Abstract
The central axiom of science purports the explanation of every natural phenomenon using all possible logics coming from pure as well as mixed scientific background. The quantitative structure-activity relationship (QSAR) analysis is a study correlating the behavioral manifestation of compounds with their structures employing the interdisciplinary knowledge of chemistry, mathematics, biology as well as physics. Several studies have attempted to mathematically correlate the chemistry and property (physicochemical/ biological/toxicological) of molecules using various computationally or experimentally derived quantitative parameters termed as descriptors. The dimensionality of the descriptors depends on the type of algorithm employed and defines the nature of QSAR analysis. The most interesting feature of predictive QSAR models is that the behavior of any new or even hypothesized molecule can be predicted by the use of the mathematical equations. The phrase “2D-QSAR” signifies development of QSAR models using 2D-descriptors. Such predictor variables are the most widely practised ones because of their simple and direct mathematical algorithmic nature involving no time consuming energy computations and having reproducible operability. 2D-descriptors have a deluge of contributions in extracting chemical attributes and they are also capable of representing the 3D molecular features to some extent; although in no case they should be considered as the ultimate one, since they often suffer from the problems of intercorrelation, insufficient chemical information as well as lack of interpretation. However, by following rational approaches, novel 2D-descriptors may be developed to obviate various existing problems giving potential 2D-QSAR equations, thereby solving the innumerable chemical mysteries still unexplored.
Keywords: QSAR, QSPR, QSTR, topological descriptors, graph theory, physicochemical property.
Current Drug Metabolism
Title:A Review on Principles, Theory and Practices of 2D-QSAR
Volume: 15 Issue: 4
Author(s): Kunal Roy and Rudra Narayan Das
Affiliation:
Keywords: QSAR, QSPR, QSTR, topological descriptors, graph theory, physicochemical property.
Abstract: The central axiom of science purports the explanation of every natural phenomenon using all possible logics coming from pure as well as mixed scientific background. The quantitative structure-activity relationship (QSAR) analysis is a study correlating the behavioral manifestation of compounds with their structures employing the interdisciplinary knowledge of chemistry, mathematics, biology as well as physics. Several studies have attempted to mathematically correlate the chemistry and property (physicochemical/ biological/toxicological) of molecules using various computationally or experimentally derived quantitative parameters termed as descriptors. The dimensionality of the descriptors depends on the type of algorithm employed and defines the nature of QSAR analysis. The most interesting feature of predictive QSAR models is that the behavior of any new or even hypothesized molecule can be predicted by the use of the mathematical equations. The phrase “2D-QSAR” signifies development of QSAR models using 2D-descriptors. Such predictor variables are the most widely practised ones because of their simple and direct mathematical algorithmic nature involving no time consuming energy computations and having reproducible operability. 2D-descriptors have a deluge of contributions in extracting chemical attributes and they are also capable of representing the 3D molecular features to some extent; although in no case they should be considered as the ultimate one, since they often suffer from the problems of intercorrelation, insufficient chemical information as well as lack of interpretation. However, by following rational approaches, novel 2D-descriptors may be developed to obviate various existing problems giving potential 2D-QSAR equations, thereby solving the innumerable chemical mysteries still unexplored.
