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Biomedical subjects

M Knip

Publications and source records attributed to M Knip.

At least 163 records · Page 9Linked to original sources

Accelerated pubertal development in patients with shunted hydrocephalus.

OBJECTIVE: To evaluate pubertal development and peripheral concentrations of gonadotrophins and sex hormones in children with shunted hydrocephalus compared with healthy controls. STUDY DESIGN: 114 patients (52 females, 62 males) and 73 healthy controls (35 females, 38 males) aged 5 to 20 years were analysed for stage of puberty, age at menarche, testicular volume, basal serum follicle stimulating hormone (FSH), luteinising hormone (LH), sex hormone binding globulin (SHBG), testosterone and oestradiol concentrations, and free androgen index. RESULTS: Male gonadal and male and female pubic hair development occurred significantly earlier in the patients than in the controls. The mean age at menarche was significantly lower in the female patients than in their controls (11.7 v 13.2 years; p < 0.001), and lower than it had been for their mothers (v 13.1 years; p < 0.001). Relative testicular volume was higher in the male patients than in their controls (1.2 standard deviation score (SDS) v 0.2 SDS; p < 0.001). The prepubertal patients had higher basal LH (0.13 U/l v 0.08 U/l; p < 0.001) and SHBG (132.3 nmol/l v 109.1 nmol/l; p < 0.01) than the controls. Both the prepubertal and pubertal females had significantly higher basal FSH than their controls (1.57 U/l v 1.03 U/l; p < 0.05, and 4.0 U/l v 2.9 U/l; p < 0.01, respectively). CONCLUSIONS: Hydrocephalic children experience accelerated pubertal maturation, reflected in a younger age at menarche in females and an increased testicular volume in males. This may be because of enhanced gonadotrophin secretion, possibly resulting from unphysiological variations in intracranial pressure.

Adolescent↗

Ketoacidosis at the diagnosis of type 1 (insulin dependent) diabetes mellitus is related to poor residual beta cell function. Childhood Diabetes in Finland Study Group.

The determinants of the degree of metabolic decompensation at the diagnosis of type 1 (insulin dependent) diabetes mellitus (IDDM) and the possible role of diabetic ketoacidosis in the preservation and recovery of residual beta cell function were examined in 745 Finnish children and adolescents. Children younger than 2 years or older than 10 years of age were found to be more susceptible to diabetic ketoacidosis than children between 2 and 10 years of age (< 2 years: 53.3%; 2-10 years: 16.9%; > 10 years: 33.3%). Children from families with poor parental educational level had ketoacidosis more often than those from families with high parental educational level (24.4% v 16.9%). A serum C peptide concentration of 0.10 nmol/l or more was associated with a favourable metabolic situation. Low serum C peptide concentrations, high requirement of exogenous insulin, low prevalence of remission, and high glycated haemoglobin concentrations were observed during the follow up in the group of probands having diabetic ketoacidosis at the diagnosis of IDDM. Thus diabetic ketoacidosis at diagnosis is related to a decreased capacity for beta cell recovery after the clinical manifestation of IDDM in children.

Adolescent↗

Glutamic acid decarboxylase antibodies in relation to other autoantibodies and genetic risk markers in children with newly diagnosed insulin-dependent diabetes. Childhood Diabetes in Finland Study Group.

