PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “TYROSINE DECARBOXYLASE”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 577 records · Page 32Linked to original sources

Women diagnosed with gestational diabetes mellitus do not carry antibodies against minor islet cell antigens.

Women with gestational diabetes mellitus (GDM) have considerable risk for developing both type 1 and type 2 diabetes in life. Autoantibodies against glutamic acid decarboxylase (GAD65) and tyrosine phosphatase (IA-2) are strongly associated with autoimmune diabetes and can be useful in early identification of the development of type 1 diabetes in women with GDM. On the other hand antibodies against minor islet antigens in adults can be predictors for autoimmune polyendocrine syndrome. The aim of our study was to estimate the prevalence of autoantibodies against minor antigens-tissue transglutaminase (TTG), ICA12, and 21-hydroxylase (21-0H)-in GDM patients from southern India. Eighty-six serum samples from GDM subjects and 114 samples from healthy controls were tested for the presence of GAD65 and IA-2Ab as well as for the presence of 21-OH, TTG, and ICA12Ab by radiobinding assay with in vitro translated recombinant human 35S-GAD65, IA-2, TTG, ICA12, and 21-OH antigens. We observed the presence of GAD65 or IA-2 autoantibodies in 41% (35/86) of GDM patients, while none of the patients tested positive for any of the minor autoantibodies. Our results demonstrate that there is a high prevalence of autoantibodies in GDM subjects that are at higher risk of developing autoimmune diabetes later, but none of the patients carries antibodies against minor antigens, which could predict autoimmune polyendocrine syndrome in adults.

Autoantibodies↗

Autoantibodies in children with type 2 diabetes mellitus.

To evaluate the frequency of autoantibodies to glutamic acid decarboxylase (GAD), protein tyrosine phosphatase-like protein (IA-2), and insulin (IAA) in children with type 2 diabetes mellitus (DM), we studied 37 children and adolescents whose type 2 DM was defined by fasting and 90-min standard liquid meal-stimulated serum C-peptide levels of >0.2 and >0.5 nmol/l (0.7 and 1.5 ng/ml), respectively. Mean fasting-stimulated serum C-peptide levels were 1.1 +/- 0.10 nmol/l (3.38 +/- 0.29 ng/ml) and 1.9 +/- 0.17 nmol/l (5.79 +/- 0.50 ng/ml), respectively. Eleven out of 37 patients (29.7%) were positive for at least one autoantibody: 8.1% (n = 3) had positive GAD, 8.1% (n = 3) had positive IA-2, and 27% (n = 10) had positive IAA. Nine of the 10 IAA-positive patients were on insulin treatment at the time of testing. Three of the 10 IAA-positive patients were also positive for GAD or IA-2. Since insulin treatment can stimulate IAA, we considered this to be less informative in classifying autoimmunity in DM. Therefore, GAD and IA-2 were considered primary autoimmune markers. Four out of 37 patients (10.8%) were positive for GAD (n = 3) or IA-2 (n = 3) or both (n = 2). Thus, low (10.8%) frequency of autoimmunity in children and adolescents is consistent with their clinical classification of type 2 DM based on the presence of residual C-peptide.

Adolescent↗

Liver ornithine decarboxylase in pregnant rats fed two levels of casein.

Liver ornithine decarboxylase (ODC) and tyrosine aminotransferase (TAT) activities were assessed at 2200 h (prandial phase) and at 1000 h (postprandial phase) in virgin and in pregnant (day 13-20) rats fed on different levels of casein and carbohydrate. In virgin rats, ODC levels were higher at 2200 h after resumption of eating than at 1000 hours, the inductive effect being greater with the high-casein than with the low-casein diet. Rapid deinduction followed termination of eating, resulting in equally low enzyme levels at 1000 h with both diets. On the contrary, prandial and postprandial levels of TAT were always greater with the high-protein diet. In pregnant rats, there was a progressive stimulation of ODC that reached a maximum on day 19. However, the inductive capacity of the high-protein diet was lower than that of the low-casein diet. Prandial rest was not followed by enzyme deinduction at 1000 h. In contrast, TAT stimulation remained dependent on overall casein ingestion. At constant casein but restricted carbohydrate intake, pregnant females exhibited a reduction in ODC stimulation. Thus, whereas in virgin females proteins are determinant in the regulation of ODC, during pregnancy there determinant in the regulation of ODC, during pregnancy there is a shift toward modulation by carbohydrates. Levels of liver urea and ornithine were found to vary in inverse proportion with the magnitude of ODC stimulation.

