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CORDIS

Functional Systems of Capsules

Objectif

The simplest living organism is composed of myriad chemical subsystems, each consisting of structurally complex biomolecules that interact in many ways; the properties of life emerge from these dense connections. Understanding how these interactions take place will help elucidate the foundations of biology, as well as enabling the design and creation of new chemical networks with targeted functions. Deciphering and designing chemical systems requires new tools to be developed, however. In this research programme, we will develop new means for engineering functional chemical systems based upon the use of guest-binding capsules. These hosts will respond to many different signals in predictable ways. Their responses will enable their guests to be transformed in new ways or pumped between phases using light. Chemical signals will enable hosts to be transformed reversibly or irreversibly, changing their guest binding properties so as to favour some guests and disfavour others, and catalysts will be released or taken up, accelerating or impeding catalysed transformations. Ultimately we will design systems where signal transduction occurs in complex cycles and feedback loops, allowing complex behaviour to emerge from abiological systems.

Régime de financement

ERC-ADG - Advanced Grant

Institution d’accueil

THE CHANCELLOR MASTERS AND SCHOLARS OF THE UNIVERSITY OF CAMBRIDGE
Contribution nette de l'UE
€ 2 478 236,00
Adresse
TRINITY LANE THE OLD SCHOOLS
CB2 1TN Cambridge
Royaume-Uni

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Région
East of England East Anglia Cambridgeshire CC
Type d’activité
Higher or Secondary Education Establishments
Liens
Coût total
€ 2 478 236,00

Bénéficiaires (1)