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Complications: neuropathy, pathogenetic considerations.

The most common form of neuropathy associated with diabetes mellitus is distal symmetric sensorimotor polyneuropathy, often accompanied by autonomic neuropathy. This disorder is characterized by striking atrophy and loss of myelinated and unmyelinated fibers accompanied by Wallerian degeneration, segmental, and paranodal demyelination and blunted nerve fiber regeneration. In both humans and laboratory animals, this progressive nerve fiber damage and loss parallels the degree and/or duration of hyperglycemia. Several metabolic mechanisms have been proposed to explain the relationship between the extent and severity of hyperglycemia and the development of diabetic neuropathy. One mechanism, activation of the polyol pathway by glucose via AR, is a prominent metabolic feature of diabetic rat peripheral nerve, where it promotes sorbitol and fructose accumulation, myo-inositol depletion, and slowing of nerve conduction by alteration of neural Na(+)-K(+)-ATPase activity or perturbation of normal physiological osmoregulatory mechanisms. ARIs, which normalize nerve myo-inositol and nerve conduction slowing, are currently the focus of clinical trials. Other specific metabolic abnormalities that may play a role in the pathogenesis of diabetic neuropathy include abnormal lipid or amino acid metabolism, superoxide radical formation, protein glycation, or potential blunting of normal neurotrophic responses. Metabolic dysfunction in diabetic nerve is accompanied by vascular insufficiency and nerve hypoxia that may contribute to nerve fiber loss and damage. Although major questions about the pathogenesis of diabetic neuropathy remain unanswered and require further intense investigation, significant recent progress is pushing us into the future and likely constitutes only the first of many therapies directed against one or more elements of the complex pathogenetic process responsible for diabetic neuropathy.

Animals↗

Effect of fluidotherapy on superficial radial nerve conduction and skin temperature.

STUDY DESIGN: Cross-sectional study. OBJECTIVES: The purpose of this study was to examine the effects of the superficial heating modality, Fluidotherapy, on skin temperature and on sensory nerve action potential (SNAP) conduction latency and amplitude of the superficial radial nerve in healthy individuals. BACKGROUND: Fluidotherapy is a dry, superficial heating modality, which also provides tactile stimulation through the bombardment of air-fluidized cellulose particles. Previous literature has documented a direct relationship between skin temperature and neural conduction velocity; however, there is an absence of published research examining the effects of Fluidotherapy, and of tactile stimulation specifically, on neural conduction. METHODS AND MEASURES: Twenty-one subjects between the ages of 22 and 31 years (mean+/-SD, 25.5+/-0.7 years) and without prior history of diabetes, alcoholism, renal or metabolic dysfunction, current pregnancy, or heat sensitivity were invited to participate. Subjects completed an upper quarter screening exam and medical history form prior to participation. One group underwent heat (46.7 degrees C-48.9 degrees C) and tactile stimulation, a second group underwent tactile stimulation alone, while a third served as controls. Dependent variables were assessed at 3 intervals: before the intervention, immediately after the intervention, and 20 minutes after the intervention. All interventions were 20 minutes in length. RESULTS: A mixed 2-way analysis of variance indicated a significant interaction between time of neural conduction velocity assessment and treatment group for the dependent variables of sensory nerve action potential latency (P< .001) and skin temperature (P< .001). Appropriate post hoc tests were performed for simple effect comparisons. An inverse linear relationship existed between skin temperature and latency (r2 = .65; Pearson product coefficient, -.81). CONCLUSIONS: Fluidotherapy treatment, which combines the effects of heat and tactile stimulation, significantly elevated superficial skin temperature, while tactile stimulation alone and no treatment (control group) did not bring about a temperature change. As the superficial skin temperature increased, there was a concomitant decrease in the distal sensory latency of the superficial radial sensory nerve action potential. These results should be an important consideration for the clinician using superficial heating modalities.

Action Potentials↗

Topographical analysis of glucose metabolism, as measured with positron emission tomography, in dementia of the Alzheimer type: use of linear histograms.

