Xiao-Yue Zhang, Yun-Shuang Yang, Lei Du, Ren Liu, Li-Dan Yang, Yun-Jing Zhang, Rong Zhang
{"title":"[Bushen Jiedu Recipe Protected Radiation Induced Hematopoietic Injury].","authors":"Xiao-Yue Zhang, Yun-Shuang Yang, Lei Du, Ren Liu, Li-Dan Yang, Yun-Jing Zhang, Rong Zhang","doi":"","DOIUrl":null,"url":null,"abstract":"<p><p>Objective To observe the protective effects of Bushen Jiedu Recipe (BJR) on radia- tion induced hematopoietic injury. Methods C57BL/10J mice TLR4 gene (TLR4 +/+) and knockout mice (TLR4 -/-) were randomly divided into 3 groups, the blank control group, the radiation model group, the BJR group. Sampling was respectively performed at day 1 , 14, and 30 after radiation. The general condi- tion of mice was observed. White blood cell (WBC) , red blood cell ( RBC) , and platelet ( PLT) were counted in each group. Thigh bone of mice was collected for bone marrow specimen. Bone marrow slice was prepared. Pathomorphological changes were observed under electron microscope. Results Com- pared with the blank control group, WBC, RBC, and PLT all decreased or showed a decreasing tendency after one day radiation. RBC and PLT significantly decreased after 14 days of radiation (P <0. 01 , P < 0. 05). Counts of WBC and RBC were higher in the TLR4 +/+ BJR group than in the rest 2 groups (P < 0. 01 , P <0. 05). No statistical difference in RBC or PLT between mice after 30 days of radiation and mice in the blank control group (P >0. 05). PLT count in the TLR4 +/+ BJR group was most approximate to the normal value. WBC count obviously increased, but still with statistical difference as compared with the blank control group (P <0.01). WBC count recovered most rapidly in the TLR4 +/+ BJR group. Results under light microscope showed the structure of bone marrow was injured to different degrees in all mice except those in the TLR4 +/+ BJR group. Conclusion BJR could attenuate radiation induced hematopoi- etic injury possibly through TLR4 signal pathway, thus playing significant radioprotective roles.</p>","PeriodicalId":10107,"journal":{"name":"中国中西医结合杂志","volume":"37 2","pages":"220-224"},"PeriodicalIF":0.0000,"publicationDate":"2017-02-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"中国中西医结合杂志","FirstCategoryId":"3","ListUrlMain":"","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Objective To observe the protective effects of Bushen Jiedu Recipe (BJR) on radia- tion induced hematopoietic injury. Methods C57BL/10J mice TLR4 gene (TLR4 +/+) and knockout mice (TLR4 -/-) were randomly divided into 3 groups, the blank control group, the radiation model group, the BJR group. Sampling was respectively performed at day 1 , 14, and 30 after radiation. The general condi- tion of mice was observed. White blood cell (WBC) , red blood cell ( RBC) , and platelet ( PLT) were counted in each group. Thigh bone of mice was collected for bone marrow specimen. Bone marrow slice was prepared. Pathomorphological changes were observed under electron microscope. Results Com- pared with the blank control group, WBC, RBC, and PLT all decreased or showed a decreasing tendency after one day radiation. RBC and PLT significantly decreased after 14 days of radiation (P <0. 01 , P < 0. 05). Counts of WBC and RBC were higher in the TLR4 +/+ BJR group than in the rest 2 groups (P < 0. 01 , P <0. 05). No statistical difference in RBC or PLT between mice after 30 days of radiation and mice in the blank control group (P >0. 05). PLT count in the TLR4 +/+ BJR group was most approximate to the normal value. WBC count obviously increased, but still with statistical difference as compared with the blank control group (P <0.01). WBC count recovered most rapidly in the TLR4 +/+ BJR group. Results under light microscope showed the structure of bone marrow was injured to different degrees in all mice except those in the TLR4 +/+ BJR group. Conclusion BJR could attenuate radiation induced hematopoi- etic injury possibly through TLR4 signal pathway, thus playing significant radioprotective roles.