The ability to predict cell-permeable candidate molecules has great potential to assist drug discovery projects. Large molecules that lie beyond the Rule of Five (bRo5) are increasingly important as drug candidates and tool molecules for chemical biology. However, such large molecules usually do not cross cell membranes and cannot access intracellular targets or be developed as orally bioavailable drugs. Here, we describe a random forest (RF) machine learning model for the prediction of passive membrane permeation rates developed using a set of over 1000 bRo5 macrocyclic compounds. The model is based on easily calculated chemical features/descriptors as independent variables. Our random forest (RF) model substantially outperforms a multiple...
Drug efficacy depends on its capacity to permeate across the cell membrane. We consider the predicti...
In this paper, QSPR models were developed for in vivo blood-brain partitioning data (logBB) of a lar...
The biophysical basis of passive membrane permeability is well-understood, but most methods for pred...
The ability to predict cell-permeable candidate molecules has great potential to assist drug discove...
Unraveling the relation between the chemical structure of small druglike compounds and their rate of...
Membrane permeability is a key property to consider during the drug design process, and particularly...
Lead compounds generated in high-throughput drug discovery programs often have unfavorable biopharma...
Predicting blood-brain barrier (BBB) permeability is essential to drug development, as a molecule ca...
Macrocyclic peptides are considered large enough to inhibit “undruggable” targets, but the design of...
Membrane permeability of drug molecules plays a significant role in the development of new therapeut...
A simple descriptor calculated from molecular dynamics simulations of the membrane partitioning even...
We investigate the relationship between passive permeability and molecular size, in the context of s...
Lipid membrane permeation of drug molecules was investigated with Heterogeneous Dielectric Generaliz...
Predicting from first-principles the rate of passive permeation of small molecules across the biolog...
Predicting the permeability coefficient (P) of drugs permeating through the cell membrane is of para...
Drug efficacy depends on its capacity to permeate across the cell membrane. We consider the predicti...
In this paper, QSPR models were developed for in vivo blood-brain partitioning data (logBB) of a lar...
The biophysical basis of passive membrane permeability is well-understood, but most methods for pred...
The ability to predict cell-permeable candidate molecules has great potential to assist drug discove...
Unraveling the relation between the chemical structure of small druglike compounds and their rate of...
Membrane permeability is a key property to consider during the drug design process, and particularly...
Lead compounds generated in high-throughput drug discovery programs often have unfavorable biopharma...
Predicting blood-brain barrier (BBB) permeability is essential to drug development, as a molecule ca...
Macrocyclic peptides are considered large enough to inhibit “undruggable” targets, but the design of...
Membrane permeability of drug molecules plays a significant role in the development of new therapeut...
A simple descriptor calculated from molecular dynamics simulations of the membrane partitioning even...
We investigate the relationship between passive permeability and molecular size, in the context of s...
Lipid membrane permeation of drug molecules was investigated with Heterogeneous Dielectric Generaliz...
Predicting from first-principles the rate of passive permeation of small molecules across the biolog...
Predicting the permeability coefficient (P) of drugs permeating through the cell membrane is of para...
Drug efficacy depends on its capacity to permeate across the cell membrane. We consider the predicti...
In this paper, QSPR models were developed for in vivo blood-brain partitioning data (logBB) of a lar...
The biophysical basis of passive membrane permeability is well-understood, but most methods for pred...