A linear histogram method was employed to analyze brain images of glucose uptake obtained by positron emission tomography in patients with dementia of the Alzheimer type and in control subjects. A line was drawn by computer which traversed the image of a brain slice taken at 70 mm above and parallel to the inferior orbitomeatal line, and rCMRglc was plotted as a function of distance along this line in 3 brain areas: frontal, sensorimotor and parietal. Peak rCMRglc values were significantly decreased in moderately-to-severely demented patients relative to healthy age-matched controls, but not in mildly demented patients. Furthermore, both the mildly and the more severely demented patients differed from controls in having reduced ratios of parietal association to sensorimotor peak rCMRglc. The variances of right-left metabolic asymmetries did not differ significantly between Alzheimer patients and controls. Severity of dementia, as evaluated by scores on the Mini-Mental State Examination, correlated with ratios of peak rCMRglc in frontal and parietal cortex to that in sensorimotor cortex. These results indicate that measures of focal peak rCMRglc do not discriminate between mildly demented patients and controls, whereas focal ratios of rCMRglc, where the denominator corresponds to rCMRglc from a relatively spared region, provide useful measures of metabolic dysfunction in the early stages of Alzheimer's disease.

Aged↗

Brain imaging in dementia of the Alzheimer type.

Neuroimaging modalities have increased understanding of brain abnormalities in dementia of the Alzheimer type (DAT), and is important in assessment of dementia syndromes by revealing focal disorders, demonstrating potentially treatable conditions, and by documenting progression of disease severity. Computed tomography (CT) and magnetic resonance imaging (MRI) have delineated structural changes in DAT, including cerebral atrophy associated with cortical sulci widening and ventricular enlargement, and deep white-matter lesions with periventricular distributions. Positron emission tomography (PET) has demonstrated diminished regional glucose metabolism at parietal and temporal lobes in DAT, while frontal hypometabolism tends to occur in more severe cases. Metabolic dysfunction assessed by PET appears to be the first indication of a degenerative cortical process in DAT, while anatomic changes on CT or MRI may become evident later in the disease process. This selective overview provides an analysis of the current status and future prospects of brain imaging in DAT.

Alzheimer Disease↗

Regulation of adipocyte differentiation.

Once multipotent mesenchymal cells become committed to the adipoblast lineage, adipogenesis, the process of preadipocytes differentiation into adipocytes is initiated. This process starts with a phase of exponential growth of adipoblasts. Following confluence of these adipoblasts, the cells enter into a cell cycle arrest, they re-enter the cell cycle and pass through a limited number of cell divisions, and finally differentiate into fully mature adipocytes. Adipogenesis is controlled by a complex cross-talk between positive and negative regulators, such as hormonal and nutritional stimuli, that change the activity of a selected set of transcription factors. Regulation of adipogenesis is crucial to keep the body energy balance because a limited amount of adipose tissue, lipodystrophy, or an excess of adipose tissue, such as occurs in obesity, lead to profound metabolic dysfunctions and disease.

Adipocytes↗

Extensibility of the lumbar and sacral cord. Pathophysiology of the tethered spinal cord in cats.

Tethered spinal cord, or tethered cord syndrome, describes a disorder manifested by progressive motor and sensory deficit in the legs and by incontinence. Tethered cord syndrome occurs when the elongated spinal cord is anchored by a thick filum terminale or other pathological structures. The underlying mechanism is impairment of oxidative metabolism in the lumbosacral cord. The authors studied the extensibility of various parts of lumbar, sacral, and coccygeal segments in experimental animals and correlated this with the oxidative metabolism in these segments. The filum terminale possesses far greater extensibility than any spinal cord segments and functions as a buffer in preventing the cord from overstretching. The lumbar, sacral, and coccygeal segments elongate under traction only below the attachment of the lowest pair of dentate ligaments. The lower the cord segment, the greater the percentage of elongation in spite of limited elasticity of the cord tissue; this greater percentage of elongation of the spinal cord correlates with increasing impairment of the oxidative metabolism and more severe neurological deficit. These findings explain such symptoms and signs as motor and sensory deficits in the legs associated with the human tethered cord syndrome, and correspond with the high clinical incidence of incontinence. The lower spinal cord segments elongated promptly within 3 seconds after the start of traction. This implies that repeated acute hyperextension and hyperflexion, as occurs in humans, may accentuate oxidative metabolic changes that have already been caused by chronic cord tethering. The authors conclude that the elongation of the spinal cord under traction parallels the degree of metabolic dysfunction.

