Cargando…

Design and Synthesis of Novel Phenylahistin Derivatives Based on Co-Crystal Structures as Potent Microtubule Inhibitors for Anti-Cancer Therapy

Phenylahistin is a naturally occurring marine product with a diketopiperazine structure that can bind to the colchicine site of microtubulin as a possible anticancer agent. To develop more potent microtubule inhibitors, novel phenylahistin derivatives were designed and synthesized based on the co-cr...

Descripción completa

Detalles Bibliográficos
Autores principales: Ding, Zhongpeng, Li, Feifei, Xie, Lianghui, Gu, Minqing, Li, Chunlei, Liu, Chang, Peng, Chao, Li, Wenbao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9785606/
https://www.ncbi.nlm.nih.gov/pubmed/36547899
http://dx.doi.org/10.3390/md20120752
_version_ 1784858089627844608
author Ding, Zhongpeng
Li, Feifei
Xie, Lianghui
Gu, Minqing
Li, Chunlei
Liu, Chang
Peng, Chao
Li, Wenbao
author_facet Ding, Zhongpeng
Li, Feifei
Xie, Lianghui
Gu, Minqing
Li, Chunlei
Liu, Chang
Peng, Chao
Li, Wenbao
author_sort Ding, Zhongpeng
collection PubMed
description Phenylahistin is a naturally occurring marine product with a diketopiperazine structure that can bind to the colchicine site of microtubulin as a possible anticancer agent. To develop more potent microtubule inhibitors, novel phenylahistin derivatives were designed and synthesized based on the co-crystal complexes of phenylahistin derivatives and microtubulin. We established a focused library of imidazole-type molecules for the introduction of different groups to the C-ring and A-ring of phenylahistin. Structure–activity relationship studies indicated that appropriate hydrocarbon substituents and unsaturated alkenyl substituents at the 1-position of the imidazole group are important for improving the activity of such compounds. In addition, this study found that propylamine groups could maintain the activity of these compounds, as exemplified by compound 16d (IC(50) = 5.38 nM, NCI-H460). Compound 15p (IC(50) = 1.03 nM, NCI-H460) with an allyl group exhibited potent cytotoxic activity at the nanomolar level against human lung cancer cell lines. Immunofluorescence assay indicated that compound 15p could efficiently inhibited microtubule polymerization and induced a high expression of caspase-3. 15p also displayed good pharmacokinetic characteristics in vitro. Additionally, the growth of H22 transplanted tumors was significantly inhibited in BALB/c mice when 15p alone was administered at 4 mg/kg, and the tumor inhibition rate was as much as 65%. Importantly, the continuous administration of 15p resulted in a lower toxicity than that of docetaxel (10 mg/kg) and cyclophosphamide (20 mg/kg). Overall, the novel allyl-imidazole-diketopiperazine-type derivatives could be considered safe and effective potential agents for cancer treatment.
format Online
Article
Text
id pubmed-9785606
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-97856062022-12-24 Design and Synthesis of Novel Phenylahistin Derivatives Based on Co-Crystal Structures as Potent Microtubule Inhibitors for Anti-Cancer Therapy Ding, Zhongpeng Li, Feifei Xie, Lianghui Gu, Minqing Li, Chunlei Liu, Chang Peng, Chao Li, Wenbao Mar Drugs Article Phenylahistin is a naturally occurring marine product with a diketopiperazine structure that can bind to the colchicine site of microtubulin as a possible anticancer agent. To develop more potent microtubule inhibitors, novel phenylahistin derivatives were designed and synthesized based on the co-crystal complexes of phenylahistin derivatives and microtubulin. We established a focused library of imidazole-type molecules for the introduction of different groups to the C-ring and A-ring of phenylahistin. Structure–activity relationship studies indicated that appropriate