Enhancing T cell immunity to cancer metastasis

MRC · United Kingdom government procurement

Closed March 30, 2029. GlobalGov surfaces government procurement from around the world, including the markets your competitors overlook.

Closed
Status

Opportunity Overview

Metastatic cancer results from the escape of individual cells from the primary tumour to distal parts of the body. The process of cancer metastasis is responsible for more than 90% of cancer deaths. One example is the skin cancer melanoma from which cells can become dislodged and travel to the liver or lung. In this proposal, we have identified a biochemical pathway within T cells which when activated, promotes extremely potent immune-mediated rejection of lung metastases. The biochemical pathway is activated by an enzyme called PI3K. There are several drugs used in the clinic that inhibit this pathway and some of these have been used to stimulate the immune system. Here we propose circumstances where the pathway instead needs to be activated.

The aims of this proposal are to understand how hyperactivation of PI3K leads to the elimination of cancer metastases and to exploit this knowledge to improve immunity to cancer metastases. Our work is organised into two Aims:

Aim 1 will find out the mechanism of helper T cell-mediated elimination of lung tumours. We will determine what other immune subtypes the helper T cells engage in the fight against cancer.

Aim 2 explores a novel biochemical pathway we have discovered that can unleash potent PI3K activity in T cells using available drugs such as aspirin.

This research is mainly focused on the use of preclinical mouse models to establish the underlying mechanisms of the remarkable anti-metastatic tumour responses we have uncovered. These data will be compared to primary human data from cancer patients through our collaborative links with the Add Aspirin trial (http://www.addaspirintrial.org/).

This research will enable development of a new generation of anti-metastatic immune-based therapies which aim to prevent successful development of metastases in patients who have been diagnosed and treated with early cancer but who are at risk of metastasis.

Your competitors are watching the same crowded contracts everyone else is. Track live opportunities like this one worldwide, set deadline alerts, and win where they aren’t. Free for 14 days, no card.

Start Free

Solicitation Details

Issuing agencyMRC
CountryUnited Kingdom
CategoryResearch Development
PublishedMarch 31, 2024
Procurement stageActive solicitation
ClosedMarch 30, 2029
StatusClosed — no longer accepting responses
Official sourceView original notice
Last verifiedAugust 10, 2026

Source: UK Research and Innovation (UKRI) — Open Government Licence v3.0.

Browse Similar Open Opportunities in United Kingdom

Rotation year
Title of project: Evaluation of the quantitative accuracy and radiation dosimetry of an advanced pre-clinical multipinhole SPECT/CT theranostic imag
Discerning MCT1s role in chromatin remodelling and metabolomics changes in cancer progression
Leveraging real world data to characterise the long term impact of COVID-19
Bacterial antibiotic resistance: structure, mechanism and inhibition of ABC transporters responsible for drug efflux and cell wall biogenesis.
Characterising the role of TEX12 in centrosome and cilia development
Allogeneic Chondroprogenitor Therapy (Phase II) (ACT2)
Dectin-1-mediated suppression of protective anti-mycobacterial immunity

See every United Kingdom Research Development opportunity your competition is missing. Free for 14 days.

Get real-time alerts, competitive intelligence, and deadline tracking for this and every market worldwide.

Start Free Trial — No Card Required

Free 14-day trial · no card required

See who is already competing here →

Get a free United Kingdom Research Development intelligence report in your inbox

A personalized report on United Kingdom Research Development opportunities, emailed in 5-10 minutes. One per month, no account needed.