2.Experimental study on the damage to long bones of swine limbs in vivo by radiofrequency ablation and subsequent repair
Jinzhou CHEN ; Wei ZHAO ; Jianqiang HUANG ; Jihong HU ; Zhongyi QIAN
Chinese Journal of Radiology 2014;48(8):690-694
Objective To observe destruction of tibias created in ablating of the swine limbs in vivo with radiofrequency,the influence on the surrounding organization structure,and the repair process of lesions for treating bony tumor.Methods There were eight pigs included in the first part of the experiment.RFA was performed under DSA guidance at the same position of the diaphysis and the upper end of their right tibias in hind leg during anesthesia,then X-ray and CT examinations were performed at different time points after RFA,and subsequently the pigs were executed by depth anesthesia.Control specimens,specimens of the immediate time,the third day,the tenth day,the twenty-fourth day,the fifth week,the eighth week,the twelfth week after RFA were obtained at the diaphysis and the upper end of their tibias.X-ray and CT examinations of these specimens were performed.These specimens were observed both by naked eye and under microscope.The observation included the general state of the laboratory animals after RFA,the configuration of RFA lesions in the gross specimen and the corresponding histologic changes,the boundary of necrosis in RFA lesions and the corresponding boundary of the gross specimen.There were sixteen pigs in the second part of the experiment.RFA was performed at the same position of the diaphysis and the upper end of their right and left tibias in hind leg during anesthesia,and the pigs were immediately executed by depth anesthesia after RFA to get thirty-two capitulum specimens and thirty-two diaphysis specimens.The scope of necrotic tissue in RFA lesions was observed and measured.The border and scope of necrotic tissue in RFA lesions were observed.Major axis,minor axis,and necrosis volume were measured.The independent sample t test was employed to compare the volume of necrotic tissues between capitulum and diaphysis.The one sample t test was employed to analyze volume of necrotic tissue among capitulum,diaphysis and the standard data.Results No accidental death of the animals occured in the first experimental.The loss of neurological function of the hind leg did not happen.Coagulation necrosis in cancellous bone of capitulum and marrow of diaphysis lesions created in ablating was observed.On 3th to 10th day after RFA,inflammatory cells infiltrated in hemorrhage tape and then granulation tissues formed.Granulation tissues replaced necrotic bone gradually from outside to inside.Low density band was showed on images of X-ray and CT examination in the specimen of 10th day,and it extended inward.The immature bone was observed in fibrous tissue sited at the edge of lesions,which appeared as sclerosis on X-ray and CT examination.The scope of necrotic tissue in RFA lesions included coagulation necrosis and hemorrhagic zone of its periphery.The dead bone and secondary pathological fracture appeared in two of eight pigs.RFA hardly damaged compact bone in the diaphysis,but the damage of soft tissue was observed outside the compact bone.In the second experiment,the shape of lesions in cancellous bone of capitulum was ellipsoid,with long axis of(2.59±0.21) cm,minor axis of(2.15±0.10) cm,and volume of(6.34±0.27) cm3.The shape of lesions in the diaphysis of tibias was ellipsoid,with long axis of(4.53±0.20) cm,minor axis of(1.71 ±0.22) cm,and volume of(7.14±0.36) cm3.There was significantly difference of necrosis volume between the capitulum and diaphysis lesions,(t=2.011,P<0.05).The virtual necrosis volume of the capitulum and diaphysis lesions was significantly different from the presumed volume with RFA instrument(t=-613.371,-295.878,P<0.01).Conclusion Cancellous bone of the capitulum can be damaged by RFA,but the compact bone of the diaphysis can hardly be damaged.The intact compact bone can be helpful to protect the surrounding soft tissues.X-ray and CT examination can be used in the evaluation of curative effect of RFA for treating bone tumors.Pathological fracture of the diaphysis may appear after RFA.
