The novel mechanism of anticancer effect on gastric cancer through inducing G0/G1 cell cycle arrest and caspase-dependent apoptosis in vitro and in vivo by methionine enkephalin

Xiaonan Wang,1 Jing Tian,1 Xue Jiao,2 Jin Geng,3 Reizhe Wang,4 Ning Liu,5 Xinghua Gao,6 Noreen Griffin,7 Yuan Gao,8 Fengping Shan1 1Department of Immunology, College of Basic Medical Science, China Medical University, Shenyang, China; 2Department of Translational Medicine, No. 4 Teaching Hospital, C...

Full description

Bibliographic Details
Main Authors: Wang X, Tian J, Jiao X, Geng J, Wang R, Liu N, Gao X, Griffin N, Gao Y, Shan F
Format: Article
Language:English
Published: Dove Medical Press 2018-10-01
Series:Cancer Management and Research
Subjects:
Online Access:https://www.dovepress.com/the-novel-mechanism-of-anticancer-effect-on-gastric-cancer-through-ind-peer-reviewed-article-CMAR
id doaj-7c3b703ad75444b8b77870f10e13bc44
record_format Article
spelling doaj-7c3b703ad75444b8b77870f10e13bc442020-11-24T21:18:00ZengDove Medical PressCancer Management and Research1179-13222018-10-01Volume 104773478741583The novel mechanism of anticancer effect on gastric cancer through inducing G0/G1 cell cycle arrest and caspase-dependent apoptosis in vitro and in vivo by methionine enkephalinWang XTian JJiao XGeng JWang RLiu NGao XGriffin NGao YShan FXiaonan Wang,1 Jing Tian,1 Xue Jiao,2 Jin Geng,3 Reizhe Wang,4 Ning Liu,5 Xinghua Gao,6 Noreen Griffin,7 Yuan Gao,8 Fengping Shan1 1Department of Immunology, College of Basic Medical Science, China Medical University, Shenyang, China; 2Department of Translational Medicine, No. 4 Teaching Hospital, China Medical University, Shenyang, China; 3Department of Ophthalmology, China Medical University, Shenyang, China; 4Department of Gynecology, No. 1 Teaching Hospital, China Medical University, Shenyang, China; 5Department of Gynecologic Oncology, Shengjing Hospital, 6Department of Dermatology, No. 1 Teaching Hospital, China Medical University, Shenyang, China; 7Immune Therapeutics, Inc., Orlando, FL, USA; 8Faculty of Information and Engineering, Northeastern University, Shenyang, China Background: Gastric cancer (GC) is the second cause of cancer-related deaths. Methionine enkephalin (MENK), an endogenous opioid peptide, has immunological and antitumor activity. Purpose: The aim of this work was to investigate whether MENK could exhibit activity against human GC in vitro and in vivo. Materials and methods: Human GC cells were treated with MENK. Cell viability, colony formation, cell morphology, cell cycle, and apoptosis were assessed. The effects of MENK on gene expression of OGFr, Bax, BCL-2, caspase-3, PARP, Ki67, cyclin D1, c-myc, survivin were quantifed by qRT-PCR. Western blot was used to analyze the effects of MENK on protein expression of OGFr, Bax, BCL-2, caspase-3, PARP. The anti-tumor activity of MENK in gastic carcinoma was also investigated with animal experiments. Results: The results indicate that MENK could significantly inhibit the growth of human GC cells SGC7901 and HGC27 in a concentration- and time-dependent manner, decrease the number of cell colonies, and arrest cell cycle in the G0/G1 phase by causing a decrease in Ki67, cyclin D1, and c-myc mRNA. Furthermore, MENK could induce tumor cell apoptosis associated with the upregulation of Bax, a corresponding downregulation of BCL-2 and survivin, and activation of caspase-3 and PARP. Moreover, MENK upregulated the expression of opioid receptors (OGFr) in SGC7901 and HGC27 cells. The interaction between MENK and OGFr in SGC7901 and HGC27 cells appears to be essential for the antitumor activity of MENK. Conclusion: We conclude that MENK may be a potential drug for the treatment of GC. Keywords: MENK, GC cells, OGFr, cell cycle, apoptosishttps://www.dovepress.com/the-novel-mechanism-of-anticancer-effect-on-gastric-cancer-through-ind-peer-reviewed-article-CMARMENKGC cellsOGFrcell cycleapoptosis
collection DOAJ
language English
format Article
sources DOAJ
author Wang X
Tian J
Jiao X
Geng J
Wang R
Liu N
Gao X
Griffin N
Gao Y
Shan F
spellingShingle Wang X
Tian J
Jiao X
Geng J
Wang R
Liu N
Gao X
Griffin N
Gao Y
Shan F
The novel mechanism of anticancer effect on gastric cancer through inducing G0/G1 cell cycle arrest and caspase-dependent apoptosis in vitro and in vivo by methionine enkephalin
Cancer Management and Research
MENK
GC cells
OGFr
cell cycle
apoptosis
author_facet Wang X
Tian J
Jiao X
Geng J
Wang R
Liu N
Gao X
Griffin N
Gao Y
Shan F
author_sort Wang X
title The novel mechanism of anticancer effect on gastric cancer through inducing G0/G1 cell cycle arrest and caspase-dependent apoptosis in vitro and in vivo by methionine enkephalin
title_short The novel mechanism of anticancer effect on gastric cancer through inducing G0/G1 cell cycle arrest and caspase-dependent apoptosis in vitro and in vivo by methionine enkephalin
