Cargando…

Characterization and Investigation of Novel Benzodioxol Derivatives as Antidiabetic Agents: An In Vitro and In Vivo Study in an Animal Model

In this study, we synthesized benzodioxol carboxamide derivatives and investigated their antidiabetic potential. The synthesized compounds (Ia-Ic and IIa-IId) underwent characterization via HRMS, (1)H-, (13)CAPT-NMR, and MicroED. Their efficacy against α-amylase was assessed in vitro, while MTS assa...

Descripción completa

Detalles Bibliográficos
Autores principales: Hawash, Mohammed, Al-Smadi, Derar, Kumar, Anil, Olech, Barbara, Dominiak, Paulina Maria, Jaradat, Nidal, Antari, Sarah, Mohammed, Sarah, Nasasrh, Ala’a, Abualhasan, Murad, Musa, Ahmed, Suboh, Shorooq, Çapan, İrfan, Qneibi, Mohammad, Natsheh, Hiba
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10604990/
https://www.ncbi.nlm.nih.gov/pubmed/37892167
http://dx.doi.org/10.3390/biom13101486
_version_ 1785126966791241728
author Hawash, Mohammed
Al-Smadi, Derar
Kumar, Anil
Olech, Barbara
Dominiak, Paulina Maria
Jaradat, Nidal
Antari, Sarah
Mohammed, Sarah
Nasasrh, Ala’a
Abualhasan, Murad
Musa, Ahmed
Suboh, Shorooq
Çapan, İrfan
Qneibi, Mohammad
Natsheh, Hiba
author_facet Hawash, Mohammed
Al-Smadi, Derar
Kumar, Anil
Olech, Barbara
Dominiak, Paulina Maria
Jaradat, Nidal
Antari, Sarah
Mohammed, Sarah
Nasasrh, Ala’a
Abualhasan, Murad
Musa, Ahmed
Suboh, Shorooq
Çapan, İrfan
Qneibi, Mohammad
Natsheh, Hiba
author_sort Hawash, Mohammed
collection PubMed
description In this study, we synthesized benzodioxol carboxamide derivatives and investigated their antidiabetic potential. The synthesized compounds (Ia-Ic and IIa-IId) underwent characterization via HRMS, (1)H-, (13)CAPT-NMR, and MicroED. Their efficacy against α-amylase was assessed in vitro, while MTS assays were employed to gauge cytotoxicity across cancer and normal cell lines. Additionally, the antidiabetic impact of compound IIc was evaluated in vivo using a streptozotocin-induced diabetic mice model. Notably, IIa and IIc displayed potent α-amylase inhibition (IC(50) values of 0.85 and 0.68 µM, respectively) while exhibiting a negligible effect on the Hek293t normal cell line (IC(50) > 150 µM), suggesting their safety. Compound IId demonstrated significant activity against four cancer cell lines (26–65 µM). In vivo experiments revealed that five doses of IIc substantially reduced mice blood glucose levels from 252.2 mg/dL to 173.8 mg/dL in contrast to the control group. The compelling in vitro anticancer efficacy of IIc and its safety for normal cells underscores the need for further in vivo assessment of this promising compound. This research highlights the potential of benzodioxol derivatives as candidates for the future development of synthetic antidiabetic drugs.
format Online
Article
Text
id pubmed-10604990
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-106049902023-10-28 Characterization and Investigation of Novel Benzodioxol Derivatives as Antidiabetic Agents: An In Vitro and In Vivo Study in an Animal Model Hawash, Mohammed Al-Smadi, Derar Kumar, Anil Olech, Barbara Dominiak, Paulina Maria Jaradat, Nidal Antari, Sarah Mohammed, Sarah Nasasrh, Ala’a Abualhasan, Murad Musa, Ahmed Suboh, Shorooq Çapan, İrfan Qneibi, Mohammad Natsheh, Hiba Biomolecules Article In this study, we synthesized benzodioxol carboxamide derivatives and investigated their antidiabetic potential. The synthesized compounds (Ia-Ic and IIa-IId) underwent characterization via HRMS, (1)H-, (13)CAPT-NMR, and MicroED. Their efficacy against α-amylase was assessed in vitro, while MTS assays were employed to gauge cytotoxicity across cancer and normal cell lines. Additionally, the antidiabetic impact of compound IIc was evaluated in vivo using a streptozotocin-induced diabetic mice model. Notably, IIa and IIc displayed potent α-amylase inhibition (IC(50) values of 0.85 and 0.68 µM, respectively) while exhibiting a negligible effect on the Hek293t normal cell line (IC(50) > 150 µM), suggesting their safety. Compound IId demonstrated significant activity against four cancer cell lines (26–65 µM). In vivo experiments