Chinese Medical E-ournals Database

Chinese Journal of Obstetrics & Gynecology and Pediatrics(Electronic Edition) ›› 2006, Vol. 02 ›› Issue (04): 206 -209. doi: 10.3877/cma.j.issn.1673-5250.2006.04.108

Original Article

Study on the therapeutic effect of high dose inosine to hypoxi-schemic brain damage in neonatal rats

Hong LUAN, Bin-chang GAO, Qin LI   

  1. Department of Pediatrics, Affiliated Hiser Hospital of Medical College, Qingdao University.Qingdao, 266033, China
  • Published:2006-07-21
Objective

To explore the therapeutic effect of high dose inosine to hypoxic-ischemic brain damage(HIBD)in neonatal rats; and provide some evidences for wide clinical usage.

Methods

54 neonatal rats aged 1 week were randomly divided into sham, control and inosine group.HIBD models were made.The rats in the inosine group began injecting 0.1 % inosine(0.05 mg/g), twice a day; and the rats in the sham and control group saline solution with the same dose.The samples were made at the given time; and the levels of water, calcium and cell apoptosis in brain were investigated.

Results

①The levels of wate at 3 d, 5 d in the control group, and at 5 d in the inosine group were higher than that in the sham group(P<0.05).As compared with the control group at the given time, the levels in the inosine group at 3 d and 5 d were all significantly decreased(P<0.05).② The contents of calcium in brain tissues peaked at 24 h, and then gradually decreased.The contents at 24 h, 3 d, 5 d in the control group and 24 h, 3 d in the inosine group were all significantly increased in comparison with the sham group(P<0.05).As compared with the control group at the given time, the contents at 24 h, 3 d, 5 d in the inosine group were all significantly decreased(P<0.05).③ The rates of brain cell apoptosis in the control and inosine group were all gradually increased(P<0.05).The rates in the control and inosine group at every given time were all significantly increased(P<0.05).The rates in the inosine group were all lower than that in the control group(P<0.05).

Conclusion

Inosine could remarkably protect cerebral tissue against HIBD.

