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result(s) for
"Johannesen, Jesper"
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Unaffected bone mineral density in Danish children and adolescents with type 1 diabetes
by
Herskin, Camilla Winther
,
Zerahn Bo
,
Johannesen Jesper
in
Adolescents
,
Anthropometry
,
Bone density
2020
AimsAdults with type 1 diabetes mellitus (T1D) have decreased bone mineral density (BMD). Our study aimed at determining BMD and the association to metabolic control in children and adolescents with T1D.Methods244 patients (113 girls) with a median age of 14.3 years and T1D duration of 1–16 years were included. A dual-energy X-ray absorptiometry scan assessed BMD Z-scores excluding the head (total body less head, TBLH). TBLH-BMD were then investigated for associations to diabetes relevant variables such as HbA1c, insulin treatment, anthropometry and physical activity.ResultsIn all participants the TBLH-BMD Z-score (0.22 ± 0.96) was significantly higher than the references. Separated by sex, TBLH-BMD Z-score in boys (0.11 ± 0.84) was no different from healthy peers whereas TBLH-BMD Z-score was significantly higher in girls (0.36 ± 1.09). The higher TBLH-BMD Z-score in girls were explained by higher BMI Z-scores. Participants with assumed final height (based on age) had an average TBLH-BMD Z-score of 0.78 ± 1.06, significantly higher than references independent of gender, HbA1c, height- and weight Z-scores. Multiple regression analyses showed that TBLH BMD Z-score associated negatively to HbA1c (P = 0.003), pump treatment (P = 0.019) and screen-time (P = 0.005) and positively to weight Z-score (P < 0.001). Physical activity, sex and puberty did not significantly associate to TBLH-BMD Z-score.ConclusionUnlike adults with T1D, BMD is not decreased in children and adolescents with T1D and even elevated after attained final height. As HbA1c negatively associates to BMD, decreased BMD may progress over time. Whether changes in microarchitecture or bone metabolism precede changes in BMD needs further investigation.
Journal Article
Detection of capillary abnormalities in early diabetic retinopathy using scanning laser ophthalmoscopy and optical coherence tomography combined with adaptive optics
by
Andilla, Jordi
,
Larsen, Michael
,
Johannesen, Jesper
in
692/163/2743/137/138
,
692/699/3161/3175
,
Adult
2024
This study tested if a high-resolution, multi-modal, multi-scale retinal imaging instrument can provide novel information about structural abnormalities in vivo. The study examined 11 patients with very mild to moderate non-proliferative diabetic retinopathy (NPDR) and 10 healthy subjects using fundus photography, optical coherence tomography (OCT), OCT angiography (OCTA), adaptive optics scanning laser ophthalmoscopy (AO-SLO), adaptive optics OCT and OCTA (AO-OCT(A)). Of 21 eyes of 11 patients, 11 had very mild NPDR, 8 had mild NPDR, 2 had moderate NPDR, and 1 had no retinopathy. Using AO-SLO, capillary looping, inflections and dilations were detected in 8 patients with very mild or mild NPDR, and microaneurysms containing hyperreflective granular elements were visible in 9 patients with mild or moderate NPDR. Most of the abnormalities were seen to be perfused in the corresponding OCTA scans while a few capillary loops appeared to be occluded or perfused at a non-detectable flow rate, possibly because of hypoperfusion. In one patient with moderate NPDR, non-perfused capillaries, also called ghost vessels, were identified by alignment of corresponding
en face
AO-OCT and AO-OCTA images. The combination of multiple non-invasive imaging methods could identify prominent microscopic abnormalities in diabetic retinopathy earlier and more detailed than conventional fundus imaging devices.
Journal Article
The LIFE-MET trial: effect of insulin sensitization on pubertal progression following lifestyle intervention and/or treatment with metformin in girls with early puberty and overweight: study protocol for a randomized, placebo-controlled trial
2025
Background
Puberty in girls is occurring earlier worldwide with a declining trend over the recent decades, resulting in increased attention on the accompanying risks of psychosocial challenges and adverse health outcomes for the affected girls. Diverse mechanisms have been proposed as mediators of the tendency for earlier pubertal maturation, including a shift toward a more sedentary lifestyle and changes in dietary habits leading to childhood obesity. Several studies have demonstrated a potential association between the rise in childhood obesity prevalence and the decline in the age at which puberty begins. Increased insulin resistance is thought to play a role in this connection, and previous studies indicated that improved insulin sensitivity following either treatment with metformin or weight loss could delay pubertal progression in girls with overweight.
