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Published on: June 23, 2023
The Importance of Linkers in the Structure of PSMA Ligands
Anastasia A Uspenskaya1, Ekaterina A Nimenko1, Aleksei E Machulkin1
1Department of Chemistry, M. V. Lomonosov Moscow State University, Moscow,Russian Federation.
Abstract:
Cancer is one of the leading social problems of the modern world. Today prostate cancer is the second leading cause of cancer deaths among men. Targeted drug delivery is widely used to treat and diagnose prostate cancer. Conjugates selectively binding to prostatespecific membrane antigen-based on urea ligands are being actively developed against this disease. The linker has a significant influence on the biological activity of such conjugates. The linker performs a large number of functions, and its modification is one of the key methods for creating the best pharmacological profile. This review aims to discuss and analyze the main approaches to the method of introduction and synthesis of linkers for this type of conjugates without a description of the influence of biologically active molecules, as well as to establish the key modification methods that have a significant role on the structure-activity relationship. For this purpose, a review of the current scientific literature was performed, both for the conjugates under development and those already undergoing clinical trials. It was found that the optimal structure is a linker containing an aliphatic fragment near the vector- molecule (n(CH2) = 3-6), followed by a polypeptide chain consisting of 2 to 4 amino acid residues. The presence of a Phe-Phe dipeptide chain or the introduction of negatively charged groups also has a positive effect. Ongoing research in this field helps to establish the accurate effect of each linker fragment, and the development of solid-phase synthesis methods makes it much easier to achieve this goal.
Insights
Linkers are crucial for targeted prostate cancer drug delivery. Optimal linkers feature specific aliphatic and polypeptide chains, enhancing drug efficacy and aiding in developing new cancer therapies.
Area of Science:
- Oncology
- Medicinal Chemistry
- Drug Delivery
Background:
- Prostate cancer is a leading cause of cancer deaths in men.
- Targeted drug delivery systems are vital for cancer treatment and diagnosis.
- Conjugates targeting prostate-specific membrane antigen (PSMA) are under development for prostate cancer.
Purpose of the Study:
- To review and analyze linker synthesis and modification strategies for PSMA-targeted conjugates.
- To identify key linker modifications influencing the structure-activity relationship (SAR) of these conjugates.
- To focus on linker design independent of the biologically active molecule.
Main Methods:
- Comprehensive review of current scientific literature on PSMA-targeted conjugates.
- Analysis of conjugates in development and clinical trials.
- Identification of common and effective linker structures and modifications.
Main Results:
- Optimal linkers include an aliphatic fragment (n(CH2)=3-6) near the vector molecule.
- A polypeptide chain of 2-4 amino acid residues is beneficial.
- Incorporation of a Phe-Phe dipeptide or negatively charged groups positively impacts biological activity.
- Solid-phase synthesis methods facilitate linker development.
Conclusions:
- Linker structure significantly influences the biological activity of PSMA-targeted conjugates.
- Specific linker designs, including aliphatic and polypeptide components, are key for optimizing pharmacological profiles.
- Continued research and advanced synthesis methods are crucial for developing effective prostate cancer therapeutics.
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