The importance of linkers in the structure of PSMA ligands

2021 ◽  
Vol 28 ◽  
Author(s):  
Anastasia A. Uspenskaya ◽  
Ekaterina A. Nimenko ◽  
Aleksei E. Machulkin ◽  
Elena K. Beloglazkina ◽  
Alexander G. Majouga

: 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 prostate specific 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 of 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 for 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.

1987 ◽  
Vol 52 (9) ◽  
pp. 2317-2325 ◽  
Author(s):  
Jan Hlaváček ◽  
Jan Pospíšek ◽  
Jiřina Slaninová ◽  
Walter Y. Chan ◽  
Victor J. Hruby

[8-Neopentylglycine]oxytocin (II) and [8-cycloleucine]oxytocin (III) were prepared by a combination of solid-phase synthesis and fragment condensation. Both analogues exhibited decreased uterotonic potency in vitro, each being about 15-30% that of oxytocin. Analogue II also displayed similarly decreased uterotonic potency in vivo and galactogogic potency. On the other hand, analogue III exhibited almost the same potency as oxytocin in the uterotonic assay in vivo and in the galactogogic assay.


2017 ◽  
Vol 70 (2) ◽  
pp. 208 ◽  
Author(s):  
Feng Lin ◽  
Mohammed Akhter Hossain ◽  
Stephanie Post ◽  
Galina Karashchuk ◽  
Marc Tatar ◽  
...  

In the fruit fly Drosophila melanogaster, there are eight insulin-like peptides (DILPs) with DILPs 1–7 interacting with a sole insulin-like receptor tyrosine kinase (DInR) while DILP8 interacts with a single G protein-coupled receptor (GPCR), Lgr3. Loss-of-function dilp mutation studies show that the neuropeptide DILP2 has a key role in carbohydrate and lipid metabolism as well as longevity and reproduction. A better understanding of the processes whereby DILP2 mediates its specific actions is required. Consequently we undertook to prepare DILP2 as part of a larger, detailed structure–function relationship study. Use of our well established insulin-like peptide synthesis protocol that entails separate solid-phase assembly of each of the A- and B-chains with selective cysteine S-protection followed by sequential S-deprotection and simultaneous disulfide bond formation produced DILP2 in good overall yield and high purity. The synthetic DILP2 was shown to induce significant DInR phosphorylation and downstream signalling, with it being more potent than human insulin. This peptide will be a valuable tool to provide further insights into its binding to the insulin receptor, the subsequent cell signalling, and role in insect metabolism.


Author(s):  
Mikhail A. Polianskii ◽  
◽  
Anatoly I. Ginak ◽  

Currently, peptide-based drugs are increasingly replacing dosage forms which have been widely used for many years due to their affinity for living organisms and greater selectivity to biological targets, which lead to a growing demand. To meet that demand, a method using a solid polymer carrier (solid-phase synthesis), which has no alternative for fast and large-scale synthesis, is used. Nevertheless, work on its improvement is carried out non-stop, not only to optimize the chemical process, but also to bring the process to compliance with environmental standards dictated by modern concepts of green chemistry


1997 ◽  
Vol 3 (S2) ◽  
pp. 1201-1202
Author(s):  
R. A. Carlton ◽  
E. Orton ◽  
C. E. Lyman

Solid phase synthesis (SPS) is used for the discovery and optimization of biologically active substances for the pharmaceutical and agricultural industries. Large numbers of novel organic compounds are generated by successively adding functional groups onto a solid substrate - usually polystyrene. Several techniques have been applied to the qualitative and quantitative analysis of these polymer-bound compounds with varying success. Environmental scanning electron microscopy (ESEM) with energy dispersive x-ray spectrometry (EDS) offers a unique approach to the qualitative analysis of SPS resins. Heteroatoms (such as Cl, Br, and S) are added either as a part of the synthesis or as a marker for analysis. Heavier atoms, such as these, are easily detected by EDS. The advantages of EDS are speed, sensitivity, and small required weight of the sample. The advantages of the ESEM are that it eliminates the need for a conductive coating and the vacuum conditions are not as severe on the specimen as with a conventional SEM.


2012 ◽  
Vol 512-515 ◽  
pp. 435-438
Author(s):  
Chang Tian Huan ◽  
Jin Feng Xia ◽  
Dan Yu Jiang ◽  
Qiang Li

This paper compares the low-temperature aging performance of 5Y-TZP and 8Y-TZP by coprecipitation and solid-phase synthesis methods in the steam. Analysis the weight changes of samples using analytical balance, and the sample surface microstructure and phase changes with SEM, XRD. The results show that the content of Y2O3 and synthesis method all affect the aging properties of zirconia ceramics; solid-phase synthesis of 8Y-TZP has the best anti-aging performance.


ChemInform ◽  
2010 ◽  
Vol 32 (28) ◽  
pp. no-no
Author(s):  
Bruce C. Hamper ◽  
Thomas J. Owen ◽  
Kevin D. Jerome ◽  
Angela S. Scates ◽  
Stephen A. Kolodziej ◽  
...  

1986 ◽  
Vol 140 (2) ◽  
pp. 565-573 ◽  
Author(s):  
Pierre Nicolas ◽  
Antoine Delfour ◽  
Hamadi Boussetta ◽  
Alain Morel ◽  
Mohamed Rholam ◽  
...  

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