Methods
LIFE-MET is a randomized, placebo-controlled, four-arm, multicenter trial of girls (
n
= 80) with overweight and early puberty. Allocation to metformin or placebo will be double-blinded. Eligible girls will be randomly assigned to one of the four study arms: Metformin + lifestyle intervention (
N
= 20), Metformin alone (
N
= 20), Placebo + lifestyle intervention (
N
= 20), Placebo alone (
N
= 20). The intervention period is 6 months with a follow-up after an additional 6 months. The primary outcome is the change in bone age from baseline to 12 months, as a marker of pubertal progression. Secondary outcomes include changes in body composition, Tanner stage, fitness level, sex hormones, insulin resistance, and age at menarche.
Discussion
New strategies not only for the treatment but also for the prevention of both overweight and early puberty are needed. The LIFE-MET trial is a randomized controlled trial with a combination of lifestyle intervention including online, virtual reality training and a pharmacological intervention consisting of metformin and/or placebo, to our knowledge the first of its kind. We expect that this intervention will have a beneficial effect on both pubertal progression, daily physical activity level, and body composition. Additionally, a healthier body composition may have beneficial effects on long-term co-morbidities related to early puberty.
Trial registration
Clinical Trial Information System (CTIS): 2024-511009-50-00. Approved 04/30/2024.
https://euclinicaltrials.eu/search-for-clinical-trials/?lang=en&EUCT=2024-511009-50-00
.
Journal Article
Plasma Exosome-Enriched Extracellular Vesicles From Lactating Mothers With Type 1 Diabetes Contain Aberrant Levels of miRNAs During the Postpartum Period
2021
Type 1 diabetes is an immune-driven disease, where the insulin-producing beta cells from the pancreatic islets of Langerhans becomes target of immune-mediated destruction. Several studies have highlighted the implication of circulating and exosomal microRNAs (miRNAs) in type 1 diabetes, underlining its biomarker value and novel therapeutic potential. Recently, we discovered that exosome-enriched extracellular vesicles carry altered levels of both known and novel miRNAs in breast milk from lactating mothers with type 1 diabetes. In this study, we aimed to characterize exosomal miRNAs in the circulation of lactating mothers with and without type 1 diabetes, hypothesizing that differences in type 1 diabetes risk in offspring from these groups are reflected in the circulating miRNA profile. We performed small RNA sequencing on exosome-enriched extracellular vesicles extracted from plasma of 52 lactating mothers around 5 weeks postpartum (26 with type 1 diabetes and 26 age-matched controls), and found a total of 2,289 miRNAs in vesicles from type 1 diabetes and control libraries. Of these, 176 were differentially expressed in plasma from mothers with type 1 diabetes (167 upregulated; 9 downregulated, using a cut-off of abs(log2FC) >1 and FDR adjusted p-value <0.05). Extracellular vesicles were verified by nanoparticle tracking analysis, transmission electron microscopy and immunoblotting. Five candidate miRNAs were selected based on their involvement in diabetes and immune modulation/beta-cell functions: hsa-miR-127-3p, hsa-miR-146a-5p, hsa-miR-26a-5p, hsa-miR-24-3p and hsa-miR-30d-5p. Real-time qPCR validation confirmed that hsa-miR-146a-5p, hsa-miR-26a-5p, hsa-miR-24-3p, and hsa-miR-30d-5p were significantly upregulated in lactating mothers with type 1 diabetes as compared to lactating healthy mothers. To determine possible target genes and affected pathways of the 5 miRNA candidates, computational network-based analyses were carried out with TargetScan, mirTarBase, QIAGEN Ingenuity Pathway Analysis and PantherDB database. The candidates showed significant association with inflammatory response and cytokine and chemokine mediated signaling pathways. With this study, we detect aberrant levels of miRNAs within plasma extracellular vesicles from lactating mothers with type 1 diabetes during the postpartum period, including miRNAs with associations to disease pathogenesis and inflammatory responses.
