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Medicinal chemistry and drug design
Antolin’s Lab

DESCRIPTION

Our research bridges Chemistry, Biology and Data Science to better understand the effects of approved drugs to harness them in personalized and precision oncology and to design safer and more effective new cancer therapeutics.

The Medicinal Chemistry & Drug Design group broadly focuses on three main lines of research: developing open science chemical biology resources, harnessing the effects of drugs at the systems level in precision medicine, and exploiting Big Data and AI to discover more efficacious drugs with a particular focus in oncology. 

Open Science initiatives in Chemical Biology

As an example of the first line of research, Dr. Antolin serves as Associate Director of Cheminformatics at the Chemical Probes Portal, an international initiative and freely available resource that coordinates expert rating of chemical probes to improve the robustness and reproducibility of biomedical research (Antolin AA, et al. Nucleic Acids Research, 2023). We also collaborate with the public cancer knowledgebase canSAR, and with the Target 2035 initiative, among others.

Systems Pharmacology to better harness current drugs in precision medicine

We are broadly interested in understanding the unexplained effects of drugs to better use our current therapeutic arsenal in precision medicine. For example, we have recently discovered the unexpected biological activity of the metabolite of a cancer drug that could open new avenues for its precise use in prostate cancer while offering unexpected repurposing opportunities in Parkinson’s Disease (Hu H, et al. Cell Chemical Biology, in press). We have also recently used machine learning approaches to better understand how certain drugs produce a side-effect termed phospholipidosis (Hu H, et al. Cell Chemical Biology, S2451-9456, 00322-7). We are particularly interested in the development and use of computational methods to predict the mechanism of action of compounds – their binding to specific protein targets (polypharmacology) – and we have recently started an industrial collaboration to harness high-content microscopy and Deep Learning to predict polypharmacology.

Exploiting Big Data and AI to discover more effective drugs

The final aim of the team is to contribute to the discovery of new drugs for disease of high unmet medical need with a particular focus in oncology. On the one hand, we develop new cheminformatic methodologies centered in the application of machine learning for multi-target drug design. On the other hand, we engage in collaborative drug discovery projects where we try to collaborate closely with industry and clinicians to speed the translation of results. For example, we have recently started coordinating an international collaborative project with the Institute of Cancer Research (UK) and the company VIVAN Therapeutics (UK) that aims at discovering new multi-target KRAS inhibitors that resist resistance.

Group members

Albert Antolin

Group leaders

Group Leader

Leticia Manen

Support staff

Lab Manager / Staff Scientist

Santiago Santos

Support staff

Technician

Publications

The Chemical Probes Portal: an expert review-based public resource to empower chemical probe assessment, selection and use

21 de October de 2022/in Antolin's lab/by miguel

Nucleic Acids Res. 2023 Jan 6;51(D1):D1492-D1502. doi: 10.1093/nar/gkac909. ABSTRACT We describe the Chemical Probes Portal (https://www.chemicalprobes.org/), an expert review-based public resource to empower chemical probe assessment, selection and use. Chemical probes are high-quality small-molecule reagents, often inhibitors, that are important for exploring protein function and biological mechanisms, and for validating targets for drug discovery. The […]

https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg 0 0 miguel https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg miguel2022-10-21 10:00:002022-10-21 10:00:00The Chemical Probes Portal: an expert review-based public resource to empower chemical probe assessment, selection and use

canSAR chemistry registration and standardization pipeline

1 de June de 2022/in Antolin's lab/by miguel

J Cheminform. 2022 May 28;14(1):28. doi: 10.1186/s13321-022-00606-7. ABSTRACT BACKGROUND: Integration of medicinal chemistry data from numerous public resources is an increasingly important part of academic drug discovery and translational research because it can bring a wealth of important knowledge related to compounds in one place. However, different data sources can report the same or related […]

https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg 0 0 miguel https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg miguel2022-06-01 10:00:002022-06-01 10:00:00canSAR chemistry registration and standardization pipeline

Rare Variation in Drug Metabolism and Long QT Genes and the Genetic Susceptibility to Acquired Long QT Syndrome

