Pablo Carbonell
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pablocarb.bsky.social
Pablo Carbonell
@pablocarb.bsky.social
Synthetic biology designer
Reposted by Pablo Carbonell
BiosInt: Biosensor-based smart design of pathway dynamic regulation for industrial biomanufacturing https://www.biorxiv.org/content/10.1101/2025.11.17.688676v1
November 18, 2025 at 2:02 AM
I am happy to announce the launch of our seminar series “Microbial Biotechnology: Developing the Conceptual Framework of the DBTL Cycle.” We invite you to join us and engage in shaping the future of biomanufacturing! researchseminars.org/seminar/Micr...
researchseminars.org - View series
Welcome to researchseminars.org, a list of research seminars and conferences!
researchseminars.org
November 6, 2025 at 9:19 PM
Reposted by Pablo Carbonell
Yesterday, my book on biological agency, written with philosopher Álvaro Moreno, was published. Coincidentally, today an article appears in collaboration with my colleague @pablocarb.bsky.social @i2sysbio.es in which we explore a solution to a classic problem in the study of the origin of life.
October 2, 2025 at 9:05 AM
Thrilled to see our published work featured in the news! AI may help bridge the gap between life’s origin and the last universal common ancestor, with @julipereto.bsky.social www.csic.es/es/actualida... @i2sysbio.es #AI #LUCA
Un método basado en inteligencia artificial busca llenar el vacío entre el origen de la vida y el ancestro común universal | Consejo Superior de Investigaciones Científicas
Juli Peretó y Pablo Carbonell, investigadores del Instituto de Biología Integrativa de Sistemas (I2SysBio), centro mixto de la Universitat de València (UV) y del Consejo Superior de Investigaciones Ci...
www.csic.es
October 2, 2025 at 8:57 AM
Excited to see our perspective published: How #AI may help bridge the gap between life’s origin and the last universal common ancestor #LUCA, with @julipereto.bsky.social @royalsociety.org @i2sysbio.es
October 2, 2025 at 8:56 AM
Reposted by Pablo Carbonell
Among the selected projects for Major European Research Infrastructures 🇪🇺🧪 awarded by CSIC is the Spanish node of Innovation in Industrial Biotechnology and Synthetic Biology #IBISBA, led by Irene Otero from #I2SysBio (@csic.es–@uv.es). Congratulations! 🏆👏
More info: 🌐 i2sysbio.es/communicatio...
An I2SysBio project promotes the CSIC's presence in major European R&D platforms
<p><strong>The Spanish National Research Council (CSIC) has awarded grants for Major European Research Infrastructures for 2025, which seek to position the organisation in European and international c...
i2sysbio.es
July 7, 2025 at 4:05 PM
Alguien se ha planteado asignar el CSIC al ministerio de defensa? Cumpliríamos con creces los acuerdos de la OTAN
July 6, 2025 at 5:47 PM
Just published: our new work on biology-guided AI approaches for context-aware biosensor dynamics modeling. Check it out! @i2sysbio #AI #SciML #biosensor pubs.acs.org/doi/10.1021/...
Context-Aware Biosensor Design Through Biology-Guided Machine Learning and Dynamical Modeling
Addressing the challenge of achieving a global circular bioeconomy requires efficient and robust bio-based processes operating at different scales. These processes should also be competitive replacements for the production of chemicals currently obtained from fossil resources, as well as for the production of new-to-nature compounds. To that end, genetic circuits can be used to control cellular behavior and are instrumental in developing efficient cell factories. Whole-cell biosensors harbor circuits that can be based on allosteric transcription factors (TFs) to detect and elicit a response depending on the target molecule concentrations. By modifying regulatory elements and testing various genetic components, the responsive behavior of genetic biosensors can be finely tuned and engineered. While previous models have described and characterized the behavior of naringenin biosensors, additional data and resources are required to predict their dynamic response and performance in different contexts, such as under various gene expression regulatory elements, media, carbon sources, or media supplements. Tuning these conditions is pivotal in optimizing biosensor design for applications operating in varying conditions, such as fermentation processes. In this study, we assembled a library of FdeR biosensors, characterized their performance under different conditions, and developed a mechanistic model to describe their dynamic behavior under reference conditions, which guided a machine learning-based predictive model that accounts for context-dependent dynamic parameters. Such a Design-Build-Test-Learn (DBTL) pipeline allowed us to determine optimal condition combinations for the desired biosensor specifications, both for automated screening and dynamic regulation. The findings of this work contribute to a deeper understanding of whole-cell biosensors and their potential for precise measurement, screening, and dynamic regulation of engineered production pathways for valuable molecules.
pubs.acs.org
June 4, 2025 at 7:30 AM
Reposted by Pablo Carbonell
Thrilled to take part in this event and share ideas on #AI in #biology. Thank you @angelgm.bsky.social for organising a great workshop.
February 12, 2025 at 8:27 PM
Reposted by Pablo Carbonell
Looking forward to this timely workshop on #AI in #Biology at @cnb-csic.bsky.social (Feb 14)! Excited to hear from experts like @hsalis.bsky.social , @alfonsovalencia.bsky.social , @noeliaferruz.bsky.social , @pablocarb.bsky.social , and others. (Note: Won’t be streamed.) 🧬🤖 #Science #synbio
January 28, 2025 at 12:38 PM
Reposted by Pablo Carbonell
Highly multiplexed design of an allosteric transcription factor to sense new ligands
doi.org/10.1038/s414...
November 19, 2024 at 12:22 PM