Jens Christian Laursen1*, Randi Jepsen2 , Neda Esmailzadeh Bruun-Rasmussen2 , Marie Frimodt-Møller1 , Marit Eika Jørgensen3 , Peter Rossing1,4 and Christian Stevns Hansen1
1 Complications Research, Steno Diabetes Center Copenhagen, Herlev, Denmark,
2Center for Epidemiological Research, Nykøbing Falster Hospital, Nykøbing Falster, Denmark,
3Steno Diabetes Center Greenland, Nuuk, Greenland, 4Department of Clinical Medicine, University of Copenhagen, Copenhagen, Denmark
Aims: Low blood oxygen saturation is associated with increased mortality and persons with diabetes have sub-clinical hypoxemia. We aimed to confirm the presence of sub-clinical hypoxemia in pre-diabetes, screen-detected diabetes and known diabetes.
Methods: Pre-diabetes was defined as hemoglobin A1C (HbA1C) ≥ 42 mmol/mol and <48 mmol/mol; known diabetes as history or treatment of diabetes; screen-detected diabetes as no history or treatment of diabetes and HbA1C ≥ 48 mmol/mol. Blood oxygen saturation was measured with pulse oximetry. Urine albumin-to creatinine ratio (UACR) was measured on a single spot urine.
Results: The study included 829 adults (≥18 years) with diabetes (713 (86%) with known diabetes; 116 (14%) with screen-detected diabetes) and 12,747 without diabetes (11,981 (94%) healthy controls; 766 (6%) with pre-diabetes). Mean (95% CI) blood oxygen saturation was 96.3% (96.3% to 96.4%) in diabetes which was lower than in non-diabetes [97.3% (97.2–97.3%)] after adjustment for age, gender, and smoking (p < 0.001), but significance was lost after adjustment for BMI (p = 0.25). Sub-groups with pre-diabetes and screen-detected diabetes had lower blood oxygen saturations than healthy controls (p-values < 0.01). Lower blood oxygen saturation was associated with higher UACR.
Conclusions: Persons with pre-diabetes and screen-detected diabetes have sub-clinical hypoxemia, which is associated with albuminuria.
KEYWORDS
hypoxia, microvascular complications, albuminuria, type 2 diabetes, pre-diabetes
Annemarie Wentzel1,2,3*, Arielle C. Patterson1 , M. Grace Duhuze Karera1,4,5, Zoe C. Waldman1 , Blayne R. Schenk1 , Christopher W. DuBose1 , Anne E. Sumner1,4 and Margrethe F. Horlyck-Romanovsky1,6*
1 Section on Ethnicity and Health, Diabetes, Endocrinology, and Obesity Branch, National Institute of Diabetes, Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD, United States,
2 Hypertension in Africa Research Team, North-West University, Potchefstroom, South Africa, 3South African Medical Research Council, Unit for Hypertension and Cardiovascular Disease, North-West University, Potchefstroom, South Africa, 4National Institute of Minority Health and Health Disparities, National Institutes of Health, Bethesda, MD, United States, 5 Institute of Global Health Equity Research, University of Global Health Equity, Kigali, Rwanda, 6Department of Health and Nutrition Sciences, Brooklyn College, City University of New York, New York, NY, United States
Background: Emerging data suggests that in sub-Saharan Africa β-cell-failure in the absence of obesity is a frequent cause of type 2 diabetes (diabetes). Traditional diabetes risk scores assume that obesity-linked insulin resistance is the primary cause of diabetes. Hence, it is unknown whether diabetes risk scores detect undiagnosed diabetes when the cause is β-cell-failure.
Aims: In 528 African-born Blacks living in the United States [age 38 ± 10 (Mean ± SE); 64% male; BMI 28 ± 5 kg/m2 ] we determined the: (1) prevalence of previously undiagnosed diabetes, (2) prevalence of diabetes due to β-cell-failure vs. insulin resistance; and (3) the ability of six diabetes risk scores [Cambridge, Finnish Diabetes Risk Score (FINDRISC), Kuwaiti, Omani, Rotterdam, and SUNSET] to detect previously undiagnosed diabetes due to either β-cell-failure or insulin resistance.
Methods: Diabetes was diagnosed by glucose criteria of the OGTT and/or HbA1c ≥ 6.5%. Insulin resistance was defined by the lowest quartile of the Matsuda index (≤2.04). Diabetes due to β-cell-failure required diagnosis of diabetes in the absence of insulin resistance. Demographics, body mass index (BMI), waist circumference, visceral adipose tissue (VAT), family medical history, smoking status, blood pressure, antihypertensive medication, and blood lipid profiles were obtained. Area under the Receiver Operator Characteristics Curve (AROC) estimated sensitivity and specificity of each continuous score. AROC criteria were: Outstanding: >0.90; Excellent: 0.80–0.89; Acceptable: 0.70–0.79; Poor: 0.50–0.69; and No Discrimination: 0.50.
Results: Prevalence of diabetes was 9% (46/528). Of the diabetes cases, β-cell-failure occurred in 43% (20/46) and insulin resistance in 57% (26/46). The β-cell-failure group had lower BMI (27 ± 4 vs. 31 ± 5 kg/m2 P < 0.001), lower waist circumference (91 ± 10 vs. 101 ± 10cm P < 0.001) and lower VAT (119 ± 65 vs. 183 ± 63 cm3 , P < 0.001). Scores had indiscriminate or poor detection of diabetes due to β-cell-failure (FINDRISC AROC = 0.49 to Cambridge AROC = 0.62). Scores showed poor to excellent detection of diabetes due to insulin resistance, (Cambridge AROC = 0.69, to Kuwaiti AROC = 0.81).
Conclusions: At a prevalence of 43%, β-cell-failure accounted for nearly half of the cases of diabetes. All six diabetes risk scores failed to detect previously undiagnosed diabetes due to β-cell-failure while effectively identifyingdiabetes when the etiology was insulin resistance. Diabetes risk scores whichcorrectly classify diabetes due to B-cell-failure are urgently needed.
type 2 diabetes, risk score, African (Black) diaspora, β-cell failure, insulin resistance, diabetes screening
原创:十六点五 中山二院糖尿病足中心
糖尿病真是一种痛苦的疾病,不能吃、不能喝、常要动、老吃药等等,尤其是不能喝酒,对于一些病人真的的非常痛苦,而且在网上或者公众号还有很多关于糖尿病与喝酒的关系文章,其中有个重要的观点:喝酒可以降血糖?
糖尿病足患者是否应该运动、什么时候运动、做什么运动,目前在临床上有非常大的争议。
糖尿病足的病人临床上有一个显著的特点就是“低蛋白”血症。之前认为低蛋白血症的发病率非常高,经过对于我们医院及合作医院所有能够统计的病人进行分析,发现100%的糖尿病足(wagner分级2级以上),都会有不同程度的低蛋白血症。
糖尿病足到底痛不痛,是一个很痛苦的问题。如果不痛,患者觉得“脚都不痛了,肯定死完全了,还能保吗?”。
伤口世界平台生态圈,以“关爱人间所有伤口患者”为愿景,连接、整合和拓展线上和线下的管理慢性伤口的资源,倡导远程、就近和居家管理慢性伤口,解决伤口专家的碎片化时间的价值创造、诊疗经验的裂变复制、和患者的就近、居家和低成本管理慢性伤口的问题。
2019广东省医疗行业协会伤口管理分会年会
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