Journal of Forensic Medicine ›› 2021, Vol. 37 ›› Issue (6): 796-805.DOI: 10.12116/j.issn.1004-5619.2021.310206
Special Issue: 合成毒品的法医毒理学研究
Previous Articles Next Articles
Wu-hua ZHANG(), Ming-long ZHANG, Wei-wei JING, Bing XIE, Hai-tao BI, Feng YU, Bin CONG, Chun-ling MA, Di WEN(
)
Received:
2021-02-05
Online:
2021-12-25
Published:
2021-12-28
Contact:
Di WEN
CLC Number:
Wu-hua ZHANG, Ming-long ZHANG, Wei-wei JING, Bing XIE, Hai-tao BI, Feng YU, Bin CONG, Chun-ling MA, Di WEN. Inhibitory Effect of CCK-8 on Methamphetamine-Induced Apoptosis[J]. Journal of Forensic Medicine, 2021, 37(6): 796-805.
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.fyxzz.cn/EN/10.12116/j.issn.1004-5619.2021.310206
组别 | 细胞凋亡率 |
---|---|
对照 | 8.48±0.46 |
1 mmol/L METH | 15.05±0.921) |
2 mmol/L METH | 17.06±1.731) |
Tab. 1 The apoptosis rate of SH-SY5Y cellstreated with different concentrations ofMETH detected by flow cytometry
组别 | 细胞凋亡率 |
---|---|
对照 | 8.48±0.46 |
1 mmol/L METH | 15.05±0.921) |
2 mmol/L METH | 17.06±1.731) |
组别 | Bax | Bcl-2 | cleaved caspase-3 | Bax/Bcl-2 |
---|---|---|---|---|
0 h | 1.00±0.00 | 1.00±0.00 | 1.00±0.00 | 1.00±0.00 |
6 h | 1.26±0.14 | 1.08±0.16 | 1.10±0.05 | 1.26±0.31 |
12 h | 1.38±0.091) | 0.99±0.14 | 1.41±0.081) | 1.47±0.27 |
18 h | 1.56±0.051) | 0.79±0.09 | 1.46±0.061) | 2.04±0.261) |
24 h | 1.54±0.161) | 0.75±0.03 | 1.26±0.011) | 2.04±0.171) |
Tab. 2 Expression of apoptosis-related proteinsinduced by METH in SH-SY5Y cells
组别 | Bax | Bcl-2 | cleaved caspase-3 | Bax/Bcl-2 |
---|---|---|---|---|
0 h | 1.00±0.00 | 1.00±0.00 | 1.00±0.00 | 1.00±0.00 |
6 h | 1.26±0.14 | 1.08±0.16 | 1.10±0.05 | 1.26±0.31 |
12 h | 1.38±0.091) | 0.99±0.14 | 1.41±0.081) | 1.47±0.27 |
18 h | 1.56±0.051) | 0.79±0.09 | 1.46±0.061) | 2.04±0.261) |
24 h | 1.54±0.161) | 0.75±0.03 | 1.26±0.011) | 2.04±0.171) |
组别 | 细胞凋亡率 |
---|---|
对照 | 8.13±0.70 |
METH | 14.18±0.40 |
0.01 μmol/L CCK-8+METH | 12.20±1.24 |
0.1 μmol/L CCK-8+METH | 10.56±0.151) |
1 μmol/L CCK-8+METH | 10.77±0.291) |
0.01 μmol/L CCK-8 | 5.76±0.73 |
0.1 μmol/L CCK-8 | 5.53±0.89 |
1 μmol/L CCK-8 | 5.95±0.84 |
Tab. 3 Effects of CCK-8 on the apoptosis rateinduced by METH in SH-SY5Y cellsdetected by flow cytometry
组别 | 细胞凋亡率 |
---|---|
对照 | 8.13±0.70 |
METH | 14.18±0.40 |
0.01 μmol/L CCK-8+METH | 12.20±1.24 |
0.1 μmol/L CCK-8+METH | 10.56±0.151) |
1 μmol/L CCK-8+METH | 10.77±0.291) |
0.01 μmol/L CCK-8 | 5.76±0.73 |
0.1 μmol/L CCK-8 | 5.53±0.89 |
1 μmol/L CCK-8 | 5.95±0.84 |
组别 | Bax | Bcl-2 | cleaved caspase-3 | Bax/Bcl-2 |
---|---|---|---|---|
对照 | 1.00±0.00 | 1.00±0.00 | 1.00±0.00 | 1.00±0.00 |
METH | 1.65±0.15 | 0.90±0.04 | 1.66±0.09 | 1.83±0.10 |
0.01 μmol/L CCK-8+METH | 1.46±0.08 | 1.16±0.13 | 1.33±0.101) | 1.31±0.221) |
0.1 μmol/L CCK-8+METH | 1.33±0.111) | 1.16±0.12 | 1.23±0.021) | 1.18±0.191) |
1 μmol/L CCK-8+METH | 1.10±0.081) | 1.29±0.131) | 1.07±0.041) | 0.86±0.081) |
Tab. 4 Effects of CCK-8 on the expression of apoptosis-related proteins induced by METH in SH-SY5Y cells
