Objective: To explore the effect of high-voltage electrical burn on platelet function and rheological behavior in rats and the interventive effect of Xuebijing. Methods: A total of 280 Sprague Dawley rats of clean grade (aged 8-10 weeks, male and female unlimited) were divided into sham injury group, simple electrical burn group, electrical burn+ saline group, and electrical burn+ Xuebijing group according to the random number table, with 70 rats in each group. Rats in sham injury group were not conducted with electrical current to cause sham injury. Rats in the other three groups were given electrical current with output voltage of 2 kV and current intensity of (1.92 ± 0.24) A for 3 s, which caused high-voltage electrical burn wounds, each with an area of 1 cm×1 cm distributed in the left forelimb at the current inlet and the right hindlimb at the current outlet respectively. Rats in sham injury group and simple electrical burn group were not treated after injury. At post injury minute 2 and on post injury day (PID) 1, 2, 3, 4, 5, and 6, rats in electrical burn+ saline group and electrical burn+ Xuebijing group were intraperitoneally injected with 6 mL/kg saline and 6 mL/kg Xuebijing, respectively. Survival conditions of rats were recorded during the experiment. At 15 min before injury and at post injury hour (PIH) 1, 8, 24, 48, 72, and on PID 7, 10 rats in each group were respectively selected according to the random number table to sacrifice after collection of 5 mL blood under the direct vision of heart. Blood in the volume of 0.05 mL from each rat was taken to make blood smear, and platelet aggregation number was counted under 400 fold field of view using multiple projection microscope. The remaining blood samples were centrifuged to collect supernatant, and the content of platelet-derived growth factor (PDGF), thrombopoietin (TPO), and platelet activating factor (PAF) was detected by enzyme-linked immunosorbent assay. Data were statistically analyzed with analysis of variance for factorial design and Student-Newman-Keuls method. Results: All rats in sham injury group and simple electrical burn group survived during the experiment. One rat in electrical burn+ saline group died on PID 6, and one rat on PID 5 and one rat on PID 6 died in electrical burn+ Xuebijing group. The levels of all indexes among the 4 groups were close at 15 min before injury. The serum content of PDGF, TPO, and PAF and platelet aggregation number of rats in the three electrical burn groups at all time points after injury were higher or more than those in sham injury group, and the first three indexes reached the peak at PIH 8. The serum platelet aggregation number of rats in simple electrical burn group reached the peak at PIH 48, and that in electrical burn+ saline group and electrical burn+ Xuebijing group reached the peak at PIH 72. Among them, the serum content of PDGF of rats in electrical burn+ Xuebijing group at PIH 48, 72 and on PID 7 ((12.8±4.0), (11.6±4.4), (11.0±3.6) ng/mL, respectively) was close to that in sham injury group ((10.4±2.0), (10.4±2.5), (9.8±3.3) ng/mL, respectively, P>0.05). The serum content of TPO of rats in electrical burn+ Xuebijing group at PIH 24, 72 and on PID 7 ((200±52), (192±36), (193±32) ng/mL, respectively) was close to that in sham injury group ((182±30) , (184±41), (183±33) ng/mL, respectively, P>0.05). The serum content of PDGF, TPO, and PAF and platelet aggregation number of rats in electrical burn+ Xuebijing group at every time point after injury was generally lower or less than that in electrical burn+ saline group and simple electrical burn group. Conclusions: Application of Xuebijing treatment after high-voltage electrical burn can decrease the content of PDGF, TPO, and PAF in the serum and reduce the number of platelet aggregation, thereby inhibit platelet activation and improve platelet rheology.
目的: 探讨高压电烧伤对大鼠血小板功能及流变行为的影响及血必净的干预作用。 方法: 将280只清洁级8~10周龄SD大鼠(雌雄不限)按照随机数字表法分为假伤组、单纯电烧伤组、电烧伤+盐水组、电烧伤+血必净组,每组70只。假伤组大鼠不通电致假伤;其余3组大鼠给予输出电压2 kV、电流强度(1.92±0.24)A持续通电3 s,造成电流入口左前肢、电流出口右后肢各1 cm×1 cm大小高压电烧伤创面。假伤组与单纯电烧伤组大鼠伤后不予处理;伤后2 min及1、2、3、4、5、6 d,电烧伤+盐水组、电烧伤+血必净组大鼠分别腹腔注射生理盐水6 mL/kg、血必净6 mL/kg。记录实验过程中大鼠的存活情况。伤前15 min及伤后1 h、8 h、24 h、48 h、72 h、7 d,每组按随机数字表法取10只大鼠经心脏直视采血5 mL后处死。取0.05 mL血液制成活血涂片,采用多项投影显微镜于400倍视野下计数血小板聚集数;其余血样离心收集上清液,采用酶联免疫吸附测定法检测血小板源性生长因子(PDGF)、血小板生成素(TPO)、血小板活化因子(PAF)含量。对数据行析因设计方差分析、SNK法检验。 结果: 假伤组和单纯电烧伤组大鼠在实验过程中均存活,电烧伤+盐水组大鼠于伤后6 d死亡1只,电烧伤+血必净组大鼠于伤后5、6 d各死亡1只。各组大鼠伤前15 min各指标水平相近。3组电烧伤大鼠伤后各时间点血清PDGF、TPO、PAF含量及血小板聚集数均高于或多于假伤组,前3个指标于伤后8 h达峰值;单纯电烧伤组大鼠血清血小板聚集数于伤后48 h达峰值,电烧伤+盐水组和电烧伤+血必净组大鼠血清血小板聚集数于伤后72 h达峰值。其中电烧伤+血必净组大鼠血清PDGF含量于伤后48、72 h及7 d[分别为(12.8±4.0)、(11.6±4.4)、(11.0±3.6)ng/mL]与假伤组[分别为(10.4±2.0)、(10.4±2.5)、(9.8±3.3)ng/mL]接近(P>0.05),血清TPO含量于伤后24、72 h及7 d[分别为(200±52)、(192±36)、(193±32)ng/mL]与假伤组[分别为(182±30)、(184±41)、(183±33)ng/mL]接近(P>0.05)。电烧伤+血必净组大鼠伤后各时间点血清PDGF、TPO、PAF含量及血小板聚集数普遍低于或少于电烧伤+盐水组和单纯电烧伤组。 结论: 大鼠高压电烧伤后应用血必净治疗可降低血清中PDGF、TPO、PAF含量及减少血小板聚集数,抑制血小板活化,从而改善血小板流变性。.
Keywords: Burns, electric; Platelet activating factor; Platelet-derived growth factor; Thrombopoietin; Xuebijing.