Animals↗

Use of tumor-specific gene expression for the differential diagnosis of neuroblastoma from other pediatric small round-cell malignancies.

The differential diagnosis of neuroblastoma from other small round-cell tumors of childhood, although clinically of great importance, is sometimes difficult due to the almost indistinguishable appearance of such tumors by conventional microscopy. Because neuroblastomas are characterized by the synthesis of catecholamines, we investigated the possibility that expression of genes involved in this pathway could serve as a molecular marker for this disease. A reverse transcriptase polymerase chain reaction assay was used to analyze expression of tyrosine hydroxylase and dopa decarboxylase in 84 pediatric malignancies including 55 neuroblastomas, 6 Ewing's sarcomas/primitive neuroectodermal tumors, 7 lymphomas, 6 leukemias, 2 rhabdomyosarcomas, 6 osteosarcomas, and 2 phaeochromocytomas. Of the 55 neuroblastoma samples analyzed, 54 expressed clearly detectable levels of both genes. The one sample that did not express either of the genes was rediagnosed both clinically and by molecular genetic analysis as a Ewing's sarcoma. Of the 29 non-neuroblastoma tumor samples examined, the only tumor samples that expressed clearly detectable levels of both tyrosine hydroxylase and dopa decarboxylase were phaeochromocytomas. Like neuroblastomas, these tumors are characterized by high levels of catecholamines. These findings suggest that expression of genes involved in catecholamine biosynthesis may be useful for differentiating neuroblastoma from other small round-cell tumors of childhood.

Child, Preschool↗

Low prevalence of autoimmune diabetes markers in a mixed ethnic population of Singaporean diabetics.

BACKGROUND: Circulating antibodies to glutamic acid decarboxylase (GADab) and tyrosine phosphatase-like molecule IA-2 (IA-2ab) are major indicators for auto-immune destruction of pancreatic islet cells. They identify a majority of Caucasians with type 1 diabetes and approximately 50% of Asians, providing evidence of an idiopathic aetiology in the latter. The present study investigated these autoantibodies in a mixed ethnic group. METHODS: Hospital clinic patients with clinically defined type 1 (n = 93) and type 2 (n = 300) diabetes and representing Singapore's major ethnic groups--Chinese, Indians and Malays--were studied. GADab and IA-2ab frequencies, and association of autoimmunity status with clinical and biochemical profiles were analysed. RESULTS: Radio-immunoprecipitation assays detected either or both antibodies (seropositivity) in 41.9% of subjects with type 1 diabetes. GADab was detected in 36.6% and IA-2ab in 23.7% of type 1 diabetics. Prevalence of IA-2ab showed a reduction in frequency with disease duration (P = 0.026). In clinical type 2 diabetics, seropositivity was 10.0% with higher frequency in Malays (17.5%) than Chinese (9.7%) and Indians (4.5%). Multivariate analysis revealed that low fasting C-peptide was associated with seropositivity (odds ratio (OR) = 0.15; 95% confidence interval (CI) = 0.04-0.58). A significant relationship (OR = 13.5; 95% CI = 5.0-36.7) between insulin requirement and duration (>5 years) was also revealed. In patients with type 2 diabetes there was a trend of gradual progression to insulin dependency. However, there was considerable variation in body mass index between ethnic subgroups of type 2 diabetics, particularly for Chinese (mean (SD) = 26.0 (4.7)) and Malays (mean (SD) = 29.2 (5.9); P < 0.001). CONCLUSIONS: Presence of both antibodies in our mixed ethnic group of type 1 diabetes patients was much lower than in Caucasians. Significant numbers of patients were seronegative for antibodies. Influences due to ethnicity and adiposity would require further investigations.