3.Protective effect of okra seed oil on acute gastric ulcer in mice
Dandan WEI ; Sheng GUO ; Shulan SU ; Dawei QIAN ; Zhenhua ZHU ; Erxin SHANG ; Zhongyi GENG ; Jin'ao DUAN ;
Journal of China Pharmaceutical University 2017;48(3):334-342
To investigate the protective effect of the seed oil of Abelmoschus esculentus on gastric ulcer,two acute gastric ulcer mice models were established by intragastric administration of aspirin or absolute ethanol,respectively.Clinical index of ulcer area,ulcer index,gastric volume,gastric pH value,free acidity,total acidity,and histopathological assessment were measured to evaluate the injuries of gastric ulcer and the protective effect of okra seed oil In order to comprehensively uncover the possible underlying mechanism,a series of biochemical assays were also performed,including serum TNF-α,IL-6,IL-10 and Tbil,NO,MPO and SOD in the stomach included.Moreover,the ALT,AST and ALP in the liver of mice were also tested to evaluate the possible hepatic toxicity of the seed oil.The results indicated that the seed oil of A.esculentus exerted protective effect in ethanol-induced gastric ulcer mice by reducing the ulcer area and ulcer index,declining the free and total acidity,and increasing the pH value of gastric content.Histopathological observation showed the gastric mucosa of the acute gastric ulcer mice induced by alcohol was incomplete and severely damaged,with submucosal edema and nuclear pyknosis,as well as glandular structure disappearing,compared with that of normal mice.What's more,a number of inflammatory cell infiltration occured in the gastric mucosa of alcohol-model mice,with messes of neutrophils,lymphocytes,eosinophils and plasma cells.Okra seed oil could improve the damaged structure of the gastric mucosa and gland caused by ethanol,but could not ameliorate the condensation of nucleus and infiltration of inflammatory cells.Biochemical analysis revealed that the seed oil of A.esculentus could counteract the damage induced by ethanol via decreasing Tbil and TNF-α in serum,decreasing NO and myeloperoxidase,and increasing SOD in stomach.Meanwhile,okra seed oil exhibited protective effect in aspirin-induced gastric ulcer mice by increasing the gastric content pH,and reducing free and total acidity.Compared with the control group,the gastric mucosa of aspirin-model group showed multifocal coagulation necrosis,sheet edema and infiltration of inflammatory cells by histopathological assessment.Compared with the aspirin-model group,the soybean oil group and okra seed oil group could ameliorate the inflammatory cell infiltration.Biochemical analysis revealed that okra seed oil could counteract the injury induced by aspirin via decreasing TNF-α and IL-6,and increasing IL-1O in serum,decreasing NO and MPO and increasing SOD in stomach.In a word,the okra seed oil exerted protective effect on acute gastric ulcer by anti-inflammation,anti-oxidation and hepatocyte protection.The okra seed oil deserves further development and utilization.
4.Development history of Chinese pediatric critical care medicine.
Suyun QIAN ; Feng XU ; Zhongyi LU ; Xiangwen ZHAO ; Yimin ZHU
Chinese Journal of Pediatrics 2015;53(2):93-94
China
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Critical Care
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trends
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Pediatrics
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trends
5.Effects and mechanisms of Periplaneta americana extract sticky sugar amino acid on a rat model of hepatic fibrosis
Yihui CHEN ; Dehong MA ; Wu LI ; Lihui LIU ; Hongtu WANG ; Lu ZHANG ; Xuemei XU ; Huifen RAN ; Zhongyi QIAN
Chinese Journal of Tissue Engineering Research 2016;20(27):4055-4060
BACKGROUND:Hepatic fibrosis in chronic liver disease can be reversed. Studies have shown that Periplaneta americana extract has anti-fibrosis effect, and has protective effect on the experimental hepatic fibrosis rats.
OBJECTIVE:To observe the effect of Periplaneta americana extract sticky sugar amino acid on hepatic fibrosis, and to primarily explore the mechanism of sticky sugar amino acid against hepatic fibrosis.
METHODS:Rat models of immune hepatic fibrosis were induced by pig serum and intragastricaly administered 0.5, 0.25, 0.10 g/kg sticky sugar amino acid. Four indexes of hepatic fibrosis were detected by radioimmunoassay. Immunohistochemical staining wasused to measure transforming growth factor beta 1, tissue inhibitor of metaloproteinase protein expression intensity and positive cel rate, to determine the correlation of different concentrations of sticky sugar amino acid, transformation growth factorbeta 1 and tissue inhibitor of metaloproteinase.
RESULTS AND CONCLUSION:(1) The Periplaneta americana extract sticky sugar amino acid reduced the levels of laminin, type III procolagen, type IV colagen and hyaluronidase (P< 0.01) and reduced the expression of transformation growth factor beta 1 and tissue inhibitor of metaloproteinase 1 in liver tissue (P< 0.01). (2) Sticky sugar amino acid concentration and transformation growth factor beta 1 and tissue inhibitor of metaloproteinase 1 protein expression showed a significant negative correlation (|r| > 0.9). (3) Results confirmed that the Periplaneta americana extract sticky sugar amino acid can change the reversal of hepatic fibrosis. Its mechanism of action is associated with expression of transforming growth factor beta 1 and tissue inhibitor of metaloproteinase 1 inhibited by sticky sugar amino acids.
