Abstract
Medicinal chemistry is intimately connected with basic science such as organic synthesis, chemical biology and biophysical chemistry among other disciplines. The reason of such connections is due to the power of organic synthesis to provide designed molecules; chemical biology to give tools to discover biological and/or pathological pathways and biophysical chemistry which provides the techniques to characterize and the theoretical background to understand molecular behaviour. The present review provides some selective examples of these research areas. Initially, template dsDNA organic synthesis and the spatio-temporal control of transcription are presenting following by the supramolecular entities used in drug delivery, such as liposomes and liquid crystal among others. Finally, peptides and protein self-assembly is connected with biomaterials and as an important event in the balance between health and disease. The final aim of the present review is to show the power of chemical tools not only for the synthesis of new molecules but also to improve our understanding of recognition and self-assembly in the biological context.
Keywords: Biomimetic, conformational diseases, drug delivery, molecular triggers, peptides, protein unfolding, smart vesicles, supramolecular systems.
Current Topics in Medicinal Chemistry
Title:Understanding Recognition and Self-assembly in Biology using the Chemist´s Toolbox. Insight into Medicinal Chemistry
Volume: 14 Issue: 6
Author(s): Z.B. Quirolo, L.A. Benedini, M.A. Sequeira, M.G. Herrera, T.V. Veuthey and V.I. Dodero
Affiliation:
Keywords: Biomimetic, conformational diseases, drug delivery, molecular triggers, peptides, protein unfolding, smart vesicles, supramolecular systems.
Abstract: Medicinal chemistry is intimately connected with basic science such as organic synthesis, chemical biology and biophysical chemistry among other disciplines. The reason of such connections is due to the power of organic synthesis to provide designed molecules; chemical biology to give tools to discover biological and/or pathological pathways and biophysical chemistry which provides the techniques to characterize and the theoretical background to understand molecular behaviour. The present review provides some selective examples of these research areas. Initially, template dsDNA organic synthesis and the spatio-temporal control of transcription are presenting following by the supramolecular entities used in drug delivery, such as liposomes and liquid crystal among others. Finally, peptides and protein self-assembly is connected with biomaterials and as an important event in the balance between health and disease. The final aim of the present review is to show the power of chemical tools not only for the synthesis of new molecules but also to improve our understanding of recognition and self-assembly in the biological context.
Export Options
About this article
Cite this article as:
Quirolo Z.B., Benedini L.A., Sequeira M.A., Herrera M.G., Veuthey T.V. and Dodero V.I., Understanding Recognition and Self-assembly in Biology using the Chemist´s Toolbox. Insight into Medicinal Chemistry, Current Topics in Medicinal Chemistry 2014; 14 (6) . https://dx.doi.org/10.2174/1568026614666140118220825
| DOI https://dx.doi.org/10.2174/1568026614666140118220825 |
Print ISSN 1568-0266 |
| Publisher Name Bentham Science Publisher |
Online ISSN 1873-4294 |
Call for Papers in Thematic Issues
Adaptogens—History and Future Perspectives
Adaptogens are pharmacologically active compounds or plant extracts that are associated with the ability to enhance the body’s stability against stress. The intake of adaptogens is associated not only with a better ability to adapt to stress and maintain or normalise metabolic functions but also with better mental and physical ...read more
AlphaFold in Medicinal Chemistry: Opportunities and Challenges
AlphaFold, a groundbreaking AI tool for protein structure prediction, is revolutionizing drug discovery. Its near-atomic accuracy unlocks new avenues for designing targeted drugs and performing efficient virtual screening. However, AlphaFold's static predictions lack the dynamic nature of proteins, crucial for understanding drug action. This is especially true for multi-domain proteins, ...read more
Artificial intelligence and In Silico Strategies for Novel Target Identification in Alzheimer's Disease
The title "Artificial Intelligence and In Silico Strategies for Novel Target Identification in Alzheimer's Disease" emphasizes the use of Artificial intelligence (AI) and advanced in silico methods to address Alzheimer's disease (AD), a neurodegenerative condition that currently has few effective treatments. AI and insilico methods, including molecular modeling, simulations, are ...read more
Artificial intelligence for Natural Products Discovery and Development
Our approach involves using computational methods to predict the potential therapeutic benefits of natural products by considering factors such as drug structure, targets, and interactions. We also employ multitarget analysis to understand the role of drug targets in disease pathways. We advocate for the use of artificial intelligence in predicting ...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
-
Glutamate Carboxypeptidase II in Diagnosis and Treatment of Neurologic Disorders and Prostate Cancer
Current Medicinal Chemistry Macromolecular Drug Targets in Cancer Treatment and Thiosemicarbazides as Anticancer Agents
Anti-Cancer Agents in Medicinal Chemistry In Silico Bioisosteric Replacements of hnRNP K Ligands as Anticancer Lead Compounds
Current Physical Chemistry Towards a Stratified Targeted Approach with Biologic Treatments in Rheumatoid Arthritis: Role of Synovial Pathobiology
Current Pharmaceutical Design Evaluating the Radioprotective Effect of Curcumin on Rat’s Heart Tissues
Current Radiopharmaceuticals Cellular Iron Homeostasis and Therapeutic Implications of Iron Chelators in Cancer
Current Pharmaceutical Biotechnology Targeting JAK3 Tyrosine Kinase-Linked Signal Transduction Pathways with Rationally-Designed Inhibitors
Anti-Cancer Agents in Medicinal Chemistry The Anthelmintic Effect on Strongyloides venezuelensis Induced by BnSP- 6, a Lys49-phospholipase A2 Homologue from Bothrops pauloensis Venom
Current Topics in Medicinal Chemistry Organoselenium Compounds as Potential Therapeutic and Chemopreventive Agents: A Review
Current Medicinal Chemistry Recent Advances on Epidermal Growth Factor Receptor as a Molecular Target for Breast Cancer Therapeutics
Anti-Cancer Agents in Medicinal Chemistry Vitamin Bs, One Carbon Metabolism and Prostate Cancer
Mini-Reviews in Medicinal Chemistry Focus on the Multimodal Role of Biomarkers in Breast Cancer
Current Pharmaceutical Design Plant Derived Inhibitor Sulforaphane in Combinatorial Therapy Against Therapeutically Challenging Pancreatic Cancer
Anti-Cancer Agents in Medicinal Chemistry Current Developments on Synthesis, Redox Reactions and Biochemical Studies of Selenium Antioxidants
Current Chemical Biology Apoptosis and Anti-cancer Drug Discovery: The Power of Medicinal Fungi and Plants
Current Medicinal Chemistry Natural Sesquiterpenoids as Cytotoxic Anticancer Agents
Mini-Reviews in Medicinal Chemistry Gene Therapy of Cancer Based on Interleukin 12
Current Gene Therapy NFAT Gene Family in Inflammation and Cancer
Current Molecular Medicine Congeners of the Enediyne Neocarzinostatin Chromophore: Designed Agents for bulged Nucleic Acid Targets
Current Topics in Medicinal Chemistry Irradiation Toxicity and Inflammatory Bowel Diseases (IBD): Review
Reviews on Recent Clinical Trials





