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There is no doubt that high blood lead levels are associated with mental subnormality and hyperactivity. Several recent studies in Britain and America have investigated the relation between moderate levels, i.e. between 20 and 40 microgram/100 ml and behavioural and cognitive phenomena. Epidemiological studies have generally failed to point to a clearcut relation between such levels and overactivity or decrements in performance on standard intelligence and educational tests. Published studies with the use of chelation techniques have suffered from methodological weaknesses. It is known that socio-economic factors are powerfully related to measured intelligence and behaviour and, on the evidence available, it is to them that attention should primarily be given if preventative measures are being considered. There remains the possibility that more refined test measures would detect impaired functioning in children with moderately raised lead levels, and that there is an interaction effect between lead and host resistance.  相似文献   

3.
Oxidative insults, whether over-excitation, excessive release of glutamate or ATP caused by stroke, ischemia or inflammation, exposure to ionizing radiation, heavy-metal ions or oxidized lipoproteins may initiate various signaling cascades leading to apoptotic cell death and neurodegenerative disorders. Among the various reactive oxygen species (ROS) generated in the living organism, hydroxyl and peroxynitrite are the most potent and can damage proteins, lipids and nucleic acids. It appears that some natural antioxidants (tocopherol, ascorbic acid and glutathione) and defense enzyme systems (superoxide dismutase, catalase and glutathione peroxidase) may provide some protection against oxidative damage. Recent findings indicate several polyphenols and antioxidant drugs (probucol, seligilline) are effective in protecting the cells from ROS attack. Further development of these antioxidant molecules may be of value in preventing the development of neurodegenerative diseases.  相似文献   

4.
This review covers the observations that erythrocyte spectrin has a E2 ubiquitin conjugating enzymatic activity that allows it to transfer ubiquitin to a target site in the alpha-spectrin repeats 20/21. The position of this ubiquitination site suggests that ubiquitination may regulate alpha beta spectrin heterodimer nucleation, spectrin-4.1-actin ternary complex formation, and adducin stimulated spectrin-actin attachment in the mature erythrocyte. In sickle cells, which contain altered redox status (high GSSG/GSH ratio), ubiquitin attachment to the E2 and target sites in alpha-spectrin is greatly diminished. We propose that this attenuated ubiquitination of spectrin may be due to glutathiolation of the E2 active site cysteine leading to diminished ubiquitin-spectrin adduct and conjugate formation. Furthermore we propose that lack of ubiquitin-spectrin complex formation leads to dysregulation of the membrane skeleton in mature SS erythrocytes and may diminish spectrin turnover in SS erythropoietic cells via the ubiquitin proteasome machinery. In hippocampal neurons, spectrin is the major ubiquitinated protein and a component of the cytoplasmic ubiquitinated inclusions observed in Alzheimer's and Parkinson's diseases. The two primary neuronal spectrin isoforms: alpha SpI Sigma*/beta SpI Sigma 2 and alpha SpII Sigma 1/beta SpII Sigma 1 are both ubiquitinated. Future work will resolve whether neuronal spectrins also contain E2-ubiquitin conjugating activity and the molecular basis for formation of ubiquitinated inclusions in neurological disorders.  相似文献   

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This paper reports blood lead levels in children from three Sardinian municipalities: Portoscuso, Iglesias, and Sestu. Portoscuso, chosen as the control area, is located about 2 km from one of the most important industrial complexes of the island. Iglesias was once an important zinc-lead mining centre. Sestu is a semi-urban centre located about 10 km from Cagliari (the islands's capital), and may be considered unexposed to lead pollution. Blood lead concentration was evaluated in heparinized venous blood samples by graphite furnace atomic absorption spectrophotometry. Children living in Portoscuso show a higher mean of blood lead levels (8.43 micrograms/dl) as compared to that of children of the same age living in Iglesias (6.92 micrograms/dl) and Sestu (5.71 micrograms/dl). By the Bonferroni t-tests procedure these mean differences appear to be statistically significant. The mean of PbB levels obtained in this investigation for children from Portoscuso showed a decrease of 33.62% with respect to that reported in a previous investigation carried out in 1987 (12.7 micrograms/dl).  相似文献   

7.
《Biomarkers》2013,18(6):517-524
Objective: To find the best lead exposure assessment marker for children.