Journal Article
Systemic TNFα correlates with residual β-cell function in children and adolescents newly diagnosed with type 1 diabetes
by
Størling, Joachim
,
Johannesen, Jesper
,
Overgaard, Anne Julie
in
Adolescent
,
Biomarkers
,
C-Peptide
2020
Background
Type 1 diabetes (T1D) is caused by immune-mediated destruction of the β-cells. After initiation of insulin therapy many patients experience a period of improved residual β-cell function leading to partial disease remission. Cytokines are important immune-modulatory molecules and contribute to β-cell damage in T1D. The patterns of systemic circulating cytokines during T1D remission are not clear but may constitute biomarkers of disease status and progression. In this study, we investigated if the plasma levels of various pro- and anti-inflammatory cytokines around time of diagnosis were predictors of remission and residual β-cell function in children with T1D followed for one year after disease onset.
Methods
In a cohort of 63 newly diagnosed children (33% females) with T1D with a mean age of 11.3 years (3.3–17.7), ten cytokines were measured of which eight were detectable in plasma samples by Mesoscale Discovery multiplex technology at study start and after 6 and 12 months. Linear regression models were used to evaluate association of cytokines with stimulated C-peptide.
Results
Systemic levels of tumor necrosis factor (TNF)-α, interleukin (IL)-2 and IL-6 inversely correlated with stimulated C-peptide levels over the entire study (
P
< 0.05). The concentrations of TNFα and IL-10 at study start predicted stimulated C-peptide level at 6 months (
P
= 0.011 and
P
= 0.043, respectively, adjusted for sex, age, HbA1c and stage of puberty).
Conclusions
In recent-onset T1D, systemic cytokine levels, and in particular that of TNFα, correlate with residual β-cell function and may serve as prognostic biomarkers of disease remission and progression to optimize treatment strategies.
Trial Registration
The study was performed according to the criteria of the Helsinki II Declaration and was approved by the Danish Capital Region Ethics Committee on Biomedical Research Ethics (journal number H-3-2014-052). The parents of all participants gave written consent.
Journal Article
Danish Registry of Childhood and Adolescent Diabetes
by
Johannesen, Jesper
,
Svensson, Jannet
,
Cerqueira, Charlotte Soares
in
Child development
,
Childhood
,
Children
2016
The aims of the Danish Registry of Childhood and Adolescent Diabetes (DanDiabKids) are to monitor and improve the quality of care for children and adolescents with diabetes in Denmark and to follow the incidence and prevalence of diabetes.
The study population consists of all children diagnosed with diabetes before the age of 15 years since 1996. Since 2015, every child followed up at a pediatric center (<18 years of age) will be included.
The variables in the registry are the quality indicators, demographic variables, associated conditions, diabetes classification, family history of diabetes, growth parameters, self-care, and treatment variables. The quality indicators are selected based on international consensus of measures of good clinical practice. The indicators are metabolic control as assessed by HbA1c, blood pressure, albuminuria, retinopathy, neuropathy, number of severe hypoglycemic events, and hospitalization with ketoacidosis.
The number of children diagnosed with diabetes is increasing with ∼3% per year mainly for type 1 diabetes (ie, 296 new patients <15 years of age were diagnosed in 2014). The disease management has changed dramatically with more children treated intensively with multiple daily injections, insulin pumps, and increased number of self-monitored blood glucose values per day. These initiatives have resulted in a significant improvement in HbA1c over the years and a decrease in the number of children experiencing severe hypoglycemia, diabetic nephropathy, and retinopathy.
The systematic collection of data in DanDiabKids documents improved quality of care over the last 12 years, despite a substantial increase in the number of patients cared for by pediatric departments in Denmark, fulfilling the purpose of the registry.
Journal Article
Pro-Inflammatory Cytokines Promote the Transcription of Circular RNAs in Human Pancreatic β Cells
by
Eizirik, Decio L.