Animals↗

Focal hyperperfusion in a patient with mitochondrial myopathy, encephalopathy, lactic acidosis, and strokelike episodes. Case report.

A 28-year-old woman presented with mitochondrial myopathy, encephalopathy, lactic acidosis, and strokelike episodes (MELAS). The diagnosis was based on the results of molecular genetic analysis, which indicated a typical point mutation at the nucleotide pair 3243. Xenon computerized tomography scans obtained during the strokelike episodes revealed the lesion responsible for the symptoms to be an area of focal hyperperfusion, and scans obtained after the episodes revealed an area of hypoperfusion. Pathogenesis of the strokelike episodes appears to be metabolic dysfunction, although the involvement of a vascular event cannot be excluded.

Adult↗

Dysregulation of miRNAs in Sicilian Patients with Huntington's Disease.

Background/Objectives: Huntington's disease (HD) is an autosomal dominant neurodegenerative disorder caused by a CAG nucleotide repeat expansion in the Huntingtin (HTT) gene. Dysregulation of microRNAs (miRNAs), key post-transcriptional regulators of gene expression, has been implicated in HD pathogenesis, although their specific roles remain incompletely understood. Methods: Peripheral blood mononuclear cells from Sicilian HD patients and matched healthy controls were subjected to small RNA sequencing. Differential expression analysis was conducted using DESeq2 (version 1.44.0), with significance defined as |fold change| &#x2265; 1.5 and adjusted p &#x2264; 0.05. Ingenuity Pathway Analysis (IPA) was applied to assess functional enrichment, focusing on neurological diseases, inflammatory processes, and miRNA-RNA messenger (mRNA) interaction networks. Results: A total of 790 differentially expressed miRNAs were identified in HD patients (270 upregulated and 520 downregulated). IPA revealed enrichment in pathways related to organismal injury, neurological disease, and inflammatory responses. Four major regulatory networks linked differentially expressed miRNAs to neurodegenerative processes, with target genes involved in neuroinflammation, cellular stress responses, and metabolic dysfunction. Cross-referencing with previous RNA-seq data identified 5721 high-confidence miRNA-mRNA interactions, implicating 721 target genes across 54 key canonical pathways. Conclusions: HD patients exhibit a distinct and reproducible peripheral blood miRNA expression signature. These dysregulated miRNAs may represent accessible biomarkers and provide mechanistic insights into HD pathogenesis, with potential applications for diagnosis, prognosis, and therapeutic development.

Huntington&#x2019;s disease↗

Copper transportion of WD protein in hepatocytes from Wilson disease patients in vitro.

AIM: To study the effect of copper transporting P-type ATPase in copper metabolism of hepatocyte and pathogenesis of Wilson disease (WD). METHODS: WD copper transporting properties in some organelles of the cultured hepatocytes were studied from WD patients and normal controls.These cultured hepatocytes were incubated in the media of copper 15 mg x L(-1) only, copper 15 mg x L(-1) with vincristine (agonist of P-type ATPase) 0.5mg x L(-1), or copper 15 mg x L(-1) with vanadate (antagonist of P-type ATPase) 18.39 mg x L(-1) separately. Microsome (endoplasmic reticulum and Golgi apparatus), lysosome, mitochondria, and cytosol were isolated by differential centrifugation. Copper contents in these organelles were measured with atomic absorption spectrophotometer, and the influence in copper transportion of these organelles by vanadate and vincristine were comparatively analyzed between WD patients and controls. WD copper transporting P-type ATPase was detected by SDS-PAGE in conjunction with Western blot in liver samples of WD patients and controls. RESULTS: The specific WD proteins (M(r)155,000 lanes) were expressed in human hepatocytes, including the control and WD patients. After incubation with medium containing copper for 2 h or 24 h, the microsome copper concentration in WD patients was obviously lower than that of controls, and the addition of vanadate or vincristine would change the copper transporting of microsomes obviously. When incubated with vincristine, levels of copper in microsome were significantly increased, while incubated with vanadate, the copper concentrations in microsome were obviously decreased. The results indicated that there were WD proteins, the copper transportion P-type ATPase in the microsome of hepatocytes. WD patients possessed abnormal copper transporting function of WD protein in the microsome, and the agonist might correct the defect of copper transportion by promoting the activity of copper transportion P-type ATPase. CONCLUSION: Copper transportion P-type ATPase plays an important role in hepatocytic copper metabolism. Dysfunction of hepatocytic WD protein copper transportion might be one of the most important factors for WD.