Adult↗

Increased plasma catecholamine concentrations and vas deferens norepinephrine biosynthesis in men with elevated blood pressure.

Systemic biochemical indexes of sympathetic nerve functionplasma catecholamine concentrations and serum dopamine-beta-hydroxylase activitywere correlated with regional indexesnorepinephrine concentration activities of norepinephrine biosynthetic enzymes in the vas deferensānd with blood pressures and pulse rates of 57 men at the time of vasectomy. Mean plasma catecholamine content was increased 66% and 60% in men with elevated systolic and elevated systolic and diastolic blood pressures, respectively. The norepinephrine concentration, tyrosine hydroxylase activity, and dopa decarboxylase activity in the vas deferens were increased in 12%, 26%, and 17% of the men with elevated blood pressure, respectively. Tyrosine hydroxylase and dopa decarboxylase in the men with elevated systolic blood pressure were increased 41% and 68%, respectively, compared with values in the men with normal blood pressure (P less than 0.05 and P less than 0.02). Individual plasma catecholamine content was related directly to both systolic and mean blood pressure (P less than 0.01) and to activities of vas deferens tyrosine hydroxylases (P less than 0.05) and dopa decarboxylase (P less than 0.01). There was a weak, but not significant, correlation of plasma catecholamine concentration with serum dopamine-beta-hydroxylase activity. Raised plasma catecholamine concentration in men with elevated blood pressure prior to vasectomy was associated with increased neurotransmitter biosynthesis in their vas deferens, which may indicate increased sympathetic nerve tonicity and perhaps be a factor contributing to the blood pressure elevation.

Adult↗

Immunocytochemical localization of peptides and other neurochemicals in the rat laterodorsal tegmental nucleus and adjacent area.

The laterodorsal tegmental nucleus (ntdl) contains a cluster of cells located just medial to the locus coeruleus in the pontine brainstem. The ntdl has been shown to project both rostrally to the forebrain and diencephalon and caudally to the spinal cord. In an effort to characterize this region neurochemically, the present study was conducted to identify a variety of neurochemicals localized within perikarya and fibers of the ntdl and surrounding nuclei. Rats were perfused with formalin, and brain sections were processed for fluorescence immunocytochemistry and acetylcholinesterase (AChE). Of the neurochemicals screened, atrial natriuretic factor (ANF), choline acetyltransferase (ChAT), cholecystokinin (CCK), calcitonin gene-related peptide (CGRP), dynorphin B (Dyn B), galanin, somatostatin, substance P, neurotensin (NT), neuropeptide Y (NPY), vasopressin, vasoactive intestinal polypeptide (VIP), serotonin (5HT), glutamic acid decarboxylase (GAD), and tyrosine hydroxylase (TH) were studied. AChE and ChAT staining revealed that the ntdl contains mostly cholinergic neurons. In addition, brightly reactive substance P and galanin and paler staining CRF, ANF, CGRP, NT, VIP, and Dyn B cell bodies were found within the ntdl. Varicose fibers in this nucleus also contained these peptides in addition to CCK, GAD, TH, 5HT, and NPY. The dorsal tegmental nucleus, dorsal raphe nucleus, locus coeruleus, and the parabrachial region contained a dense and varied assortment of peptides with distinct positions and patterns. This multiplicity of neurochemicals within this area suggests a possible influence on a variety of functions modulated by the ntdl and other closely associated tegmental nuclei.

Acetylcholinesterase↗

Arcuate nucleus neurons that project to the hypothalamic paraventricular nucleus: neuropeptidergic identity and consequences of adrenalectomy on mRNA levels in the rat.