,
Johannesen, Jesper
,
Kaur, Simranjeet
in
Apoptosis
,
Beta cells
,
Binding sites
2022
Circular RNAs (circRNAs) have recently been implicated in impaired β-cell function in diabetes. Using microarray-based profiling of circRNAs in human EndoC-βH1 cells treated with pro-inflammatory cytokines, this study aimed to investigate the expression and possible regulatory roles of circRNAs in human β cells. We identified ~5000 β-cell-expressed circRNAs, of which 84 were differentially expressed (DE) after cytokine exposure. Pathway analysis of the host genes of the DE circRNAs revealed the enrichment of cytokine signaling pathways, indicative of circRNA transcription from inflammatory genes in response to cytokines. Multiple binding sites for β-cell-enriched microRNAs and RNA-binding proteins were observed for the highly upregulated circRNAs, supporting their function as ‘sponges’ or ‘decoys’. We also present evidence for circRNA sequence conservation in multiple species, the presence of cytokine-induced regulatory elements, and putative protein-coding potential for the DE circRNAs. This study highlights the complex regulatory potential of circRNAs, which may play a crucial role during immune-mediated β-cell destruction in type 1 diabetes.
Journal Article
CYP24A1 Mutation in a Girl Infant with Idiopathic Infantile Hypercalcemia
by
Beck, Bodo
,
Johannesen, Jesper
,
Broby Madsen, Jens Otto
in
Blood tests
,
Case Report
,
Diabetes
2018
Idiopathic infantile hypercalcemia (IIH) was associated with vitamin-D supplementation in the 1950's. Fifty years later, mutations in the CYP241A gene, involved in the degradation of vitamin-D, have been identified as being a part of the etiology. We report a case of a 21-month old girl, initially hospitalized due to excessive consumption of water and behavioral difficulties. Blood tests showed hypercalcemia and borderline high vitamin-D levels. Renal ultrasound revealed medullary nephrocalcinosis. An abnormality in vitamin-D metabolism was suspected and genetic testing was performed. This revealed the patient to be compound heterozygous for a common (p.E143del) and a novel (likely) disease-causing mutation (p.H83D) in the CYP24A1 gene. The hypercalcemia normalized following a calcium depleted diet and discontinuation of vitamin-D supplementation. Increased awareness of the typical symptoms of hypercalcemia, such as anorexia, polydipsia, vomiting and failure to thrive, is of utmost importance in diagnosing IHH early and preventing long-term complications such as nephrocalcinosis. Further identification of as many disease-causing mutations in the CYP24A1 gene as possible can help identification of predisposed individuals in whom vitamin-D supplementation should be reconsidered.
Journal Article
Complex Multi-Block Analysis Identifies New Immunologic and Genetic Disease Progression Patterns Associated with the Residual β-Cell Function 1 Year after Diagnosis of Type 1 Diabetes
by
Johannesen, Jesper
,
Andersen, Marie Louise Max
,
Pociot, Flemming
in
Adolescent
,
Age of Onset
,
Alleles
2013
The purpose of the present study is to explore the progression of type 1 diabetes (T1D) in Danish children 12 months after diagnosis using Latent Factor Modelling. We include three data blocks of dynamic paraclinical biomarkers, baseline clinical characteristics and genetic profiles of diabetes related SNPs in the analyses. This method identified a model explaining 21.6% of the total variation in the data set. The model consists of two components: (1) A pattern of declining residual β-cell function positively associated with young age, presence of diabetic ketoacidosis and long duration of disease symptoms (P = 0.0004), and with risk alleles of WFS1, CDKN2A/2B and RNLS (P = 0.006). (2) A second pattern of high ZnT8 autoantibody levels and low postprandial glucagon levels associated with risk alleles of IFIH1, TCF2, TAF5L, IL2RA and PTPN2 and protective alleles of ERBB3 gene (P = 0.0005). These results demonstrate that Latent Factor Modelling can identify associating patterns in clinical prospective data--future functional studies will be needed to clarify the relevance of these patterns.
Journal Article