡ช๐Ÿ‡บ EU FundedTED 110/2026

Electromechanical Engineered Heart Tissue Bioreactor for Trinity College Dublin

Publication (OJ)

Jul 18, 2024

Award Date

Jul 18, 2024

Estimated Value

โ‚ฌ200,000

Contract Duration

4.0 months

Procedure Type

Open procedure

Bids received

1 bids received

Buyer headquarters

Dublin (D02 XH97) โ€” IE061

Description

Cell culture compatible bioreactor platform capable of culturing 3D in vitro engineered muscle tissues (specifically cardiac) that can provide tunable electrical stimulation to tissues while allowing contraction of the tissue. The system should be able to monitor the system up to a speed of 15 kHz and have the capacity to measure contractile forces (inferred by contraction-enabled movement of supporting pillar structures) up to a sensitivity of 1 micro Newton. It should be able to culture voumes of 50 microlitres or less with a maximum of 500,000 cells present in the EHT. The system should be suited for a 24-well plate format with potential to upscale to 96 and/or 384 well plates with future upgrades. The system should be coupled with user-friendly software . It is necessary to program custom electrical stimulation and contraction force protocols per column in a 24 well plate by adjusting parameters such as smplitude, voltage, pulse width and the duration of the stimulation phase to create twitc or tetanic muscle stimuli for muslce tissue training.

CPV Codes

380000003830000038340000384240003842300038434500384345403857000038540000

Lots (1)

LOT-0001Electromechanical Engineered Heart Tissue Bioreactor for Trinity College Dublin
โ‚ฌ200,000

Cell culture compatible bioreactor platform capable of culturing 3D in vitro engineered muscle tissues (specifically cardiac) that can provide tunable electrical stimulation to tissues while allowing contraction of the tissue. The system should be able to monitor the system up to a speed of 15 kHz and have the capacity to measure contractile forces (inferred by contraction-enabled movement of supporting pillar structures) up to a sensitivity of 1 micro Newton. It should be able to culture voumes of 50 microlitres or less with a maximum of 500,000 cells present in the EHT. The system should be suited for a 24-well plate format with potential to upscale to 96 and/or 384 well plates with future upgrades. The system should be coupled with user-friendly software . It is necessary to program custom electrical stimulation and contraction force protocols per column in a 24 well plate by adjusting parameters such as smplitude, voltage, pulse width and the duration of the stimulation phase to create twitc or tetanic muscle stimuli for muslce tissue training.

3800000038300000383400003842400038423000384345003843454038570000385400004 months

Award criteria

Cost @ 25%

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