The possible role that the hypothalamic arcuate nucleus might play in mediating the increase in paraventricular nucleus corticotropin-releasing hormone mRNA levels following adrenalectomy was investigated in two series of experiments. In the first series in situ hybridization histochemistry was used to quantify levels of eight accurate nucleus neuropeptide and neurotransmitter mRNAs in neurons that potentially relay adrenal steroid feedback to the paraventricular nucleus. In the second series of experiments, arcuate neuropeptidergic projections to the hypothalamic paraventricular nucleus were characterized using retrograde tracing in combination with in situ hybridization histochemistry. Despite an increase in paraventricular nucleus corticotropin-releasing hormone (60%) and pituitary proopiomelanocortin mRNA levels (sixfold), arcuate mRNA levels for proopiomelanocortin, neuropeptide Y, somatostatin, galanin, dynorphin, tyrosine hydroxylase, glutamate decarboxylase, and the glucocorticoid receptor were unchanged 14 days following adrenalectomy. Neuropeptidergic characterization of arcuatoparaventricular projections was achieved by injection of the retrograde tracer fluorogold into the paraventricular nucleus; retrogradely labeled neurons were characterized with polyclonal antisera against fluorogold in combination with oligonucleotide probes directed against neuropeptide Y, proopiomelanocortin, or somatostatin. Out of these three arcuate neuropeptide Y mRNA was contained in 18% of the fluorogold-positive neurons in the arcuate, proopiomelanocortin mRNA was contained in 8%, and somatostatin mRNA was contained in 6%. Overall, the results from both experiments suggest that the arcuatoparaventricular neuropeptide Y, proopiomelanocortin, and somatostatin projections are not sensitive to a chronic (14 day) lack of adrenal steroids. These projections as well as the other arcuate neurotransmitter and neuropeptide systems appear not to contribute to the persistent elevations in paraventricular nucleus corticotropin-releasing hormone mRNA levels or pituitary proopiomelanocortin mRNA levels found in 14 day adrenalectomized rats.

Adrenal Glands↗

Cellular expression of mRNAs encoding monoamine oxidases A and B in the rat central nervous system.

Monoamine oxidases A and B (MAO-A and MAO-B) oxidatively deaminate neurotransmitter and xenobiotic amines. The cellular localization of these isoenzymes in the central nervous system (CNS) differs markedly and only partly reflects the distribution of their presumed natural substrates. In the present study, by using in situ hybridization with 35S-labelled oligonucleotide probes, we examined the distribution of mRNAs encoding MAO-A and MAO-B in the rat CNS. Probes for tyrosine hydroxylase, histidine decarboxylase, and tryptophan hydroxylase mRNAs were used to demonstrate the catecholaminergic, histaminergic, or serotoninergic nature of some cell populations in adjacent sections. The radioligands [3H]-Ro 41-1049 and [3H]lazabemide (reversible and selective inhibitors of MAO-A and MAO-B, respectively) were used to reveal the protein distribution by enzyme radioautography. The distribution and abundance of transcripts for both isoenzymes in the tissues investigated differed markedly but, in general, correlated with the protein distribution. MAO-A mRNA and protein were most abundant in noradrenergic neurons. However, moderate levels of transcript expression and protein were also detected in the serotoninergic neurons, and low but significant levels were detected in the dopaminergic neurons. An unexpectedly remarkable degree of hybridization signal was apparent in nonaminergic cell populations, e.g., in the cerebral cortices, the hippocampal formation (CA1-3, dentate gyrus), the cerebellar granule cell layer, and the spinal cord motoneurons. In contrast, MAO-B mRNA and protein were most abundant in serotoninergic and histaminergic neurons, Bergmann glial cells, and circumventricular organs, including the ependyma. MAO-B transcripts were also weakly expressed in nonaminergic cells, e.g., in the hippocampal formation (CA1-2). A further nonneuronal localization of MAO-B transcripts was also resolved, e.g., in the glia limitans, the olfactory nerve layer, and the cerebellar peduncle. These findings reveal further the potential of various cell populations to synthesize the isoenzymes, and homologous (aminergic) and heterologous (nonaminergic) patterns of expression as well as coexpression of MAO mRNAs are described.

Animals↗

Effect of chronic amphetamine administration on central dopaminergic mechanisms in the vervet.

A biochemical study of central dopaminergic mechanisms was carried out in brain tissue from vervet monkeys who had been subjected to chronic amphetamine administration. The brain concentrations of dopamine (DA) and 3,4-dihydroxyphenylacetic acid (DOPAC) were markedly reduced. Significant reductions were also observed in the activities of dopa-decarboxylase (DDC) and tyrosine hydroxylase (TH). A kinetic study of TH revealed a 60% reduction in maximum reaction velocity, consistent with destruction of DA neurones. However, homovanillic acid (HVA) concentrations were only moderately reduced, suggesting a nearly normal production of DA. Hence despite the large depletions in DA concentrations, high affinity binding of 3H-spiperone binding to striatal DA receptors was no different from controls. The results are discussed in relation to the amphetamine psychosis in humans.

