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56 result(s) for "Jansen, Henry J."
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IL-37 protects against obesity-induced inflammation and insulin resistance
Cytokines of the IL-1 family are important modulators of obesity-induced inflammation and the development of systemic insulin resistance. Here we show that IL-1 family member IL-37, recently characterized as an anti-inflammatory cytokine, ameliorates obesity-induced inflammation and insulin resistance. Mice transgenic for human IL-37 (IL-37tg) exhibit reduced numbers of adipose tissue macrophages, increased circulating levels of adiponectin and preserved glucose tolerance and insulin sensitivity after 16 weeks of HFD. In vitro treatment of adipocytes with recombinant IL-37 reduces adipogenesis and activates AMPK signalling. In humans, elevated steady-state IL-37 adipose tissue mRNA levels are positively correlated with insulin sensitivity and a lower inflammatory status of the adipose tissue. These findings reveal IL-37 as an important anti-inflammatory modulator during obesity-induced inflammation and insulin resistance in both mice and humans, and suggest that IL-37 is a potential target for the treatment of obesity-induced insulin resistance and type 2 diabetes. Inflammation is a hallmark of obesity and driver of various associated pathologies. Here the authors show that mice overexpressing the anti-inflammatory cytokine IL-37 are protected from the metabolic consequences of a high-fat diet, and that plasma levels of IL-37 correlate with insulin sensitivity in humans.
Liraglutide reverses pronounced insulin-associated weight gain, improves glycaemic control and decreases insulin dose in patients with type 2 diabetes: a 26 week, randomised clinical trial (ELEGANT)
Aims/hypothesis The best treatment strategy for a patient with type 2 diabetes who shows pronounced weight gain after the introduction of insulin treatment is unclear. We determined whether addition of a glucagon-like peptide-1 (GLP-1) analogue could reverse pronounced insulin-associated weight gain while maintaining glycaemic control, and compared this with the most practised strategy, continuation and intensification of standard insulin therapy. Methods In a 26-week, randomised controlled trial (ELEGANT), conducted in the outpatient departments of one academic and one large non-academic teaching hospital in the Netherlands, adult patients with type 2 diabetes with ≥4% weight gain during short-term (≤16 months) insulin therapy received either open-label addition of liraglutide 1.8 mg/day ( n  = 26) or continued standard therapy ( n  = 24). A computer-generated random number list was used to allocate treatments. Participants were evaluated every 4–6 weeks for weight, glycaemic control and adverse events. The primary endpoint was between-group weight difference after 26 weeks of treatment (intention to treat). Results Of 50 randomised patients (mean age 58 years, BMI 33 kg/m 2 , HbA 1c 7.4% [57 mmol/mol]), 47 (94%) completed the study; all patients were analysed. Body weight decreased by 4.5 kg with liraglutide and increased by 0.9 kg with standard therapy (mean difference −5.2 kg [95% CI −6.7, −3.6 kg]; p  < 0.001). The respective changes in HbA 1c were −0.77% (−8.4 mmol/mol) and +0.01% (+0.1 mmol/mol) (difference −0.74% [−8.1 mmol/mol]) ([95% CI −1.08%, −0.41%] [−11.8, −4.5 mmol/mol]; p  < 0.001); respective changes in insulin dose were −29 U/day and +5 U/day (difference −33 U/day [95% CI −41, −25 U/day]; p  < 0.001). In five patients (19%), insulin could be completely discontinued. Liraglutide was well tolerated; no severe adverse events or severe hypoglycaemia occurred. Conclusions/interpretation In patients with pronounced insulin-associated weight gain, addition of liraglutide to their treatment regimen reverses weight, decreases insulin dose and improves glycaemic control, and hence seems a valuable therapeutic option compared with continuation of standard insulin treatment. Trial registration ClinicalTrials.gov NCT01392898 Funding The study was funded by Novo Nordisk.