revealed that five doses of IIc substantially reduced mice blood glucose levels from 252.2 mg/dL to 173.8 mg/dL in contrast to the control group. The compelling in vitro anticancer efficacy of IIc and its safety for normal cells underscores the need for further in vivo assessment of this promising compound. This research highlights the potential of benzodioxol derivatives as candidates for the future development of synthetic antidiabetic drugs. MDPI 2023-10-06 /pmc/articles/PMC10604990/ /pubmed/37892167 http://dx.doi.org/10.3390/biom13101486 Text en © 2023 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
Hawash, Mohammed
Al-Smadi, Derar
Kumar, Anil
Olech, Barbara
Dominiak, Paulina Maria
Jaradat, Nidal
Antari, Sarah
Mohammed, Sarah
Nasasrh, Ala’a
Abualhasan, Murad
Musa, Ahmed
Suboh, Shorooq
Çapan, İrfan
Qneibi, Mohammad
Natsheh, Hiba
Characterization and Investigation of Novel Benzodioxol Derivatives as Antidiabetic Agents: An In Vitro and In Vivo Study in an Animal Model
title Characterization and Investigation of Novel Benzodioxol Derivatives as Antidiabetic Agents: An In Vitro and In Vivo Study in an Animal Model
title_full Characterization and Investigation of Novel Benzodioxol Derivatives as Antidiabetic Agents: An In Vitro and In Vivo Study in an Animal Model
title_fullStr Characterization and Investigation of Novel Benzodioxol Derivatives as Antidiabetic Agents: An In Vitro and In Vivo Study in an Animal Model
title_full_unstemmed Characterization and Investigation of Novel Benzodioxol Derivatives as Antidiabetic Agents: An In Vitro and In Vivo Study in an Animal Model
title_short Characterization and Investigation of Novel Benzodioxol Derivatives as Antidiabetic Agents: An In Vitro and In Vivo Study in an Animal Model
title_sort characterization and investigation of novel benzodioxol derivatives as antidiabetic agents: an in vitro and in vivo study in an animal model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10604990/
https://www.ncbi.nlm.nih.gov/pubmed/37892167
http://dx.doi.org/10.3390/biom13101486
work_keys_str_mv AT hawashmohammed characterizationandinvestigationofnovelbenzodioxolderivativesasantidiabeticagentsaninvitroandinvivostudyinananimalmodel
AT alsmadiderar characterizationandinvestigationofnovelbenzodioxolderivativesasantidiabeticagentsaninvitroandinvivostudyinananimalmodel
AT kumaranil characterizationandinvestigationofnovelbenzodioxolderivativesasantidiabeticagentsaninvitroandinvivostudyinananimalmodel
AT olechbarbara characterizationandinvestigationofnovelbenzodioxolderivativesasantidiabeticagentsaninvitroandinvivostudyinananimalmodel
AT dominiakpaulinamaria characterizationandinvestigationofnovelbenzodioxolderivativesasantidiabeticagentsaninvitroandinvivostudyinananimalmodel
AT jaradatnidal characterizationandinvestigationofnovelbenzodioxolderivativesasantidiabeticagentsaninvitroandinvivostudyinananimalmodel
AT antarisarah characterizationandinvestigationofnovelbenzodioxolderivativesasantidiabeticagentsaninvitroandinvivostudyinananimalmodel
AT mohammedsarah characterizationandinvestigationofnovelbenzodioxolderivativesasantidiabeticagentsaninvitroandinvivostudyinananimalmodel
AT nasasrhalaa characterizationandinvestigationofnovelbenzodioxolderivativesasantidiabeticagentsaninvitroandinvivostudyinananimalmodel
AT abualhasanmurad characterizationandinvestigationofnovelbenzodioxolderivativesasantidiabeticagentsaninvitroandinvivostudyinananimalmodel
AT musaahmed characterizationandinvestigationofnovelbenzodioxolderivativesasantidiabeticagentsaninvitroandinvivostudyinananimalmodel
AT subohshorooq characterizationandinvestigationofnovelbenzodioxolderivativesasantidiabeticagentsaninvitroandinvivostudyinananimalmodel
AT capanirfan characterizationandinvestigationofnovelbenzodioxolderivativesasantidiabeticagentsaninvitroandinvivostudyinananimalmodel
AT qneibimohammad characterizationandinvestigationofnovelbenzodioxolderivativesasantidiabeticagentsaninvitroandinvivostudyinananimalmodel
AT natshehhiba characterizationandinvestigationofnovelbenzodioxolderivativesasantidiabeticagentsaninvitroandinvivostudyinananimalmodel