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Identification of 3-Aryl-1-benzotriazole-1-yl-acrylonitrile as a Microtubule-Targeting Agent (MTA) in Solid Tumors
by
Zoroddu, Stefano
, Kelvin, David J.
, Sanna, Luca
, Weidong, Lyu
, Gadau, Sergio Domenico
, Carta, Antonio
, Bagella, Luigi
, Bordoni, Valentina
in
Acrylonitrile
/ Acrylonitrile - analogs & derivatives
/ Acrylonitrile - pharmacology
/ Acrylonitrile - therapeutic use
/ Antineoplastic Agents - pharmacology
/ Antineoplastic Agents - therapeutic use
/ Apoptosis - drug effects
/ Cancer
/ Cancer therapies
/ Cell cycle
/ Cell Cycle Checkpoints - drug effects
/ Cell division
/ Cell growth
/ Cell Line, Tumor
/ Cell Proliferation - drug effects
/ Cervical cancer
/ Chemotherapy
/ Chromosomes
/ Cytotoxicity
/ Development and progression
/ HeLa Cells
/ Hematology
/ Humans
/ Metabolism
/ Microtubules - drug effects
/ Microtubules - metabolism
/ Motility
/ Neoplasms - drug therapy
/ Neoplasms - metabolism
/ Neoplasms - pathology
/ PC-3 Cells
/ Polymerization
/ Prostate cancer
/ Proteins
/ Signal transduction
/ Triazoles - pharmacology
/ Tubulin Modulators - pharmacology
/ Tubulin Modulators - therapeutic use
/ Tumors
/ Vincristine
2024
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Identification of 3-Aryl-1-benzotriazole-1-yl-acrylonitrile as a Microtubule-Targeting Agent (MTA) in Solid Tumors
by
Zoroddu, Stefano
, Kelvin, David J.
, Sanna, Luca
, Weidong, Lyu
, Gadau, Sergio Domenico
, Carta, Antonio
, Bagella, Luigi
, Bordoni, Valentina
in
Acrylonitrile
/ Acrylonitrile - analogs & derivatives
/ Acrylonitrile - pharmacology
/ Acrylonitrile - therapeutic use
/ Antineoplastic Agents - pharmacology
/ Antineoplastic Agents - therapeutic use
/ Apoptosis - drug effects
/ Cancer
/ Cancer therapies
/ Cell cycle
/ Cell Cycle Checkpoints - drug effects
/ Cell division
/ Cell growth
/ Cell Line, Tumor
/ Cell Proliferation - drug effects
/ Cervical cancer
/ Chemotherapy
/ Chromosomes
/ Cytotoxicity
/ Development and progression
/ HeLa Cells
/ Hematology
/ Humans
/ Metabolism
/ Microtubules - drug effects
/ Microtubules - metabolism
/ Motility
/ Neoplasms - drug therapy
/ Neoplasms - metabolism
/ Neoplasms - pathology
/ PC-3 Cells
/ Polymerization
/ Prostate cancer
/ Proteins
/ Signal transduction
/ Triazoles - pharmacology
/ Tubulin Modulators - pharmacology
/ Tubulin Modulators - therapeutic use
/ Tumors
/ Vincristine
2024
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Identification of 3-Aryl-1-benzotriazole-1-yl-acrylonitrile as a Microtubule-Targeting Agent (MTA) in Solid Tumors
by
Zoroddu, Stefano
, Kelvin, David J.
, Sanna, Luca
, Weidong, Lyu
, Gadau, Sergio Domenico
, Carta, Antonio
, Bagella, Luigi
, Bordoni, Valentina
in
Acrylonitrile
/ Acrylonitrile - analogs & derivatives
/ Acrylonitrile - pharmacology
/ Acrylonitrile - therapeutic use
/ Antineoplastic Agents - pharmacology
/ Antineoplastic Agents - therapeutic use
/ Apoptosis - drug effects
/ Cancer
/ Cancer therapies
/ Cell cycle
/ Cell Cycle Checkpoints - drug effects
/ Cell division
/ Cell growth
/ Cell Line, Tumor
/ Cell Proliferation - drug effects
/ Cervical cancer
/ Chemotherapy
/ Chromosomes
/ Cytotoxicity
/ Development and progression
/ HeLa Cells
/ Hematology
/ Humans
/ Metabolism
/ Microtubules - drug effects
/ Microtubules - metabolism
/ Motility
/ Neoplasms - drug therapy
/ Neoplasms - metabolism
/ Neoplasms - pathology
/ PC-3 Cells
/ Polymerization
/ Prostate cancer
/ Proteins
/ Signal transduction
/ Triazoles - pharmacology
/ Tubulin Modulators - pharmacology
/ Tubulin Modulators - therapeutic use
/ Tumors
/ Vincristine
2024
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Identification of 3-Aryl-1-benzotriazole-1-yl-acrylonitrile as a Microtubule-Targeting Agent (MTA) in Solid Tumors
Journal Article
Identification of 3-Aryl-1-benzotriazole-1-yl-acrylonitrile as a Microtubule-Targeting Agent (MTA) in Solid Tumors
2024
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Overview
Recently, a compound derived from recent scientific advances named 34 has emerged as the focus of this research, the aim of which is to explore its potential impact on solid tumor cell lines. Using a combination of bioinformatics and biological assays, this study conducted an in-depth investigation of the effects of 34. The results of this study have substantial implications for cancer research and treatment. 34 has shown remarkable efficacy in inhibiting the growth of several cancer cell lines, including those representing prostate carcinoma (PC3) and cervical carcinoma (HeLa). The high sensitivity of these cells, indicated by low IC50 values, underscores its potential as a promising chemotherapeutic agent. In addition, 34 has revealed the ability to induce cell cycle arrest, particularly in the G2/M phase, a phenomenon with critical implications for tumor initiation and growth. By interfering with DNA replication in cancer cells, 34 has shown the capacity to trigger cell death, offering a new avenue for cancer treatment. In addition, computational analyses have identified key genes affected by 34 treatment, suggesting potential therapeutic targets. These genes are involved in critical biological processes, including cell cycle regulation, DNA replication and microtubule dynamics, all of which are central to cancer development and progression. In conclusion, this study highlights the different mechanisms of 34 that inhibit cancer cell growth and alter the cell cycle. These promising results suggest the potential for more effective and less toxic anticancer therapies. Further in vivo validation and exploration of combination therapies are critical to improve cancer treatment outcomes.
Publisher
MDPI AG,MDPI
Subject
/ Acrylonitrile - analogs & derivatives
/ Acrylonitrile - pharmacology
/ Acrylonitrile - therapeutic use
/ Antineoplastic Agents - pharmacology
/ Antineoplastic Agents - therapeutic use
/ Cancer
/ Cell Cycle Checkpoints - drug effects
/ Cell Proliferation - drug effects
/ Humans
/ Motility
/ Proteins
/ Tubulin Modulators - pharmacology
/ Tubulin Modulators - therapeutic use
/ Tumors
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