FLOW-CHEMISTRY · Development of new flow chemistry methodology: Application into total synthesis of spirangien natural products and analogues thereof
7РП — „Хора“ (Действия „Мария Кюри“)
- Период
- 2010-07-01 → 2012-06-30
- Финансиране от ЕС
- 172 741 €
- Участници
- 1
- Схема
- MC-IEF
Линиите свързват координатора с партньорите.
Накратко на български
Нови методи в поточната химия се прилагат за синтезиране на природни съединения от типа на спирангиените. Това позволява по-безопасно и ефективно създаване на сложни молекули с биологична активност, като същевременно намалява количеството отпадъци и разхода на разтворители.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Development of new flow chemistry methodology: Application into total synthesis of spirangien natural products and analogues thereof.
Project context and objectives The development of new methods and reaction protocols in order to make new carbon-carbon bonds is of paramount importance to organic chemistry. To do this, the area of natural product synthesis has played a key role, providing new strategies in order to implement the key functionality required in a target molecule. Natural products incorporating heterocyclic motifs are of particular interest as they usually present high bioactive behaviour. In addition, their structural complexity represents a synthetic challenge in organic chemistry. Therefore, efficient methods for the construction of these molecules are of great importance. Currently, it is no longer sufficient simply to be able to make complex molecules rather than making them as efficiently as possible. Therefore it is necessary to develop new methodologies that can circumvent the problems associated with traditional batch chemistry. For this reason, the use of flow chemistry has been implemented. Project outcomes In doing this, several advantages become apparent: - a) the use of a contained environment means that high pressures and temperatures can be achieved, whilst toxic, odorous or hazardous reagents would be less problematic; - b) microfluidic channels can potentially result in enhanced reactivity; - c) exothermic processes and reactive intermediates can be readily assimilated by the equipment. In a broader sense, we can also anticipate lower solvent usage and less waste product generation which can lead to safer working practices. Furthermore, the use of automated machinery for synthesis is an attractive concept insofar as the requisite material can be made in the quality and quantity needed over a 24h/7-day period, meaning a more efficient use of expensive laboratory space. The aim of this project was to integrate traditional batch process chemistry with automated continuous flow technologies in order to achieve the total synthesis of several natural products bearing heterocycles in their structure. Thus, we envisioned we could revolutionise the way traditional total synthesis is done by using flow technologies where they showed a great advantage to traditional batch techniques. The chosen target molecules were Spirangien A, O- Methyl siphonazole and ()-Hennoxazole A.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
This is a proposal on Organic Chemistry. One of the most relevant problems in modern synthetic chemistry is the development of new technologies directed towards overcoming many of the bottlenecks associated with conventional organic synthesis. Also more use of automation is needed to facilitate scale-up and to improve the current synthesis standards. One of the most exciting and potentially significant developments is the incorporation of flow chemistry into lab based synthesis platforms. Moreover, an additional benefit to this mode of chemistry is that it allows for the linking of individual reactions into multi-step sequences, allowing for one reaction to flow seamlessly into another, creating a rapid route to the desired more complex product in gram-scale. Although this field of research is still in its infancy, the endless applications of such methodology mandate extensive research on the subject. Natural products bearing a spiroketal or bis-oxazole core structure are well-precedented biologically interesting compounds. Application of innovative flow approach to such modular total synthesis would be useful as biological probes for drug discovery programs. As a proof of the concept hennoxazoles and spirangiens have been targeted for design of novel flow approach. This will naturally lead to development of new flow chemical methodology. Particularly challenging organometallic Carbon-Carbon and Carbon-Oxygen coupling reactions are to be developed. The successful application of this proposal may allow the applicant conduct postdoctoral studies at one of the most prestigious European research centre (Professor Ley´s Group at the University of Cambridge, U.K.), therefore expediting fellow’s career development.
Оригинален текст от CORDIS (на английски).
Участници
- THE CHANCELLOR MASTERS AND SCHOLARS OF THE UNIVERSITY OF CAMBRIDGE · CAMBRIDGEКоординаторОбединеното кралство
Връзки
Данни: CORDIS, © Европейски съюз