Methods: We recruited 11 children, calculated a cumulative blood lead index (CBLI) for the children, measured their concurrent BLL, assessed their development, and measured their bone lead level.

Results: Nine of 11 children had clinically significant neurodevelopment problems. CBLI and current blood lead level, but not the peak lead level, were significantly or marginally negatively associated with the full-scale IQ score.

Conclusion: Lead exposure at younger age significantly impacts a child’s later neurodevelopment. CBLI may be a better predictor of neurodevelopment than are current or peak blood lead levels.  相似文献   

8.
M J Thomson 《CMAJ》1993,149(2):138-139
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9.
D E Cole  J F Rosen 《CMAJ》1993,149(2):139-143
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10.
Antioxidants, oxidative stress, and degenerative neurological disorders   总被引:34,自引:0,他引:34  
Recently, clinical trials of several neurodegenerative diseases have increasingly targeted the evaluation of the effectiveness of various antioxidants. The results so far are encouraging but variable and thus confusing. Rationale for the possible clinical effectiveness of antioxidants in several degenerative conditions has arisen out of the many years of basic science generally showing that reactive oxygen species (ROS) and oxidative damage are important factors in the processes involved. Aging is one of the most significant risk factors for degenerative neurological disorders. Basic science efforts in our laboratory have centered on exploring the role of ROS and oxidative stress in neurodegenerative processes. The present review brings together some of the basic concepts we have learned by following this approach for the last 20 years and specifically the results we have obtained by following up on our serendipitous findings that a nitrone-based free radical trap, alpha-phenyl-tert-butylnitrone (PBN), has neuroprotective activity in several experimental neurodegenerative models. The mechanistic basis of the neuroprotective activity of PBN does not appear to rely on its general free radical trapping or antioxidant activity per se, but its activity in mediating the suppression of genes induced by pro-inflammatory cytokines and other mediators associated with enhanced neuroinflammatory processes. Neuroinflammatory processes, induced in part by pro-inflammatory cytokines, yield enhanced ROS and reactive nitric oxide species (RNS) as well as other unknown components that have neurotoxic properties. Neurotoxic amounts of RNS are formed by the activity of inducible nitric oxide synthase (iNOS). The demonstration of enhanced 3-nitro-tyrosine formation in affected regions of the Alzheimer's brain, in comparison to age-matched controls, reinforces the importance of neuroinflammatory processes. iNOS induction involves activation by phosphorylation of the MAP kinase p38 and can be induced in cultured astrocytes by IL-1beta or H2O2. The action of PBN and N-acetyl cysteine to suppress the activation of p38 was demonstrated in cultured astrocytes. The demonstration of activated p38 in neurons surrounding amyloid plaques in affected regions of the Alzheimer's brain attest to enhanced signal transduction processes in this neurodegenerative condition. The major themes of ROS and RNS formation associated with neuroinflammation processes and the suppression of these processes by antioxidants and PBN continue to yield promising leads for new therapies. Outcomes of clinical trials on antioxidants will become less confusing as more knowledge is amassed on the basic processes involved.  相似文献   

11.
BackgroundChildhood Lead (Pb) toxicity has been an ongoing concern for decades; however, its underlying pathogenesis remains unclear. Although its prevalence has come down in developed countries (USA, Europe); it is relatively high in low to middle-income countries of South-East Asia. The current study aimed to evaluate the association of blood lead levels (BLLs) with neurobehavioral alterations and changes in Brain-Derived Neurotropic Factor (BDNF) expression in Indian school children.MethodologySchool going children in age group of 9–15 years (N = 72) were included in the study. Neurobehavioral changes were assessed using Childhood Psychopathological Measurement Schedule (CPMS) and BLL were measured by Graphite Furnace Atomic Absorption Spectrophotometry (GFAAS). BDNF mRNA expression and serum BDNF levels were assessed by Real-Time PCR and ELISA, respectively.ResultsMedian BLL was 4.95 μg/dL (IQR = 4.47), very close to the recommended toxic cut off levels (<5 μg/dL). BLLs had a direct correlation with both CPMS scores and BDNF expression. Depression was found to be significantly higher in boys than in girls with high BLLs. BDNF mRNA expression and serum BDNF levels were higher among children with high BLL, although not to significant levels.ConclusionWe report a significant association of neurobehavioral changes with the prevalence of high Pb levels in Indian children. Additionally significant correlation of BDNF with BLL in these children suggests a causal role of BDNF in Pb induced neurological damage.  相似文献   

