ARC-for-CORE · Artificial Compartment for Coenzyme Regeneration
„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“
- Период
- 2019-03-18 → 2021-04-30
- Финансиране от ЕС
- 171 461 €
- Участници
- 1
- Схема
- MSCA-IF-EF-ST
Линиите свързват координатора с партньорите.
Накратко на български
Изграждането на изкуствени клетъчни стени помага за създаването на синтетични клетки, които имитират функциите на живите организми. Това ще подобри производството на лекарства, храни и химикали, като разшири познанията ни за физическата химия.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Artificial Compartment for Coenzyme Regeneration
Rebuilding the cell or matching the certain cell functions can be the way we understand how real cells work and even go beyond for intelligent production. Over the last decade, the EU has invested heavily in searching for cell alternatives to impact pharmaceutics, therapeutics, agriculture, and more general chemical processing. The technological possibilities of relevant research are now at a tipping point and will lead to a revolution in medicine, food and sustainability in the next 5 to 20 years. We noticed that most works focused on proof-of-concept research of compartmentalised/localised reactions and mass transfer among/within cells. Given that the cell wall is equally important like other organelles to the cell’s space-sensitive activities, a robust, function-tuneable artificial envelop is highly needed. As far as we know, the effort to build an artificial cell wall is far from enough. The state-of-art knowledge of man-made shell, from material selection, interfacial assembly kinetics to tailoring functionality, is limited. Therefore, a systematic exploration concentrating on building blocks of the artificial cell wall can bridge the gap of EU in the progress of this field. Due to the Covid lockdown, we had to reconsider the methodologies, e.g. we developed the Genetic Algorithm to accelerate material optimisation, and replaced the collaborative microfluidics with the extensive emulsion stability study. However, the overall goal has not been changed. The bonus of the smartly optimised shell candidate is that we know much clearer than before about the physical chemistry at the complex interface. Therefore, the significance of our updated project even broadened the horizon to the basic interfacial science and methodology advancement, which would pave the way for the community to understand the behaviour of low-dimensional materials at the interface. Arc-for-Core project contributes to developing novel candidates for artificial compartment by investigating low-dimensional materials as building blocks. We demonstrate high versatility of low dimensional materials in forming a composite shell, which manifests tailorable mechanical properties, conductance, stimuli-response, and potential of interfacial assembly. Furthermore, through the updated methodology of processing, the 2D materials in the latter case offer us the chance to investigate their behaviour at the complex and multiphasic interface.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
This project is to build an artificial compartment for coenzyme regeneration, urgently demanded by industry and scientific research to enhance the stoichiometric use of coenzyme in biosynthetic pathways. The fellow will investigate all-round aspects of the bio-inspired system, including compartmentalization process, mass transfer and biological reactivity. A new mechanism for selective bidirectional transport and structure-reinforced composite shell will be proposed. Capitalizing upon his expertise in biomimetic controlled delivery system, carbon nanomaterial, emulsion and scanning electrochemistry, the fellowship makes him a unique asset to EU for the brand-new exploration of bio-inspired selective transport system and coenzyme regeneration compartment. The fellow has proven track record with multi- and interdisciplinary background and his achievement has been outstanding as demonstrated in CV. The skills he will gain allow him to diversify his capability significantly, including interfacial polymerization and molecular imprinting technique, visualized delivery dynamics, capsule manipulation and stability test, enzymatic integrity and activity test, compartmentalized enzymatic reaction, microfluidic multiple emulsification and techniques for SECM set-ups and analysis. The output will be the knowledge obtained from the formation of the artificial compartment through bulk and microfluidic interfacial polymerization, the compartmentalized enzymatic reactions and new set-ups for SECM. In addition, the fellowship will allow him to transfer his existing knowledge and the one emerged from the research to the hosts and a variety of audience, via complementary activities. The effective and reliable coenzyme regeneration system will address the challenge of coenzyme utilization in the biological industry. Fostered by the fellowship, a leading expert in biomimicry and coenzyme regeneration is expected to contribute greatly to EU industries and academic communities.
Оригинален текст от CORDIS (на английски).
Участници
- MAX-PLANCK-GESELLSCHAFT ZUR FORDERUNG DER WISSENSCHAFTEN EV · MUNCHENКоординаторГермания
Връзки
Данни: CORDIS, © Европейски съюз
