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首页> 外文期刊>BMC Anesthesiology >Inhibition of adenosine A1 receptors abolished the nutritional ketosis-evoked delay in the onset of isoflurane-induced anesthesia in Wistar Albino Glaxo Rijswijk rats
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Inhibition of adenosine A1 receptors abolished the nutritional ketosis-evoked delay in the onset of isoflurane-induced anesthesia in Wistar Albino Glaxo Rijswijk rats

机译:抑制腺苷A1受体废除了Wistar Albaxo Rijswijk大鼠异氟醚诱导的麻醉发作中的营养酮症诱发延迟

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It has been demonstrated that administration of exogenous ketone supplement ketone salt (KS) and ketone ester (KE) increased blood ketone level and delayed the onset of isoflurane-induced anesthesia in different rodent models, such as Wistar Albino Glaxo Rijswijk (WAG/Rij) rats. The modulatory effect of adenosinergic system may have a role in the ketone supplementation-evoked effects on isoflurane-generated anesthesia. Thus, we investigated whether adenosine receptor antagonists can modulate the effect of exogenous ketone supplements on the onset of akinesia induced by isoflurane. To investigate the effect of exogenous ketone supplements on anesthetic induction we used ketone supplement KE, KS, KEKS (1:1 mix of KE and KS), KSMCT and KEMCT (1:1 mix of KS and KE with medium chain triglyceride/MCT oil, respectively) in WAG/Rij rats. Animals were fed with standard diet (SD), which was supplemented by oral gavage of different ketone supplements (2.5?g/kg/day) for 1?week. After 7?days, isoflurane (3%) was administered for 5?min and the time until onset of isoflurane-induced anesthesia (time until immobility; light phase of anesthesia: loss of consciousness without movement) was measured. Changes in levels of blood β-hydroxybutyrate (βHB), blood glucose and body weight of animals were also recorded. To investigate the putative effects of adenosine receptors on ketone supplements-evoked influence on isoflurane-induced anesthesia we used a specific adenosine A1 receptor antagonist DPCPX (intraperitoneally/i.p. 0.2?mg/kg) and a selective adenosine A2A receptor antagonist SCH 58261 (i.p. 0.5?mg/kg) alone as well as in combination with KEKS. Significant increases were demonstrated in both blood βHB levels and the number of seconds required before isoflurane-induced anesthesia (immobility) after the final treatment by all exogenous ketone supplements. Moreover, this effect of exogenous ketone supplements positively correlated with blood βHB levels. It was also demonstrated that DPCPX completely abolished the effect of KEKS on isoflurane-induced anesthesia (time until immobility), but not SCH 58261. These findings strengthen our previous suggestion that exogenous ketone supplements may modulate the isoflurane-induced onset of anesthesia (immobility), likely through A1Rs.
机译:已经证明外源酮补充酮盐(Ks)和酮酯(Ketone酯(Ketone酯(Ke)的施用增加,并在不同的啮齿动物模型中延迟了异氟醚诱导的麻醉,例如Wistar AlbinoGlaxo Rijsk(Wag / Rij)老鼠。腺苷能系统的调节效果可能在酮补充诱发的异氟烷的麻醉作用中具有作用。因此,我们研究了腺苷受体拮抗剂是否可以调节外源性酮补充剂对异氟醚诱导的α的爆发作用。探讨外源酮补充剂对麻醉感应的影响我们使用酮补充ke,ks,keks(1:1混合物的Ke和Ks),KSMCT和KEMCT(1:1混合Ks和Ke和Ke,甘油三酯/ MCT油。分别在摇摆/ rij大鼠中。用标准饮食(SD)喂食动物,其由不同酮补充剂的口服饲料(2.5?g / kg /天)补充1?周。 7.经过7-天,给予异氟烷(3%)5?min,直至异氟醚诱导的麻醉发作直至异常的时间;麻醉的轻阶段:无运动的丧失而没有运动的损失)。还记录了血液β-羟丁酯(β-羟基丁酸酯(β-羟基丁酸酯(β-羟基丁酸(β-羟基丁酸酯水平的变化,血糖和动物的体重。为了研究腺苷受体对酮补充剂的推定作用诱发对异氟醚诱导的麻醉的影响我们使用特定的腺苷A1受体拮抗剂DPCPX(腹膜内/ IP 0.2×Mg / kg)和选择性腺苷A2a受体拮抗剂SCH 58261(IP 0.5毫克/ kg)单独以及与键组合的组合。在所有外源酮补充剂的最终处理后,在血液βHB水平和异氟烷诱导的麻醉后所需的秒数和秒数显着增加。此外,外源酮补充剂与血液βHB水平正相关的这种效果。还证明了DPCPX完全废除了甜点对异氟烷诱导的麻醉的影响(直至不动的时间),但不是SCH 58261.这些发现强化了我们以前的建议,即外源性酮补充剂可以调节异氟烷诱导的麻醉发作(不动) ,可能通过A1RS。

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