To study the frequency of antibodies to glutamic acid decarboxylase (GAD65A) at the diagnosis of insulin-dependent diabetes mellitus (IDDM) and to evaluate the relation of these antibodies to other IDDM-associated autoantibodies and genetic risk markers of the disease, we analyzed 747 newly diagnosed diabetic children younger than 15 yr of age (mean, 8.4 yr) for GAD65A, islet cell antibodies, insulin autoantibodies, and human leukocyte antigen DR alleles. GAD65A were detected in 73.2% of the children, with a higher frequency in females than in males (77.1% vs. 70.1%; P = 0.04) and in index cases aged 10 yr or older than in younger children (79.0% vs. 68.7%; P = 0.004). The index cases positive for GAD65A had higher levels of islet cell antibodies (median, 40 vs. 34 Juvenile Diabetes Foundation units; P = 0.003) and insulin autoantibodies (median, 55 vs. 43 nU/mL; P = 0.03) than those testing negative for GAD65A. Human leukocyte antigen DR3/non-DR4 children had the highest GAD65A levels, whereas DR2-positive cases had levels of GAD65A similar to those found in other subjects. One third of the index cases (33.9%) tested positive for all three autoantibodies, 43.1% for two antibodies, and 18.2% for one antibody, whereas 4.8% were triple negative. The females had multiple antibodies (at least two antibodies) more often than the males (81.3% vs. 73.5%; P = 0.01). There was a significant trend for a higher frequency of multiple antibodies in young children (83.0% in those under 5 yr and 73.2% in those 10 yr or older; P = 0.02) and a higher frequency in DR3/4 heterozygous children than in those with DR3/non-DR4 (83.3% vs. 63.2%; P = 0.02). The results show that GAD65A antibodies are more frequent in girls and adolescents with newly diagnosed IDDM and suggest that DR3/non-DR4 subjects have increased GAD65A levels. Multiple antibodies in diabetic children are associated with young age, female sex, and DR3/4 heterozygosity.

Adolescent↗

Ethanol decreases nocturnal plasma levels of thyrotropin and growth hormone but not those of thyroid hormones or prolactin in man.

Previous studies on the effects of ethanol on circulating pituitary hormones have been carried out mostly during daytime when the secretion of these hormones is generally at a nadir. Therefore, we studied the effects of ethanol on the nocturnal secretion of GH, PRL, TSH, and thyroid hormones (protocol I, nine healthy subjects, five women) and on the TSH and PRL responses to synthetic TRH (protocol II, healthy subjects, four women). Ethanol was given in doses of 0, 0.5 or 1.0 g/kg of BW(protocol I) and 0 or 1.0 g/kg (protocol II) and ingested po at 1900-1945 h. In protocol I, plasma GH rose from 0.6 +/- 0.2 microgram/L (mean +/- SE) at 2200 h to 25.0 +/- 4.3 micrograms/L at 0100 h in control subjects and was almost completely inhibited at 4.5 +/- 1.7 micrograms/L at 0100 h in subjects receiving 1.0 g/kg ethanol (P < 0.01). In subjects receiving 0.5 g/kg ethanol, the inhibition was also significant (P < 0.01), plasma GH being 8.2 +/- 2.5 micrograms/L at 0100 h. Plasma GHRH was measured after solid phase separation in RIA, but it did not show any ethanol-related changes. Plasma PRL exhibited a clear diurnal rhythm in control subjects and rose from 77 +/- 16 at 1800 h to 248 +/- 62 micrograms/L at 0700 h (P < 0.01). The plasma PRL profile was not affected by ethanol. Plasma TSH was 1.4 +/- 0.2 mU/L at 1800-2200 h and rose to 2.3-2.4 mU/L for 0100-0700 h (P < 0.001) in the control subjects. Ethanol 1.0 g/kg suppressed plasma TSH to 1.4 +/- 0.2 mU/L (P < 0.05 at 0100 h and P < 0.01 at 0200 h). According to the area under the curve analyses, the suppression in the nocturnal TSH was 32% in the 0.5 g/kg group and 45% in the 1.0 g/kg group (P < 0.05 for both cases). Circulating free or total T3 and T4 did not show any statistically significant changes that could explain the ethanol-induced inhibition in the nocturnal TSH peak. In protocol II, synthetic TRH (1 microgram/kg BW) was given intravenously, and blood samples were collected before, at 20 and 60 min. TRH significantly stimulated plasma TSH and PRL, but ethanol (1.0 g/kg BW) had no effect on these responses. In conclusion, small amounts of ethanol have unexpectedly great effects on nocturnal surges of TSH, and especially on those of GH, that are apparently mediated by suprapituitary mechanisms. On the other hand, ethanol did not affect the nocturnal PRL surge. These inhibitory effects of ethanol may have unfavorable effects on growth and metabolism in adolescent drinkers.

Adult↗

Long-term survivors of childhood cancer have an increased risk of manifesting the metabolic syndrome.