26. Liraglutide Reverses Pronounced Insulin-Associated Weight Gain, Improves Glycemic Control, and Decreases Insulin Dose in Patients with Type 2 Diabetes (973-P)
Insulin-induced weight gain, often occurring over the first 9-12 months after starting insulin in patients with type 2 diabetes (T2DM), is obviously undesirable in an already overweight population and may offset the beneficial effects of insulin. We hypothesized that addition of liraglutide may be especially effective in reversing body weight in patients with pronounced insulin-associated weight gain while preserving glycemic control. This hypothesis was tested in a randomized controlled trial (ELEGANT).
PS1 - 1. TLR-3 is highly expressed in human adipocytes, but deficiency of TLR3 does not protect against obesity-induced inflammation and insulin resistance in mice
Obesity is associated with systemic, chronic low-grade inflammation arising from adipose tissue, leading to the development of insulin resistance and eventually type 2 diabetes. The infiltration of macrophages in adipose tissue is pivotal in the instigation and aggrevation of this inflammation and orchestrates the secretion of pro-inflammatory cytokines, such as IL-1β and TNFα.
Correction: Corrigendum: IL-37 protects against obesity-induced inflammation and insulin resistance
Nature Communications 5: Article number: 4711 (2014); Published: 3 September 2014; Updated: 12 January 2015. The financial support for this Article was not fully acknowledged. The Acknowledgements should have read: R.S. was supported by a Ruby Grant of the Dutch Diabetes Research Foundation. C.A.D. was supported by the National Institutes of Health (grant number AI15614).
Alcohol consumption and microvascular dysfunction: a J-shaped association: The Maastricht Study
Background Microvascular dysfunction (MVD) is an important contributor to major clinical disease such as stroke, dementia, depression, retinopathy, and chronic kidney disease. Alcohol consumption may be a determinant of MVD. Objective Main objectives were (1) to study whether alcohol consumption was associated with MVD as assessed in the brain, retina, skin, kidney and in the blood; and (2) to investigate whether associations differed by history of cardiovascular disease or sex. Design We used cross-sectional data from The Maastricht Study (N = 3,120 participants, 50.9% men, mean age 60 years, and 27.5% with type 2 diabetes [the latter oversampled by design]). We used regression analyses to study the association between total alcohol (per unit and in the categories, i.e. none, light, moderate, high) and MVD, where all measures of MVD were combined into a total MVD composite score (expressed in SD). We adjusted all associations for potential confounders; and tested for interaction by sex, and history of cardiovascular disease. Additionally we tested for interaction with glucose metabolism status. Results The association between total alcohol consumption and MVD was non-linear, i.e. J-shaped. Moderate versus light total alcohol consumption was significantly associated with less MVD, after full adjustment (beta [95% confidence interval], -0.10 [-0.19; -0.01]). The shape of the curve differed with sex (P interaction  = 0.03), history of cardiovascular disease (P interaction  < 0.001), and glucose metabolism status (P interaction  = 0.02). Conclusions The present cross-sectional, population-based study found evidence that alcohol consumption may have an effect on MVD. Hence, although increasing alcohol consumption cannot be recommended as a policy, this study suggests that prevention of MVD may be possible through dietary interventions.