Adenosine Triphosphatases↗

Body mass index and future schizophrenia in Israeli male adolescents.

BACKGROUND: Compared with the general population, individuals suffering from schizophrenia are more likely to be overweight, a finding attributed to the effect of antipsychotic medications, poor nutrition, and sedentary lifestyle. As evidence accumulates indicating that some aspects of the illness manifest before the onset of psychosis and establishment of the diagnosis, it has been suggested that increased weight, like other metabolic dysfunctions, might precede active illness. METHOD: Data on height and weight of 203,257 male adolescents assessed by the Israeli Draft Board, and followed for 2-6 years for later hospitalization for schizophrenia using the Israeli National Psychiatric Hospitalization Case Registry, were analyzed. RESULTS: From the entire cohort, 309 (0.15%) were later hospitalized for schizophrenia (ICD-10). After removing adolescents with evidence of illness before or within 1 year of the Draft Board assessment, 204 future schizophrenia patients were available for analysis. Compared with the rest of the cohort, future schizophrenia patients had lower body mass indexes (21.24 +/- 3.3 kg/m2 vs. 21.77 +/- 3.5 kg/m2; F = 4.682, df = 1, p = .03) and weighed slightly but significantly less (64.2 +/- 11.6 kg vs. 66.3 +/- 12.0 kg; F = 6.615, df = 1, p = .01). The mean height of the future patients did not differ significantly from the mean height of the remaining cohort (173.63 +/- 6.7 cm vs. 174.40 +/- 6.9 cm; F = 2.520, df = 1, p = .112). When reanalyzing the data, controlling for physical activity and socioeconomic status, the differences between the groups remained significant. CONCLUSION: Before the onset of illness, future schizophrenia patients are not heavier compared with their peers. This implies that the increased weight of patients with schizophrenia is related to illness effects, including the effects of antipsychotic medication.

Adolescent↗

Mitochondrial DNA homeostasis: A novel therapeutic target for neurodegenerative diseases.

The mitochondrial genomic homeostasis is essential for the function of the oxidative phosphorylation system and cellular homeostasis. Mitochondrial DNA is particularly susceptible to aging-related oxidative stress due to the lack of a histone coat. Disturbances in mitochondrial DNA may contribute to functional decline during the aging process and in neurodegenerative diseases, leading to further impairment of mitochondrial DNA and initiating a vicious cycle. To date, it remains unclear how disturbed mitochondrial DNA is involved in the etiology of pathological aging and neurodegenerative diseases. The purpose of this review is to clarify the crucial roles of mitochondrial DNA homeostasis in the pathogenesis of neurodegenerative diseases. Mitochondrial DNA is distributed within nucleoids and is then transcribed into polycistronic mitochondrial DNA molecules within the mitochondrial granule region. Within the ultrastructure of the mitochondrial nucleoid and granule, a group of essential mitochondrial proteins involved in DNA replication, DNA transcription, RNA translation, RNA surveillance, and RNA degradation plays a crucial role in maintaining mitochondrial structure, genome integrity, and mitochondrial DNA processing. The uniparentally inherited mitochondrial DNA undergoes heritable polyploid variations, which include homoplasmy and heteroplasmy. Accumulating mitochondrial DNA alterations, such as deletions, point mutations, and methylations, occur during the pathogenic processes of neurodegenerative diseases. The increased mitochondrial DNA alterations can be propagated by the rise of deleterious heteroplasmy in neurodegenerative diseases, ultimately resulting in impairment to the oxidative phosphorylation system, biogenesis defects, and cellular metabolic dysfunction. Therefore, developing appropriate gene editing tools to rectify aberrant alterations in mitochondrial DNA and targeting the key proteins involved in maintaining mitochondrial DNA homeostasis can be considered promising therapeutic strategies for neurodegenerative diseases. Although therapeutic strategies targeting mitochondrial DNA in diseases show great potential, challenges related to efficacy and safety require a better understanding of the mechanisms underlying mitochondrial DNA alterations in aging and neurodegenerative diseases.