Survivors of childhood cancer have been reported to have a severalfold increased risk of death from cardiovascular disease. A cluster of metabolic abnormalities, including obesity, insulin resistance, hyperinsulinemia, glucose intolerance, hypertension, and dyslipidemia, have been designated as forming a metabolic syndrome that is associated with increased cardiovascular mortality. We studied 50 survivors (23 males) of childhood cancer, aged 10.5-31.2 yr, an average of 12.6 yr (range, 7.9-21.3 yr) after their diagnosis and compared them with 50 age- and sex-matched controls for signs of the metabolic syndrome by examining clinical and anthropometric measures, serum lipid profile, and fasting plasma insulin and glucose concentrations. Spontaneous nocturnal GH secretion was also evaluated in the cancer survivors. The patients had increased relative weight (P = 0.03) and body fat mass (P < 0.001), decreased serum high density lipoprotein (HDL) cholesterol (P < 0.001), and a reduced ratio of HDL to total cholesterol (P = 0.01). Fasting plasma glucose and insulin levels were higher (P < 0.001 and P = 0.003, respectively) in the cancer survivors than in the controls. The patients had an increased risk [odds ratio (OR), 4.5; 95% confidence interval (CI), 1.3-15.8; P = 0.01] of obesity (relative weight, > 120%), fasting hyperinsulinemia ( > 111 pmol/L; OR, 3.0; 95% CI, 1.0-8.6; P = 0.04), and reduced HDL cholesterol ( < 1.07 mmol/L; OR, 7.9; 95% CI, 2.2 to 29.6; P < 0.001). A combination of obesity, hyperinsulinemia, and low HDL cholesterol was seen in eight cancer survivors (16%), but in none of the controls (P = 0.01). This high risk group was characterized by reduced spontaneous GH secretion (P = 0.02). Long term survivors of childhood cancer appear to have an increased risk of manifestations of the metabolic syndrome. Decreased GH secretion may contribute to these metabolic abnormalities.

Adolescent↗

Islet cell-specific autoantibodies in children with insulin-dependent diabetes mellitus and their siblings at clinical manifestation of the disease. Childhood Diabetes in Finland Study Group.

The aim of this work was to characterize both newly diagnosed insulin-dependent diabetic subjects and their siblings with positive tests for islet cell-specific autoantibodies (ICSAA) and to evaluate whether there is an association between the ICSAA levels detected in the diabetic children and siblings. We analysed 781 probands younger than 15 years of age for islet cell antibodies (ICA) and 755 for insulin autoantibodies (IAA) and 610 of their 3-19-year-old non-diabetic siblings for ICA and IAA upon diagnosis of the proband. Islet cell antibodies were observed in 657 of the probands (84.1%) and IAA in 353 (46.8%). The ICA-positive probands were younger in age and had higher IAA levels than the ICA-negative probands, while the IAA-positive probands were younger and had higher levels of ICA than the IAA-negative probands. Islet cell antibodies were detected in 46 (7.5%) and IAA in 16 (2.6%) siblings, and the ICA-positive siblings had higher IAA levels than the ICA-negative siblings. A falling trend was seen in the frequency of ICA > or = 20 Juvenile Diabetes Foundation units in the siblings with decreasing degrees of HLA identity with the index case. Infections during the preceding year, especially respiratory infections, increased the prevalence of both ICA and IAA in the diabetic children at diagnosis and the frequency of IAA in the siblings. There was a significant, although weak, correlation between the IAA levels of the probands and those of their siblings when 594 pairs were tested (r(s) = 0.15; p < 0.001). No association could be seen between the ICA levels of the probands and those of their siblings, not even when including only HLA-identical proband-sib pairs in the analysis. The lack of any relation between ICA levels in the probands and siblings supports the view that there may be multiple exogenous factors capable of inducing ICA formation or else a common factor but variable responsiveness in the index case and the sibling.

Adolescent↗

Disease-associated antibodies in offspring of mothers with IDDM.

