» Articles » PMID: 26484706

Investigating Pharmacological Similarity by Charting Chemical Space

Overview
Date 2015 Oct 21
PMID 26484706
Citations 8
Authors
Affiliations
Soon will be listed here.
Abstract

In this study, biologically relevant areas of the chemical space were analyzed using ChemGPS-NP. This application enables comparing groups of ligands within a multidimensional space based on principle components derived from physicochemical descriptors. Also, 3D visualization of the ChemGPS-NP global map can be used to conveniently evaluate bioactive compound similarity and visually distinguish between different types or groups of compounds. To further establish ChemGPS-NP as a method to accurately represent the chemical space, a comparison with structure-based fingerprint has been performed. Interesting complementarities between the two descriptions of molecules were observed. It has been shown that the accuracy of describing molecules with physicochemical descriptors like in ChemGPS-NP is similar to the accuracy of structural fingerprints in retrieving bioactive molecules. Lastly, pharmacological similarity of structurally diverse compounds has been investigated in ChemGPS-NP space. These results further strengthen the case of using ChemGPS-NP as a tool to explore and visualize chemical space.

Citing Articles

iSIM: instant similarity.

Lopez-Perez K, Kim T, Alain Miranda-Quintana R Digit Discov. 2024; 3(6):1160-1171.

PMID: 38873032 PMC: 11167700. DOI: 10.1039/d4dd00041b.


Anti-inflammatory and Antiphytopathogenic Fungal Activity of 2,3--Tirucallane Triterpenoids Meliadubins A and B from Cav. Barks with ChemGPS-NP and In Silico Prediction.

Tran Trung H, Purnomo K, Yu S, Yang Z, Hu H, Hwang T ACS Omega. 2023; 8(40):37116-37127.

PMID: 37841162 PMC: 10568771. DOI: 10.1021/acsomega.3c04657.


Stability Study of Constituents and Investigation of Their Membrane Permeability by ChemGPS-NP and the Parallel Artificial Membrane Permeability Assay.

Simon A, Nghiem K, Gampe N, Garadi Z, Boldizsar I, Backlund A Pharmaceutics. 2022; 14(9).

PMID: 36145715 PMC: 9502528. DOI: 10.3390/pharmaceutics14091967.


In vitro and in silico evaluation of Ononis isoflavonoids as molecules targeting the central nervous system.

Gampe N, David D, Takacs-Novak K, Backlund A, Beni S PLoS One. 2022; 17(3):e0265639.

PMID: 35298568 PMC: 8929578. DOI: 10.1371/journal.pone.0265639.


How to Achieve Better Results Using PASS-Based Virtual Screening: Case Study for Kinase Inhibitors.

Pogodin P, Lagunin A, Rudik A, Filimonov D, Druzhilovskiy D, Nicklaus M Front Chem. 2018; 6:133.

PMID: 29755970 PMC: 5935003. DOI: 10.3389/fchem.2018.00133.