hydrocarbon substituents and unsaturated alkenyl substituents at the 1-position of the imidazole group are important for improving the activity of such compounds. In addition, this study found that propylamine groups could maintain the activity of these compounds, as exemplified by compound 16d (IC(50) = 5.38 nM, NCI-H460). Compound 15p (IC(50) = 1.03 nM, NCI-H460) with an allyl group exhibited potent cytotoxic activity at the nanomolar level against human lung cancer cell lines. Immunofluorescence assay indicated that compound 15p could efficiently inhibited microtubule polymerization and induced a high expression of caspase-3. 15p also displayed good pharmacokinetic characteristics in vitro. Additionally, the growth of H22 transplanted tumors was significantly inhibited in BALB/c mice when 15p alone was administered at 4 mg/kg, and the tumor inhibition rate was as much as 65%. Importantly, the continuous administration of 15p resulted in a lower toxicity than that of docetaxel (10 mg/kg) and cyclophosphamide (20 mg/kg). Overall, the novel allyl-imidazole-diketopiperazine-type derivatives could be considered safe and effective potential agents for cancer treatment. MDPI 2022-11-29 /pmc/articles/PMC9785606/ /pubmed/36547899 http://dx.doi.org/10.3390/md20120752 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
Ding, Zhongpeng
Li, Feifei
Xie, Lianghui
Gu, Minqing
Li, Chunlei
Liu, Chang
Peng, Chao
Li, Wenbao
Design and Synthesis of Novel Phenylahistin Derivatives Based on Co-Crystal Structures as Potent Microtubule Inhibitors for Anti-Cancer Therapy
title Design and Synthesis of Novel Phenylahistin Derivatives Based on Co-Crystal Structures as Potent Microtubule Inhibitors for Anti-Cancer Therapy
title_full Design and Synthesis of Novel Phenylahistin Derivatives Based on Co-Crystal Structures as Potent Microtubule Inhibitors for Anti-Cancer Therapy
title_fullStr Design and Synthesis of Novel Phenylahistin Derivatives Based on Co-Crystal Structures as Potent Microtubule Inhibitors for Anti-Cancer Therapy
title_full_unstemmed Design and Synthesis of Novel Phenylahistin Derivatives Based on Co-Crystal Structures as Potent Microtubule Inhibitors for Anti-Cancer Therapy
title_short Design and Synthesis of Novel Phenylahistin Derivatives Based on Co-Crystal Structures as Potent Microtubule Inhibitors for Anti-Cancer Therapy
title_sort design and synthesis of novel phenylahistin derivatives based on co-crystal structures as potent microtubule inhibitors for anti-cancer therapy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9785606/
https://www.ncbi.nlm.nih.gov/pubmed/36547899
http://dx.doi.org/10.3390/md20120752
work_keys_str_mv AT dingzhongpeng designandsynthesisofnovelphenylahistinderivativesbasedoncocrystalstructuresaspotentmicrotubuleinhibitorsforanticancertherapy
AT lifeifei designandsynthesisofnovelphenylahistinderivativesbasedoncocrystalstructuresaspotentmicrotubuleinhibitorsforanticancertherapy
AT xielianghui designandsynthesisofnovelphenylahistinderivativesbasedoncocrystalstructuresaspotentmicrotubuleinhibitorsforanticancertherapy
AT guminqing designandsynthesisofnovelphenylahistinderivativesbasedoncocrystalstructuresaspotentmicrotubuleinhibitorsforanticancertherapy
AT lichunlei designandsynthesisofnovelphenylahistinderivativesbasedoncocrystalstructuresaspotentmicrotubuleinhibitorsforanticancertherapy
AT liuchang designandsynthesisofnovelphenylahistinderivativesbasedoncocrystalstructuresaspotentmicrotubuleinhibitorsforanticancertherapy
AT pengchao designandsynthesisofnovelphenylahistinderivativesbasedoncocrystalstructuresaspotentmicrotubuleinhibitorsforanticancertherapy
AT liwenbao designandsynthesisofnovelphenylahistinderivativesbasedoncocrystalstructuresaspotentmicrotubuleinhibitorsforanticancertherapy