We studied 20 infants of mothers with IDDM participating in a pilot study for a dietary intervention trial, testing the hypothesis that avoidance of cow's milk proteins early in life will reduce the risk of subsequent IDDM. The aim was to evaluate the elimination of IDDM-associated antibodies from the peripheral circulation of the infants, the possible emergence of autoantibodies indicating beta-cell destruction, and the influence of the dietary intervention and genetic disease susceptibility on the development of these autoantibodies. Transplacentally transferred islet cell antibodies (ICAs) and antibodies to the 65-kDa isoform of glutamic acid decarboxylase (GAD65As) disappeared from the peripheral circulation of most infants over the first few months of life and in all infants before the age of 9 months. Insulin antibodies were eliminated before the same age in all cases but one. The higher the initial antibody level was, the longer the time required for elimination. Four infants tested positive for insulin autoantibodies (IAAs) on at least one occasion during the first year of life, and 5 out of 16 unaffected subjects (31%) had IAAs at the age of 2 years. One infant became positive for IAA before the age of 6 months, with increasing levels later, seroconverted to positivity for ICAs and GAD65As between 6 and 9 months and presented with clinical IDDM at the age of 14 months. He had the HLA DQB1*0302/x genotype, which predisposes carriers to IDDM, and had been given the casein hydrolysate formula as supplementary milk. There were no significant differences in the levels of various autoantibodies between two groups of subjects defined either on the type of dietary intervention or the degree of genetic susceptibility. The findings indicate that transplacentally transferred antibodies related to IDDM are usually eliminated from the peripheral circulation of infants before 9 months of age and that IDDM-associated autoantibodies may emerge before the age of 6 months. Our results also illustrate that avoidance of cow's milk proteins over the first 9 months of life does not provide total protection against IDDM.

Adult↗

Rapid HLA-DQB1 genotyping for four alleles in the assessment of risk for IDDM in the Finnish population. The Childhood Diabetes in Finland (DiMe) Study Group.

OBJECTIVE: To study the effectiveness of MHC genotyping in the assessment of risk for IDDM based on the identification of alleles that are significantly associated with risk for IDDM (DQB1 *0302 and *0201) and protection from it (DQB1 *0602/*0603 and *0301). RESEARCH DESIGN AND METHODS: A long series of 649 index cases of IDDM, together with their healthy siblings and 756 healthy blood donors, was collected in Finland. The samples were analyzed using a large-scale assay procedure that was developed for rapid screening purposes. The method utilizes time-resolved fluorometry to detect the hybridization of lanthanide-labeled allele-specific oligonucleotide probes with amplified gene product. RESULTS: A total of 61.9% of IDDM index cases had high risk (DQB1 *0201/*0302) or moderate risk (DQB1 *0302/x [x meaning DQB1 *0302 or a nondefined allele]) genotypes compared with 14.3% of the reference population. In patients and control subjects, the frequencies of low risk genotypes were 28.0 and 22.1%, respectively, and those of decreased risk genotypes, 10.0 and 63.6%. The relative risk of a *0201/*0302 genotype was 53.5 (31.1-92.8) compared with the decreased risk genotypes (63.6% of controls). The graded risk estimation was equally efficient in assessing the risk of IDDM in siblings of child with IDDM. CONCLUSION: The near-automatic typing procedure developed is attractive for large-scale screening projects, such as diabetes prevention and intervention trials.

Alleles↗

Relation between antibodies to islet cell antigens, other autoantigens and cow's milk proteins in diabetic children and unaffected siblings at the clinical manifestation of IDDM. The Childhood Diabetes in Finland Study Group.

The relation between islet cell specific antibodies, other autoantibodies and antibodies to cow's milk proteins was studied in IDDM and pre-IDDM by analysing islet cell antibodies (ICA), insulin autoantibodies (IAA), anti-nuclear (ANA), anti-reticulin class IgA [ARA(IgA)], smooth muscle, anti-mitochondria, parietal cell (PCA), adrenal and thyroid antibodies and antibodies to cow's milk formula (CMF), beta-lactoglobulin (BLG) and bovine serum albumin (BSA) in a population based study with more than 650 children with newly diagnosed IDDM and more than 550 initially non-diabetic siblings. After adjustment for age a weak association was seen in the diabetic children between IAA and ANA but none between ICA and autoantibodies directed against the other organ-specific or non-organ-specific antigens. There was no significant difference in cow's milk antibodies between diabetic children with and without ICA or IAA. The siblings with ICA had higher CMF (IgA and IgM) antibody levels and BLG (IgA) antibody levels than the remaining siblings, but no such differences were found when comparing IAA-positive and negative siblings. Siblings positive for ICA had PCA more often than did the ICA-negative siblings, whereas siblings positive for both ICA and PCA had increased levels of antibodies against CMF, BLG and BSA. These findings indicate that the humoral islet cell-associated autoimmunity characteristic of recent-onset childhood IDDM is clearly restricted to the islet cells and not directly related to signs of other organ-specific or non-organ-specific autoimmunity. The observation of increased levels of antibodies to cow's milk proteins in siblings positive for ICA suggests that the immune response to cow's milk proteins may be related to the progressive autoimmune process resulting in beta-cell destruction and ultimately in the clinical manifestation of IDDM. Gastrointestinal autoimmune mechanisms may play a role in the pathogenesis of IDDM, and the association observed between combined ICA and PCA positivity and increased levels of antibodies to cow's milk proteins in the siblings implies that there may be an enhanced transfer of nutritional antigens across the gut barrier in these subjects.