组别 | Bax | Bcl-2 | cleaved caspase-3 | Bax/Bcl-2 |
---|---|---|---|---|
对照 | 1.00±0.00 | 1.00±0.00 | 1.00±0.00 | 1.00±0.00 |
METH | 1.65±0.15 | 0.90±0.04 | 1.66±0.09 | 1.83±0.10 |
0.01 μmol/L CCK-8+METH | 1.46±0.08 | 1.16±0.13 | 1.33±0.101) | 1.31±0.221) |
0.1 μmol/L CCK-8+METH | 1.33±0.111) | 1.16±0.12 | 1.23±0.021) | 1.18±0.191) |
1 μmol/L CCK-8+METH | 1.10±0.081) | 1.29±0.131) | 1.07±0.041) | 0.86±0.081) |
蛋白 | HEK293-CCK1R | HEK293-CCK2R | ||||||
---|---|---|---|---|---|---|---|---|
对照组 | METH | CCK-8+METH | CCK-8 | 对照组 | METH | CCK-8+METH | CCK-8 | |
Bax | 1.00±0.00 | 1.65±0.08 | 1.59±0.07 | 0.94±0.02 | 1.00±0.00 | 1.67±0.13 | 1.18±0.041) | 1.11±0.13 |
Bcl-2 | 1.00±0.00 | 0.88±0.07 | 0.91±0.09 | 0.97±0.09 | 1.00±0.00 | 0.83±0.05 | 1.00±0.15 | 0.96±0.08 |
cleaved caspase-3 | 1.00±0.00 | 1.85±0.14 | 1.87±0.17 | 0.99±0.17 | 1.00±0.00 | 1.76±0.06 | 1.25±0.061) | 1.02±0.10 |
Bax/Bcl-2 | 1.00±0.00 | 1.92±0.23 | 1.80±0.24 | 0.99±0.11 | 1.00±0.00 | 2.01±0.15 | 1.23±0.151) | 1.15±0.04 |
Tab. 5 Effects of CCK-8 on the expression of apoptosis-related proteinsinduced by METH in HEK293-CCK1R and HEK293-CCK2R
蛋白 | HEK293-CCK1R | HEK293-CCK2R | ||||||
---|---|---|---|---|---|---|---|---|
对照组 | METH | CCK-8+METH | CCK-8 | 对照组 | METH | CCK-8+METH | CCK-8 | |
Bax | 1.00±0.00 | 1.65±0.08 | 1.59±0.07 | 0.94±0.02 | 1.00±0.00 | 1.67±0.13 | 1.18±0.041) | 1.11±0.13 |
Bcl-2 | 1.00±0.00 | 0.88±0.07 | 0.91±0.09 | 0.97±0.09 | 1.00±0.00 | 0.83±0.05 | 1.00±0.15 | 0.96±0.08 |
cleaved caspase-3 | 1.00±0.00 | 1.85±0.14 | 1.87±0.17 | 0.99±0.17 | 1.00±0.00 | 1.76±0.06 | 1.25±0.061) | 1.02±0.10 |
Bax/Bcl-2 | 1.00±0.00 | 1.92±0.23 | 1.80±0.24 | 0.99±0.11 | 1.00±0.00 | 2.01±0.15 | 1.23±0.151) | 1.15±0.04 |
组别 | 相对表达量 |
---|---|
对照 | 1.00±0.00 |
阴性对照 | 1.09±0.06 |
β-arrestin 2 siRNA-1 | 0.96±0.06 |
β-arrestin 2 siRNA-2 | 0.61±0.041) |
β-arrestin 2 siRNA-3 | 0.28±0.041)2) |
Tab. 6 Effects of siRNA on the expressionof β-arrestin 2 in SH-SY5Y cells
组别 | 相对表达量 |
---|---|
对照 | 1.00±0.00 |
阴性对照 | 1.09±0.06 |
β-arrestin 2 siRNA-1 | 0.96±0.06 |
β-arrestin 2 siRNA-2 | 0.61±0.041) |
β-arrestin 2 siRNA-3 | 0.28±0.041)2) |
组别 | Bax | Bcl-2 | cleaved caspase-3 | Bax/Bcl-2 |
---|---|---|---|---|
对照 | 1.00±0.00 | 1.00±0.00 | 1.00±0.00 | 1.00±0.00 |
METH | 1.81±0.041) | 0.92±0.04 | 1.80±0.071) | 1.98±0.131) |
CCK-8+METH | 1.79±0.091) | 0.89±0.04 | 1.70±0.081) | 2.02±0.021) |
CCK-8 | 1.07±0.02 | 1.07±0.11 | 0.91±0.05 | 1.02±0.09 |
Tab. 7 Effects of CCK-8 on the expression of apoptosis-related proteinsinduced by METH in β-arrestin 2 knockdown SH-SY5Y
组别 | Bax | Bcl-2 | cleaved caspase-3 | Bax/Bcl-2 |
---|---|---|---|---|
对照 | 1.00±0.00 | 1.00±0.00 | 1.00±0.00 | 1.00±0.00 |
METH | 1.81±0.041) | 0.92±0.04 | 1.80±0.071) | 1.98±0.131) |
CCK-8+METH | 1.79±0.091) | 0.89±0.04 | 1.70±0.081) | 2.02±0.021) |
CCK-8 | 1.07±0.02 | 1.07±0.11 | 0.91±0.05 | 1.02±0.09 |