3,4-Dihydroxyphenylacetic Acid↗

Progression to type 1 diabetes in islet cell antibody-positive relatives in the European Nicotinamide Diabetes Intervention Trial: the role of additional immune, genetic and metabolic markers of risk.

AIMS/HYPOTHESIS: To examine the role of additional immune, genetic and metabolic risk markers in determining risk of diabetes in islet cell antibody (ICA)-positive individuals with a family history of type 1 diabetes recruited into the European Nicotinamide Diabetes Intervention Trial. METHODS: Five hundred and forty-nine first-degree relatives with confirmed ICA levels > or =20 Juvenile Diabetes Foundation units (mean age 15.9 years; interquartile range 10.4-33.7 years) were recruited from 20 countries. OGTTs and IVGTTs were performed at baseline, antibodies to glutamate decarboxylase (GADA), protein tyrosine phosphatase (IA-2A) and insulin (IAA) were determined by RIA, and HLA class II genotyping was performed by PCR of sequence-specific oligonucleotides. RESULTS: One hundred and fifty-nine participants developed diabetes within 5 years. Univariate analysis showed that the cumulative risk of development of diabetes within 5 years varied according to age, relationship to the proband, positivity for IAA, IA-2A and GADA, number and combination of islet antibodies, HLA class II genotype, baseline glucose tolerance, and first-phase insulin secretion, but not gender or incidence of childhood type 1 diabetes in the background population. Children aged < or =10 years had a 59% risk of diabetes within 5 years, compared with 11% in those > or =25 years (p<0.0001). Using multivariate analysis, independent determinants were age, first-phase insulin response, baseline glucose tolerance and number of additional antibody markers, but not antibody type or genotype. Individuals <25 years with two or more additional antibodies at baseline had a 62% risk of diabetes within 5 years and these combined criteria identified 81% of the cases in the whole cohort. CONCLUSIONS/INTERPRETATION: We suggest that screening and recruitment for future intervention trials should be limited to family members aged <25 years, and should be based on islet autoantibodies alone.

Adolescent↗

Autoantibodies to ICA12 (SOX-13) are not specific for Type I diabetes.

AIMS/HYPOTHESIS: The majority of patients with Type I (insulin-dependent) diabetes mellitus has autoantibodies to insulin, glutamic acid decarboxylase and the tyrosine phosphatase-like protein IA-2. Some patients with Type I diabetes, in particular with adult onset diabetes, have, however, only cytoplasmic islet cell antibodies that could be directed to as yet unknown beta cell autoantigens. Recently, one potential antigen, ICA12, was identified as the high mobility group (HMG) box transcription factor SOX-13. Our aim was to evaluate the diagnostic sensitivity and specificity of autoantibodies to SOX-13 for autoimmune diabetes. METHODS: Full-length SOX-13 was cloned from human brain mRNA, expressed by vitro transcription/ translation and used to detect autoantibodies by immunoprecipitation and radioligand assay in patients suffering from autoimmune diabetes or non-organ-specific autoimmune diseases. RESULTS: We found SOX-13 antibodies to be present in 11 of 125 (8.8%) patients with newly diagnosed Type I diabetes and in 3 of 43 (7.0%) patients with latent autoimmune diabetes in adults. There was no association with age, sex and a particular pattern of diabetes-specific autoantibodies. Similar frequencies of SOX-13 antibodies were found in 84 patients with rheumatic diseases (4.0-11.4%) and 211 healthy control subjects (5.2 %). CONCLUSIONS/INTERPRETATION: Our data indicate that SOX-13 represents a minor target of autoantibodies in patients with autoimmune diabetes. Because SOX-13 antibodies were found not to be disease-specific, we assume they are not helpful in improving the diagnosis and prediction of Type I diabetes.

