1.Molecular Biological Advances in Human Copper Metabolism: Molecular Genetics in Wilson's Disease.
The Korean Journal of Hepatology 1998;4(3):223-234
No abstract available.
Copper*
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Hepatolenticular Degeneration*
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Humans*
;
Metabolism*
;
Molecular Biology*
2.Two cases of Wilson disease: MRI findings.
Myung Soon KIM ; Joong Wha PARK
Journal of the Korean Radiological Society 1992;28(5):692-695
Wilson disease is a rare genetic disorder of copper metabolism. Although CT findings suggest the disease when CNS pathologic changes are advanced, characteristic brain MR findings are reported to manifest early in the disease. The authors experienced two cases of Wilson disease of the brain and report the MR findings.
Brain
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Copper
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Hepatolenticular Degeneration*
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Magnetic Resonance Imaging*
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Metabolism
3.Calculated parameters for the diagnosis of Wilson disease.
Nada Syazana ZULKUFLI ; Pavai STHANESHWAR ; Wah-Kheong CHAN
Singapore medical journal 2023;64(3):188-195
INTRODUCTION:
The diagnosis of Wilson disease (WD) is plagued by biochemical and clinical uncertainties. Thus, calculated parameters have been proposed. This study aimed to: (a) compare the diagnostic values of non-caeruloplasmin copper (NCC), NCC percentage (NCC%), copper-caeruloplasmin ratio (CCR) and adjusted copper in WD; and (b) derive and evaluate a discriminant function in diagnosing WD.
METHODS:
A total of 213 subjects across all ages who were investigated for WD were recruited. WD was confirmed in 55 patients, and the rest were WD free. Based on serum copper and caeruloplasmin values, NCC, NCC%, CCR and adjusted copper were calculated for each subject. A function was derived using discriminant analysis, and the cut-off value was determined through receiver operating characteristic analysis. Classification accuracy was found by cross-tabulation.
RESULTS:
Caeruloplasmin, total copper, NCC, NCC%, CCR, adjusted copper and discriminant function were significantly lower in WD compared to non-WD. Discriminant function showed the best diagnostic specificity (99.4%), sensitivity (98.2%) and classification accuracy (99.1%). Caeruloplasmin levels <0.14 g/L showed higher accuracy than the recommended 0.20 g/L cut-off value (97.7% vs. 87.8%). Similarly, molar NCC below the European cut-off of 1.6 umol/L showed higher accuracy than the American cut-off of 3.9 umol/L (80.3% vs. 59.6%) (P < 0.001). NCC%, mass NCC, CCR and adjusted copper showed poorer performances.
CONCLUSION
Discriminant function differentiates WD from non-WD with excellent specificity, sensitivity and accuracy. Performance of serum caeruloplasmin <0.14 g/L was better than that of <0.20 g/L. NCC, NCC%, CCR and adjusted copper are not helpful in diagnosing WD.
Humans
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Hepatolenticular Degeneration/diagnosis*
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Copper/analysis*
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Ceruloplasmin/metabolism*
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Repressor Proteins
4.Copper homeostasis dysregulation promoting cell damage and the association with liver diseases.
Tao LIU ; Yali LIU ; Feiyu ZHANG ; Yanhang GAO
Chinese Medical Journal 2023;136(14):1653-1662
Copper plays an important role in many metabolic activities in the human body. Copper level in the human body is in a state of dynamic equilibrium. Recent research on copper metabolism has revealed that copper dyshomeostasis can cause cell damage and induce or aggravate some diseases by affecting oxidative stress, proteasome, cuprotosis, and angiogenesis. The liver plays a central role in copper metabolism in the human body. Research conducted in recent years has unraveled the relationship between copper homeostasis and liver diseases. In this paper, we review the available evidence of the mechanism by which copper dyshomeostasis promotes cell damage and the development of liver diseases, and identify the future research priorities.
Humans
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Copper/metabolism*
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Homeostasis
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Oxidative Stress
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Liver Diseases
5.Effects of copper on biodegradation mechanism of trichloroethylene by mixed microorganisms.
