Abstract
Molecular imaging, the visualization, characterization and measurement of biological processes at the cellular, subcellular level, or even molecular level in living subjects, has rapidly gained importance in the dawning era of personalized medicine. Molecular imaging takes advantage of the traditional diagnostic imaging techniques and introduces molecular imaging probes to determine the expression of indicative molecular markers at different stages of diseases and disorders. As a key component of molecular imaging, molecular imaging probe must be able to specifically reach the target of interest in vivo while retaining long enough to be detected. A desirable molecular imaging probe with clinical translation potential is expected to have unique characteristics. Therefore, design and development of molecular imaging probe is frequently a challenging endeavor for medicinal chemists. This review summarizes the general principles of molecular imaging probe design and some fundamental strategies of molecular imaging probe development with a number of illustrative examples.
Keywords: Molecular imaging, imaging probe design, imaging probe development strategies
Current Topics in Medicinal Chemistry
Title: Design and Development of Molecular Imaging Probes
Volume: 10 Issue: 12
Author(s): Kai Chen and Xiaoyuan Chen
Affiliation:
Keywords: Molecular imaging, imaging probe design, imaging probe development strategies
Abstract: Molecular imaging, the visualization, characterization and measurement of biological processes at the cellular, subcellular level, or even molecular level in living subjects, has rapidly gained importance in the dawning era of personalized medicine. Molecular imaging takes advantage of the traditional diagnostic imaging techniques and introduces molecular imaging probes to determine the expression of indicative molecular markers at different stages of diseases and disorders. As a key component of molecular imaging, molecular imaging probe must be able to specifically reach the target of interest in vivo while retaining long enough to be detected. A desirable molecular imaging probe with clinical translation potential is expected to have unique characteristics. Therefore, design and development of molecular imaging probe is frequently a challenging endeavor for medicinal chemists. This review summarizes the general principles of molecular imaging probe design and some fundamental strategies of molecular imaging probe development with a number of illustrative examples.
Export Options
About this article
Cite this article as:
Chen Kai and Chen Xiaoyuan, Design and Development of Molecular Imaging Probes, Current Topics in Medicinal Chemistry 2010; 10 (12) . https://dx.doi.org/10.2174/156802610791384225
DOI https://dx.doi.org/10.2174/156802610791384225 |
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 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
Big Data in Biomedicine: Integrating Bioinformatics and Clinical Databases
The rapid advancement of big data technologies is transforming biomedicine by integrating bioinformatics and clinical databases to drive precision medicine and innovative healthcare solutions. This thematic issue explores the intersection of computational biology, machine learning, and biomedical informatics, highlighting how large-scale data analysis enhances disease diagnosis, biomarker discovery, and personalized ...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
-
Electric cable: cytoskeleton as an electric transmitter for cancer therapy
Current Signal Transduction Therapy Liposomes: An Emerging Approach for the Treatment of Cancer
Current Pharmaceutical Design Titanocene Y - Transport and Targeting of an Anticancer Drug Candidate
Letters in Drug Design & Discovery Sphingolipid Modulation: A Strategy for Cancer Therapy
Anti-Cancer Agents in Medicinal Chemistry Interferon-Beta Therapy Monitoring in Multiple Sclerosis Patients
Endocrine, Metabolic & Immune Disorders - Drug Targets Expanding Targets for a Metabolic Therapy of Cancer: L-Asparaginase
Recent Patents on Anti-Cancer Drug Discovery Impact of the Somatotrope Growth Hormone (GH)/Insulin-Like Growth Factor 1 (IGF-1) Axis Upon Thymus Function: Pharmacological Implications in Regeneration of Immune Functions
Immunology, Endocrine & Metabolic Agents in Medicinal Chemistry (Discontinued) Inorganic Nanoparticles for Cancer Therapy: A Transition from Lab to Clinic
Current Medicinal Chemistry Nanocarriers Based Anticancer Drugs: Current Scenario and Future Perceptions
Current Drug Targets HIV-1 Gag as an Antiviral Target: Development of Assembly and Maturation Inhibitors
Current Topics in Medicinal Chemistry When Ubiquitin Meets NF-κB: A Trove for Anti-cancer Drug Development
Current Pharmaceutical Design Sculpted Amphiphilic Liposomal Particles for Modifiable Medicinal Applications
Current Drug Discovery Technologies Trends in Nanomedicines for Cancer Treatment
Current Pharmaceutical Design Protein Tyrosine Phosphatase 1B (PTP1B): Insights into its New Implications in Tumorigenesis
Current Cancer Drug Targets Adrenomedullin and Nitric Oxide: Implications for the Etiology and Treatment of Primary Brain Tumors
CNS & Neurological Disorders - Drug Targets Mesenchymal Stem Cell-Based Therapy for the Treatment of Type 1 Diabetes Mellitus
Current Stem Cell Research & Therapy Risk Assessment of the Use of Autonomous Parvovirus-Based Vectors
Current Gene Therapy Antitumor Properties of Natural Compounds and Related Molecules
Recent Patents on Anti-Cancer Drug Discovery Marine Natural Product Bis-indole Alkaloid Caulerpin: Chemistry and Biology
Mini-Reviews in Medicinal Chemistry Adding to the Mix: Fibroblast Growth Factor and Platelet-Derived Growth Factor Receptor Pathways as Targets in Non – small Cell Lung Cancer
Current Cancer Drug Targets