Related Experiment Video
Updated: Aug 26, 2026

Mass Spectrometry-Guided Genome Mining as a Tool to Uncover Novel Natural Products
Published on: March 12, 2020
Computational applications in secondary metabolite discovery (CAiSMD) 2026: focus on secondary metabolites towards
Fidele Ntie-Kang1,2,3, Jude Y Betow4,5, Donatus B Eni4,5,6
1Center for Drug Discovery, Faculty of Science, University of Buea, Buea, Cameroon. fidele.ntie-kang@ubuea.cm.
Background:
The Computational Applications in Secondary Metabolite Discovery (CAiSMD) 2026 workshop was held from 24 to 26 March 2026 in a hybrid format, combining onsite participation at the University of Buea Center for Drug Discovery with global virtual attendance. Building on previous editions, CAiSMD continues to promote the application of bio/cheminformatics and computational chemistry in natural product-based discovery, with a strong emphasis on capacity building for researchers in resource-limited settings.
Methods:
The scientific program featured three keynote lectures, seven oral presentations, two hands-on training sessions, two roundtable discussions, and a session dedicated to Young Investigators. Key themes included chemoinformatics resources (databases, webservers, packages, codes, etc.) for natural product research, antimicrobial drug discovery, integrated computational bioprospection, virtual screening, network pharmacology, and multi-target drug design. The hands-on sessions provided practical training in chemical space exploration and virtual screening using the Latin American and African natural products databases.
Results:
A major highlight was the Young Investigator session, which showcased innovative research from emerging scientists (MSc students, PhD students, and early postdocs) across diverse therapeutic areas, emphasizing the growing adoption of computational approaches worldwide. Interactive discussions further addressed challenges related to data accessibility, interdisciplinary collaboration, and training needs. Complemented with relevant experimental models, the introduction of bioinformatics, and computational systems biology have accelerated therapeutic innovations through the elimination of time-consuming, expensive, challenging, and inefficient processes that are consistent with the conventional drug discovery systems.
Conclusion:
Overall, CAiSMD2026 successfully combined scientific exchange with practical training, reinforcing the role of computational tools in accelerating secondary metabolite research and empowering young and emerging scientists, particularly in developing countries, to contribute to global drug discovery efforts.
Scientific Contribution:
This workshop particpates actively in capacity building fo next generation scientists for the use of computational technologies for secondary metabolite discovery with diverse applications.
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