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新生儿肠道缺血:肠道成熟的作用。

Intestinal ischemia in the newborn: the role of intestinal maturation.

作者信息

Musemeche C A, Pizzini R P, Andrassy R J

机构信息

Department of Surgery, University of Texas Medical School, Houston 77030.

出版信息

J Surg Res. 1993 Dec;55(6):595-8. doi: 10.1006/jsre.1993.1190.

Abstract

Premature infants are susceptible to intestinal ischemia during the newborn period when their intestinal tracts are functionally and structurally immature. Studies have shown that exogenous glucocorticoids hasten intestinal maturation. We investigated the effects of hydrocortisone on platelet activating factor (PAF)-induced intestinal ischemia in the neonatal rat. On Postnatal Days 7-11, Sprague-Dawley rats were given intraperitoneal (ip) injections of either saline (SAL) or hydrocortisone (HC; 50 mg/kg total). On Day 12, rats were injected with either PAF (2 micrograms/kg) or an equal volume of saline. After 2 hr the rats were sacrificed and sections were taken for histology. The remaining intestine was analyzed for maltase, lactase, myeloperoxidase (MPO), and xanthine oxidase (XO). Experimental groups were as follows: SAL (N = 8), received saline only; SAL+PAF (N = 8), received saline plus PAF; HC (N = 3), received hydrocortisone+saline; and HC+PAF (N = 5), received hydrocortisone plus PAF. XO was significantly decreased (P < 0.001) in the hydrocortisone-treated groups (HC + SAL = 16.36 +/- 18.42 units/g protein, HC + PAF = 17.33 +/- 9.06 units/g protein) vs the controls (SAL only = 108.90 +/- 20.24 units g/protein, SAL + PAF = 145.77 21.28 units/g protein). MPO was not significantly elevated in SAL + PAF (4.60 +/- 0.95 units/g protein) vs HC + PAF (2.18 +/- 0.80 units/g protein) in this study. Maltase was significantly elevated (P < 0.001) in the HC + PAF (241.46 +/- 40.6 mole/min/g protein) and HC + SAL (152.78 +/- 16.35 mole/min/g protein) vs saline only (28.35 +/- 5.77 mole/min/g protein and SAL + PAF (37.29 +/- 8.70 mole/min/g protein. Animals (7/8) in the SAL + PAF group developed ischemia by inspection and histologic exam.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

早产儿在新生儿期肠道功能和结构不成熟时易患肠道缺血。研究表明,外源性糖皮质激素可加速肠道成熟。我们研究了氢化可的松对新生大鼠血小板活化因子(PAF)诱导的肠道缺血的影响。在出生后第7至11天,给斯普拉格-道利大鼠腹腔注射生理盐水(SAL)或氢化可的松(HC;总量50mg/kg)。在第12天,给大鼠注射PAF(2微克/千克)或等体积的生理盐水。2小时后处死大鼠,取组织切片进行组织学检查。对剩余肠道进行麦芽糖酶、乳糖酶、髓过氧化物酶(MPO)和黄嘌呤氧化酶(XO)分析。实验组如下:SAL组(N = 8),仅接受生理盐水;SAL+PAF组(N = 8),接受生理盐水加PAF;HC组(N = 3),接受氢化可的松加生理盐水;HC+PAF组(N = 5),接受氢化可的松加PAF。与对照组(仅SAL组 = 108.90 +/- 20.24单位/克蛋白质,SAL+PAF组 = 145.77 +/- 21.28单位/克蛋白质)相比,氢化可的松治疗组(HC + SAL = 16.36 +/- 18.42单位/克蛋白质,HC + PAF = 17.33 +/- 9.06单位/克蛋白质)的XO显著降低(P < 0.001)。在本研究中,SAL + PAF组(4.60 +/- 0.95单位/克蛋白质)与HC + PAF组(2.18 +/- 0.80单位/克蛋白质)相比,MPO没有显著升高。与仅生理盐水组(28.35 +/- 5.77摩尔/分钟/克蛋白质)和SAL + PAF组(37.29 +/- 8.70摩尔/分钟/克蛋白质)相比,HC + PAF组(241.46 +/- 40.6摩尔/分钟/克蛋白质)和HC + SAL组(152.78 +/- 16.35摩尔/分钟/克蛋白质)的麦芽糖酶显著升高(P < 0.001)。通过检查和组织学检查,SAL + PAF组中的动物(7/8)发生了缺血。(摘要截断于250字)

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