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1.
BMC Pediatr ; 24(1): 338, 2024 May 16.
Article in English | MEDLINE | ID: mdl-38755601

ABSTRACT

BACKGROUND: Transient symptomatic zinc deficiency (TSZD), an acquired type of zinc deficiency, is a rare, but probably underrecognized disease, extremely in breastfed premature with low birthweight infants. Its clinical manefestations are similar to Acrodermatitis enteropathica (AE), which is a genetic zinc absorption disorder caused by SLC39A4 gene mutations. This gene encodes a member of the zinc/iron-regulated transporter-like protein (ZIP) family. The encoded protein localizes to cell membranes and is required for zinc uptake in the intestine. TSZD is often misdiagnosed as AE because of their extremely similar manefestations, characterized by a typical rash. Therefore, the differention between them is still a clinical challenging. CASE PRESENTATION: Here, we present a case of TSZD in a 4 month and 23 days female Chinese Yi-ethnic premature with AE-like skin lesions, mainly presenting periorificial, perianal and perineal crusted, eroded, erythemato-squamous eruption. Laboratory examination showed the patient's blood zinc level was significantly decreased. Further sequencing of the SLC39A4 gene showed no mutation in the infant and her parents. Skin lesions significantly improved after 6 days of initial zinc supplementation (3 mg/kg/d), and maintenance treatment with 1 mg/kg/day of zinc was discontinued after 8 months without recurrence. CONCLUSIONS: The clinical manifestations of TSZD and AE are extremely similar, leading to a high rate of clinical misdiagnosis. While genetic analysis of the SLC39A4 gene is a reliable method for differentiating TSZD from AE. It is recommended that SLC39A4 gene test should be performed as far as possible in children with AE-like rash.


Subject(s)
Acrodermatitis , Zinc , Humans , Zinc/deficiency , Zinc/blood , Acrodermatitis/diagnosis , Acrodermatitis/genetics , Acrodermatitis/etiology , Female , Infant , Diagnosis, Differential , China , Cation Transport Proteins/genetics , Infant, Premature , Infant, Newborn , Infant, Premature, Diseases/diagnosis , Infant, Premature, Diseases/genetics , Infant, Premature, Diseases/blood , East Asian People
2.
J Ovarian Res ; 17(1): 115, 2024 May 28.
Article in English | MEDLINE | ID: mdl-38807213

ABSTRACT

Zinc (Zn) is a crucial trace element essential for human growth and development, particularly for reproductive health. Previous research has shown a decrease in serum zinc concentration with age and individuals with conditions such as polycystic ovary syndrome (PCOS) and diabetes mellitus. However, the specific effects of zinc deficiency on the female reproductive system, especially ovarian function, are not fully understood. In our study, we observed a significant reduction in the total number of follicles and mature follicles in the zinc deficiency group. This reduction correlated with decreased level of anti-Mullerian hormone (AMH) and abnormal gene expression affecting hormone secretion regulation. Furthermore, we found that zinc deficiency disrupted mitochondrial dynamics, leading to oxidative stress in the ovaries, which further inhibited autophagy and increased ovarian apoptosis. These changes ultimately resulted in the failure of germinal vesicle breakdown (GVBD) and reduced oocyte quality. Meanwhile, administration of zinc glycine effectively alleviated the oocyte meiotic arrest caused by dietary zinc deficiency. In conclusion, our findings demonstrated that dietary zinc deficiency can affect hormone secretion and follicle maturation by impairing mitochondrial function and autophagy.


Subject(s)
Mitochondria , Ovarian Follicle , Zinc , Female , Zinc/deficiency , Zinc/metabolism , Ovarian Follicle/metabolism , Ovarian Follicle/growth & development , Ovarian Follicle/drug effects , Mitochondria/metabolism , Animals , Autophagy , Oocytes/metabolism , Oocytes/drug effects , Oocytes/growth & development , Anti-Mullerian Hormone/metabolism , Oxidative Stress , Mice , Apoptosis , Humans
3.
Nutrients ; 16(9)2024 Apr 26.
Article in English | MEDLINE | ID: mdl-38732540

ABSTRACT

Zinc deficiency affects the physical and intellectual development of school-age children, while studies on the effects on intestinal microbes and metabolites in school-age children have not been reported. School-age children were enrolled to conduct anthropometric measurements and serum zinc and serum inflammatory factors detection, and children were divided into a zinc deficiency group (ZD) and control group (CK) based on the results of serum zinc. Stool samples were collected to conduct metagenome, metabolome, and diversity analysis, and species composition analysis, functional annotation, and correlation analysis were conducted to further explore the function and composition of the gut flora and metabolites of children with zinc deficiency. Beta-diversity analysis revealed a significantly different gut microbial community composition between ZD and CK groups. For instance, the relative abundances of Phocaeicola vulgatus, Alistipes putredinis, Bacteroides uniformis, Phocaeicola sp000434735, and Coprococcus eutactus were more enriched in the ZD group, while probiotic bacteria Bifidobacterium kashiwanohense showed the reverse trend. The functional profile of intestinal flora was also under the influence of zinc deficiency, as reflected by higher levels of various glycoside hydrolases in the ZD group. In addition, saccharin, the pro-inflammatory metabolites, and taurocholic acid, the potential factor inducing intestinal leakage, were higher in the ZD group. In conclusion, zinc deficiency may disturb the gut microbiome community and metabolic function profile of school-age children, potentially affecting human health.


