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SUN-548 Ketone Bodies in Critical Illness Alter Cholesterol Synthesis in Skeletal Muscle Interlinked with Protection Against Weakness

机译:Sun-548酮体在危重疾病中在骨骼肌中改变胆固醇合成与保护防止弱点相互联系

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Background: Critically ill patients often develop muscle weakness, which hampers recovery. In septic mice, supplementing parenteral nutrition (PN) with ketone body 3-hydroxybutyrate (3HB) attenuated muscle weakness, but also normalized sepsis-induced low cholesterol1. As 3HB can be metabolized into cholesterol, we hypothesized that improved muscle function with 3HB was related to altered cholesterol metabolism. Methods: In a catheterized, fluid-resuscitated, antibiotics-treated mouse model of prolonged sepsis (cecal ligation and puncture), septic mice received PN supplemented with either D,L-3HB sodium salt (PN+3HB; 150 mg/day) or isocaloric glucose (PN+gluc) and healthy pair-fed mice served as controls (n=15-17 mice/group). After 5 days, ex vivo muscle force and markers of cholesterol metabolism were assessed. In 600 weak and non-weak human critically ill patients (weakness assessed on day 8±1 in ICU by MRC sum score), serum total cholesterol concentration was measured on ICU day 3 or last day for shorter stayers. Results: In mice, PN+3HB counteracted the sepsis-induced lowering of plasma cholesterol (p=0.04), which correlated positively with absolute muscle force (R2=0.19, p=0.002). Plasma mevalonate concentration, a surrogate marker of cholesterol synthesis, was reduced by sepsis (p=0.03 vs. controls), but normalized by PN+3HB (p=0.001 vs. PN+gluc). Skeletal muscle expression of cholesterol synthesis genes Srebf2, Hmgcr and Hmgcs1 was higher in PN+3HB than in PN+gluc septic mice (p≤0.01). Expression of cholesterol uptake receptor Ldlr was also increased in PN+3HB septic mice (p=0.02 vs. PN+gluc), whereas PN+3HB did not affect cholesterol efflux transporters. In contrast, PN+3HB did not alter sepsis-induced alterations in markers of hepatic cholesterol metabolism. Plasma concentration of ubiquinone, a central co-factor of the mitochondrial respiratory chain derived from mevalonate, was increased by sepsis, irrespective of PN+3HB (p<0.0001 vs. controls) and PN+3HB could not counteract sepsis-induced muscular mitochondrial dysfunction (p≤0.0009 vs. controls). This excludes the involvement of ubiquinone in muscle weakness attenuation by 3HB supplementation. However, higher muscular Nceh1 expression was observed with PN+3HB (p≤0.04 vs. controls and PN+gluc), suggesting enhanced shuttling of newly formed free cholesterol to the membranes. In human ICU patients, lower serum cholesterol concentration was observed in weak vs. non-weak patients (p=0.0002). In a multivariate model adjusted for baseline risk factors, low serum cholesterol concentrations were independently associated with muscle weakness (p=0.05). Conclusion: 3HB supplementation of PN enhanced muscle cholesterol synthesis and increased plasma cholesterol, which appeared to independently protect against sepsis-induced muscle weakness. 1 Goossens et al. (2019). Crit Care. 23: 236.
机译:背景:危重患者经常发展肌肉弱点,妨碍康复。在化脓性小鼠中,用酮体3-羟基丁酸(3HB)补充肠外营养(PN)减毒肌肉弱点,但也标准化败血症诱导的低胆固醇1。由于3HB可以代谢成胆固醇,我们假设具有3HB的改善肌肉功能与改变的胆固醇代谢有关。方法:在导管,流体复苏,延长败血症(盲肠结扎和穿刺)的抗生素治疗的小鼠模型中,所接受补充有D,L-3HB钠盐(PN + 3HB; 150 mg /天)的脓菌小鼠的脓菌小鼠。异蜂狼葡萄糖(PN + Gluc)和健康对小鼠用作对照(n = 15-17只小鼠/组)。 5天后,评估前体内肌肉力和胆固醇代谢的标记。在600例弱和非弱弱的人危重患者中(通过MRC总结在ICU的第8天评估的弱点)中,在ICU第3天或最后一天测量血清总胆固醇浓度,以缩短住宿。结果:在小鼠中,PN + 3HB抵消了脓液胆固醇(P = 0.04)的败血症(P = 0.04)的降低,其用绝对肌肉力相关(R2 = 0.19,P = 0.002)。血浆甲羟戊酸浓度,胆固醇合成的替代标记物由败血症(P = 0.03对照)降低,但通过PN + 3HB归一化(P = 0.001与PN + Gluc)。胆固醇合成基因SreBF2,HMGCR和HMGCS1的骨骼肌表达高于PN +甲基菌菌小鼠(P≤0.01)的pN + 3HB。胆固醇吸收受体LDLR的表达也在PN + 3HB脓肠柄小鼠中增加(P = 0.02对pN + Gluc),而PN + 3HB不影响胆固醇的流水转运蛋白。相反,PN + 3HB没有改变肝胆固醇代谢标志物中的败血症诱导的改变。通过败血症衍生自甲氧基的线粒体呼吸链的中央呼吸链的血浆浓度,不管Pn + 3HB(P <0.0001对照),PN + 3HB无法抵消败血症诱导的肌肉线粒体功能障碍(p≤0.0009与控制)。这不包括3HB补充剂的泛喹蛋白酮在肌肉弱势衰减中。然而,用PN + 3HB(P≤0.04与对照和PN + Gluc)观察到较高的肌肉NCEH1表达,表明新形成的游离胆固醇与膜增强了穿梭。在人类ICU患者中,在弱与非弱患者中观察到降低血清胆固醇浓度(P = 0.0002)。在调整基线风险因素的多变量模型中,低血清胆固醇浓度与肌肉无弱和肌肉弱化有关(P = 0.05)。结论:PN增强肌肉胆固醇合成和增加的血浆胆固醇,从而出现独立地防止脓毒症诱导的肌肉无力的3HB补充。 1 Goossens等。 (2019)。灌区护理。 23:236。

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