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Ji-Yeong YEON Sung-Hun MIN Hyo-Jin PARK Jin-Woo KIM Yong-Hee LEE Soo-Yong PARK Pil-Soo JEONG Humdai PARK Dong-Seok LEE Sun-Uk KIM Kyu-Tae CHANG Deog-Bon KOO 《The Journal of reproduction and development》2015,61(2):81-89
Mitochondria are highly dynamic organelles that undergo constant fusion/fission as well as activities orchestrated by large dynamin-related GTPases. These dynamic mitochondrial processes influence mitochondrial morphology, size and function. Therefore, this study was conducted to evaluate the effects of mitochondrial fission inhibitor, mdivi-1, on developmental competence and mitochondrial function of porcine embryos and primary cells. Presumptive porcine embryos were cultured in PZM-3 medium supplemented with mdivi-1 (0, 10 and 50 μM) for 6 days. Porcine fibroblast cells were cultured in growth medium with mdivi-1 (0 and 50 μM) for 2 days. Our results showed that the rate of blastocyst production and cell growth in the mdivi-1 (50 μM) treated group was lower than that of the control group (P < 0.05). Moreover, loss of mitochondrial membrane potential in the mdivi-1 (50 μM) treated group was increased relative to the control group (P < 0.05). Subsequent evaluation
revealed that the intracellular levels of reactive oxygen species (ROS) and the apoptotic index were increased by mdivi-1 (50 μM) treatment (P < 0.05). Finally, the expression of mitochondrial fission-related protein (Drp 1) was lower in the embryos and cells in the mdivi-1-treated group than the control group. Taken together, these results indicate that mdivi-1 treatment may inhibit developmental competence and mitochondrial function in porcine embryos and primary cells. 相似文献
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为了研究体外培养仔猪胰腺细胞的适宜条件,试验选取1日龄的仔猪胰腺组织置于冰上清洗、修剪,对消化酶、离心方式、培养皿铺被方式、培养液及添加不同促生长因子等多种因素进行筛选和优化。结果表明:0.25%胰酶消化所获得的细胞强于0.1%胶原酶消化获得的细胞,细胞清亮,易于生长;采用500 r/min离心5 min、多次离心所获得的细胞较Percoll不连续密度梯度离心和5%BSA等密度梯度离心所获得的细胞贴壁率高,生长能力强,易于培养传代;采用0.1%明胶或20μg/mL的层黏连蛋白铺被培养皿均比无铺被的培养皿获得更多的贴壁细胞;以RPMI 1640、M199、F12、L-DMEM多种培养液培养仔猪胰腺细胞,表现出多种细胞形态和生长趋势;在基础培养液中添加上皮生长因子、角质化生长因子、β-巯基乙醇和白血病细胞抑制因子、转铁蛋白与亚硒酸盐混合试剂等促干细胞增殖因子可促进不同形态细胞的增殖。说明按此方式培养可获得大量、多种细胞形态的仔猪胰腺祖/干细胞。 相似文献
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SCINTIGRAPHIC TRACKING OF MESENCHYMAL STEM CELLS AFTER PORTAL,SYSTEMIC INTRAVENOUS AND SPLENIC ADMINISTRATION IN HEALTHY BEAGLE DOGS 下载免费PDF全文
Mathieu Spriet Geraldine B. Hunt Naomi J. Walker Dori L. Borjesson 《Veterinary radiology & ultrasound》2015,56(3):327-334
