首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >Portal venous transfusion up-regulates Kupffer cell cyclooxygenase activity: a mechanism of immunosuppression in organ transplantation.
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Portal venous transfusion up-regulates Kupffer cell cyclooxygenase activity: a mechanism of immunosuppression in organ transplantation.

机译:门静脉输血上调库普弗细胞环氧合酶活性:器官移植中的免疫抑制机制。

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摘要

Portal venous transfusions (PVTs) of blood have been shown to induce significant immunosuppression in animal models of organ transplantation. A proposed mechanism of PVT-induced immunosuppression is via alteration of Kupffer cell arachidonic acid metabolism with increased secretion of the suppressive metabolite prostaglandin E2 (PGE2). This study assessed the hypothesis that PVT increases Kupffer cell PGE2 production via up-regulation of Kupffer cell phospholipase A2 (PLA2) as well as constitutive (COX1) and inducible (COX2) cyclooxygenase. Kupffer cells from Lewis rats were harvested 1 hr after PVT with either 1 ml of Wistar-Furth blood, systemic transfusion (SVT), or saline via portal vein (PVSal). After lipopolysaccharide stimulation, 24-hr Kupffer cell supernatant fractions were assayed for PGE2. PGE2 was increased after SVT (1465+/-234 pg/ml) compared with PVSal (597+/-99; P<0.01). PVT increased Kupffer cell PGE2 (5370+/-533; P<0.001 vs. SVT and vs. PVSal) even more substantially. Kupffer cells from PVT-treated rats were then cultured in the presence of inhibitors of PLA2, COX1, or COX2. When Kupffer cells were treated with mepacrine to inhibit PLA2 (5575+/-453 pg/ml), PGE2 production was not different from that by PVSal-treated controls (6467+/-614 pg/ml), but when Kupffer cells were incubated in the presence of the COX1 inhibitor flurbiprofen (3512+/-407 pg/ml) or the COX2 inhibitor nimesulide (2800+/-830 pg/ml), production was decreased 46.7% and 56.7%, respectively, over control activity without added inhibitor. PVT also increased Kupffer cells COX1 and COX2 mRNA as measured by Northern blot. Heart transplants were then performed from Wistar-Furth donors into Lewis recipients at the time of PVT, SVT, PVSal, or PVT + indomethacin (COX1/2 inhibitor). PVT prolonged allograft survival (12.0+/-0.9 days) compared with PVSal (6.3+/-0.3; P<0.01) or SVT (6.3+/-0.3; P<0.04). Indomethacin shortened graft survival when given with PVT (6.5+/-0.3 days). In summary, PVT increased Kupffer cell PGE2 production, up-regulated transcription of Kupffer cells COX1 and COX2 mRNA, and prolonged cardiac allograft survival. COX1/2 inhibition abrogated the effect of PVT. The results indicated that the immunosuppressive effect of PVT may be mediated by up-regulation of Kupffer cell COX1 and COX2. Manipulation of Kupffer cell arachidonic acid metabolism may be useful in augmentation of PVT-induced immunosuppression.
机译:在器官移植的动物模型中,已证明血液的门静脉输血(PVT)会诱导明显的免疫抑制。 PVT诱导的免疫抑制的一种拟议机制是通过改变Kupffer细胞花生四烯酸代谢,同时增加抑制性代谢物前列腺素E2(PGE2)的分泌。这项研究评估了PVT通过上调Kupffer细胞磷脂酶A2(PLA2)以及组成型(COX1)和诱导型(COX2)环氧合酶来增加Kupffer细胞PGE2产量的假设。 PVT后1小时,用1 ml Wistar-Furth血液,全身性输血(SVT)或盐水通过门静脉(PVSal)收集Lewis大鼠的Kupffer细胞。脂多糖刺激后,测定24小时Kupffer细胞上清液级分的PGE2。与PVSal(597 +/- 99; P <0.01)相比,SVT后(1465 +/- 234 pg / ml)PGE2增加。 PVT更大程度地增加了库普弗细胞PGE2(5370 +/- 533;相对于SVT和相对于PVSal,P <0.001)。然后在存在PLA2,COX1或COX2抑制剂的情况下培养来自接受PVT处理的大鼠的库普弗细胞。当用苦参碱处理库普弗细胞以抑制PLA2(5575 +/- 453 pg / ml)时,PGE2的产生与PVSal处理的对照组(6467 +/- 614 pg / ml)的没有差异,但是当库普弗细胞被孵育时在没有添加COX1抑制剂氟比洛芬(3512 +/- 407 pg / ml)或COX2抑制剂尼美舒利(2800 +/- 830 pg / ml)的情况下,产量分别降低了46.7%和56.7%,超过了不添加对照的活性抑制剂。通过Northern印迹测定,PVT还增加了库普弗细胞COX1和COX2 mRNA的表达。然后在PVT,SVT,PVSal或PVT +消炎痛(COX1 / 2抑制剂)时,从Wistar-Furth供体向Lewis受体进行心脏移植。与PVSal(6.3 +/- 0.3; P <0.01)或SVT(6.3 +/- 0.3; P <0.04)相比,PVT延长了同种异体移植的存活时间(12.0 +/- 0.9天)。吲哚美辛与PVT一起使用时(6.5 +/- 0.3天)缩短了移植物的存活时间。总之,PVT增加了库普弗细胞PGE2的产生,上调了库普弗细胞COX1和COX2 mRNA的转录,并延长了心脏异体移植的存活时间。 COX1 / 2抑制废除了PVT的作用。结果表明,PVT的免疫抑制作用可能是通过上调Kupffer细胞COX1和COX2介导的。枯否细胞花生四烯酸代谢的操纵可能有助于增加PVT诱导的免疫抑制。

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