Alzheimer&#x2019;s disease↗

Calcinosis cutis with siliconomas complicated by hypercalcemia.

OBJECTIVE: To report a case of extensive calcinosis cutis presumably caused by silicone injections, which was complicated by hypercalcemia. METHODS: A long-standing case of calcinosis cutis with subsequent development of hypercalcemia is presented, and possible mechanisms for the underlying metabolic dysfunction are discussed. RESULTS: A 78-year-old woman presented with severe hypercalcemia and was found to have extensive subcutaneous calcifications on the anterior chest wall and abdomen, likely related to previous silicone injections. The hypercalcemia was treated with intravenously administered pamidronate and aggressive rehydration. Resection of the extensive long-standing calcific deposits was not a viable option. The hypercalcemia resolved with treatment, but the patient died of urinary tract sepsis. CONCLUSION: Extensive calcinosis cutis can result in hypercalcemia, possibly attributable to granulomatous reaction and vitamin D excess.

Aged↗

Pyruvate protection against endothelial cytotoxicity induced by blockade of glucose uptake.

We have previously demonstrated that the redox reactant pyruvate prevents apoptosis in the oxidant model of bovine pulmonary artery endothelial cells (BPAEC), and that the anti-apoptotic mechanism of pyruvate is mediated in part via the mitochondrial matrix compartment. However, cytosolic mechanisms for the cytoprotective feature of pyruvate remain to be elucidated. This study investigated the pyruvate protection against endothelial cytotoxicity when the glycolysis inhibitor 2-deoxy-D-glucose (2DG) was applied to BPAEC. Millimolar 2DG blocked the cellular glucose uptake in a concentration- and time-dependent manner with >85% inhibition at > or =5 mM within 24 h. The addition of 2DG evoked BPAEC cytotoxicity with a substantial increase in lipid peroxidation and a marked decrease in intracellular total glutathione. Exogenous pyruvate partially prevented the 2DG-induced cell damage with increasing viability of BPAEC by 25-30%, and the total glutathione was also modestly increased. In contrast, 10 mM L-lactate, as a cytosolic reductant, had no effect on the cytotoxicity and lipid peroxidation that are evoked by 2DG. These results suggest that 2DG toxicity may be a consequence of the diminished potential of glutathione antioxidant, which was partially restored by exogenous pyruvate but not L-lactate. Therefore, pyruvate qualifies as a cytoprotective agent for strategies that attenuate the metabolic dysfunction of the endothelium, and cellular glucose oxidation is required for the functioning of the cytosolic glutathione/NADPH redox system.

Animals↗

Recent developments in diagnostic imaging of the gastrointestinal tract of the dog and cat.

The gastrointestinal (GI) tract comprises the esophagus, stomach, small intestine, large intestine, pancreas, mesentery, and associated lymph nodes. Diseases that result in structural lesions of the GI tract and diseases that cause abnormal GI motility are potentially detectable using diagnostic imaging techniques, whereas disorders of the GI tract that are manifested as histological lesions or metabolic dysfunction are not.

Animals↗

[Ischemic cardiopathy in the hypertensive].

Arterial hypertension and coronary heart disease (CHD) are the clinical expression of cardiovascular remodelling, the altered cell population of the cardiovascular system being the result from many biological, psychological and social factors and genetic, enzymatic, humoral and metabolic dysfunction of the individual subject. Both diseases are affected by many common factors and have some similar aspects of the remodeling process, and these are reasons for their simultaneous presence in many patients. The assessment of the total burden of CHD risk in the hypertensive patient and the strategy to modify lifestyle and reduce not only the blood pressure, but also the total burden of risk, is therefore important.