Adolescent↗

Pediatric neurotransmitter diseases.

The pediatric neurotransmitter disorders represent a challenging group of rare neurometabolic disorders classified on the basis of alterations in neurotransmitter metabolic pathways. The disorders are currently classified into disturbances of monoamine and gamma-aminobutyric acid (GABA) metabolism, although disorders of other neurotransmitters, such as glutamate and melatonin, may well be recognized in future investigations. This review summarizes the clinical and laboratory features of selected pediatric neurotransmitter disorders that have been partially delineated. Of the monoamine group, these are Segawa disease or guanosine triphosphate-cyclohydrolase I deficiency, aromatic L-amino acid decarboxylase deficiency, and tyrosine hydroxylase deficiency. Of the GABA disorders, these are pyridoxine-dependent epilepsy, GABA transaminase deficiency, and succinic semialdehyde dehydrogenase deficiency. As proper collection, handling, and interpretation of cerebrospinal fluid is required for assessment of most of these disorders, we end by summarizing important considerations for obtaining cerebrospinal fluid samples.

Biogenic Monoamines↗

MIF-I and postsynaptic receptor sites for dopamine.

In an attempt to determine the mechanism by which the tripeptide l-prolyl-l-leucyl-glycine amide (PLG, MIF-I) exerts its antiparkinsonian effect, the action of this substance on various postsynaptic components of striatal dopaminergic nerves was studied. It was shown that injection of rats with MIF-I (1 mg/kg, IPX5, 24 hr intervals) did not alter tyrosine hydroxylase, dopa decarboxylase, choline acetyltransferase and glutamic acid decarboxylase activities in the striatum under the conditions tested. The activities of adenylate cyclase, dopamine-stimulated adenylate cyclase, and guanylate cyclase were not altered in vitro by various concentrations of MIF-I (0.1 to 1000 micrometer), although VIP and neurotensin had some effect. Also the rate of uptake of 3H-dopamine by rat striatal synaptosomes was unchanged, as was the binding of 3H-dopamine and 3H-spiperone to beef caudate membranes. This series of studies indicates that MIF-I does not act directly on the striatal dopamine postsynaptic receptor under the conditions tested, although it is possible that MIF-I could act indirectly at this or another site in vivo by releasing or activating some other factor.

Adenylyl Cyclases↗

Diabetes-related antibodies in adult diabetic patients.

Islet autoimmunity is made evident by the appearance of islet-cell antibodies directed against insulin (IAA), glutamic acid decarboxylase (GADA), protein tyrosine phosphatase IA-2 (IA-2Ab) and other autoantigens. IAA and IA-2Ab are predominantly detected in childhood type 1 diabetes mellitus (T1DM), while frequency of GADA is not affected by age. In adult-onset T1DM patients, GADA is the immune marker of higher diagnostic sensitivity. In adult diabetic patients not requiring insulin treatment for at least 6 months after diagnosis, GADA identifies the so-called latent autoimmune diabetes in adults (LADA). In over 80% of cases, LADA patients develop insulin dependency within a few years after the diagnosis and have an increased risk for the development of other organ-specific autoimmune diseases. High GADA titers identify a subgroup of LADA patients with low body mass index (BMI), low C-peptide levels and increased frequency of T1DM-related HLA class II haplotypes. GADA assay should be offered to every diabetic patient, and in cases of positivity screening for other autoimmune diseases should be carried out.

Adult↗

Time-resolved fluorescence imaging in islet cell autoantibody quantitation.