Yanhui GAO ; Tiantao ZHAO ; Zhilin XING ; Zhi HE ; Lijie ZHANG ; Xuya PENG
Chinese Journal of Biotechnology 2016;32(5):621-634
We isolated and enriched mixed microorganisms SWA1 from landfill cover soils supplemented with trichloroethylene (TCE). The microbial mixture could degrade TCE effectively under aerobic conditions. Then, we investigated the effect of copper ion (0 to 15 μmol/L) on TCE biodegradation. Results show that the maximum TCE degradation speed was 29.60 nmol/min with 95.75% degradation when copper ion was at 0.03 μmol/L. In addition, genes encoding key enzymes during biodegradation were analyzed by Real-time quantitative reverse transcription PCR (RT-qPCR). The relative expression abundance of pmoA gene (4.22E-03) and mmoX gene (9.30E-06) was the highest when copper ion was at 0.03 μmol/L. Finally, we also used MiSeq pyrosequencing to investigate the diversity of microbial community. Methylocystaceae that can co-metabolic degrade TCE were the dominant microorganisms; other microorganisms with the function of direct oxidation of TCE were also included in SWA1 and the microbial diversity decreased significantly along with increasing of copper ion concentration. Based on the above results, variation of copper ion concentration affected the composition of SWA1 and degradation mechanism of TCE. The degradation mechanism of TCE included co-metabolism degradation of methanotrophs and oxidation metabolism directly at copper ion of 0.03 μmol/L. When copper ion at 5 μmol/L (biodegradation was 84.75%), the degradation mechanism of TCE included direct-degradation and co-metabolism degradation of methanotrophs and microorganisms containing phenol hydroxylase. Therefore, biodegradation of TCE by microorganisms was a complicated process, the degradation mechanism included co-metabolism degradation of methanotrophs and bio-oxidation of non-methanotrophs.
Biodegradation, Environmental
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Copper
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chemistry
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Methylocystaceae
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metabolism
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Oxidation-Reduction
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Soil Microbiology
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Trichloroethylene
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metabolism
6.Protective effects of ischemic postconditioning on intestinal mucosa barrier function in rabbits with crush injury of hind limb: an experimental study.
Jun-Tao DING ; Lian-Yang ZHANG
Chinese Journal of Traumatology 2011;14(2):92-95
OBJECTIVETo explore the protective effects of two types of ischemic postconditioning (IP) on intestinal mucosa barrier in rabbits with crush injury of the hind limb.
METHODSThis study was conducted between August and December 2008 in the Department of Trauma Surgery, Daping Hospital, Third Military Medical University, Chongqing, China. The model of crush injury to the hind limb of rabbits was firstly developed by a 25 kg object with the right hind limbs fixed by wooden splints, and then two types of IP were established, including occluding/opening the common iliac artery and vein alternatively (traditional IP, IP A) and binding/loosening the proximum of the injured hind limb alternatively (modified IP, IP B). Thirty-six male New Zealand white rabbits were randomly divided into three groups: IP A group, IP B group and control group, with 12 rabbits in each group. The serum levels of diamine oxidase (DAO) and intestinal fatty acid-binding protein (I-FABP) were detected at 2, 6, 12 and 24 hours after injury. Pathological changes of ileum were examined at 24 hours after injury.
RESULTSThe serum levels of I-FABP at 2, 6, 12 and 24 hours after injury in both IP A and IP B groups had a significant decrease, compared with control group. DAO levels also showed the same change trend at 2 and 6 hours after injury, but showed no significant difference between two IP groups. No difference in pathological changes of ileum was found among the three groups.
CONCLUSIONSIP can protect intestinal mucosa barrier function on the model of hind limb crush injury in rabbits. Meanwhile the modified IP B shows the same protection as the traditional IP A, and is worth applying in clinic.
Amine Oxidase (Copper-Containing) ; metabolism ; Animals ; Hindlimb ; injuries ; Intestinal Mucosa ; metabolism ; Ischemic Postconditioning ; Male ; Rabbits
7.Effect of phosphorus on copper tolerance in Achyranthes bidentata.