1 周丛乐,宋琳琳.缺氧缺血性脑病.见:金汉珍,黄德珉,官希吉等主编.实用新生儿学.第3版.北京:人民卫生出版社,2002,762-772.
2 Litsky ML,Hohl CM,Lucas JH,et al.Inosine and guanosine preserve neuronal and glial cell viability in mouse spinal cord cultures during chemical hypoxia.Brain Res,1999,821(2): 426-432.
3 Cosi C, Cavalieri E, Carcererid P,et al.Effects of kainic acid lesioning on poly(ADP-ribose)polymerase(PARP)activity in the rat striatum in vivo.Amino Acids, 2000, 19(1):229-237.
4 Virag L, Szabo C.Purines inhibit poly(ADP-ribose)polymerase activation and modulate oxidant- induced cell death.FASEB J, 2001,15(1):99-107.
5 Benowitz LI, Goldberg DE, Madsen JR.Inosine stimulates extensive axon collateral growth in the rat corticospinal tract after injury.Proc Natl Acad Sci USA, 1999,96:13486-13490.
6 Huan SE, Segeleon JE, Trapp VL, et al.Inosine mediates the protective effect of adenosine in rat astrocyte cultures subjected to combined glucose-oxygen deprivation.Neurochem,1996,67(5): 2051-2059.
7 Wu MM, You SW, Hou B,et al.Effects of inosine on axonal regeneration of axotomized retinal ganglion cells in adult rats.Neurosci Lett, 2003 Apr 24,341(1):84-86.
8 Shi M,You SW,Meng JH,et al.Direct protection of inosine on PC12 cells against zinc-induced injury.Neuroreport,2002,13(4):477-479.
9 Benowitz LI,Goldberg DE,Irwin N.Inosine stimulates axon growth in vitro and in the adult CNS.Prog Brain Res, 2002,137:389-399.
10 冯国栋,游思维,鞠躬.肌苷对海人藻酸引起纹状体损伤的保护作用.第四军医大学学报,2003,24(20):1864-1866.
11 Sweeney MI.Neuroprotective effects of adenosine in cerebral ischemia:window of opportunity.Neurosci Biobehav Rev,1997,21:207-217.
12 Benowitz LI,Jing Y,Tabibiazar R,et al.Axon outgrowth is regulated by an intracellular purine-sensitive mechanism in retinal ganglion cells.J Biol Chem, 1998,273:29626-29634.
13 Imura T,Shimohama S.Opposing effects of adenosine on the survival of glial cells exposed to chemical ischemia.J Neurosci Res, 2000,62:539-546.
14 景筠,Ninal,Lary I, et al.肌苷调节视网膜节细胞轴突再生.眼科研究,2000, 18(3):221-223.
15 刘豪,李琴,毕明俊等.肌苷对大鼠脑缺血再灌注后钙调神经磷酸酶和环氧合酶-2表达的影响.中国康复医学杂志,2004,19(11):839-842.
[1] Lin LIU, Yan-hui CHEN, Da-guang CHEN. Effects of early intervention on electroencephalogram and surviving neurons of infant rats with brain damage[J]. Chinese Journal of Obstetrics & Gynecology and Pediatrics(Electronic Edition), 2007, 03(02): 91-f11.
[2] Qian ZHOU, Li LIU, Ya-wei HE, Shi-ting FU, Ning-fang ZHANG, Xiao-bin WEN. The rehabilitative effects of medical massage techniques to promote the recovery of hypoxic-ischemic brain damage due to perinatal period[J]. Chinese Journal of Obstetrics & Gynecology and Pediatrics(Electronic Edition), 2006, 02(04): 195-197.
[3] Haohui Deng, Min Xu, Xiaoqiang Li, Chunliang Lei. Correlation of inosine triphosphate pyrophosphatase single nucleotide polymorphism and ribavirin-related anemia in patients with chronic hepatitis C in Guangzhou[J]. Chinese Journal of Experimental and Clinical Infectious Diseases(Electronic Edition), 2017, 11(02): 168-171.
[4] Bao-jun LV, Hong-yu ZHANG, Xiao-hong WANG, Xin-min GOU. Expression of TLR4 and its relationship with cell apoptosis and proliferation in breast cancer[J]. Chinese Archives of General Surgery(Electronic Edition), 2011, 05(03): 211-213.
[5] Shuoru Liu, Gongwei Wang, Bin Zhang, Shuhao Li, Cheng Hu. Oncolytic virus M1 activates endoplasmic reticulum stress pathway to induce apoptosis of prostate cancer cells[J]. Chinese Journal of Endourology(Electronic Edition), 2023, 17(04): 388-393.
[6] Junfu Zhang, Haiyun Xiong, Jianli Duan, Lujing Li, Yang Kang, Jun Pang. Construction and in vitro antitumor effect on prostate cancer of phenylalanine-based poly(ester amide)snanoparticles drug delivery system[J]. Chinese Journal of Endourology(Electronic Edition), 2019, 13(04): 221-224.
[7] Rui Duan, Faguang Jin. TGF-1/Smad2 signal pathway being involved in apoptosis induced by seawater drowning-induced acute lung injury[J]. Chinese Journal of Lung Diseases(Electronic Edition), 2020, 13(02): 154-158.
[8] Wangping Li, Lijie Ma, Lei Pan, Faguang Jin. Mechanism of resveratoral inducing apoptosis in human small cell lung cancer H446 cells[J]. Chinese Journal of Lung Diseases(Electronic Edition), 2019, 12(01): 15-23.
[9] Meilin Li, Peng Gu. Effects of down-regulation of stormal interaction molecule 1 on cell cycle and apoptosis of pancreatic cancer cell line SW1990[J]. Chinese Journal of Cell and Stem Cell(Electronic Edition), 2017, 07(05): 265-270.
[10] Mingming Guo, Jianghui Liu, Ruibin Cai, Jing Wang, Bin Chen. Protein kinase C-epsilon gene silenced by siRNA inhibits the development of cholangiocellular carcinoma and its mechanism[J]. Chinese Journal of Hepatic Surgery(Electronic Edition), 2014, 03(06): 380-383.
[11] Ziyan Zhao, Yi Ding, Jianmin Ma. Research progress of the effect of estrogen deficiency on the lacrimal gland[J]. Chinese Journal of Ophthalmologic Medicine(Electronic Edition), 2021, 11(04): 252-256.
[12] Yao Yao, Xinming Yang, Yakun Du, Ning Zhu, Yanlin Yin, Yongli Jia, Ying Zhang, Peinan Zhang, Ye Tian, Lixing Chen. Comparison of triptolide and methylprednisolone in promoting the repair of spinal cord injury by regulating autophagy and apoptosis[J]. Chinese Journal of Neurotraumatic Surgery(Electronic Edition), 2022, 08(03): 132-140.
[13] Huiyan Zhang, Bing Ji. Research progress on the relationship between CXCL12 and nerve cell apoptosis after traumatic brain injury[J]. Chinese Journal of Neurotraumatic Surgery(Electronic Edition), 2019, 05(03): 179-181.
[14] Ke Zhang, Jing He. Correlation analysis of abnormal fetal heart monitoring,umbilical cord blood pH and newborns hypoxic-ischemic encephalopathy[J]. Chinese Journal of Obstetric Emergency(Electronic Edition), 2020, 09(03): 145-149.
[15] Tian Qiu, Miaojuan Yang, Bo Hu, Yi Guo, Yitao He. Research progress on the mechanism of mild hypothermia therapy for cerebral infarction[J]. Chinese Journal of Cerebrovascular Diseases(Electronic Edition), 2023, 17(05): 518-521.
Viewed
Full text


Abstract