The prodromal period of insulin-dependent diabetes mellitus (IDDM) is characterized by circulating islet cell autoantibodies (ICA) and other beta cell specific autoantibodies. Despite biochemical characterization of the major beta cell autoantigens insulin, glutamic acid decarboxylase and protein tyrosine phosphatase and development of the respective antibody assays, ICA has remained the standard in IDDM prediction. Conventional ICA quantitation using classic fluorochromes is prone to errors since fluorescence intensity is estimated subjectively using the human eye, which is also unable to differentiate specific signals from non-specific signals and autofluorescence. Using Eu(3+)-chelate labelled anti-human polyclonal IgG (decay time 1000 microseconds) as the secondary antibody in time-resolved fluorescence imaging (TRFI), the chelate and autofluorescence signals (typical decay time < 100 ns) are fully separated. The image is recorded using an optically gated cooled digital CCD camera. The specificity of the ICA signal is further improved by interactive analysis of the image. Signal detection is objective, the signal-to-background ratio improves, and ICA quantitation is possible using undiluted serum. Of 57 consecutive new-onset IDDM patients, 55 (96.5%) were ICA positive in the new assay while 51 (89.5%) were positive in the conventional assay suggesting that the sensitivity of TRFI exceeds that of the IAA, GAD65 and IA-2 autoantibody assays combined. For later comparisons, the stained slides may be stored in the light for years without any decrease in specific fluorescence.

Adolescent↗

Evidence for proteolytic activity and biogenic amines production in Lactobacillus curvatus and L. homohiochii.

After screening 372 strains of Lactobacillus spp. isolated from a Portuguese traditional dry fermented sausage, two Lactobacillus strains, a Lactobacillus homohiochii and a L. curvatus were selected, because they were positive for tyrosine and ornithine decarboxylase activities. Evidence for extracellular proteolytic activity was also demonstrated for the two Lactobacillus strains, with some strain variation in terms of specific activities towards different substrates. Proteolytic activity was shown to be maximal in the early exponential growth. This proteolytic activity was higher when cells were grown in a peptide-rich medium such as MRS, when compared to skim milk. A study using several protease inhibitors showed that this activity is associated with metalloproteases in the case of the L. curvatus strain, but for L. homohiochii besides metalloproteases, serine-type proteases are also involved. In proteinaceous substrates, like dry fermented sausages, the formation of the biogenic amines putrescine and tyramine cannot be excluded when ongoing proteolysis leads to their precursors, as it is the case in the presence of these proteolytic Lactobacillus strains. Their ability to produce biogenic amines may be used as an index of microbial quality of the fermented meat product.

Animals↗

Screening for preclinical type 1 diabetes in a discrete population with an apparent increased disease incidence.

Environmental agents are proposed to play a role in triggering or exacerbating pancreatic islet autoimmunity in people genetically predisposed to type 1 diabetes. However, with few exceptions, these agents remain enigmatic. Clues to environmental agents may be found by investigating population/geographic clusters or 'hotspots' of high disease incidence. We were alerted to a small community where the incidence of type 1 diabetes appeared to be five-fold higher than expected. Because type 1 diabetes is now recognized to have a subclinical phase during which anti-islet antibodies can be detected, we aimed to identify and characterize a reservoir of children with subclinical disease in this community. Venous blood samples were collected from 1906/2347 (81%) local school children during one week. Islet cell antibodies (ICAs) were detected in 122 (6.4%) children, 18 (0.9%) being high titer (> or = 20 Juvenile Diabetes Foundation units (JDFu)). On retest, 15 months later, the majority of low titer ICAs were undetectable, whereas high-titer ICAs persisted. The latter were found in two distinct age-related, ethnically similar groups. The younger group, aged 6-9 yr, had antibodies to insulin (IAAs), glutamic acid decarboxylase (GAD) and tyrosine phosphatase IA2 in addition to ICA, human leukocyte antigen (HLA) genes associated with susceptibility to type 1 diabetes, and lower first-phase insulin responses (FPIRs) to intravenous glucose. The older group, aged 13-16 yr, the age cohort of the index clinical cases, had few antibodies other than ICA, non-susceptibility HLA genes and normal FPIRs. During follow-up, three children, all from the younger group with multiple antibodies and FPIRs less than the first percentile, developed diabetes 4, 6 and 7 yr after screening. The finding of two age groups of subclinical disease suggests that if environmental agents triggered islet autoimmunity they did not act constantly on the community. Furthermore, the absence of multiple autoantibodies and/or HLA susceptibility genes in the older group, the source of index clinical cases, implies they are a residual subgroup with slow or absent progressive beta-cell destruction. This study illustrates that the natural history of type 1 diabetes may be elucidated by analyzing age-related subclinical disease in the general population.

Journal Article↗