Xinmin WANG ; Shilin CHEN ; Zhihua WEI ; Xiaolei JIE
China Journal of Chinese Materia Medica 2009;34(12):1489-1492
OBJECTIVETo study the effect of phosphorus on copper tolerance in Achyranthes bidentata.
METHODA PVC pipe experiment was conducted to study the interactive effects of phosphorus (P) and copper (Cu), on growth, elemental accumulation and chemical constituents of A. bidentata. Two levels of elemental P were applied at 0 (P0) and 100 ( P100) mg x kg(-1) soil with 5 levels of Cu at 0 (Cu0), 100 (Cu100), 200 (Cu200), 200 (Cu400), 200 (Cu600) mg x kg(-1) soil, respectively.
RESULT AND CONCLUSIONThe biomass production between different Cu treatments, phosphorus treatment showed significant differences. The biomass reached the maximum value as the concentration of Cu and P was 100 mg x kg(-1). Low concentration of Cu improved the growth of A. bidentata. The growth was blocked as Cu concentration reached 200 mg x kg(-1) in soil, however the contents of oleanolic acid and ecdysterone in roots of A. bidentata had not influenced by Cu. P could improved the copper tolerance in A. bidentata and increased root yield. The Cu concentration in soil of the cultivation bases must be below 200 mg x kg(-1) in order to produce good quality of medicinal material.
Achyranthes ; growth & development ; metabolism ; Biomass ; Copper ; metabolism ; Phosphorus ; metabolism ; Plant Roots ; growth & development ; metabolism ; Soil Pollutants ; metabolism
8.Phenotypes and ATP7B gene variants in 316 children with Wilson disease.
Zhi Kun LU ; Jing CHENG ; Si Min LI ; Yun Ting LIN ; Wen ZHANG ; Xiu Zhen LI ; Hui Ying SHENG ; Xiao Jian MAO ; Hui Fen MEI ; Rui Dan ZHENG ; Cui Li LIANG ; Min Yan JIANG ; Yong Lan HUANG ; Li LIU ; Chun Hua ZENG
Chinese Journal of Pediatrics 2022;60(4):317-322
Objectives: To summarize the clinical phenotypes and the variation spectrum of ATP7B gene in Chinese children with Wilson's disease (WD) and to investigate their significance for early diagnosis. Methods: Retrospective analysis was performed on the clinical data of 316 children diagnosed as WD in Guangzhou Women and Children's Medical Center during the period from January 2010 to June 2021. The general situations, clinical manifestations, lab test results, imaging examinations, and ATP7B gene variant characteristics were collected. The patients were divided into asymptomatic WD group and symptomatic WD group based on the presence or absence of clinical symptoms at the time that WD diagnosis was made. The χ2 test, t test or Mann-Whitney U test were used to compare the differences between groups. Results: Among the 316 children with WD, 199 were males and 117 were females, with the age of 5.4 (4.0, 7.6) years at diagnosis; 261 cases (82.6%) were asymptomatic with the age of 4.9 (3.9, 6.4) years; whereas 55 cases (17.4%) were symptomatic with the age of 9.6 (7.3, 12.0) years. The main symptoms invloved liver, kidney, nervous system, or skin damage. Of all the patients, 95.9% (303/316) had abnormal liver function at diagnosis; 98.1% (310/316) had the serum ceruloplasmin lever lower than 200 mg/L; 97.7% (302/309) had 24-hour urine copper content exceeding 40 μg; only 7.4% (23/310) had positive corneal K-F rings, 8.2% (23/281) had abnormal MRI signals in the lenticular nucleus, and all of them had symptoms of damage in liver, kidney or nervous system. Compared with the group of symptomatic WD, asymptomatic group had higher levels of serum alanine aminotransferase and lower levels ceruloplasmin and 24-hour urine copper [(208±137) vs. (72±78) U/L, (55±47) vs. (69±48) mg/L, 103 (72, 153) vs. 492 (230, 1 432) μg; t=9.98, -1.98, Z=-4.89, all P<0.001]. Among the 314 patients completing genetic sequencing, a total of 107 mutations in ATP7B gene were detected, of which 10 are novel variants, and 3 cases (1.0%) had large heterozygous deletion (exons 10 to exon 11) in ATP7B gene. The percentage of missense mutation in asymptomatic WD children was significantly higher than that in symptomatic WD (81.5% (422/518) vs. 69.1% (76/110), χ²=8.47, P<0.05). WD patients carrying homozygous variant of c.2 333G>T had significantly low levels of ceruloplasmin than those not carrying this variant ((23±5) vs. (61±48) mg/L, t=-2.34, P<0.001). Conclusions: The elevation of serum ALT is an important clue for early diagnosis of WD in children, while serum ceruloplasmin and 24-hour urine copper content are specific markers for early diagnosis of WD. In order to confirm the diagnosis of WD, it is necessary to combine the Sanger sequencing with multiplex ligation-dependent probe amplification or other testing technologies.
