Completed Chemistry Food & Agriculture

Accelerated Synthesis of Agrochemicals and Pharmaceuticals (ASAP): Bridging the Gap Between Research and Application

In plain English

AI plain-English summary

Making new medicines and crop chemicals currently requires many wasteful trial-and-error steps, and this project aims to slash that number. The problem is stark: as the global population hits 9 billion by 2050, demand for new drugs and agrochemicals will surge, but developing them is slow, expensive, and environmentally damaging. Many candidate molecules fail late in the pipeline, wasting resources. The core bottleneck is the sheer number of chemical operations needed to build complex molecular structures, often using toxic or rare elements. This programme will develop a suite of faster, cleaner synthesis methods. By reducing the number of chemical steps and avoiding precious or hazardous materials, the team aims to make the entire discovery process cheaper and greener. Crucially, they are working directly with Syngenta, AstraZeneca, and Pfizer to ensure the methods are immediately useful in real-world drug and crop-protection development. They also plan to make the necessary reagents commercially available, removing barriers to adoption. If successful, the research could shorten the time from molecule design to clinical or field trials, lower the financial risk of developing new treatments, and reduce the chemical waste generated during pharmaceutical and agrochemical manufacturing.

View original technical description
Food and healthcare are the foundations on which our current quality of life is built. The pressure on these resources will only increase as the UK population ages, the global population reaches 9 billion in 2050 and the worst effects of climate change begin to manifest. Now more than ever, new medicines and agrochemicals will be vital in combating the growing and evolving threats that face society. A major challenge to the development of new medicines and agrochemicals is the high attrition rate of the candidate molecules being investigated, which drives up the financial cost, environmental impact and time associated with bringing a new product to market. Methods that allow rapid cost- and resource efficient preparation of desirable candidate molecules are therefore extremely valuable. This programme will deliver a suite of synthesis methods to streamline the discovery and development of the next generation of agrochemicals and pharmaceuticals. Building on our recent discovery, we will develop new ways of making valuable molecular architectures while minimising the number of chemical operations required and avoiding the use of toxic or precious elements. By working in close collaboration with leading innovators in crop protection (Syngenta) and human healthcare (AstraZeneca, Pfizer and Carbometrics), we will ensure that our methods will be of direct and immediate benefit. We will also seek to make the reagents we develop commercially available, thus further enabling the rapid and barrierless uptake of our methods.

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Researchers

Liam Thomas Ball (Principal Investigator)

Related Research

Grants with similar aims, by meaning.

SusAgriChem - Sustainable Formulation of Agri-Chemicals via Dynamic Molecular Interfaces
EPSRC Centre for Doctoral Training in Synthesis for Biology and Medicine
New Chemistry Approaches for the Next Generation of Healthcare
Transforming synthetic drug manufacturing: novel processes, methods and tools
Exploiting natural product assembly line genomics and synthetic biology for discovery and optimisation of novel agrochemicals

Original classification

Fellowship

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