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Advance could enable enzymatic reactions for chemical manufacturing beyond the boiling point of water

07.22.26 | Wiley
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Enzymes are proteins that can be harnessed for chemical manufacturing, but they are typically restricted to mild temperatures because proteins unfold and lose their function under heat. In new research published in Angewandte Chemie Novit , investigators found that a porous organic polymer can be used to encapsulate a lipase (a type of enzyme) and create a protective molecular cage that prevents enzyme denaturation, enabling efficient and recyclable reactions with high-melting solids at and above 100°C.

This work extends the operational boundaries of enzymatic reactions beyond the boiling point of water, with far-reaching implications for sustainable chemical manufacturing.

“The direct use of substrates in molten form when being heated above 100°C combined with recyclability of the biocatalyst enables an efficient, waste-minimized and economical synthesis without the need for any organic solvent,” said corresponding author Dr. Harald Gröger of Bielefeld University in Germany. “The resulting ester products are of interest for many industrial segments, for example in the field of cosmetics.”

URL upon publication: https://onlinelibrary.wiley.com/doi/10.1002/anov.70023

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The information contained in this release is protected by copyright. Please include journal attribution in all coverage. For more information or to obtain a PDF of any study, please contact: Sara Henning-Stout, newsroom@wiley.com .

About the Journal
Angewandte Chemie Novit is the Up-Transfer Journal of the German Chemical Society. The Editors identify manuscripts with exceptional reviewer ratings originally submitted to Angewandte Chemie . From these, the Scientific Advisory Committee selects the most outstanding contributions and invites the authors to Up-Transfer their work to Angewandte Chemie Novit for publication. This unique multistep manuscript selection process sets a new standard in scientific publishing. Building on the legacy of excellence established by Angewandte Chemie , Angewandte Chemie Novit offers global visibility and recognition for outstanding research in chemistry and related disciplines.

About Wiley
Wiley is a global leader in authoritative content and research intelligence for the advancement of scientific discovery, innovation, and learning. With more than 200 years at the center of the scholarly ecosystem, Wiley combines trusted publishing heritage with AI-powered platforms to transform how knowledge is discovered, accessed, and applied. From individual researchers and students to Fortune 500 R&D teams, Wiley enables the transformation of scientific breakthroughs into real-world impact. From knowledge to impact—Wiley is redefining what's possible in science and learning. Visit us at Wiley.com and Investors.Wiley.com . Follow us on Facebook , X , LinkedIn and Instagram .

10.1002/anov.70023

Efficient Lipase-Catalyzed Synthesis at ≥100 °C Through Biocatalyst Entrapment in a Porous Organic Polymer

22-Jul-2026

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Sara Henning-Stout
Wiley
newsroom@wiley.com

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This article is based on a news release from Wiley. BrightSurf curates and republishes science news from research institutions worldwide; the original release is linked below.

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APA:
Wiley. (2026, July 22). Advance could enable enzymatic reactions for chemical manufacturing beyond the boiling point of water. Brightsurf News. https://www.brightsurf.com/news/1EO9RD3L/advance-could-enable-enzymatic-reactions-for-chemical-manufacturing-beyond-the-boiling-point-of-water.html
MLA:
"Advance could enable enzymatic reactions for chemical manufacturing beyond the boiling point of water." Brightsurf News, Jul. 22 2026, https://www.brightsurf.com/news/1EO9RD3L/advance-could-enable-enzymatic-reactions-for-chemical-manufacturing-beyond-the-boiling-point-of-water.html.