Mesenchymal stem cells have been proposed to treat liver disease in the dog. The objective of this study was to compare portal, systemic intravenous and splenic injections for administration of mesenchymal stem cells to target the liver in healthy beagle dogs. Four healthy beagle dogs were included in the study. Each dog received mesenchymal stem cells via all three delivery methods in randomized order, 1 week apart. Ten million fat‐derived allogeneic mesenchymal stem cells labeled with Technetium‐99m (99mTc)‐hexamethyl‐propylene amine oxime(HMPAO) were used for each injection. Right lateral, left lateral, ventral, and dorsal scintigraphic images were obtained with a gamma camera equipped with a low‐energy all‐purpose collimator immediately after injection and 1, 6, and 24 h later. Mesenchymal stem cells distribution was assessed subjectively using all four views. Pulmonary, hepatic, and splenic uptake was quantified from the right lateral view, at each time point. Portal injection resulted in diffuse homogeneous high uptake through the liver, whereas the systemic intravenous injection led to mesenchymal stem cell trapping in the lungs. After splenic injection, mild splenic retention and high homogeneous diffuse hepatic uptake were observed. Systemic injection of mesenchymal stem cells may not be a desirable technique for liver therapy due to pulmonary trapping. Splenic injection represents a good alternative to portal injection. Scintigraphic tracking with 99mTc‐HMPAO is a valuable technique for assessing mesenchymal stem cells distribution and quantification shortly after administration. Data obtained at 24 h should be interpreted cautiously due to suboptimal labeling persistence. 相似文献
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为了探索脾酪氨酸激酶(Syk)是否参与酿酒酵母甘露聚糖(S.c M)诱导绵羊瘤胃上皮细胞(ORECs)β-防御素-1(SBD-1)表达的过程,首先利用免疫组化、RT-PCR和免疫荧光等方法检测Syk在ORECs内的表达情况;然后采用qPCR和Western blot方法检测S.c M刺激ORECs后Syk的表达变化,同时用Western blot方法检测Syk的磷酸化水平;接着用3条Syk特异性siRNAs(#1、#2和#3)转染ORECs 24 h后,qPCR检测Syk mRNA的表达变化,筛选出干扰效果最佳的Syk siRNA;最后用效果最佳的siRNA和Syk特异性抑制剂R406分别处理ORECs后,采用qPCR和ELISA检测SBD-1的表达变化,以确定Syk在S.c M诱导SBD-1表达过程中的作用。结果显示:Syk在ORECs内表达;且S.c M刺激ORECs后Syk的mRNA和蛋白表达水平显著高于未刺激组(P<0.01或P<0.05),S.c M刺激ORECs不同时间(5、15、30、45和60 min)均能使Syk发生磷酸化,且刺激15 min后磷酸化水平达到最大(P<0.01);此外,Syk的3条特异性siRNAs转染ORECs后Syk的表达均降低,且Syk siRNA#2的抑制效果最明显(P<0.01);同时Syk siRNA#2和R406均能极显著降低S.c M诱导ORECs SBD-1的表达(P<0.01)。上述结果表明,Syk参与S.c M诱导ORECs SBD-1的表达。 相似文献
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卵泡是雌性哺乳动物发挥其繁殖能力的基础,其发育是一个动态的过程,主要涉及原始卵泡的形成、卵泡的募集、优势卵泡的选择、成熟卵泡的排卵以及排卵后卵泡的黄体化。卵泡发育的整个过程受内分泌系统、细胞自噬、细胞凋亡等的调控。自噬是一种进化上保守的应激反应过程,通过将细胞内物质包裹形成自噬体并传递到溶酶体中进行降解,以帮助细胞维持胞内物质代谢平衡,其在卵泡发育的过程中发挥着重要作用,一方面它能够通过降解或回收受损的蛋白质或有害代谢产物缓解应激造成的卵泡损伤,另一方面它又通过产生大量自噬体导致细胞器过度降解而引起卵泡闭锁。自噬对卵泡发育的调控需要PI3K-Akt-mTOR、MAPK-ULK1、ERK1/2、Sirt1-FOXO1-Atg7等多种经典信号通路的参与,这些信号通路在激素、氧化应激、细胞饥饿等的刺激下,通过独立作用或相互作用促进或抑制自噬调控卵泡细胞的生理活动。目前已知不同的自噬水平对卵泡细胞的存活具有不同作用,但关于决定细胞能否存活的自噬水平的研究还比较少。此外,自噬对卵泡发育调控的研究主要集中在颗粒细胞中,而对卵母细胞的成熟和卵泡膜细胞的作用的报道较少。文章简述了自噬在卵巢储备的形成、... 相似文献
59.
旨在探究副猪格拉瑟菌(Glaesserella parasuis,GPS)突破猪呼吸道上皮屏障引起系统性感染的机制。通过超速离心和密度梯度离心提取副猪格拉瑟菌外膜囊泡(outer membrane vesicles, OMVs),OMVs经SDS-PAGE显示,蛋白质条带分布在55~100 ku,经透射电子显微镜(TEM)观察,OMVs的粒径在100~200 nm,纳米粒子直径分析(NTA)结果显示,样品在100~200 nm处的粒子数目最多。进而用制备的HbpA及OmpP2多克隆抗体对OMVs及不含OMVs的细菌上清进行Western blot验证,证实所提取的样品为外膜囊泡,且进一步结果证明细胞致死性膨胀毒素(CDT)在GPS培养物中主要以OMVs的形式存在。用OMVs或CdtB处理猪气管上皮细胞(swine tracheal epithelial cells, STEC)36 h,检测STEC中cleaved-caspase3、ZO-1和Occludin的蛋白表达水平,并用FITC-葡聚糖(FD-4)检测STEC单层细胞的细胞旁通透性。结果发现,OMVs与CdtB处理后凋亡相关蛋... 相似文献
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Lori S. Waddell DVM DACVECC David E. Holt BVSC DACVS Dez Hughes BVSc MRCVS DACVECC Urs Giger PD DR. med. vet. DACVIM 《Journal of Veterinary Emergency and Critical Care》2001,11(1):23-26
Objective: To determine the effect of storage on ammonia concentration in canine packed red blood cell (pRBC) units.
Design: In vitro and in vivo study.
Setting: University Veterinary Teaching Hospital.
Interventions: Ammonia concentration was measured in 7 units of canine pRBC prepared in citrate-phosphate-dextrose (CPD) and Adsola on Days 1 and 35 of storage. Ammonia was measured in 4 additional units of canine pRBC on Days 0, 7, 14, 21, 28, and 35. Plasma ammonia was also determined in 5 anemic dogs receiving pRBC.
Measurements and Main Results: Ammonia concentration increased from 73 ± 15 mmol/L (mean ± SD) on Day 1 to 800 ± 275 mmpl/L on Day (p<0.001). When measured every 7 days in 4 units of canine pRBC, ammonia concentration increased from 23 ± 8 mmol/L on Day 0 to 179 ± 13 mmol/L (Day 7), 276 ± 56 mmol/L (Day 14). 383 ± 47 mmol/L (Day21), 466 ± 30 mmol/L (Day 28), and 562 ± 27 mmol/L (Day 35) (p<0.05 for all comparisons). In a preliminary study, plasma ammonia concentration measured in blood samples from 5 anemic dogs without primary liver disease immediately before and after transfusion with 5–10 ml/kg of stored pRBC remained in the normal reference range.
Conclusions: The ammonia concentration in stored canine pRBC increased markedly with time. In this preliminary study, ammonia concentrations in dogs without primary liver disease did not increase above the reference range after transfusion with pRBC. 相似文献
Design: In vitro and in vivo study.
Setting: University Veterinary Teaching Hospital.
Interventions: Ammonia concentration was measured in 7 units of canine pRBC prepared in citrate-phosphate-dextrose (CPD) and Adsol
Measurements and Main Results: Ammonia concentration increased from 73 ± 15 mmol/L (mean ± SD) on Day 1 to 800 ± 275 mmpl/L on Day (p<0.001). When measured every 7 days in 4 units of canine pRBC, ammonia concentration increased from 23 ± 8 mmol/L on Day 0 to 179 ± 13 mmol/L (Day 7), 276 ± 56 mmol/L (Day 14). 383 ± 47 mmol/L (Day21), 466 ± 30 mmol/L (Day 28), and 562 ± 27 mmol/L (Day 35) (p<0.05 for all comparisons). In a preliminary study, plasma ammonia concentration measured in blood samples from 5 anemic dogs without primary liver disease immediately before and after transfusion with 5–10 ml/kg of stored pRBC remained in the normal reference range.
Conclusions: The ammonia concentration in stored canine pRBC increased markedly with time. In this preliminary study, ammonia concentrations in dogs without primary liver disease did not increase above the reference range after transfusion with pRBC. 相似文献