12.
Nutritional factors are known to influence metabolism and toxicity of several metals in animal experiments, but relevant human data are scarce and inconclusive. In this work, we tested the hypothesis that dietary calcium influences lead metabolism in humans. Blood lead concentrations were used as indicators of lead exposure and metabolism. Two groups of peasant women living in similar conditions in two different regions in Yugoslavia (100 in each) were chosen as subjects for this purpose. In region A, the dietary calcium intake was about 940 mg, and in region B about two times lower, i.e., 450 mg/day. The average blood lead concentration was significantly lower in women from region A (69 micrograms/L) than from region B (83 micrograms/L). Our results support the assumption that adequate calcium intake might be one of the preventive measures for decreasing lead absorption. This new evidence, sought for some time by nutritionists and toxicologists, needs further international confirmation.  相似文献   

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These special issues of Biological Signals and Receptors are intended to describe mitochondrial DNA damage, oxidative stress and human diseases, including neurodegenerative and neuromuscular diseases, disorders associated with aging, and ischemia-perfusion injury. Traditionally, mitochondria have been viewed as the 'powerhouse' of the cell, i.e., the site of the oxidative phosphorylation machinery involved in adenosine triphosphate (ATP) production. Consequently, much of the research conducted on mitochondria over the past 4 decades has focused on elucidating both those molecular events involved in ATP synthesis by oxidative phosphorylation and those involved in the biogenesis of the oxidative phosphorylation machinery. While monumental achievements have been made, and continue to be made, in the study of these remarkable but extremely complex processes essential for the life of most animal cells, it has been only in recent years that a large body of biological and biomedical scientists have come to recognize that mitochondria participate in other important processes. Two of these are cell death and aging which, not surprisingly, are related processes both involving, in part, the oxidative phosphorylation machinery. This new awareness has sparked a new and growing area of mitochondrial research that has become of great interest to a wide variety of scientists ranging from those involved in elucidating the role of mitochondria in cell death and aging to those interested in either suppressing or facilitating these processes as it relates to identifying new therapies or drugs for human disease.  相似文献   

15.
Pregnancy and lactation are states known to be accompanied by physiologically up regulated bone resorption in response to the calcium demands of the developing fetus and nursing infant. The role of calcium supplements in altering maternal responses to fetal demand for calcium is not fully understood. Exposure to the toxicant lead is known to pose a major hazard to fetal neurodevelopment and growth. Since >95% of maternal lead is stored in the bone, mobilization of cumulative maternal lead stores into the circulation represents an endogenous source of exposure, which may pose a significant hazard for the fetus and infant. Maternal dietary calcium supplementation has been associated with reductions in lead levels in both animal and human studies when administered during pregnancy and lactation. Therefore, supplementation of the maternal diet with calcium may represent an important secondary prevention strategy aimed not only at reducing circulating levels of lead in the mother but also at reducing lead exposure to the developing fetus and nursing infant.  相似文献   

16.
The copper content in whole blood and serum was determined in healthy human subjects (240 males and 217 females) by atomic absorption spectrophotometry. The mean level of copper obtained in whole blood was 104.8 +/- 20.5 micrograms/100 ml in males and 117.1 +/- 20.1 micrograms/100 ml in females. The mean level of copper in serum was 102.3 +/- 21.7 micrograms/100 ml and 123.9 +/- 30.4 micrograms/100 ml, in males and females respectively. The copper concentration in whole blood and serum in females proved to be significantly higher than in males (p less than 0.001). With respect to age, the copper level showed a slightly negative correlation which is only statistically significant in whole blood in females (p less than 0.05).  相似文献   