Subject(s)
Feces , Gastrointestinal Microbiome , Zinc , Humans , Gastrointestinal Microbiome/physiology , Zinc/deficiency , Zinc/blood , Child , Male , Female , Feces/microbiology , Bacteria/classification , Bacteria/metabolism , Intestinal Mucosa/metabolism , Intestinal Mucosa/microbiology , Metabolome , Intestines/microbiology
4.
Free Radic Biol Med ; 220: 324-332, 2024 Aug 01.
Article in English | MEDLINE | ID: mdl-38704054

ABSTRACT

BACKGROUND: Selenoproteins regulate pathways controlling neurodevelopment, e.g., redox signaling and thyroid hormone metabolism. However, studies investigating maternal selenium in relation to child neurodevelopmental disorders are scarce. METHODS: 719 mother-child pairs from the prospective population-based Odense Child Cohort study in Denmark were included. Three selenium biomarkers, i.e. concentrations of serum selenium, selenoprotein P (SELENOP), and activity of glutathione peroxidase 3 (GPX3), along with serum copper, zinc and iron were measured in early third trimester (at 28.9+/-0.8 weeks of pregnancy). ADHD and ASD traits in children were assessed systematically using the established Child Behaviour Checklist at 5 years of age, based on a Danish reference cohort with cut-off at 90th percentile. Multivariable regression models adjusted for biologically relevant confounders were applied. RESULTS: 155 of 719 (21.6 %) children had ASD traits and 59 of 719 (8.2 %) children had traits of ADHD at 5 years of age. In crude and adjusted models, all three selenium biomarkers associated inversely with ADHD traits. For ADHD, fully adjusted OR for 10 µg/L increment in selenium was 0.76 (95 % CI 0.60, 0.94), for one mg/L increment in SELENOP was 0.73 (0.56, 0.95), and for 10 U/L increment in GPx3 was 0.93 (0.87,1.00). Maternal total selenium was inversely associated with child ASD traits, OR per 10 µg/L increment was 0.85 (0.74, 0,98). SELENOP and GPx3 were not associated with ASD traits. The associations were specific to selenium, as other trace elements such as copper, zinc, or iron were not associated with the outcomes. CONCLUSIONS: The results provide coherent evidence for selenium deficiency as a risk factor for ADHD and ASD traits in an environment with borderline supply, the causality of which should be elucidated in a randomized controlled trial.


Subject(s)
Attention Deficit Disorder with Hyperactivity , Glutathione Peroxidase , Prenatal Exposure Delayed Effects , Selenium , Selenoprotein P , Humans , Selenium/blood , Selenium/deficiency , Female , Attention Deficit Disorder with Hyperactivity/blood , Attention Deficit Disorder with Hyperactivity/epidemiology , Pregnancy , Glutathione Peroxidase/blood , Male , Denmark/epidemiology , Child, Preschool , Prenatal Exposure Delayed Effects/blood , Prenatal Exposure Delayed Effects/epidemiology , Selenoprotein P/blood , Adult , Biomarkers/blood , Prospective Studies , Autistic Disorder/blood , Autistic Disorder/epidemiology , Cohort Studies , Child , Zinc/blood , Zinc/deficiency , Copper/blood
5.
Clin Nutr ESPEN ; 61: 369-376, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38777456

ABSTRACT

BACKGROUND: Trace elements are an essential component of metabolism and medical nutrition therapy, with key roles in metabolic pathways, antioxidation, and immunity, which the present course aims at summarizing. RESULTS: Medical nutrition therapy includes the provision of all essential trace elements. The clinical essential issues are summarized for Copper, Iron, Selenium, Zinc, Iodine, Chromium, Molybdenum, and Manganese: the optimal analytical techniques are presented. The delivery of all these elements occurs nearly automatically when the patient is fed with enteral nutrition, but always requires separate prescription in case of parenteral nutrition. Isolated deficiencies may occur, and some patients have increased requirements, therefore a regular monitoring is required. The clinicians should always consider the impact of inflammation on blood levels, mostly lowering them even in absence of deficiency. CONCLUSION: This text summarises the most relevant clinical manifestations of trace element depletion and deficiency, the difficulties in assessing status, and makes practical recommendations for provision for enteral and parenteral nutrition.


