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Synthesis and Evaluation of Small Molecule Drug Conjugates Harnessing Thioester-Linked Maytansinoids

Ligand-targeting drug conjugates are a class of clinically validated biopharmaceutical drugs constructed by conjugating cytotoxic drugs with specific disease antigen targeting ligands through appropriate linkers. The integrated linker-drug motif embedded within such a system can prevent the prematur...

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Autores principales: Lo, Chen-Fu, Chiu, Tai-Yu, Liu, Yu-Tzu, Huang, Li-Rung, Yeh, Teng-Kuang, Huang, Kuan-Hsun, Liu, Kuan-Liang, Hsu, Chia-Yu, Fang, Ming-Yu, Huang, Yu-Chen, Hsu, Tsu-An, Chen, Chiung-Tong, Tsou, Lun Kelvin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9323955/
https://www.ncbi.nlm.nih.gov/pubmed/35890212
http://dx.doi.org/10.3390/pharmaceutics14071316
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author Lo, Chen-Fu
Chiu, Tai-Yu
Liu, Yu-Tzu
Huang, Li-Rung
Yeh, Teng-Kuang
Huang, Kuan-Hsun
Liu, Kuan-Liang
Hsu, Chia-Yu
Fang, Ming-Yu
Huang, Yu-Chen
Hsu, Tsu-An
Chen, Chiung-Tong
Tsou, Lun Kelvin
author_facet Lo, Chen-Fu
Chiu, Tai-Yu
Liu, Yu-Tzu
Huang, Li-Rung
Yeh, Teng-Kuang
Huang, Kuan-Hsun
Liu, Kuan-Liang
Hsu, Chia-Yu
Fang, Ming-Yu
Huang, Yu-Chen
Hsu, Tsu-An
Chen, Chiung-Tong
Tsou, Lun Kelvin
author_sort Lo, Chen-Fu
collection PubMed
description Ligand-targeting drug conjugates are a class of clinically validated biopharmaceutical drugs constructed by conjugating cytotoxic drugs with specific disease antigen targeting ligands through appropriate linkers. The integrated linker-drug motif embedded within such a system can prevent the premature release during systemic circulation, thereby allowing the targeting ligand to engage with the disease antigen and selective accumulation. We have designed and synthesized new thioester-linked maytansinoid conjugates. By performing in vitro cytotoxicity, targeting ligand binding assay, and in vivo pharmacokinetic studies, we investigated the utility of this new linker-drug moiety in the small molecule drug conjugate (SMDC) system. In particular, we conjugated the thioester-linked maytansinoids to the phosphatidylserine-targeting small molecule zinc dipicolylamine and showed that Zn8_DM1 induced tumor regression in the HCC1806 triple-negative breast cancer xenograft model. Moreover, in a spontaneous sorafenib-resistant liver cancer model, Zn8_DM1 exhibited potent antitumor growth efficacy. From quantitative mRNA analysis of Zn8_DM1 treated-tumor tissues, we observed the elevation of gene expressions associated with a “hot inflamed tumor” state. With the identification and validation of a plethora of cancer-associated antigens in the “omics” era, this work provided the insight that antibody- or small molecule-based targeting ligands can be conjugated similarly to generate new ligand-targeting drug conjugates.
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spelling pubmed-93239552022-07-27 Synthesis and Evaluation of Small Molecule Drug Conjugates Harnessing Thioester-Linked Maytansinoids Lo, Chen-Fu Chiu, Tai-Yu Liu, Yu-Tzu Huang, Li-Rung Yeh, Teng-Kuang Huang, Kuan-Hsun Liu, Kuan-Liang Hsu, Chia-Yu Fang, Ming-Yu Huang, Yu-Chen Hsu, Tsu-An Chen, Chiung-Tong Tsou, Lun Kelvin Pharmaceutics Article Ligand-targeting drug conjugates are a class of clinically validated biopharmaceutical drugs constructed by conjugating cytotoxic drugs with specific disease antigen targeting ligands through appropriate linkers. The integrated linker-drug motif embedded within such a system can prevent the premature release during systemic circulation, thereby allowing the targeting ligand to engage with the disease antigen and selective accumulation. We have designed and synthesized new thioester-linked maytansinoid conjugates. By performing in vitro cytotoxicity, targeting ligand binding assay, and in vivo pharmacokinetic studies, we investigated the utility of this new linker-drug moiety in the small molecule drug conjugate (SMDC) system. In particular, we conjugated the thioester-linked maytansinoids to the phosphatidylserine-targeting small molecule zinc dipicolylamine and showed that Zn8_DM1 induced tumor regression in the HCC1806 triple-negative breast cancer xenograft model. Moreover, in a spontaneous sorafenib-resistant liver cancer model, Zn8_DM1 exhibited potent antitumor growth efficacy. From quantitative mRNA analysis of Zn8_DM1 treated-tumor tissues, we observed the elevation of gene expressions associated with a “hot inflamed tumor” state. With the identification and validation of a plethora of cancer-associated antigens in the “omics” era, this work provided the insight that antibody- or small molecule-based targeting ligands can be conjugated similarly to generate new ligand-targeting drug conjugates. MDPI 2022-06-21 /pmc/articles/PMC9323955/ /pubmed/35890212 http://dx.doi.org/10.3390/pharmaceutics14071316 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lo, Chen-Fu
Chiu, Tai-Yu
Liu, Yu-Tzu
Huang, Li-Rung
Yeh, Teng-Kuang
Huang, Kuan-Hsun
Liu, Kuan-Liang
Hsu, Chia-Yu
Fang, Ming-Yu
Huang, Yu-Chen
Hsu, Tsu-An
Chen, Chiung-Tong
Tsou, Lun Kelvin
Synthesis and Evaluation of Small Molecule Drug Conjugates Harnessing Thioester-Linked Maytansinoids
title Synthesis and Evaluation of Small Molecule Drug Conjugates Harnessing Thioester-Linked Maytansinoids
title_full Synthesis and Evaluation of Small Molecule Drug Conjugates Harnessing Thioester-Linked Maytansinoids
title_fullStr Synthesis and Evaluation of Small Molecule Drug Conjugates Harnessing Thioester-Linked Maytansinoids
title_full_unstemmed Synthesis and Evaluation of Small Molecule Drug Conjugates Harnessing Thioester-Linked Maytansinoids
title_short Synthesis and Evaluation of Small Molecule Drug Conjugates Harnessing Thioester-Linked Maytansinoids
title_sort synthesis and evaluation of small molecule drug conjugates harnessing thioester-linked maytansinoids
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9323955/
https://www.ncbi.nlm.nih.gov/pubmed/35890212
http://dx.doi.org/10.3390/pharmaceutics14071316
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