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1.
本文套用NRC(1998)部分预测模型,计算了小型猪维持阶段以及生长猪(0.4-6 kg、6-20 kg、20-40kg6、-40 kg)、妊娠母猪、泌乳母猪和种公猪氨基酸、矿物质和维生素需要量。  相似文献   
2.
目的探索结扎小型猪冠状动脉左前降支(LAD)建立急性心肌梗死模型及进行血流评价的方法。方法小型猪20头全麻下开胸暴露心脏,预阻断LAD(第二对角支)15min,后予结扎,术中心电图动态监测,术后进行冠状动脉造影,心肌酶学监测以确定模型建立情况,冠状动脉造影以及^13N-NH3 PET心肌血流测定评价手术后血流改变。结果20头小型猪中有16头存活4周,成活率80%,开胸手术中1头因麻醉意外死亡,3头死于术后呼吸不畅。结扎后心电图呈动态变化,24h后血清心肌酶谱(CK,CK—MB,cTnI)较术前明显增高,差异有统计学意义(P〈0.05),冠状动脉造影显示LAD血流中断,TIMI分级为0级,^13N—NH3 PET检查显示手术后缺损面积百分比(27.0±5.0)较手术前(4.0±3.2)有显著性差异,证实心梗模型建立成功。结论本实验中开胸手术成功率高,术后血流评价方法可用于手术前后冠脉血流和心肌血流的比较以及对心肌梗死后治疗效果进行评价。  相似文献   
3.
目的应用选择性冠状动脉前降支(LAD)球囊闭塞结合微血栓微球混悬液灌注方法造成心肌缺血坏死,探索建立稳定存活的小型猪急性心肌梗死(AMI)后心力衰竭(HF)动物模型。方法选择中国五指山小型猪18头,行冠脉造影后沿血管送球囊至LAD中段,依次扩张球囊阻断前向血流1、2、5 min,每次间隔60 s,然后扩张球囊堵闭血流120 min。再以4F导管超选LAD,行微血栓微球混悬液分次注入,间隔10 min重复注射,TIMI心肌灌注分级(TMPG)2级和左室舒张末压(LVEDP)15 mm Hg时停止注射,同时监测心电图及应用漂浮导管监测有创血流动力学参数。并行pigtail导管测量(LVEDP)的变化,待LVEDP稳定在15~18 mm Hg之间后结扎血管,并加压包扎。监测心肌坏死标志物(cTnI和CK-MB)变化。分别于制模前,制模后第1天、7天、14天行心脏超声检查,制模第14天复查有创血流动力学检查,并行心脏病理检查,认定和评价模型的成功率、稳定性和可重复性。结果制模14 d后共有15头小型猪成活,心电图、心肌坏死标记物、病理检查均符合AMI病理生理过程。其中14头小型猪达到动物模型标准【肺毛细血管楔压(PCWP)18 mmHg和心输出量(CO)下降30%以上】,模型成功率为77.78%。制模后第14天PCWP明显升高(P0.01),CO平均下降50.76%;左室射血分数(LVEF)明显降低(P0.01)。病理检查显示心肌梗死面积占左心室面积的25.4%~34.9%。结论球囊闭塞结合微血栓微球混悬液灌注构建小型猪急性心肌梗死后心力衰竭模型具有闭胸、高成功率、稳定和重复性好等优点,较药物、冠状动脉结扎和起搏诱导的心力衰竭模型更接近临床病理生理学特点。  相似文献   
4.
目的分析我国特有的3个小型猪品系巴马小型猪、中国农大小型猪、五指山小型猪葡萄糖转运子4基因外显子4a的单核苷酸多态性(SNPs)分布特点,为我国小型猪在糖尿病和代谢性疾病研究中提供基础资料。方法以3个品系小型猪基因组DNA为模板,应用特异性引物进行PCR扩增,扩增产物纯化测序,进行BLAST比对分析。结果在小型猪GLUT-4基因外显子4a上有2个SNP位点:SNP1:GCT→GCC(Ala133 Ala),3个品系均发生了变化,均为纯合突变,其突变率为(22/22,100%)。SNP2:GGC→GGT(Gly146 Gly),巴马小型猪突变率为(6/6,100%),均为纯合突变;五指山小型猪突变率为(6/6,100%),均为纯合突变;中国农大小型猪突变率为(10/10,100%),其中包括6例纯合突变(6/10,60%)和4例杂合突变(4/10,40%)。结论SNPs1,在所有测定的小型猪品系中检出,这可能是所测小型猪的共有特征。SNPs2可能是小型猪品系之间的差异。  相似文献   
5.
