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101.
Introduction
The actual benefit of endoscopic techniques in the non-operative management (NOM) of pancreatic injury is still unclear, with its role and effectiveness in the NOM of pancreatic injury remains defined and doubted. The purpose of this study was to evaluate the feasibility and long-term results of endoscopic techniques in the NOM of blunt pancreatic injury, and to determine whether NOM can be performed safely for selective patients with pancreatic injury.Patients and methods
The records and follow-up data of all patients with blunt pancreatic injuries over 16-year period from October 1, 1996, to September 30, 2012 at our department were retrospectively reviewed. Failure of NOM (FNOM) occurred if laparotomy was required after attempted NOM.Results
132 patients (32% of all patients with blunt pancreatic injury) underwent NOM, including 58 who underwent endoscopic management (EM) and 74 who were observed without EM (NO-EM). FNOM of overall NOM was 20%, including 30% of NO-EM and 9% of EM. There was no significant difference in FNOM for NO-EM versus EM for grade I, however, a significant decrease in FNOM was noted with the addition of EM for grade II and III. EM was a statistically significant independent risk factor. Regular follow-up of 1 year showed that, for patients from grade I to III, 53 patients (42%) from operative management (OM) and 34 patients (46%) of the NO-EM developed various pancreatic-related complications, while only 15 patients (26%) of the EM developed such complications, and the difference was significant.Conclusion
Application of strictly defined selection criteria for NOM and EM in patients with blunt pancreatic injury resulted in one of the lowest FNOM rates (9%) and pancreatic-related complications incidence (25%). Selective application of EM for hemodynamically stable patients with blunt pancreatic injury will extend the indications for, and improve success of NOM. 相似文献102.
Ting Zhao Yongqing Li Baoling Liu Ihab Halaweish Ralph Mazitschek Hasan B. Alam 《The Journal of surgical research》2014
Background
Phagocytes, especially monocytes, macrophages, and dendritic cells, play a pivotal role in the innate and adaptive immune responses during sepsis. We have shown that inhibition of histone deacetylase 6 improves survival and increases bacterial clearance in a mouse model of cecal ligation and puncture (CLP). The aim of this study was to determine whether this effect was associated with changes in the number and composition of different blood cell types in the circulation.Methods
C57BL/6J mice were subjected to CLP, and 1 h later given an intraperitoneal injection of either Tubastatin A dissolved in dimethyl sulfoxide, or dimethyl sulfoxide only. Sham-operated animals were treated in an identical fashion but not subjected to CLP. Forty-eight hours later, peripheral blood was obtained via cardiac puncture and analyzed using a HemaTrue veterinary hematology analyzer.Results
Tubastatin A administration increased the number of circulating monocytes in the sham-operated and the CLP animals. In comparison with the sham, CLP animals displayed an increase in the granulocyte percentage in white blood cells and decrease in the lymphocyte number and percentage, with a resultant increase in the granulocyte-to-lymphocyte ratio. Treatment of CLP animals with Tubastatin A decreased the granulocyte percentage and restored the lymphocyte number and percentage, which decreased the granulocyte-to-lymphocyte ratio. In the sham animals, Tubastatin A increased red blood cell number, hematocrit, and hemoglobin. This effect was not seen in CLP animals.Conclusions
Tubastatin A treatment has significant impact on the composition of circulating blood cells. It increases the number of circulating monocytes and the red blood cell mass in sham-operated animals. In the CLP animals, it increases the monocyte count, decreases the percentage of granulocytes, restores the lymphocyte population, and decreases the granulocyte-to-lymphocyte ratio. These results may explain why Tubastatin A treatment improves survival in the septic models. 相似文献103.
104.
105.
脑缺血再灌对小鼠学习记忆的影响及药物防护 总被引:25,自引:0,他引:25
在建立及管性学习记忆障碍模型的基础上,观察脑缺血再灌对小鼠学习记忆的影响及服用尼莫地平、764-3、醒脑灵对其的防护作用。重复脑缺血再灌可明显的降低动物的学习和记忆能力,并可通过药物改善小鼠学习记忆障碍的程度。 相似文献
106.
Green tea polyphenols protect spinal cord neurons against hydrogen peroxide-induced oxidative stress 总被引:1,自引:0,他引:1
Jianbo Zhao ;Shiqiang Fang ;Yajiang Yuan ;Zhanpeng Guo ;Jinhao Zeng ;Yue Guo ;Peifu Tan ;Xifan Mei 《中国神经再生研究》2014,9(14):1379-1385
Green tea polyphenols are strong antioxidants and can reduce free radical damage. To investigate their neuroprotective potential, we induced oxidative damage in spinal cord neurons using hydrogen peroxide, and applied different concentrations(50–200 μg/mL) of green tea polyphenol to the cell medium for 24 hours. Measurements of superoxide dismutase activity, malondialdehyde content, and expression of apoptosis-related genes and proteins revealed that green tea polyphenol effectively alleviated oxidative stress. Our results indicate that green tea polyphenols play a protective role in spinal cord neurons under oxidative stress. 相似文献
107.
Bo Xiang Zhenxing Yang Yin Lin Lijie Guan Xuan Li Wei Deng Zeyu Jiang Guohui Lao Qiang Wang Xiaoyu Hao Xiang Liu Yingcheng Wang Liansheng Zhao Xiaohong Ma Tao Li Liping Cao Xun Hu 《神经科学通报》2014,30(1):33-42
Serotonin plays an important role in mood regulation, but the involvement of serotonin pathway genes in the development of bipolar I disorder (BP-I), a mood disorder, is not clear. We selected 21 singlenucleotide polymorphisms (SNPs) within the HTR2A gene, 8 within the SLC6A4 gene and 23 within the TPH2 gene for genotyping using the GoldenGate genotyping assay. A total of 375 patients with BP-I and 475 normal controls were recruited. Two out of 21 SNPs (rs1475196 and rs9567747) in the HTR2A gene and 1/23 SNPs (rs17110566) in the TPH2 gene were significantly associated with BP-I, both genotype-wise and allele-wise. Furthermore, a specific haplotype in the HTR2A gene showed a significant association with BP-I. Our results indicate that the HTR2A and TPH2 genes in the serotonin pathway play important roles in susceptibility to BP-I. 相似文献
108.
109.