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肥胖及手术减肥中代谢疾病状态对人体脂肪组织生物能量学的影响。

Impact of the metabolic disease status in obesity and surgical weight loss on human adipose tissue bioenergetics.

作者信息

Pinho Aryane Cruz Oliveira, Lazaro André, Barbosa Pedro, Porter Craig, Tralhão José G, Carvalho Eugenia

机构信息

CNC UC - Center for Neuroscience and Cell Biology, University of Coimbra, Coimbra, Portugal.

CIBB - Center for Innovative Biomedicine and Biotechnology, University of Coimbra, Coimbra, Portugal.

出版信息

J Physiol. 2025 May;603(9):2583-2617. doi: 10.1113/JP286103. Epub 2025 Mar 9.

Abstract

Obesity is associated with insulin resistance (IR) development, a risk factor for type 2 diabetes (T2D). How mitochondrial bioenergetics, in adipose tissue (AT), differs according to distinct metabolic profiles (i.e. insulin sensitive (IS), IR normoglycaemic (IR-NG), pre-diabetes (PD) and T2D) is still poorly understood. The purpose of this study was to evaluate and compare bioenergetics and energy substrate preference by omental AT (OAT) and subcutaneous AT (SAT) from subjects with obesity (OB, n = 40) at distinct metabolic stages. Furthermore, AT bioenergetics was also evaluated pre- and post-bariatric/metabolic surgery (BMS). High-resolution respirometry (HRR) was used to measure the real-time oxidative phosphorylation (OXPHOS) capacity and mitochondrial substrate preferences in both tissues. Substrate-uncoupler-inhibitor titration protocols were used: SUIT-P1 (complex I and II-linked mitochondrial respiration) and SUIT-P2 (fatty acid oxidation (FAO)-linked mitochondrial respiration). Flux control ratios (FCRs) were calculated. In SUIT-P1, lower OXPHOS capacity was observed in AT, particularly in SAT, during the establishment of IR (OB-IR-NG) and in the T2D group, due to alterations of mitochondrial coupling, evaluated by FCRs. In SUIT-P2, the OXPHOS coupling efficiency was highest in the OB-IR-NG group. AT from OB-IS, OB-IR-NG and OB-IR-PD preferred pyruvate, malate and glutamate oxidation and/or FAO during OXPHOS, whereas AT from T2D preferred succinate oxidation. BMS enhanced mitochondrial respiration in OAT, even under poor OXPHOS coupling efficiency. In conclusion, real-time OXPHOS analysis by HRR may be a sensitive biomarker of mitochondrial fitness, particularly in AT. Interventions based on modulating energetic substrate availability may become a good tool for obesity treatment stratification. KEY POINTS: Omental adipose tissue shows higher oxidative phosphorylation (OXPHOS) capacity compared to subcutaneous adipose tissue in paired explants from subjects with obesity. The OXPHOS capacity of adipose tissue differs through the progression of metabolic disease. Subjects with obesity and diabetes have the lowest OXPHOS capacity in paired explants of subcutaneous and omental adipose tissues. Bariatric surgery enhanced the OXPHOS capacity in omental adipose tissue, even under poor OXPHOS coupling efficiency. Assessment of the oxidative capacity in fresh adipose tissue explants could be a sensitive tool for early diagnosis of metabolic disease.

摘要

肥胖与胰岛素抵抗(IR)的发展相关,而胰岛素抵抗是2型糖尿病(T2D)的一个风险因素。目前对于脂肪组织(AT)中线粒体生物能量学如何根据不同的代谢谱(即胰岛素敏感(IS)、IR正常血糖(IR-NG)、糖尿病前期(PD)和T2D)而有所不同,仍知之甚少。本研究的目的是评估和比较处于不同代谢阶段的肥胖受试者(OB,n = 40)的网膜脂肪组织(OAT)和皮下脂肪组织(SAT)的生物能量学和能量底物偏好。此外,还对减肥/代谢手术(BMS)前后的AT生物能量学进行了评估。采用高分辨率呼吸测定法(HRR)来测量两种组织中的实时氧化磷酸化(OXPHOS)能力和线粒体底物偏好。使用了底物-解偶联剂-抑制剂滴定方案:SUIT-P1(复合体I和II相关的线粒体呼吸)和SUIT-P2(脂肪酸氧化(FAO)相关的线粒体呼吸)。计算了通量控制率(FCR)。在SUIT-P1中,由于通过FCR评估的线粒体偶联改变,在IR建立期间(OB-IR-NG)和T2D组中,AT中观察到较低的OXPHOS能力,尤其是在SAT中。在SUIT-P2中,OB-IR-NG组的OXPHOS偶联效率最高。来自OB-IS、OB-IR-NG和OB-IR-PD的AT在OXPHOS期间更喜欢丙酮酸、苹果酸和谷氨酸氧化和/或FAO,而来自T2D的AT更喜欢琥珀酸氧化。即使在OXPHOS偶联效率较差的情况下,BMS也增强了OAT中的线粒体呼吸。总之,通过HRR进行的实时OXPHOS分析可能是线粒体健康状况的一个敏感生物标志物,尤其是在AT中。基于调节能量底物可用性的干预措施可能成为肥胖治疗分层的一个良好工具。要点:在肥胖受试者的配对组织中,网膜脂肪组织显示出比皮下脂肪组织更高的氧化磷酸化(OXPHOS)能力。脂肪组织的OXPHOS能力随着代谢疾病的进展而不同。肥胖和糖尿病受试者在皮下和网膜脂肪组织的配对组织中具有最低的OXPHOS能力。减肥手术增强了网膜脂肪组织中的OXPHOS能力,即使在OXPHOS偶联效率较差的情况下。评估新鲜脂肪组织组织块中的氧化能力可能是代谢疾病早期诊断的一个敏感工具。

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