1 | ROPEK N, AL-SERORI H, MIŠÍK M, et al. Methamphetamine (“crystal meth”) causes induction of DNA damage and chromosomal aberrations in human derived cells[J]. Food Chem Toxicol,2019,128:1-7. doi:10.1016/j.fct.2019.03.035. |
2 | BÜTTNER A. Review: The neuropathology of drug abuse[J]. Neuropathol Appl Neurobiol,2011,37(2):118-134. doi:10.1111/j.1365-2990.2010.01131.x. |
3 | WEN D, CONG B, MA C, et al. The effects of exogenous CCK-8 on the acquisition and expression of morphine-induced CPP[J]. Neurosci Lett,2012,510(1):24-28. doi:10.1016/j.neulet.2011.12.063. |
4 | 文迪,马春玲,丛斌,等. CCK-8与内源性阿片系统在吗啡依赖过程中的相互作用[J].中国药物依赖性杂志,2010,19(5):422-423. doi:10.13936/j.cnki.cjdd1992.2010.05.031. |
WEN D, MA C L, CONG B, et al. Interaction of CCK-8 and endogenous opioid system in opioid dependence[J]. Zhongguo Yaowuyilaixing Zazhi,2010,19(5):422-423. | |
5 | WEN D, ZANG G, SUN D, et al. Effects of CCK-8 on the reinstatement of morphine-induced CPP and expression of behavioral sensitization in rats[J]. Neuroscience,2013,238:230-241. doi:10.1016/j.neuroscience.2013.02.057. |
6 | WEN D, AN M, GOU H, et al. Cholecystokinin-8 inhibits methamphetamine-induced neurotoxicity via an anti-oxidative stress pathway[J]. Neurotoxicology,2016,57:31-38. doi:10.1016/j.neuro.2016.08.008. |
7 | SUN D L, QI Y X, YANG T, et al. Early oral nutrition improves postoperative ileus through the TRPA1/CCK1-R-mediated mast cell-nerve axis[J]. Ann Transl Med,2020,8(5):179. doi:10.21037/atm.2020.01.95. |
8 | YANG X, WANG Y, LI Q, et al. The main molecular mechanisms underlying methamphetamine- induced neurotoxicity and implications for pharmacological treatment[J]. Front Mol Neurosci,2018,11:186. doi:10.3389/fnmol.2018.00186. |
9 | LI S, NI Z, CONG B, et al. CCK-8 inhibits LPS-induced IL-1β production in pulmonary interstitial macrophages by modulating PKA, p38, and NF-κB pathway[J]. Shock,2007,27(6):678-686. doi:10.1097/shk.0b013e3180ze26dd. |
10 | 冯波,王蓉,盛树力. 神经退行性疾病研究中拟神经细胞模型:人神经母细胞瘤株SH-SY5Y的来源特性及应用[J].中国临床康复,2006,10(6):121-123. |
FENG B, WANG R, SHENG S L. Mimic model of nerve cells in the study of neurodegenerative disease: Origin, characteristics and application of human neuroblastoma cell line SH-SY5Y[J]. Zhongguo Linchuang Kangfu,2006,10(6):121-123. | |
11 | HU X L, OLSSON T, JOHANSSON I M, et al. Dynamic changes of the anti- and pro-apoptotic proteins Bcl-w, Bcl-2, and Bax with Smac/Diablo mitochondrial release after photothrombotic ring stroke in rats[J]. Eur J Neurosci,2004,20(5):1177-1188. doi:10.1111/j.1460-9568.2004.03554.x. |
12 | CHOUDHARY G S, AL-HARBI S, ALMASAN A. Caspase-3 activation is a critical determinant of genotoxic stress-induced apoptosis[J]. Methods Mol Biol,2015,1219:1-9. doi:10.1007/978-1-4939-1661-0_1. |
13 | WISESSMITH W, PHANSUWAN-PUJITO P, GOVI-TRAPONG P, et al. Melatonin reduces induction of Bax, caspase and cell death in methamphetamine-treated human neuroblastoma SH-SY5Y cultured cells[J]. J Pineal Res,2009,46(4):433-440. doi:10.1111/j.1600-079X.2009.00680.x. |
