Generative neural networks trained on SMILES can design innovative bioactive molecules de novo. These so-called chemical language models (CLMs) have typically been trained on tens of template molecules for fine-tuning. However, it is challenging to apply CLM to orphan targets with few known ligands. We have fine-tuned a CLM with a single potent Nurr1 agonist as template in a fragment-augmented fashion and obtained novel Nurr1 agonists using sampling frequency for design prioritization. Nanomolar potency and binding affinity of the top-ranking design and its structural novelty compared to available Nurr1 ligands highlight its value as an early chemical tool and as a lead for Nurr1 agonist development, as well as the applicability of CLM in v...
© 2020, © 2020 Informa UK Limited, trading as Taylor & Francis Group. Introduction: Deep discrimin...
In <i>de novo</i> drug design, computational strategies are used to generate novel molecules with go...
In the scope of drug discovery, the molecular design aims to identify novel compounds from the chemi...
Generative neural networks trained on SMILES can design innovative bioactive molecules de novo. Thes...
Generative deep learning is accelerating de novo drug design, by allowing the generation of molecule...
Chemical language models enable de novo drug design without the requirement for explicit molecular c...
Generative artificial intelligence models present a fresh approach to chemogenomics and de novo drug...
Generative chemical language models (CLMs) can be used for de novo molecular structure generation by...
Machine learning (ML) and Artificial Intelligence (AI) have had a renaissance during the last few ye...
Drug discovery benefits from computational models aiding the identification of new chemical matter w...
De novo drug design aims to generate molecules from scratch that possess specific chemical and pharm...
Optimisation of the affinity of lead compounds is a critical challenge in the identification of drug...
In de novo drug design, computational strategies are used to generate novel molecules with good affi...
Generative deep learning is accelerating de novo drug design, by allowing the generation of molecule...
De novo drug design is a computational approach that generates novel molecular structures from atomi...
© 2020, © 2020 Informa UK Limited, trading as Taylor & Francis Group. Introduction: Deep discrimin...
In <i>de novo</i> drug design, computational strategies are used to generate novel molecules with go...
In the scope of drug discovery, the molecular design aims to identify novel compounds from the chemi...
Generative neural networks trained on SMILES can design innovative bioactive molecules de novo. Thes...
Generative deep learning is accelerating de novo drug design, by allowing the generation of molecule...
Chemical language models enable de novo drug design without the requirement for explicit molecular c...
Generative artificial intelligence models present a fresh approach to chemogenomics and de novo drug...
Generative chemical language models (CLMs) can be used for de novo molecular structure generation by...
Machine learning (ML) and Artificial Intelligence (AI) have had a renaissance during the last few ye...
Drug discovery benefits from computational models aiding the identification of new chemical matter w...
De novo drug design aims to generate molecules from scratch that possess specific chemical and pharm...
Optimisation of the affinity of lead compounds is a critical challenge in the identification of drug...
In de novo drug design, computational strategies are used to generate novel molecules with good affi...
Generative deep learning is accelerating de novo drug design, by allowing the generation of molecule...
De novo drug design is a computational approach that generates novel molecular structures from atomi...
© 2020, © 2020 Informa UK Limited, trading as Taylor & Francis Group. Introduction: Deep discrimin...
In <i>de novo</i> drug design, computational strategies are used to generate novel molecules with go...
In the scope of drug discovery, the molecular design aims to identify novel compounds from the chemi...