6.Biological characteristics of Ebola virus:research advances
Yi ZHANG ; Yinglong QU ; Zhendong GUO ; Siyan ZHAO ; Yingying FU ; Hongyan ZHAO ; Zhongyi WANG ; Zongzheng ZHAO ; Linna LIU ; Jun QIAN
Military Medical Sciences 2015;(5):386-389
Ebola virus disease , which can cause ebola hemorrhagic fever , is a potent zoonotic infectious virus disease . In 2014 , Ebola virus spread across West Africa and it has become a new major threat to global public health .This article summarizes the structural features of Ebola virus , transmission characteristics , interactions ,animal models .
7.Advances in biological spectroscopy detection of pathogenic microorganisms
Zhendong GUO ; Siyan ZHAO ; Yi ZHANG ; Yingying FU ; Hongyan ZHAO ; Yinglong QU ; Zhongyi WANG ; Zongzheng ZHAO ; Jun QIAN ; Linna LIU
Military Medical Sciences 2015;(4):311-315
Detection of pathogenic microorganisms has been a hot research field of microbiology.Conventional detection methods,such as isolation and culture, PCR technology, ELISA and genomic sequencing,are all time-consuming and com-plex.Because of the advantages of quick-testing, accuracy, safety and efficiency, spectroscopy has become a new non-inva-sive testing technology and has witnessed rapid development in pathogen detection and disease diagnosis.This article intro-duces three types of common spectroscopy technologies ( laser excitation fluorescence spectroscopy, infrared spectroscopy and Raman spectroscopy) , and also explains how they work in the detection of pathogenic microorganisms.
8. Expression characteristics of PTEN and NDRG1 in colorectal carcinoma and their prognostic value
Guoxin ZHANG ; Zhongyi QIAN ; Lijuan YANG ; Fang WANG ; Hong SHEN
Chinese Journal of Pathology 2017;46(4):240-244
Objective:
To study the expression status and clinical significance of PTEN and NDRG1 in colorectal carcinoma.
Methods:
Tissue samples of 91 colorectal cancers, 30 colorectal adenomas and 21 colorectal normal mucosa tissues were collected. Postoperative specimens were examined by immunohistochemistry for PTEN and NDRG1 expression. The expression of PTEN and NDRG1 was correlated with clinicopathological feature.
Results:
The expression of PTEN and NDRG1 in the studied cases was detected in 55.0%(50/91) and 76.9%(70/91), respectively. Their expression was significantly different from that of colorectal adenomas and normal colorectal mucosa tissues(
9.Research development of human infection with H5N6 avian influenza virus
Lina LIU ; Zongzheng ZHAO ; Zhendong GUO ; Yi ZHANG ; Yingying FU ; Zhongyi WANG ; Hongqi SUN ; Jiaming LI ; Tianrui ZHANG ; Chunmao ZHANG ; Linna LIU ; Jun QIAN
Military Medical Sciences 2017;41(1):69-72
Avian influenza virus is a new recombinant virus , which can cause severe respiratory symptoms ,such as short course,acute disease,and a high mortality rate.The purpose of this paper was to summarize the current status of this virus in terms of its epidemiology ,genetic evolution and virulence .By introducing the advancement in the research of this subtype virus, we hope to provide data and evidence ,for effective surveillance and prevention of this virus .
10.Application of DNA-based electrochemical biosensor in rapid detection of Escherichia coli exist in licorice decoction.
Yu-Wen ZHAO ; Hai-Xia WANG ; Song-Tao BIE ; Qian SHAO ; Chun-Hua WANG ; Dong-Heng WANG ; Zheng LI
China Journal of Chinese Materia Medica 2018;43(6):1209-1214
A new method for detection of Escherichia coli exist in licorice decoction was developed by using DNA-based electrochemical biosensor. The thiolated capture probe was immobilized on a gold electrode at first. Then the aptamer for Escherichia coli was combined with the capture probe by hybridization. Due to the stronger interaction between the aptamer and the E. coli, the aptamer can dissociate from the capture probe in the presence of E. coli in licorice decoction. The biotinylated detection probe was hybridized with the single-strand capture probe. As a result, the electrochemical response to Escherichia coli can be measured by using differential pulse voltammetric in the presence of α-naphthyl phosphate. The plot of peak current vs. the logarithm of concentration in the range from 2.7×10² to 2.7×10⁸ CFU·mL⁻¹ displayed a linear relationship with a detection limit of 50 CFU·mL⁻¹. The relative standard deviation of 3 successive scans was 2.5%,2.1%,4.6% for 2×10²,2×10⁴,2×106:⁶ CFU·mL⁻¹ E. coli, respectively. The proposed procedure showed better specificity to E. coli in comparison to Pseudomonas aeruginosa, Staphylococcus aureus and Bacillus subtilis. In the detection of the real extractum glycyrrhizae, the results between the proposed strategy and the GB assay showed high degree of agreement, demonstrating the designed biosensor could be utilized as a powerful tool for microbial examination for traditional Chinese medicine.