Cargando…
Tumor Decelerating and Chemo-Potentiating Action of Methyl Jasmonate on a T Cell Lymphoma In Vivo: Role of Altered Regulation of Metabolism, Cell Survival, Drug Resistance, and Intratumoral Blood Flow
Methyl jasmonate (MJ), a natural oxylipin, possesses a broad spectrum of antineoplastic potential in vitro. However, its tumor growth impeding and chemo-potentiating action has not been adequately investigated in vivo. Using a murine thymus-derived tumor named Dalton’s Lymphoma (DL), in the present...
Autores principales: | , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7947686/ https://www.ncbi.nlm.nih.gov/pubmed/33718176 http://dx.doi.org/10.3389/fonc.2021.619351 |
_version_ | 1783663279289139200 |
---|---|
author | Goel, Yugal Yadav, Saveg Pandey, Shrish Kumar Temre, Mithlesh Kumar Maurya, Babu Nandan Verma, Ashish Kumar, Ajay Singh, Sukh Mahendra |
author_facet | Goel, Yugal Yadav, Saveg Pandey, Shrish Kumar Temre, Mithlesh Kumar Maurya, Babu Nandan Verma, Ashish Kumar, Ajay Singh, Sukh Mahendra |
author_sort | Goel, Yugal |
collection | PubMed |
description | Methyl jasmonate (MJ), a natural oxylipin, possesses a broad spectrum of antineoplastic potential in vitro. However, its tumor growth impeding and chemo-potentiating action has not been adequately investigated in vivo. Using a murine thymus-derived tumor named Dalton’s Lymphoma (DL), in the present study, we examined if intra-tumoral administration of MJ can cause tumor growth impedance. We also explored the associated molecular mechanisms governing cell survival, carbohydrate & lipid metabolism, chemo-potentiation, and angiogenesis. MJ administration to tumor-transplanted mice caused deceleration of tumor growth accompanying prolonged survival of the tumor-bearing mice. MJ-dependent tumor growth retardation was associated with the declined blood supply in tumor milieu, cell cycle arrest, augmented induction of apoptosis and necrosis, deregulated glucose and lipid metabolism, enhanced membrane fragility of tumor cells, and altered cytokine repertoire in the tumor microenvironment. MJ administration modulated molecular network implicating Hsp70, Bcl-2, TERT, p53, Cyt c, BAX, GLUT-1, HK 2, LDH A, PDK-1, HIF-1α, ROS, MCT-1, FASN, ACSS2, SREBP1c, VEGF, cytokine repertoire, and MDR1, involved in the regulation of cell survival, carbohydrate and fatty acid metabolism, pH homeostasis, and drug resistance. Thus, the present study unveils novel molecular mechanisms of the tumor growth decelerating action of MJ. Besides, this preclinical study also establishes the adjunct therapeutic potential of MJ. Hence, the present investigation will help to design novel anti-cancer therapeutic regimens for the treatment of hematological malignancies. |
format | Online Article Text |
id | pubmed-7947686 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-79476862021-03-12 Tumor Decelerating and Chemo-Potentiating Action of Methyl Jasmonate on a T Cell Lymphoma In Vivo: Role of Altered Regulation of Metabolism, Cell Survival, Drug Resistance, and Intratumoral Blood Flow Goel, Yugal Yadav, Saveg Pandey, Shrish Kumar Temre, Mithlesh Kumar Maurya, Babu Nandan Verma, Ashish Kumar, Ajay Singh, Sukh Mahendra Front Oncol Oncology Methyl jasmonate (MJ), a natural oxylipin, possesses a broad spectrum of antineoplastic potential in vitro. However, its tumor growth impeding and chemo-potentiating action has not been adequately investigated in vivo. Using a murine thymus-derived tumor named Dalton’s Lymphoma (DL), in the present study, we examined if intra-tumoral administration of MJ can cause tumor growth impedance. We also explored the associated molecular mechanisms governing cell survival, carbohydrate & lipid metabolism, chemo-potentiation, and angiogenesis. MJ administration to tumor-transplanted mice caused deceleration of tumor growth accompanying prolonged survival of the tumor-bearing mice. MJ-dependent tumor growth retardation was associated with the declined blood supply in tumor milieu, cell cycle arrest, augmented induction of apoptosis and necrosis, deregulated glucose and lipid metabolism, enhanced membrane fragility of tumor cells, and altered cytokine repertoire in the tumor microenvironment. MJ administration modulated molecular network implicating Hsp70, Bcl-2, TERT, p53, Cyt c, BAX, GLUT-1, HK 2, LDH A, PDK-1, HIF-1α, ROS, MCT-1, FASN, ACSS2, SREBP1c, VEGF, cytokine repertoire, and MDR1, involved in the regulation of cell survival, carbohydrate and fatty acid metabolism, pH homeostasis, and drug resistance. Thus, the present study unveils novel molecular mechanisms of the tumor growth decelerating action of MJ. Besides, this preclinical study also establishes the adjunct therapeutic potential of MJ. Hence, the present investigation will help to design novel anti-cancer therapeutic regimens for the treatment of hematological malignancies. Frontiers Media S.A. 2021-02-25 /pmc/articles/PMC7947686/ /pubmed/33718176 http://dx.doi.org/10.3389/fonc.2021.619351 Text en Copyright © 2021 Goel, Yadav, Pandey, Temre, Maurya, Verma, Kumar and Singh http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Oncology Goel, Yugal Yadav, Saveg Pandey, Shrish Kumar Temre, Mithlesh Kumar Maurya, Babu Nandan Verma, Ashish Kumar, Ajay Singh, Sukh Mahendra Tumor Decelerating and Chemo-Potentiating Action of Methyl Jasmonate on a T Cell Lymphoma In Vivo: Role of Altered Regulation of Metabolism, Cell Survival, Drug Resistance, and Intratumoral Blood Flow |
title | Tumor Decelerating and Chemo-Potentiating Action of Methyl Jasmonate on a T Cell Lymphoma In Vivo: Role of Altered Regulation of Metabolism, Cell Survival, Drug Resistance, and Intratumoral Blood Flow |
title_full | Tumor Decelerating and Chemo-Potentiating Action of Methyl Jasmonate on a T Cell Lymphoma In Vivo: Role of Altered Regulation of Metabolism, Cell Survival, Drug Resistance, and Intratumoral Blood Flow |
title_fullStr | Tumor Decelerating and Chemo-Potentiating Action of Methyl Jasmonate on a T Cell Lymphoma In Vivo: Role of Altered Regulation of Metabolism, Cell Survival, Drug Resistance, and Intratumoral Blood Flow |
title_full_unstemmed | Tumor Decelerating and Chemo-Potentiating Action of Methyl Jasmonate on a T Cell Lymphoma In Vivo: Role of Altered Regulation of Metabolism, Cell Survival, Drug Resistance, and Intratumoral Blood Flow |
title_short | Tumor Decelerating and Chemo-Potentiating Action of Methyl Jasmonate on a T Cell Lymphoma In Vivo: Role of Altered Regulation of Metabolism, Cell Survival, Drug Resistance, and Intratumoral Blood Flow |
title_sort | tumor decelerating and chemo-potentiating action of methyl jasmonate on a t cell lymphoma in vivo: role of altered regulation of metabolism, cell survival, drug resistance, and intratumoral blood flow |
topic | Oncology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7947686/ https://www.ncbi.nlm.nih.gov/pubmed/33718176 http://dx.doi.org/10.3389/fonc.2021.619351 |
work_keys_str_mv | AT goelyugal tumordeceleratingandchemopotentiatingactionofmethyljasmonateonatcelllymphomainvivoroleofalteredregulationofmetabolismcellsurvivaldrugresistanceandintratumoralbloodflow AT yadavsaveg tumordeceleratingandchemopotentiatingactionofmethyljasmonateonatcelllymphomainvivoroleofalteredregulationofmetabolismcellsurvivaldrugresistanceandintratumoralbloodflow AT pandeyshrishkumar tumordeceleratingandchemopotentiatingactionofmethyljasmonateonatcelllymphomainvivoroleofalteredregulationofmetabolismcellsurvivaldrugresistanceandintratumoralbloodflow AT temremithleshkumar tumordeceleratingandchemopotentiatingactionofmethyljasmonateonatcelllymphomainvivoroleofalteredregulationofmetabolismcellsurvivaldrugresistanceandintratumoralbloodflow AT mauryababunandan tumordeceleratingandchemopotentiatingactionofmethyljasmonateonatcelllymphomainvivoroleofalteredregulationofmetabolismcellsurvivaldrugresistanceandintratumoralbloodflow AT vermaashish tumordeceleratingandchemopotentiatingactionofmethyljasmonateonatcelllymphomainvivoroleofalteredregulationofmetabolismcellsurvivaldrugresistanceandintratumoralbloodflow AT kumarajay tumordeceleratingandchemopotentiatingactionofmethyljasmonateonatcelllymphomainvivoroleofalteredregulationofmetabolismcellsurvivaldrugresistanceandintratumoralbloodflow AT singhsukhmahendra tumordeceleratingandchemopotentiatingactionofmethyljasmonateonatcelllymphomainvivoroleofalteredregulationofmetabolismcellsurvivaldrugresistanceandintratumoralbloodflow |