Simoni J, Simoni G, Lox C D, Feola M
Texas Tech University Health Sciences Center, Department of Surgery, Lubbock 79430.
Artif Cells Blood Substit Immobil Biotechnol. 1994;22(3):777-87. doi: 10.3109/10731199409117911.
Human umbilical vein endothelial cells (HUVEC) were incubated for 24 hours with 0.1 mM or 0.3 mM of: [A] unmodified (U) Hb-FeIIO2; [B] UHb-FeIII; [C] UHb-FeIV-OH; [D] polymerized low molecular weight Hb (< 400 kDa); [E] polymerized high molecular weight Hb (< 1,020 kDa); [F] polymerized low molecular weight Hb + Endotoxin (2.5 EU/mL); [G] rTNF alpha 100 pg/mL; [H] rTNF alpha 400 pg/mL; [I] rTNF alpha 800 pg/mL. The medium of the incubation was tested for LDH (index of cell injury), and for cytokines GM-CSF and IL-1 alpha released by the cells. The data suggests that oxidation status of the iron in the Hb molecule and concentration of Hb play an important role in causing EC injury. The highest toxicity was observed when EC were incubated with 0.1 mM of UHb-FeIV-OH (ferryl-Hb) and no toxicity with 0.3 mM of Hb-FeIII (ferric-Hb). The direct stimulation of EC by Hb for the production of IL-1 was limited, related only to high molecular weight Hb polymers or to Hb+E, however GM-CSF expression was increased by almost all Hb forms. TNF induced dose-related injury (R2 = 0.986), and dose-related release of IL-1 (R2 = 0.977). A different EC reaction was observed on the release of GM-CSF. Intermediate levels of TNF (400 pg/mL) increased the expression of this cytokine, while high levels (800 pg/mL) blocked its release.
人脐静脉内皮细胞(HUVEC)与以下物质在0.1 mM或0.3 mM浓度下孵育24小时:[A]未修饰的(U)Hb-FeIIO2;[B] UHb-FeIII;[C] UHb-FeIV-OH;[D]聚合的低分子量Hb(<400 kDa);[E]聚合的高分子量Hb(<1,020 kDa);[F]聚合的低分子量Hb +内毒素(2.5 EU/mL);[G] rTNFα 100 pg/mL;[H] rTNFα 400 pg/mL;[I] rTNFα 800 pg/mL。检测孵育培养基中的乳酸脱氢酶(LDH,细胞损伤指标)以及细胞释放的细胞因子GM-CSF和IL-1α。数据表明,Hb分子中铁的氧化状态和Hb浓度在导致内皮细胞损伤中起重要作用。当内皮细胞与0.1 mM的UHb-FeIV-OH(高铁血红素-Hb)孵育时观察到最高毒性,而与0.3 mM的Hb-FeIII(三价铁-Hb)孵育时无毒性。Hb对内皮细胞产生IL-1的直接刺激有限,仅与高分子量Hb聚合物或Hb+E有关,然而几乎所有Hb形式均使GM-CSF表达增加。TNF诱导剂量相关的损伤(R2 = 0.986)以及剂量相关的IL-1释放(R2 = 0.977)。观察到GM-CSF释放存在不同的内皮细胞反应。中等水平的TNF(400 pg/mL)增加了这种细胞因子的表达,而高水平(800 pg/mL)则阻断了其释放。