14 | TOSCANO E C B, VIEIRA É L M, PORTELA A C D C, et al. Bcl-2/Bax ratio increase does not prevent apoptosis of glia and granular neurons in patients with temporal lobe epilepsy[J]. Neuropatholo-gy,2019,39(5):348-357. doi:10.1111/neup.12592. |
15 | YE G, TAO L, MA C, et al. Influences of CCK-8 on expressions of apoptosis-related genes in prefrontal cortex neurons of morphine-relapse rats[J]. Neurosci Lett,2016,631:115-121. doi:10.1016/j.neulet.2016.08.028. |
16 | WEN D, MA C L, ZHANG Y J, et al. Cholecystokinin receptor-1 mediates the inhibitory effects of exogenous cholecystokinin octapeptide on cellular morphine dependence[J]. BMC Neurosci,2012,13:63. doi:10.1186/1471-2202-13-63. |
17 | HÖKFELT T, MORINO P, VERGE V, et al. CCK in cerebral cortex and at the spinal level[J]. Ann N Y Acad Sci,1994,713:157-163. doi:10.1111/j.1749-6632.1994.tb44062.x. |
18 | VÁZQUEZ-LEÓN P, CAMPOS-RODRÍGUEZ C, GONZALEZ-PLIEGO C, et al. Differential effects of cholecystokinin (CCK-8) microinjection into the ventrolateral and dorsolateral periaqueductal gray on anxiety models in Wistar rats[J]. Horm Behav,2018,106:105-111. doi:10.1016/j.yhbeh.2018.10.003. |
19 | GOU H, WEN D, MA C, et al. Protective effects of cholecystokinin-8 on methamphetamine-induced behavioral changes and dopaminergic neurodegeneration in mice[J]. Behav Brain Res,2015,283:87-96. doi:10.1016/j.bbr.2015.01.028. |
20 | KAUFMANN A, RÖSSLER O G, THIEL G. Expression of the transcription factor Egr-1 in pancreatic acinar cells following stimulation of cholecystokinin or Galphaq-coupled designer receptors[J]. Cell Physiol Biochem,2014,33(5):1411-1425. doi:10.1159/000358707. |
21 | LOONAM T M, NOAILLES P A H, YU J, et al. Substance P and cholecystokinin regulate neurochemical responses to cocaine and methamphetamine in the striatum[J]. Life Sci,2003,73(6):727-739. doi:10.1016/s0024-3205(03)00393-x. |
22 | WANG H M, DONG J H, LI Q, et al. A stress response pathway in mice upregulates somatostatin level and transcription in pancreatic delta cells through Gs and β-arrestin 1[J]. Diabetologia,2014,57(9):1899-1910. doi:10.1007/s00125-014-3290-0. |
23 | YIN W, LI Z, JIN M, et al. A complex structure of arrestin-2 bound to a G protein-coupled receptor[J]. Cell Res,2019,29(12):971-983. doi:10.1038/s41422-019-0256-2. |
[1] | Cui-mei LIU, Wei JIA, Chun-hui SONG, Zhen-hua QIAN, Zhen-dong HUA, Yue-meng CHEN. Qualitative and Quantitative Analysis of Five Indoles or Indazole Amide Synthetic Cannabinoids in Suspected E-Cigarette Oil by GC-MS [J]. Journal of Forensic Medicine, 2023, 39(5): 457-464. |
[2] | Wen-ya ZHAI, Li-na WU, Shuo YANG, Bao-hua SHEN, Yan SHI. Detection and Analysis of Blood Dexmedetomidine in Drug-Facilitated Cases [J]. Journal of Forensic Medicine, 2023, 39(5): 452-456. |