Adolescent↗

The immunoglobulin heavy-chain variable region in insulin-dependent diabetes mellitus: affected-sib-pair analysis and association studies.

We have analyzed immunoglobulin heavy-chain variable-region (VH) polymorphisms and genetic susceptibility to insulin-dependent diabetes mellitus (IDDM) by using a set of polymorphic loci that span approximately 1,000 kb of the VH region on chromosome 14q32. One hundred one Finnish families with at least two children affected with IDDM were studied. Conventional RFLPs determined by hybridization were used, since no microsatellite repeat markers have been available for this gene region. No evidence for linkage between the VH genes and IDDM could be obtained from haplotype-sharing analysis among the 133 diabetic sib pairs. The frequencies of various VH genotypes were also compared between 101 familial IDDM cases and 114 controls derived from the Finnish background population. The distribution of the genotypes at the VH2-B5 locus was significantly different between these groups (P=.004), the 3.4/3.4 genotype being less common in the IDDM cases. In addition, a different genotype distribution at the VH5-B2 locus was observed in the diabetic subjects (P = .022). When the IDDM cases were stratified by presence or absence of the high-risk HLA-DQB1*0302 allele, no differences in VH genotype frequencies were observed between the 0302-positive and 0302-negative cases. In the transmission test for linkage disequilibrium (TDT), no differences were found between the expected and observed frequencies of the transmitted alleles at the VH2-B5 or VH5-B2 locus. In conclusion, significant differences in VH genotype distributions were observed between the familial IDDM cases and the controls, but the observed associations could not be confirmed by the TDT. Haplotype sharing analysis provided no evidence for genetic linkage between the VH gene region and IDDM.

Adolescent↗

Serological evaluation of the role of cytomegalovirus in the pathogenesis of IDDM: a prospective study. The Childhood Diabetes in Finland Study Group.

To study the possible temporal association between primary cytomegalovirus infection and the appearance of islet cell autoantibodies or the development of insulin-dependent diabetes mellitus (IDDM) cytomegalovirus antibodies were analysed from follow-up sera of 46 initially non-diabetic siblings of diabetic children who either manifested clinical IDDM (22 siblings) or turned islet cell antibody positive (24 siblings) during the prospective observation (mean follow-up time 2.9 years). Secondly, cytomegalovirus antibodies were analysed during pregnancy in 96 mothers whose child presented with IDDM before the age of 7 years and in 96 control mothers who gave birth to a non-diabetic child. Thirdly, a case-control series including 90 newly-diagnosed young children with IDDM and their 90 control subjects was analysed. No seroconversions were found in cytomegalovirus antibodies during the follow-up of the 46 siblings indicating no temporal association with islet cell antibody seroconversion or manifestation of clinical diabetes. During the follow-up 17 (37%) siblings were constantly seronegative and 29 (63%) seropositive for cytomegalovirus IgG and there was no difference between islet cell antibody positive and negative siblings. Cytomegalovirus IgG and IgM were not different in pregnant mothers who gave birth to a subsequently diabetic child compared to control mothers, or in newly-diagnosed diabetic children compared to control children. Cytomegalovirus IgA was higher in newly-diagnosed diabetic children than in control children (p < 0.005). This difference disappeared when only cytomegalovirus IgG positive individuals were analysed. No correlation was found between islet cell antibodies and cytomegalovirus antibodies in newly-diagnosed diabetic patients.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

The role of insulin in clustering of serum lipids and blood pressure in children and adolescents. The Cardiovascular Risk in Young Finns Study.