Ceruloplasmin/metabolism*
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Child
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Child, Preschool
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Copper/metabolism*
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Copper-Transporting ATPases/genetics*
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Female
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Hepatolenticular Degeneration/genetics*
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Humans
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Male
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Mutation
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Phenotype
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Retrospective Studies
9.Mechanism of copper and zinc on tanshinones of cultivated Salvia miltiorrhiza.
Bin WANG ; De-hui LIU ; Xian-he TAN ; Kang-cai WANG ; Ya-qin GUO ; Jing-yu DAI
China Journal of Chinese Materia Medica 2008;33(17):2082-2087
OBJECTIVETo study the mechanism of microelement including Cu and Zn on the accumulation of three danshinones in Salviae miltiorrhizae root and build a theory basis for its good quality and high yield.
METHODSand culture experiments were conducted to study the effect of Cu and Zn on the accumulation of three danshinones and oxidase including peroxidase and polyphenol oxidase activity in the plant root. The correlation between available Cu and Zn contents in matrix and oxidase activity in the plant root and, the correlation between available Cu and Zn contents in matrix and contents of tanshinones in the root were discussed.
RESULTContents of danshinones in the root increased with the increasing of Cu and Zn concentration. Dynamic monitoring on contents of dan-shinones of the plant roots growing in the pots with different Cu and Zn concentration in the whole growing season showed that the contents of danshinones for 60 days were the lowest, for 120 days the highest and then dropped for 150 days. In addition, among available Cu and Zn contents of matrix, oxidase including peroxidase and polyphenol oxidase activity and contents of tanshinones in the root,the correlation between two factors were significant difference (P < 0.05 or P < 0.01).
CONCLUSIONThe mechanism of Cu and Zn on the accumulation of danshinones may be that Cu and Zn improve the activity of peroxidase and polyphenol oxidase, which promote transformation of phenolic compounds to terpenes and therefore to increase contents of danshinones.
Catechol Oxidase ; metabolism ; Copper ; metabolism ; Diterpenes, Abietane ; Drugs, Chinese Herbal ; analysis ; metabolism ; Peroxidase ; metabolism ; Phenanthrenes ; metabolism ; Plant Proteins ; metabolism ; Salvia miltiorrhiza ; enzymology ; metabolism ; Zinc ; metabolism
10.Research progress of copper transporter 1 in platinum-based chemotherapy.
Qianying OUYANG ; Yujie LIU ; Yingzi LIU
Journal of Central South University(Medical Sciences) 2018;43(12):1376-1379
Platinum drugs are widely used in the treatment of various solid tumors, but their resistance to platinum is the most significant obstacle to successful treatment. Copper transporter 1 (CTR1) is the specific transporter for copper, and it mainly locates at the plasma membrane and plays a role in pumping copper into the cell. CTR1 is also the major platinum influx transporter and plays a key role in platinum resistance. The expression, polymorphism, and degradation of CTR1 affect platinum resistance in tumors. Therefore, CTR1 may be a potential predictive biomarker of platinum resistance and a therapeutic target for overcoming platinum resistance.
Antineoplastic Agents
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therapeutic use
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Cation Transport Proteins
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genetics
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metabolism
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Cisplatin
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therapeutic use
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Copper
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Copper Transporter 1
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Drug Resistance, Neoplasm
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genetics
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Platinum
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therapeutic use
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Research
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trends