Export Options
About this article
Cite this article as:
Roy Kunal and Das Narayan Rudra, A Review on Principles, Theory and Practices of 2D-QSAR, Current Drug Metabolism 2014; 15 (4) . https://dx.doi.org/10.2174/1389200215666140908102230
DOI https://dx.doi.org/10.2174/1389200215666140908102230 |
Print ISSN 1389-2002 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5453 |
Call for Papers in Thematic Issues
Impact of brain tissue binding and plasma protein binding of drugs in DMPK
The impression of brain tissue binding (BTB) or plasma protein binding (PPB) in Drug Metabolism and Pharmacokinetics is critical to understanding the distribution, efficacy, and potential toxicity of drugs that target the central nervous system (CNS). BTB and high PPB influence the distribution of drugs in the body and their ...read more
Interaction between drugs and endocrine diseases
The introduction of highly active antiretroviral therapy accelerated studies and our understanding on the interaction between pharmacological therapies and endocrine diseases. Drugs can precipitate endocrine via different mechanisms, including direct alteration of hormone production and secretion, dysregulation of hormonal axis, effects on hormonal transport, receptor-binding, and cellular signalling. Common drug-induced ...read more
Metabolism-Mediated Xenobiotic Toxicity
Considering the potent modulation of biotransformation enzyme expression and activities by various therapeutic drugs and environmental chemicals, and the commonly combined exposure of humans to both drugs and the ever increasing environmental pollutants simultaneously, knowledge about the combined toxic effects by modulating biotransformation enzymes, such as P450s, UDP- glucuronosyltransferases, and ...read more
Safety evaluation of vaccine combination
Vaccine combination safety evaluation is a critical field within immunology and public health that focuses on assessing the safety and efficacy of combining different vaccines to maximize protection against various diseases while minimizing potential adverse effects. This process is significant because it ensures that vaccines can be administered together without ...read more

- Author Guidelines
- Bentham Author Support Services (BASS)
- Graphical Abstracts
- Fabricating and Stating False Information
- Research Misconduct
- Post Publication Discussions and Corrections
- Publishing Ethics and Rectitude
- Increase Visibility of Your Article
- Archiving Policies
- Peer Review Workflow
- Order Your Article Before Print
- Promote Your Article
- Manuscript Transfer Facility
- Editorial Policies
- Allegations from Whistleblowers
- Announcements
Related Articles
-
Drug Repositioning for Treatment of Movement Disorders: From Serendipity to Rational Discovery Strategies
Current Topics in Medicinal Chemistry Properties of a Kunitz-Type Trypsin Inhibitor from Delonix regia Seeds Against Digestive Proteinases of Anagasta kuehniella (Z.) and Corcyra cephalonica (S.) (Lepidoptera: Pyralidae)
Protein & Peptide Letters Growing Collateral Arteries On Demand
Recent Patents on Cardiovascular Drug Discovery Toxicogenomics to Improve Comprehension of the Mechanisms Underlying Responses of In Vitro and In Vivo Systems to Nanomaterials: A Review
Current Genomics Potential Therapeutic Advantages of Doxorubicin when Activated by Formaldehyde to Function as a DNA Adduct-Forming Agent
Current Topics in Medicinal Chemistry Editorial (Hot Topic: Medicinal Chemistry of Tumor Necrosis Factor-α Inhibitors and Related Oxidative Stress)
Current Topics in Medicinal Chemistry Investigation of Low Dose Cabazitaxel Potential as Microtubule Stabilizer in Experimental Model of Alzheimer's Disease: Restoring Neuronal Cytoskeleton
Current Alzheimer Research Fluorescent GPCR Ligands as New Tools in Pharmacology-Update, Years 2008- Early 2014
Current Medicinal Chemistry The Heme Oxygenase/Biliverdin Reductase Pathway in Drug Research and Development
Current Drug Metabolism The Medical Potential of Antimicrobial Peptides from Insects
Current Topics in Medicinal Chemistry Molecular Targets for Nutritional Preemption of Cancer
Current Cancer Drug Targets Intractable Cancers: The Many Faces of Multidrug Resistance and the Many Targets it Presents for Therapeutic Attack
Current Drug Targets Receptor Tyrosine Kinases as Target for Anti-Cancer Therapy
Current Pharmaceutical Design No Zinc Deficiency But a Putative Immunosuppressive Role for Labile Zn in Patients with Systemic Autoimmune Disease
Current Rheumatology Reviews Cytotoxicity and Anti-Inflammatory Effects of Polyherbal Formulations, Joint Pain Spl and Rumalaya Forte on Lipopolysaccharide Induced Inflammation in IC-21 Macrophages
Anti-Inflammatory & Anti-Allergy Agents in Medicinal Chemistry Non-Alcoholic Fatty Liver Disease in the Metabolic Syndrome
Current Pharmaceutical Design Targeting Focal Adhesion Kinase in Neuroblastoma
Anti-Cancer Agents in Medicinal Chemistry Dyslipidemia, Hypertension and Diabetes Metaflammation: A Unique Mechanism for 3 Risk Factors
Current Hypertension Reviews Circulating Meteorin-like Levels in Patients with Type 2 Diabetes Mellitus: A Meta-Analysis
Current Pharmaceutical Design Phospholipid Bilayer Nanodiscs: A Powerful Tool to Study the Structural Organization and Biochemical Reactivity of Proteins in Membrane-like Environments
Current Topics in Medicinal Chemistry