Use of Silica Nanoparticles for Drug Delivery in Cardiovascular Disease
Cardiovascular disease (CVD) is the leading cause of death worldwide. The current CVD therapeutic drugs require long-term treatment with high doses, which increases the risk of adverse effects while offering only marginal treatment efficacy. Silica nanoparticles (SNPs) have been proven to be an efficient drug delivery vehicle for numerous diseases, including CVD. This article reviews recent progress and advancement in targeted delivery for drugs and diagnostic and theranostic agents using silica nanoparticles to achieve therapeutic efficacy and improved detection of CVD in clinical and preclinical settings. A search of PubMed, Scopus, and Google Scholar databases from 1990 to 2023 was conducted. Current clinical trials on silica nanoparticles were identified through ClinicalTrials.gov. Search terms include silica nanoparticles, cardiovascular diseases, drug delivery, and therapy. Silica nanoparticles exhibit biocompatibility in biological systems, and their shape, size, surface area, and surface functionalization can be customized for the safe transport and protection of drugs in blood circulation. These properties also enable effective drug uptake in specific tissues and controlled drug release after systemic, localized, or oral delivery. A range of silica nanoparticles have been used as nanocarrier for drug delivery to treat conditions such as atherosclerosis, hypertension, ischemia, thrombosis, and myocardial infarction. The use of silica nanoparticles for drug delivery and their ongoing development has emerged as a promising strategy to improve the effectiveness of drugs, imaging agents, and theranostics with the potential to revolutionize the treatment of CVD. [Display omitted]
Subcortical shape alterations in major depressive disorder: Findings from the ENIGMA major depressive disorder working group
Alterations in regional subcortical brain volumes have been investigated as part of the efforts of an international consortium, ENIGMA, to identify reliable neural correlates of major depressive disorder (MDD). Given that subcortical structures are comprised of distinct subfields, we sought to build significantly from prior work by precisely mapping localized MDD‐related differences in subcortical regions using shape analysis. In this meta‐analysis of subcortical shape from the ENIGMA‐MDD working group, we compared 1,781 patients with MDD and 2,953 healthy controls (CTL) on individual measures of shape metrics (thickness and surface area) on the surface of seven bilateral subcortical structures: nucleus accumbens, amygdala, caudate, hippocampus, pallidum, putamen, and thalamus. Harmonized data processing and statistical analyses were conducted locally at each site, and findings were aggregated by meta‐analysis. Relative to CTL, patients with adolescent‐onset MDD (≤ 21 years) had lower thickness and surface area of the subiculum, cornu ammonis (CA) 1 of the hippocampus and basolateral amygdala (Cohen's d = −0.164 to −0.180). Relative to first‐episode MDD, recurrent MDD patients had lower thickness and surface area in the CA1 of the hippocampus and the basolateral amygdala (Cohen's d = −0.173 to −0.184). Our results suggest that previously reported MDD‐associated volumetric differences may be localized to specific subfields of these structures that have been shown to be sensitive to the effects of stress, with important implications for mapping treatments to patients based on specific neural targets and key clinical features.
Trauma resuscitation with Low-Titer Group O Whole Blood Or Products: study protocol for a randomized clinical trial (the TROOP trial)
Background Hemorrhage is the most common cause of potentially preventable death after injury. Balanced transfusion with red blood cells, plasma, and platelets (component therapy, CT) has been shown to reduce mortality, and is the standard of care. Low-Titer Group O Whole Blood (LTOWB) is an attractive alternative to CT, but existing evidence comprises observational studies, and a small single center pilot randomized controlled trial, which evaluated a type of whole blood that is no longer in use. The aim of the “Trauma Resuscitation with Low-Titer Group O Whole Blood Or Products” (TROOP) trial is to compare the effectiveness and safety of LTOWB and CT in critically injured patients predicted to require a large volume transfusion. Methods This is a pragmatic, multicenter, Bayesian, sequential non-inferiority/superiority, randomized clinical trial, performed within 15 level I trauma centers in the United States. We aim to randomize 1,100 injured patients to resuscitation with either CT or LTOWB. The primary outcome is 6-h mortality. Secondary outcomes include 24-h and 30-day or hospital mortality (whichever is earlier); prespecified complications; adjudicated cause of death; time to death; length of stay (ICU and hospital); and hospital-, ventilator- and ICU-free days; the incidence of major surgical procedures; time to hemostasis in those undergoing procedures with a hemostatic component; number and type of blood products used until hemostasis is achieved (and randomized products are discontinued), as well as after hemostasis has been achieved, to 24 h post-admission; discharge destination and functional status and quality of life at hospital discharge or 30 days, as measured by Glasgow Coma Scale (GCS) and EuroQol (EQ-5D) quality of life measurement. Discussion This large multicenter clinical trial will contribute high-level evidence on the effectiveness of Low-Titer Group O Whole Blood in the in-hospital management of trauma patients predicted to require a large volume transfusion. Trial registration National Clinical Trial Identified Number: NCT05638581. Clinical trial registry: https://clinicaltrials.gov/study/NCT05638581 First submitted 2022–11-08.