In adults hyperinsulinaemia is associated with an atherogenic risk profile including obesity, low levels of HDL-cholesterol, high levels of triglycerides and elevated blood pressure. To examine these associations in the young we studied the cross-sectional relationships of insulin with obesity indices (body mass index, subscapular skinfold thickness), serum lipids and blood pressure in 1,865 children, adolescents and young adults aged 6-24 years. We also used longitudinal data to study the value of a single insulin measurement to predict high risk factor levels and clustering of multiple risk factors after a 6-year follow-up. In cross-sectional analyses the levels of triglycerides, HDL-cholesterol, systolic blood pressure and obesity indices were usually significantly different across the quartiles of fasting insulin in both sexes among children, adolescents and young adults. In general, no associations were seen with total cholesterol or LDL-cholesterol. In prospective analysis elevated baseline insulin was related to the incidence of hypertriglyceridaemia (> or = 95th percentile) at the follow-up. This relationship persisted even after adjustments for baseline obesity or 6-year change in obesity status. Moreover, baseline insulin concentration was higher in subjects who subsequently showed clustering of high triglycerides, low HDL-cholesterol and high systolic blood pressure levels at the follow-up. We conclude that high fasting insulin levels measured in children and adolescents predict the development of hypertriglyceridaemia years later. In addition, high insulin levels seem to precede the development of a potentially atherogenic risk factor profile including low HDL-cholesterol, high triglycerides and high systolic blood pressure.

Adolescent↗

Ethanol induces a paradoxical simultaneous increase in circulating concentrations of insulin-like growth factor binding protein-1 and insulin.

The aim of this study was to examine the effect of acute alcohol intake on circulating concentrations of insulin, C-peptide, insulin-like growth factor (IGF) binding protein-1 (IGFBP-1), and plasma glucose levels. We measured these parameters for 12 hours after administration of 0, 0.5, or 1.0 g ethanol/kg body weight to nine healthy volunteers between 7:00 and 7:45 PM according to a randomized, double-blind, crossover design. Following a snack at 9:00 PM, plasma insulin (P < .05) and C-peptide (P < .01) concentrations were significantly increased at 10:00 PM in the 1.0-g group as compared with the control group. C-peptide to insulin molar ratios were significantly higher (P < .05) in both ethanol groups at 10:00 PM and 2:00 AM than in the control group. No differences were observed in plasma glucose levels between the three groups. Plasma IGFBP-1 levels showed a dose-dependent increase in the ethanol groups, and remained increased from 10:00 PM for 3 hours (P < .05 or less) at the lower dose and for 6 hours (P < .05 or less) at the higher dose. These observations indicate that ethanol-induced postprandial hyperinsulinemia is due to increased insulin secretion and that alcohol may increase hepatic insulin extraction. The lack of any effect on plasma glucose levels suggests that alcohol intake must be associated with decreased insulin sensitivity. Alcohol intake results in a paradoxical increase in peripheral concentrations of IGFBP-1 despite simultaneous hyperinsulinemia. This implies that ethanol has a direct stimulatory effect on hepatic IGFBP-1 synthesis.

Adult↗

Effect of alloxan on the endocrine function of human fetal islet-like cell clusters--an in vitro study.

We studied the effects of alloxan on insulin and glucagon secretion, islet insulin content, and morphology of human fetal islet-like cell clusters (ICCs). ICCs were derived after collagenase digestion and culture of pancreata from two fetuses. Culture medium (RPMI 1640) containing either 2.0 (low) or 11.1 (high) mM glucose was used during the alloxan exposure. Alloxan exposure lasted for 5 min at room temperature, with final concentrations of 0.3, 1, 3, 10, 30 and 100 mM. Medium samples were collected for hormone assays on days 0, 1, 2, 3, 6, and 10 and islet insulin contents were measured on day 10 after alloxan treatment. Electron microscopy of ICCs was done 24 h after the drug exposure. Control ICCs steadily increased their insulin secretion during the whole study period. Alloxan concentrations above 0.3 mM significantly (p < 0.01) decreased insulin secretion at the low glucose concentration. High glucose protected beta cells from alloxan toxicity. There was no difference in islet insulin contents between alloxan-treated and control cultures. Glucagon secretion by glucose media was not affected by alloxan exposure. All islet cells including beta cells remained intact in electron microscopy. The results suggest a block in insulin secretion by alloxan, but beta cells appear to recover at least partly in their insulin-secreting capacity.