Coronary Disease↗

Alterations in retrograde axonal transport in optic nerve of type I and type II diabetic rats.

Clinical and electrophysiological examinations have yielded visual pathway function abnormalities in both humans and animal models with diabetes mellitus (DM). However, subclinical involvement of the optic nerve has not yet been fully investigated. In this study, we demonstrated the different impairments in retrograde axonal transport occurring in selective retinal ganglion cells (RGCs) of Type I and II diabetic rats. Rats were injected with streptozotocin (STZ) to induce Type I DM. The Otsuka Long-Evans Tokushima Fatty (OLETF) rats represented the Type II DM group. The STZ-induced (Type I) diabetic rats had low body weights and significant elevations in blood glucose levels compared with the age-matched control rats. On the contrary, the OLETF rats (Type II) had high body weights and significant elevations in blood glucose concentrations compared with the age-matched controls. Fluoro-Gold (FG) was injected into the bilateral dorsal lateral geniculate nucleus. Accumulation of FG in large and medium type RGCs in STZ-induced diabetic rats was significantly decreased compared with the controls. However, the accumulation of FG in RGCs of OLETF rats did not show a significant decrease compared with the controls. Our findings suggest that, within the time frame of study, retrograde axonal transport impairment of large and medium type RGCs in the STZ-induced (Type I DM) diabetic rats was greater than in the OLETF (Type II DM) diabetic rats. Impairment of retrograde axonal transport in Type I diabetes may precede or be a consequence of metabolic dysfunctions in the large and medium-sized RGCs eventually leading to optic nerve atrophy.

Animals↗

[Study of mapped slow auditory evoked potentials in Alzheimer's disease].

BACKGROUND: Alzheimer's disease affects around 500,000 persons in Italy and its diagnosis remains essentially clinical. Our aim was to contribute to the diagnosis of Alzheimer's disease by mapping auditory evoked potentials (AEP). Evoked potentials represent the electric response of the CNS to an external stimulus and can be represented as a sequence of waves. Brain mapping allows a chromotopogram to be compiled showing chromatic maps. METHODS: A group of 12 patients were studied aged between 68 and 84 years old who were referred to our attention at the Department of Geriatrics and Gerontology at Catania University and the A.O. Cannizzaro, Geriatrics Unit. All patients completed an assessment form (MM-SE, ADAS) and underwent brain NMR and AEP. RESULTS: These tests enabled us to identify two types of patients (Group A and Group B) based on the responses shown. The overall evaluation of results revealed that patients with Alzheimer-type dementia present an anomalous cortical neurogenic response to mapped AEP, and that patients in Group A showed anomalous wave morphology, latency and localisation and asymmetric impregnation. The data gathered in this study did not confirm any specific characteristics of AEP given that similar anomalies are found in metabolic dysfunction syndromes and demyelination pathologies. CONCLUSIONS: However, while it does not constitute a specific technique for screening against Alzheimer's disease, the mapping of AEP may contribute to the diagnosis of this disease.

Aged↗

Neuroprotective effects of creatine in a transgenic mouse model of Huntington's disease.

Huntington's disease (HD) is a progressive neurodegenerative illness for which there is no effective therapy. We examined whether creatine, which may exert neuroprotective effects by increasing phosphocreatine levels or by stabilizing the mitochondrial permeability transition, has beneficial effects in a transgenic mouse model of HD (line 6/2). Dietary creatine supplementation significantly improved survival, slowed the development of brain atrophy, and delayed atrophy of striatal neurons and the formation of huntingtin-positive aggregates in R6/2 mice. Body weight and motor performance on the rotarod test were significantly improved in creatine-supplemented R6/2 mice, whereas the onset of diabetes was markedly delayed. Nuclear magnetic resonance spectroscopy showed that creatine supplementation significantly increased brain creatine concentrations and delayed decreases in N-acetylaspartate concentrations. These results support a role of metabolic dysfunction in a transgenic mouse model of HD and suggest a novel therapeutic strategy to slow the pathological process.

Animals↗