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11 July 2022 | Story Andre Damons | Photo Supplied
Prof Martie Smith and Prof Drik Opperman
Prof Martie Smit and Prof Dirk Opperman in the Department of Microbiology and Biochemistry filed a patent entitled “Process for the chemical modification of alkanes, fatty acids and fatty alcohols”.

Flavours and fragrances have a wide application in the food, feed, cosmetic, chemical and pharmaceutical sectors. Many flavour compounds are still produced via chemical synthesis or via extraction from plant or animal sources. However, there is increasing interest in their bio-production or the use of flavour compounds of (micro) biological origin. 

One reason for this shift is that chemical synthesis often uses environmentally unfriendly processes. Chemical synthesis usually also produces racemic mixtures with the second enantiomer, mirror image of the looked-for compound, often having undesirable organoleptic properties. Furthermore, the consumer has developed a “chemophobia”-attitude towards synthetic chemical compounds, especially when related to food and home-care products.  This applies even to nature-identical compounds – products that occur in nature but are produced via a non-natural chemical process. Products produced with the use of enzymes or microbes from “natural” substrates can be labelled “natural”. The flavour and fragrance industry thus pay higher prices for such products labelled as “natural”.  

The invention

A University of the Free State (UFS) team, led by Prof Martie Smit and Prof Dirk Opperman in the Department of Microbiology and Biochemistry are conducting exciting research in this area. They filed a patent entitled “Process for the chemical modification of alkanes, fatty acids and fatty alcohols”.  

The invention relates to a process for the enzymatic in-chain hydroxylation of C12 to C16 fatty acids, alcohols, and alkanes. Hydroxylation of C12 fatty acid and alcohol provides routes for the synthesis of “natural” δ-dodecalactone. The advantage of these routes is that they do not rely on massoia lactones. Massoia lactones are derived from the bark of Massoia trees which grow in Indonesia. Harvesting of the bark kills the trees.  

The cytochrome P450 enzymes (P450s) claimed in this patent are to the inventors’ knowledge the most regioselective enzymes described thus far that can be used for the synthesis of δ-dodecalactone from lauric acid or 1-dodecanol. The approach that the technology takes is to claim cytochrome P450 enzymes that share 70 % amino acid identity to a set of selected P450s for the regioselective hydroxylation of lauric acid and 1-dodecanol to synthesise δ-dodecalactone.

Still in early stage

The current state of development is early stage with the technology only demonstrated in the laboratory on a small scale (100-200 ml). Before the technology can be commercialised the team would need to further improve the regioselectivity and stability of the P450s and proof that the reactions can be scaled up in bioreactors. The technology will probably be delivered as an enzyme (amino acid sequence) with the desired properties. 

There are other research groups working on a synthetic biology approach for the de novo synthesis of δ-dodecalactone from glucose by genetically engineered microbes. It is still unclear how such a process will compare in terms of product yields, economics and environmental impact with the processes proposed by the UFS patent.

If the team had to partner with a commercial company, their first choice would be to work with an established flavour and fragrance company. Another possibility would be the small French flavour and fragrance company that Dr Alizé Pennec, the post-doc and co-inventor who initially discovered the unique P450 activity, is working for.

Please view the videos for more information on patents.

The Vice-Rector: Research and Internationalisation has released two new calls for applications for funding. Academic staff and researchers are encouraged to submit applications for these funds. At this stage we are not accepting projects from Research Fellows. 

The two funds are: 

1.  The Industrial Engagement Fund 
2.  The Intellectual Property Commercialisation Fund

Each fund has its own guidelines and application process. The guidelines are attached. The applications must be filled in on RIMS.

The RIMS application forms can be found through this link

For more information please click the documents below:



News Archive

Sello, Brits and Van Vuuren shine at Varsity athletics
2017-03-10

Description:Varsity athletics   Tags: Varsity athletics  longdesc=

Elmé Smith represented Kovsies in the 100 m
and 200 m at the Varsity athletics event in
Potchefstroom.
Photo: Mario van de Wall/SASPA

Jovan van Vuuren, Maryke Brits, and Tsepang Sello were our big stars at the first Varsity athletics event in Potchefstroom. They all finished first in their items and helped their Kovsies team claim an excellent overall third position among eight universities.

The jumps by Van Vuuren and Brits (both long jump) of 7.73 m and 6.11 m respectively were the longest, while Sello’s time in the 800 m was 2:12.01. Brits not only won the long jump, but was also second in the 100 m hurdles (13.65 s).

UFS outperform the likes of Maties, UJ

The Kovsies eventually bragged with three first, seven second, and two third spots on the podium. They ran, jumped and threw, bagging altogether 12 podium spots to accumulate 14 902 points (with an average of 993). Tuks, with 15 604 (1 040), and Pukke with 15 252 (1 017) was respectively first and second on 3 March 2017. Our team outperformed universities like the Maties and the University of Johannesburg.

Rynardt, Kesa claim second place

Big names such as Rynardt van Rensburg (800 m, second in 1:50.49) and Kesa Molotsane (1 500 m, second in 04:29.31) also scored podium spots. The second Varsity athletics meeting will take place in Pretoria on 31 March 2017.

Team results in Potch:

1. Tuks 15 604 (Top 15’s average: 1 040)
2. Puk 15 252 (1 017)
3. Kovsies 14 902 (993)
4. UJ 14857 (990)
5. Maties 14317 (954)
6. UWC 14068 (938)
7. Madibaz 13721 (915)
8. TUT 13463 (898)

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