[3] | Wu LONG, Peng-fei QU, Lin MA, Rui WANG, Yan-mei XI, Yu-hua LI, Sheng-jie NIE, Ting DUAN, Jin-liang DU, Xue TANG, Jing-feng ZHAO, Pu-ping LEI, Yue-bing WANG. Cytotoxicity of 4 Wild Mushrooms in a Case of Yunnan Sudden Unexplained Death [J]. Journal of Forensic Medicine, 2023, 39(2): 121-128. |
[4] | Ting-ting ZHANG, Yu HUANG, Xue-jun ZHANG, Jie CHEN, Zhen-dong HUA. Structure Analysis of the Interfering Substance N-methyl-2-phenylpropan-1-amine of Methamphetamine in Wastewater [J]. Journal of Forensic Medicine, 2022, 38(6): 726-732. |
[5] | Long-rui ZHAO, Jian-bo ZHANG, Wei HAN, Li ZHU, Teng CHEN, Fang-lin GUAN. Application Prospect of Integrative Omics in Forensic Identification of Methamphetamine-Associated Psychosis [J]. Journal of Forensic Medicine, 2022, 38(5): 650-656. |
[6] | Tai-feng JIAO, Ya-qing LI, Gang KANG, Shen-shu CHEN, Liang-hong CHENG. Detection of Synthetic Cannabinoid CUMYL-PEGACLONE in E-Cigarette Oil and Hair [J]. Journal of Forensic Medicine, 2022, 38(5): 595-600. |
[7] | Li-ru DONG, Jun-bo LIAN, Shuang-jie HUO, Dan LUO, Hu YANG, Xu-dong SONG, Xiao-jing ZHANG, Bin CONG. Effects of Chronic Restraint Stress on Apoptosis of Amygdala Cells in Rats [J]. Journal of Forensic Medicine, 2022, 38(4): 459-467. |
[8] | Ping XIANG, Ning-guo LIU, Bao-hua SHEN, Huo-sheng QIANG, Min SHEN. Strategies for Collection and Analysis of Samples in Simple Asphyxiant Gas Acute Poisoning Death Cases [J]. Journal of Forensic Medicine, 2022, 38(4): 507-514. |
[9] | Liu YANG, Ping XIANG, Hong-xiao DENG, Huo-sheng QIANG, Yong-hui DANG, Yan SHI, Bao-hua SHEN. Forensic Analysis of 9 Poisoning Death Cases Caused by Oral Administration of Diphenidol [J]. Journal of Forensic Medicine, 2022, 38(4): 495-499. |
[10] | Xiu-ying YAN, Ping XIANG, Zhi-guo YU, Hui YAN. Application of Metabonomics in Substance Abuse Toxicology Research [J]. Journal of Forensic Medicine, 2022, 38(3): 400-407. |
[11] | Shuang-ying HU, Xian-guo FU, Ming ZHANG, Lian-jun CAO, Reheman AIKEBAIER. Detection of Phosphatidylethanol in Whole Blood by UPLC-MS/MS [J]. Journal of Forensic Medicine, 2022, 38(3): 367-373. |
[12] | Hui YAN, Meng DU, Zheng QIAO, Ping XIANG, Bao-hua SHEN, Min SHEN, Wei LIU. Analysis of the Distribution of Total Phosphine and the Characteristics of Phosphine Poisoning in 29 Victims [J]. Journal of Forensic Medicine, 2022, 38(2): 254-257. |
[13] | Shi-jun HONG, Bao-yu SHEN, Rong-ji SUN, Gen-meng YANG, Chun-mei DUAN, Qian-yun NIE, Cong-bin ZHANG, Wen-juan DONG, Hao YU, Shang WANG, Peng-liang LIU, Pin-yuan WEN, Li-hua LI. Current Situation of Methamphetamine Abuse and Related Research Progress [J]. Journal of Forensic Medicine, 2021, 37(6): 763-775. |
[14] | Cui ZHANG, Xu ZHAO, Hui-jun WANG, Xia YUE. Research Progress on the Omics of Methamphetamine Toxic Damage and Addiction [J]. Journal of Forensic Medicine, 2021, 37(6): 776-787. |
[15] | Shi-qiu MENG, Jie SHI. Abuse of Pharmaceutical Drugs and Its Prevention [J]. Journal of Forensic Medicine, 2021, 37(6): 788-795. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||