2,5-Dihydroxyacetophenone Induces Apoptosis of Multiple Myeloma Cells by Regulating the MAPK Activation Pathway

10.3390/molecules22071157

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Main Authors: Ko, J.-H, Lee, J.H, Jung, S.H, Lee, S.-G, Chinnathambi, A, Alharbi, S.A, Yang, W.M, Um, J.-Y, Sethi, G, Ahn, K.S
Other Authors: DEPT OF PHARMACOLOGY
Format: Article
Published: 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/179193
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spelling sg-nus-scholar.10635-1791932023-10-31T22:05:05Z 2,5-Dihydroxyacetophenone Induces Apoptosis of Multiple Myeloma Cells by Regulating the MAPK Activation Pathway Ko, J.-H Lee, J.H Jung, S.H Lee, S.-G Chinnathambi, A Alharbi, S.A Yang, W.M Um, J.-Y Sethi, G Ahn, K.S DEPT OF PHARMACOLOGY acetophenone derivative antineoplastic agent mitogen activated protein kinase apoptosis cell proliferation drug effects gene expression human M phase cell cycle checkpoint MAPK signaling metabolism multiple myeloma pathology tumor cell line Acetophenones Antineoplastic Agents Apoptosis Cell Line, Tumor Cell Proliferation Gene Expression Humans M Phase Cell Cycle Checkpoints MAP Kinase Signaling System Mitogen-Activated Protein Kinases Multiple Myeloma 10.3390/molecules22071157 Molecules (Basel, Switzerland) 22 7 2020-10-23T02:27:14Z 2020-10-23T02:27:14Z 2017 Article Ko, J.-H, Lee, J.H, Jung, S.H, Lee, S.-G, Chinnathambi, A, Alharbi, S.A, Yang, W.M, Um, J.-Y, Sethi, G, Ahn, K.S (2017). 2,5-Dihydroxyacetophenone Induces Apoptosis of Multiple Myeloma Cells by Regulating the MAPK Activation Pathway. Molecules (Basel, Switzerland) 22 (7). ScholarBank@NUS Repository. https://doi.org/10.3390/molecules22071157 14203049 https://scholarbank.nus.edu.sg/handle/10635/179193 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Unpaywall 20201031
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic acetophenone derivative
antineoplastic agent
mitogen activated protein kinase
apoptosis
cell proliferation
drug effects
gene expression
human
M phase cell cycle checkpoint
MAPK signaling
metabolism
multiple myeloma
pathology
tumor cell line
Acetophenones
Antineoplastic Agents
Apoptosis
Cell Line, Tumor
Cell Proliferation
Gene Expression
Humans
M Phase Cell Cycle Checkpoints
MAP Kinase Signaling System
Mitogen-Activated Protein Kinases
Multiple Myeloma
spellingShingle acetophenone derivative
antineoplastic agent
mitogen activated protein kinase
apoptosis
cell proliferation
drug effects
gene expression
human
M phase cell cycle checkpoint
MAPK signaling
metabolism
multiple myeloma
pathology
tumor cell line
Acetophenones
Antineoplastic Agents
Apoptosis
Cell Line, Tumor
Cell Proliferation
Gene Expression
Humans
M Phase Cell Cycle Checkpoints
MAP Kinase Signaling System
Mitogen-Activated Protein Kinases
Multiple Myeloma
Ko, J.-H
Lee, J.H
Jung, S.H
Lee, S.-G
Chinnathambi, A
Alharbi, S.A
Yang, W.M
Um, J.-Y
Sethi, G
Ahn, K.S
2,5-Dihydroxyacetophenone Induces Apoptosis of Multiple Myeloma Cells by Regulating the MAPK Activation Pathway
description 10.3390/molecules22071157
author2 DEPT OF PHARMACOLOGY
author_facet DEPT OF PHARMACOLOGY
Ko, J.-H
Lee, J.H
Jung, S.H
Lee, S.-G
Chinnathambi, A
Alharbi, S.A
Yang, W.M
Um, J.-Y
Sethi, G
Ahn, K.S
format Article
author Ko, J.-H
Lee, J.H
Jung, S.H
Lee, S.-G
Chinnathambi, A
Alharbi, S.A
Yang, W.M
Um, J.-Y
Sethi, G
Ahn, K.S
author_sort Ko, J.-H
title 2,5-Dihydroxyacetophenone Induces Apoptosis of Multiple Myeloma Cells by Regulating the MAPK Activation Pathway
title_short 2,5-Dihydroxyacetophenone Induces Apoptosis of Multiple Myeloma Cells by Regulating the MAPK Activation Pathway
title_full 2,5-Dihydroxyacetophenone Induces Apoptosis of Multiple Myeloma Cells by Regulating the MAPK Activation Pathway
title_fullStr 2,5-Dihydroxyacetophenone Induces Apoptosis of Multiple Myeloma Cells by Regulating the MAPK Activation Pathway
title_full_unstemmed 2,5-Dihydroxyacetophenone Induces Apoptosis of Multiple Myeloma Cells by Regulating the MAPK Activation Pathway
title_sort 2,5-dihydroxyacetophenone induces apoptosis of multiple myeloma cells by regulating the mapk activation pathway
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/179193
_version_ 1781792317751951360