3 de February de 2022/in Antolin's lab/by miguel

Circ Genom Precis Med. 2022 Feb;15(1):e003391. doi: 10.1161/CIRCGEN.121.003391. Epub 2022 Feb 3. ABSTRACT BACKGROUND: Acquired long QT syndrome (aLQTS) is a serious unpredictable adverse drug reaction. Pharmacogenomic markers may predict risk. METHODS: Among 153 aLQTS patients (mean age 58 years [range, 14-88], 98.7% White, 85.6% symptomatic), computational methods identified proteins interacting most significantly with 216 […]

https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg 0 0 miguel https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg miguel2022-02-03 11:00:002022-02-03 11:00:00Rare Variation in Drug Metabolism and Long QT Genes and the Genetic Susceptibility to Acquired Long QT Syndrome

AI delivers Michaelis constants as fuel for genome-scale metabolic models

20 de October de 2021/in Antolin's lab/by miguel

PLoS Biol. 2021 Oct 20;19(10):e3001415. doi: 10.1371/journal.pbio.3001415. eCollection 2021 Oct. ABSTRACT Michaelis constants (Km) are essential to predict the catalytic rate of enzymes, but are not widely available. A new study in PLOS Biology uses artificial intelligence (AI) to accurately predict Km on a proteome-wide scale, paving the way for dynamic, genome-wide modeling of metabolism. […]

https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg 0 0 miguel https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg miguel2021-10-20 10:00:002021-10-20 10:00:00AI delivers Michaelis constants as fuel for genome-scale metabolic models

Identification of different side effects between PARP inhibitors and their polypharmacological multi-target rationale

30 de July de 2021/in Antolin's lab/by miguel

Br J Clin Pharmacol. 2022 Feb;88(2):742-752. doi: 10.1111/bcp.15015. Epub 2021 Aug 14. ABSTRACT AIMS: The aim of this study was to determine the differences and potential mechanistic rationale for observed adverse drug reactions (ADRs) between four approved PARP inhibitors (PARPi). METHODS: The Medicines and Healthcare products Regulatory Authority (MHRA) Yellow Card drug analysis profiles and […]

https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg 0 0 miguel https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg miguel2021-07-30 10:00:002021-07-30 10:00:00Identification of different side effects between PARP inhibitors and their polypharmacological multi-target rationale
Page 4 of 8«‹23456›»

Research Projects

Title: Systems Drug Discovery to Tackle Cancer Drug Resistance

Project Number: CP22/00122 (Miguel Servet Fellowship)

PI: Albert Antolin

Source of Support: Instituto de Salud Carlos III (ISCIII)

Project Start and End Date: 07/2023 – 07/2028

Total Award Amount: 240,000€

Title: Systems-based Characterization of Drug Metabolites to Exploit them in Precision Medicine

Project Number: PID2022-136344OA-I00

PI: Albert Antolin

Source of Support: Spanish Ministry of Science and Innovation

Project Start and End Date: 09/2023 – 08/2026

Total Award Amount: 130,000€

Title: Rational design of multi-target KRAS inhibitors that resist resistance

Project Number: N/A (industrial collaboration, non-competitive)

PI: Albert Antolin

Source of Support: VIVAN Therapeutics

Project Start and End Date: 10/2023 – 10/2024

Total Award Amount: 50,000€

Collaborations

Amadeu Llebaria (IQAC-CSIC, Barcelona)

Antonella Consiglio (UB, Barcelona)

Nahuel Villegas (Vivan Therapeutics, London)

Susanne Muller (SGC, Frankfurt)

Paul Workman (ICR, London)

Bissan Al-Lazikani (MDACC, Houston)

Jordi Mestres (Chemotargets, Barcelona)

Marcos Malumbres (VHIO, Barcelona)

Jonathan Baell (Lyterian Therapeutics, San Francisco)

Andrea Califano (Columbia, NYC)

Antolin's Lab
Program Against Cancer Therapeutic Resistance

CONTACT US

Campus IDIBELL
(L’Hospitalet del Llobregat)
Hospital Duran i Reynals, Gran Via 199,
L’Hospitalet del Llobregat,
Barcelona 08908
Tel. +34 93 260 7952

Campus IGTP-IJC
(Badalona)
Campus Can Ruti – IGTP – Building Muntanya,
Rd. Can Ruti, Camí de les escoles s/n,
Badalona, Barcelona 08916
Tel. +34 93 554 3069

Campus IDIBGI
(Girona)
Parc Hospitalari Martí i Julià de Salt, Dr. Castany s/n,
Salt, Girona 17190
Tel. +34 872 987 087

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