Alloxan↗

Effect of genetic risk load defined by HLA-DQB1 polymorphism on clinical characteristics of IDDM in children.

Clinical and autoimmune characteristics of 150 diabetic children of mean age 7.8 years (SD 4.1 years) were recorded at clinical manifestation and during the first 2 years of IDDM in order to investigate whether subjects with high risk HLA-DQB1 genotypes differ from those without these risk markers. When comparing subjects with the DQB1*0302/0201, DQB1*0302/x, DQB1*0201/x, or other DQB1 genotypes (x = no protective allele), no differences were found in the age of the subjects at diagnosis, the duration of hyperglycaemic symptoms, or the length of clinical remission. The frequency of islet cell antibodies (ICA) and quantitative serum levels of these antibodies were of the same magnitude in all four groups. During the initial 2 years of IDDM serum C-peptide concentrations were observed to be inversely related to the degree of genetic risk (P < 0.001 in two-way analysis of variance for repeated measures), the lowest C-peptide levels being observed in the group of DQB1*0302/0201 heterozygotes (P < 0.001 vs. DQB1*0201/x; P < 0.01 vs. DQB1*0302/x; P = 0.05 vs. others). On the other hand, the subjects with the DQB1*0201 genotype had the highest serum C-peptide concentrations, the levels being even higher than those of the patients carrying neutral or protective DQB1 genotypes (P < 0.01). These subjects also had lower daily insulin doses and blood glycated haemoglobin A1 (HbA1) levels over the initial 2 years of the disease when compared with the DQB1*0302/0201 heterozygotes (P < 0.05 and P < 0.01, respectively).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Normal stimulated growth hormone secretion but low peripheral levels of insulin-like growth factor I in prepubertal children with insulin-dependent diabetes mellitus.

The hypothalamo-pituitary-insulin-like growth factor I (IGF-I) axis was studied in 24 prepubertal children with insulin-dependent diabetes mellitus (IDDM) and 12 non-diabetic children. There were no significant differences between the diabetic and control subjects in basal concentrations of immunoreactive growth hormone releasing hormone (ir-GHRH), growth hormone (GH) or stimulated GH levels, but after exercise ir-GHRH concentrations were higher in the diabetic children. Peripheral IGF-I levels were significantly lower in the diabetic children, and even lower in those with poor metabolic control. A positive correlation was found between IGF-I levels and circulating free insulin concentrations in the diabetic subjects (r = 0.49, p < 0.05). These observations suggest that the GH response to physiological stimulation is normal in prepubertal diabetic children. Exercise-induced GH response may not be mediated by GHRH. IGF-I levels were reduced in prepubertal children with IDDM and even more so in subjects with poor metabolic control. This may be a consequence of transitory hypoinsulineamia, emphasizing the importance of adequate insulinization to facilitate optimal growth in children and adolescents with IDDM.

Case-Control Studies↗

Good growth response to growth hormone treatment in the ring chromosome 15 syndrome.

Ring chromosome 15 syndrome is a rare condition in which severe growth retardation is a major finding. We report a 4 year old boy with the karyotype 46,XY, r(15)(p11.2q26.2) whom we have treated with recombinant human growth hormone (GH) for two years. During the first year of treatment, the insulin-like growth factor I increased from subnormal 4.2 nmol/l to normal 13.8 nmol/l and the insulin-like growth factor binding protein 3 levels increased from 2.6 to 3.8 mg/l, whereas high binding protein 1 concentrations normalised from 52.0 to 16.7 micrograms/l. During the two years of treatment his relative height improved from -6.2 SD to -4.4 SD and the predicted adult height from 159.6 cm to 163.5 cm. Owing to the good growth response, we have decided to continue GH treatment.

Carrier Proteins↗