Summary In normal young minipigs thin slices of autologous mesenteric or superficial inguinal lymph nodes were implanted either in the greater omentum or subcutaneously in the groin region. The regeneration was studied histologically and connections between the afferent lymphatics and the regenerated tissue were checked. In the greater omentum, no regenerated lymph node tissue was found. In the inguinal region, lymphoid tissue with all the typical lymph node compartments was identified following antigenic stimulation in the draining area. Sinuses, germinal centres with a lymphatic corona, and a paracortex with typical high endothelial venules were seen. There was evidence of afferent lymphatics, e.g., macroscopically visible lymphatics, the occurrence of a subcutaneously injected dye, the effect of antigenic stimulation and a normal lymph node structure. Avascular transplants of autologous lymph node fragments regenerate subcutaneously, possibly providing a future technique for treating lymphoedema after radical excision or irradiation of lymph nodes.  相似文献   
6.
Lymph nodes in pigs are unique in their inverted structure, with the medulla in the periphery and the cortex in central areas. Furthermore, in this species most migrating lymphocytes do not use the classical route via efferent lymphatics to leave the lymph node. High-endothelial venules (HEV) are the entry sites for lymphocytes and in pigs probably also the exit site for recirculating lymphocytes. Therefore, the blood vessels and especially the HEV of the pig superficial inguinal lymph node were investigated as to whether morphological peculiarities could be found in the vascular system, using vascular casting, transmission- and scanning electron microscopy. A thin layer of capillary network surrounded the periphery of the lymph node and HEV branched acutely. The endothelial cells of HEV possessed well developed cytoplasmic organelles, interdigitated with each other, and demonstrated local cell-cell contacts. There were unusual cells bridging the adluminal wall of HEV. These cells were called intravascular bridging cells. They were characterized by an often invaginated nucleus, few pinocytotic vesicles, many microvilli on the surface, wide, flat, cytoplasmic processes like a pseudopod, Weibel-Palade bodies and local cell-cell contacts with endothelial cells. The pseudopod-like processes ramified over the endothelial junctions and covered lymphocytes. Lymphocytes were seen in different phases of migration between endothelial cells and in the intercellular junctions. The previous functional studies on the peculiar route of lymphocyte recirculation in pig lymph nodes are extended by these morphological data, showing a unique structure of HEV in pigs.  相似文献   
7.
本文套用NRC(1998)部分预测模型,计算了小型猪消化能、赖氨酸及蛋白质的维持需要量以及生长猪(0.4-6 kg、6-20 kg2、0-40 kg6、-40 kg)、妊娠母猪、泌乳母猪和种公猪的消化能、赖氨酸及蛋白质需要量。  相似文献   
8.
在大量查阅国内外小型猪、普通商品猪有关营养饲养方面资料的基础上,本文总结了小型猪各个阶段的体重、生长速度、采食量、猪体化学成分及其沉积量、日粮赖氨酸能量比等相关数据,为计算小型猪各阶段的营养素需要量提供基础参数。  相似文献   
9.
Cytokeratin 18 is an M-cell marker in porcine Peyer's patches   总被引:8,自引:0,他引:8  
The intermediate filaments of the dome epithelium of porcine Peyer's patches were studied by immunohistochemistry. The labelling patterns of monospecific antibodies directed against cytokeratins 8, 18 and 19 differed considerably. About 40% of the dome epithelial cells were intensely labelled by three different anti-cytokeratin 18 antibodies, indicating that large amounts of cytokeratin 18 are present in these cells. In order to verify that these cytokeratin-18-immunoreactive cells were M-cells, uptake studies using fluorescein-labelled yeast particles were performed. Numerous yeast particles were found exclusively in dome epithelial cells that were highly positive for cytokeratin 18, thus representing M-cells. In contrast, the content of cytokeratin 19 in M-cells was lower than that in neighbouring enterocytes. The labelling intensity of cytokeratin 8 did not differ between M-cells and enterocytes. In addition, the absence of vimentin and desmin from the dome epithelium of porcine Peyer's patches was demonstrated. The results show (1) that porcine M-cells differ from enterocytes in the composition of their cytoskeleton, (2) that cytokeratin 18 is a useful marker for detecting porcine M-cells and (3) that this marker directly correlas with M-cell function.  相似文献   
10.
KIT mutations have been detected in different cancer subtypes, including melanoma. The gene also has been extensively studied in farm animals for its prominent role in coat color. The present work aimed at detecting KIT variants in a porcine model of cutaneous melanoma, the melanoblastoma‐bearing Libechov Minipig (MeLiM). By sequencing exons and intron borders, 36 SNPs and one indel were identified. Of 10 coding SNPs, three were non‐synonymous mutations, likely to affect the protein conformation. A promising variant, located in exon 19 (p.Val870Ala), was genotyped in a MeLiM × Duroc cross, and an association analysis was conducted on several melanoma‐related traits. This variant showed a significant association with melanoma development, tumor ulceration and cutaneous invasion. In conclusion, although the KIT gene would not be a major causal gene for melanoma development in pig, its genetic variation could be influencing this trait.  相似文献   
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