17.
The zinc content in whole blood and serum was determined in 239 healthy males and 217 healthy females by atomic absorption spectrophotometry. The mean level of zinc obtained in whole human blood from males was 607.0 +/- 105.3 micrograms/100 ml and in females 585.2 +/- 122.9 micrograms/100 ml. The mean level of zinc in serum was 116.6 +/- 55.2 micrograms/100 ml and 105.2 +/- 66.9 micrograms/100 ml in males and females respectively. The zinc concentration in whole blood and serum in males proved to be slightly higher than in females though the difference is not statistically significant. For the males a positive correlation was found between age and the zinc level in whole blood and serum; this is only statistically significant in whole blood. In females, the zinc level in whole blood showed a positive correlation with age which was not statistically significant, while in serum this correlation was negative and statistically significant.  相似文献   

18.
The aim of the present study is to evaluate blood levels (PbB) in a group of 500 (245 M, 255 F) children and adolescents of Campania (Italy) aged from 0.197 to 16.915 years, 269 (136 M, 133 F) of whom lived in urban zones and 231 (109 M, 122 F) in rural zones. PbB was assayed by electrothermal atomic absorption spectroscopy. The parents of the examined subjects children were interviewed about common risk factors for lead exposure using a standardized questionnaire. The PbB of children living in urban zones were significantly higher than the PbB of those living in rural zones (60.0 +/- 3.0 mg/L vs. 40.0 +/- 2.0 mg/L, p < 0.001). A PbB higher than 100 mg/L was found in 27 children (5.4%). We observed a significant correlation between age and PbB (p < 0.001, r = 0.529). Our data regarding children and adolescents demonstrate that the prevalence of PbB higher than 100 mg/L is greater in children living in urban areas (6.89%) than in subjects living in rural areas (3.89%). The findings can be explained by the higher presence of risk factors of Pb exposure in urban areas. Our data, if compared with those of previous studies concerning children of Campania, show a clear decrease of PbB. The correlation that we found between age and PbB indicates that long-term exposure at low doses more than a more intensive but short-term exposure seems to be important for the increase of blood lead levels.  相似文献   

19.
This paper deals with a biometric study of 312 boys and girls, aged 2.5-16 years, living in an area with a long history of pollution by lead. The aim was to search for eventual relationships between ten biometric variables and measures of lead absorption in the bodies, i.e. the amount of lead in the blood (PbB), of these children. Standardized values of the biometric variables were compared in the high-PbB and low-PbB categories, by multivariate analysis of variance. Comparison of the vectors of the ten biometric variables reveals a significant difference between the two categories of PbB levels. We found some evidence that the younger children (below 8 years of age) are more likely to absorb lead in the body and are more vulnerable to the effects of subclinical lead intoxication than their older counterparts. The differences between the averages of biometric variables in the two PbB categories are consistently (although not significantly) greater among younger children. This trend disappeared in the older age group. These results confirm data from the literature that young children are especially at risk. It can be concluded that there is a subtle, but significant, influence of lead absorption on the biometric profiles of children and that this effect is probably more important in children below 8 years of age.  相似文献   

20.
Summary Four hundred and sixteen patients suffering from diabetes were studied for AB0 Rhesus blood groups, to find out whether there is any association between blood group and diabetes. Though the relative incidence was found to be higher in blood group 0 and B, the difference was not statistically significant. This study confirms the earlier findings of high cholesterol levels in diabetes, particularly in patients with blood groups A and AB, and the overall mean cholesterol level as 253 mg/100 ml. This study also shows that diabetes with a cholesterol level of more than 300 mg/100 ml is a coronary risk factor.
Zusammenfassung 416 Patienten mit Diabetes wurden nach AB0 und Rh untersucht, um Assoziationen zwischen Blutgruppe und Diabetes zu finden. Es fand sich ein leichtes, nicht signifikantes Überwiegen von 0 und B. Ein besonders hoher Serum-Cholesteral-Spiegel fand sich beim Diabetes insbesondere bei Patienten der Gruppen A und AB. Die Studie zeigt auch, daß ein Cholesteral-Spiegel von mehr als 300 mg% ein Risikofaktor für Coronarerkrankungen ist.
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