title_full The novel mechanism of anticancer effect on gastric cancer through inducing G0/G1 cell cycle arrest and caspase-dependent apoptosis in vitro and in vivo by methionine enkephalin
title_fullStr The novel mechanism of anticancer effect on gastric cancer through inducing G0/G1 cell cycle arrest and caspase-dependent apoptosis in vitro and in vivo by methionine enkephalin
title_full_unstemmed The novel mechanism of anticancer effect on gastric cancer through inducing G0/G1 cell cycle arrest and caspase-dependent apoptosis in vitro and in vivo by methionine enkephalin
title_sort novel mechanism of anticancer effect on gastric cancer through inducing g0/g1 cell cycle arrest and caspase-dependent apoptosis in vitro and in vivo by methionine enkephalin
publisher Dove Medical Press
series Cancer Management and Research
issn 1179-1322
publishDate 2018-10-01
description Xiaonan Wang,1 Jing Tian,1 Xue Jiao,2 Jin Geng,3 Reizhe Wang,4 Ning Liu,5 Xinghua Gao,6 Noreen Griffin,7 Yuan Gao,8 Fengping Shan1 1Department of Immunology, College of Basic Medical Science, China Medical University, Shenyang, China; 2Department of Translational Medicine, No. 4 Teaching Hospital, China Medical University, Shenyang, China; 3Department of Ophthalmology, China Medical University, Shenyang, China; 4Department of Gynecology, No. 1 Teaching Hospital, China Medical University, Shenyang, China; 5Department of Gynecologic Oncology, Shengjing Hospital, 6Department of Dermatology, No. 1 Teaching Hospital, China Medical University, Shenyang, China; 7Immune Therapeutics, Inc., Orlando, FL, USA; 8Faculty of Information and Engineering, Northeastern University, Shenyang, China Background: Gastric cancer (GC) is the second cause of cancer-related deaths. Methionine enkephalin (MENK), an endogenous opioid peptide, has immunological and antitumor activity. Purpose: The aim of this work was to investigate whether MENK could exhibit activity against human GC in vitro and in vivo. Materials and methods: Human GC cells were treated with MENK. Cell viability, colony formation, cell morphology, cell cycle, and apoptosis were assessed. The effects of MENK on gene expression of OGFr, Bax, BCL-2, caspase-3, PARP, Ki67, cyclin D1, c-myc, survivin were quantifed by qRT-PCR. Western blot was used to analyze the effects of MENK on protein expression of OGFr, Bax, BCL-2, caspase-3, PARP. The anti-tumor activity of MENK in gastic carcinoma was also investigated with animal experiments. Results: The results indicate that MENK could significantly inhibit the growth of human GC cells SGC7901 and HGC27 in a concentration- and time-dependent manner, decrease the number of cell colonies, and arrest cell cycle in the G0/G1 phase by causing a decrease in Ki67, cyclin D1, and c-myc mRNA. Furthermore, MENK could induce tumor cell apoptosis associated with the upregulation of Bax, a corresponding downregulation of BCL-2 and survivin, and activation of caspase-3 and PARP. Moreover, MENK upregulated the expression of opioid receptors (OGFr) in SGC7901 and HGC27 cells. The interaction between MENK and OGFr in SGC7901 and HGC27 cells appears to be essential for the antitumor activity of MENK. Conclusion: We conclude that MENK may be a potential drug for the treatment of GC. Keywords: MENK, GC cells, OGFr, cell cycle, apoptosis
topic MENK
GC cells
OGFr
cell cycle
apoptosis
url https://www.dovepress.com/the-novel-mechanism-of-anticancer-effect-on-gastric-cancer-through-ind-peer-reviewed-article-CMAR
work_keys_str_mv AT wangx thenovelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT tianj thenovelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT jiaox thenovelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT gengj thenovelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT wangr thenovelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT liun thenovelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT gaox thenovelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT griffinn thenovelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT gaoy thenovelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT shanf thenovelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT wangx novelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT tianj novelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT jiaox novelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT gengj novelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT wangr novelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT liun novelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT gaox novelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT griffinn novelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT gaoy novelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
AT shanf novelmechanismofanticancereffectongastriccancerthroughinducingg0g1cellcyclearrestandcaspasedependentapoptosisinvitroandinvivobymethionineenkephalin
_version_ 1726010862276182016