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胰岛素可降低大鼠异氟烷最低肺泡麻醉浓度,且此作用与对脊髓的影响无关。

Insulin decreases isoflurane minimum alveolar anesthetic concentration in rats independently of an effect on the spinal cord.

作者信息

Xing Yilei, Sonner Jim, Laster Michael J, Abaigar Wella, Caraiscos Valerie B, Orser Beverley, Eger Edmond I

机构信息

*Department of Anesthesia and Perioperative Care, University of California, San Francisco, California; and †Department of Anesthesia, University of Toronto, Toronto, Ontario, Canada.

出版信息

Anesth Analg. 2004 Jun;98(6):1712-1717. doi: 10.1213/01.ANE.0000113550.47942.47.

Abstract

UNLABELLED

The observation that insulin supplies an element of analgesia suggests that insulin administration might decrease the concentration of inhaled anesthetic required to produce MAC (the minimum alveolar anesthetic concentration required to eliminate movement in response to noxious stimulation in 50% of subjects). We hypothesized that insulin decreases MAC by directly affecting the nervous system, by decreasing blood glucose, or both. To test these hypotheses, we infused increasing doses of insulin either intrathecally or IV in rats anesthetized with isoflurane and determined the resulting MAC change (assessing forelimb and hindlimb movement separately). Infusion of insulin produced a dose-related decrease in MAC that did not differ among groups. That is, the IV and intrathecal infusions caused similar decreases in MAC at a given infusion rate. Blood glucose concentrations were larger in the rats given insulin with 5% dextrose. However, the percentage change in MAC determined from forelimb versus hindlimb movement did not differ. For a given insulin infusion rate, MAC changes and glucose levels did not correlate with each other, except, possibly, for the most rapid infusion rate, for which smaller glucose concentrations were associated with a marginally larger decrease in MAC. Intrathecal infusions of insulin did not produce spinal cord injury. In summary, we found that insulin decreases isoflurane MAC in a dose-related manner independently of its effects on the blood concentration of glucose. The sites at which insulin acts to decrease MAC appear to be supraspinal rather than spinal. The effect may be due to a capacity of insulin to produce analgesia through an action on one or more neurotransmitter receptors.

IMPLICATIONS

Intrathecal and IV insulin administration equally decrease isoflurane MAC in rats, regardless of the concentration of blood sugar. These findings indicate that although insulin decreases MAC, the decrease is not mediated by actions on the spinal cord.

摘要

未标注

胰岛素具有镇痛作用这一观察结果表明,给予胰岛素可能会降低产生MAC(使50%的受试者对有害刺激不产生运动反应所需的最低肺泡麻醉浓度)所需的吸入麻醉药浓度。我们假设胰岛素通过直接影响神经系统、降低血糖水平或两者兼而有之来降低MAC。为了验证这些假设,我们在异氟烷麻醉的大鼠中经鞘内或静脉注射递增剂量的胰岛素,并确定由此产生的MAC变化(分别评估前肢和后肢运动)。胰岛素输注导致MAC呈剂量相关下降,各实验组间无差异。也就是说,在给定的输注速率下,静脉输注和鞘内输注导致的MAC下降相似。给予含5%葡萄糖的胰岛素的大鼠血糖浓度更高。然而,根据前肢与后肢运动确定的MAC变化百分比并无差异。对于给定的胰岛素输注速率,MAC变化与血糖水平除了在可能是最快输注速率时不相关外,其他情况下均不相关,在最快输注速率时,血糖浓度较低与MAC的略微更大下降相关。鞘内注射胰岛素未导致脊髓损伤。总之,我们发现胰岛素以剂量相关的方式降低异氟烷MAC,且与其对血糖浓度的影响无关。胰岛素降低MAC的作用部位似乎是脊髓以上而非脊髓。这种作用可能是由于胰岛素能够通过作用于一种或多种神经递质受体产生镇痛作用。

启示

在大鼠中,鞘内和静脉注射胰岛素均能同等程度地降低异氟烷MAC,与血糖浓度无关。这些发现表明,虽然胰岛素可降低MAC,但这种降低并非由对脊髓的作用介导。

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