Subject(s)
Enteral Nutrition , Micronutrients , Parenteral Nutrition , Trace Elements , Humans , Trace Elements/deficiency , Trace Elements/administration & dosage , Trace Elements/blood , Micronutrients/deficiency , Selenium/deficiency , Selenium/blood , Nutritional Status , Zinc/deficiency , Zinc/blood , Nutritional Requirements , Copper/deficiency , Copper/blood , Molybdenum , Iron/blood
6.
Cent Eur J Public Health ; 32(1): 31-38, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38669155

ABSTRACT

OBJECTIVE: Trace elements are essential for the biochemistry of the cell. Their reference values have been found to differ considerably in pregnant women stratified by age, place of residence, anthropometric status, and length of pregnancy. In optimal amounts, these elements reduce the risk of pregnancy complications. Subclinical hypothyroidism in pregnancy is associated with adverse maternal and neonatal outcomes. The aim of the study was to determine the effects of zinc (Zn), copper (Cu), magnesium (Mg), and rubidium (Rb) on pregnant women in an iodine deficiency region and find the relationship with the thyroid status and nutrition. METHODS: We evaluated the iodine status of 61 healthy pregnant women from an iodine deficient region in Bulgaria. Thyroid stimulating hormone (TSH) and thyroxin free (FT4) levels were measured using ELISA. RESULTS: We found elevated levels of copper that differed the most between the first and second trimesters; Cu and TSH were found to be positively correlated (р < 0.05). Lower Cu levels were found in pregnant women consuming pulses more than 2-3 times a week (р = 0.033). The women consuming fish more than 2-3 times a week had higher levels of Rb. We found a pronounced iodine deficiency in more than half of the examined women in the first to third trimesters, without any effect of pregnancy on the ioduria (р=0.834). All second and third trimester cases were associated with severe ioduria (< 150 µg/L). CONCLUSION: The high Cu levels were associated with subclinical hypothyroidism (SCH) and less pulse consumption during pregnancy in an iodine deficiency endemic area. SCH was found in 24% of the pregnant women in such an area while in 13% of them SCH had progressed to overt hypothyroidism.


Subject(s)
Copper , Iodine , Nutritional Status , Zinc , Humans , Female , Pregnancy , Iodine/deficiency , Iodine/administration & dosage , Adult , Zinc/deficiency , Zinc/blood , Copper/deficiency , Copper/blood , Bulgaria/epidemiology , Magnesium/blood , Magnesium/analysis , Magnesium/administration & dosage , Trace Elements/deficiency , Pregnancy Complications/epidemiology , Thyrotropin/blood , Hypothyroidism/epidemiology
7.
J Nutr Sci Vitaminol (Tokyo) ; 70(2): 98-105, 2024.
Article in English | MEDLINE | ID: mdl-38684391

ABSTRACT

Chronic kidney disease (CKD) poses a major global public health challenge. The World Health Organization's data shows that CKD affects about 10% of the world's population, particularly in low- and middle-income countries. Due to limited access to diagnosis and treatment, CKD has become the 12th leading cause of death worldwide. The advanced stage of CKD can lead to kidney failure, which is clinically referred to as end-stage renal disease (ESRD). In such cases, patients can only sustain life through dialysis or kidney transplantation. However, the long-term affordability of these treatments remains low. Moreover, the effectiveness of kidney transplantation is modest, posing a significant treatment barrier in resource-limited settings, and significantly impacting patient survival. To address this issue, we suggest using dietary supplementation of the trace element zinc to impede CKD development and prolong patient survival.


Subject(s)
Dietary Supplements , Renal Insufficiency, Chronic , Zinc , Humans , Zinc/therapeutic use , Zinc/deficiency , Zinc/administration & dosage , Renal Insufficiency, Chronic/therapy , Renal Insufficiency, Chronic/complications , Kidney Failure, Chronic/complications , Kidney Failure, Chronic/therapy , Trace Elements/administration & dosage , Trace Elements/therapeutic use , Kidney Transplantation , Renal Dialysis
8.
FP Essent ; 539: 13-17, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38648170

ABSTRACT

Micronutrients are nutrients the body needs in small quantities, such as vitamins and minerals. Micronutrient deficiencies can occur when an individual is restricting calorie intake for weight loss or management, not consuming an adequate amount of food to meet energy requirements due to poor appetite or illness, eliminating one or more food groups from the diet on a regular basis, or consuming a diet low in micronutrient-rich foods despite adequate or excessive energy intake. Patient groups at risk include older adults, pregnant patients, patients with alcohol use disorder, patients with vegetarian or vegan diets, and patients with increased requirements secondary to medical conditions or long-term drug use that alters nutrient absorption, metabolism, or excretion. The micronutrients that most commonly require supplementation are vitamin D, iron, vitamin A, zinc, folate, and iodine. Results of large-scale randomized trials have shown no overall benefit of multivitamins for the majority of patients. However, a daily multivitamin may be beneficial, particularly for patients who do not consistently consume a well-balanced diet. Although dietary supplements can be helpful in correcting deficiencies, higher than recommended doses can cause adverse effects. Patients should be advised to take recommended dosages of supplements and consult their physician if they notice any adverse effects. Physicians should advise patients to consult drug labels and/or pharmacists about potential supplement interactions with drugs or other supplements.


Subject(s)
Dietary Supplements , Micronutrients , Humans , Micronutrients/therapeutic use , Vitamins/therapeutic use , Vitamins/administration & dosage , Female , Nutritional Requirements , Pregnancy , Zinc/administration & dosage , Zinc/therapeutic use , Zinc/deficiency
9.
J Nutr Sci Vitaminol (Tokyo) ; 70(2): 131-138, 2024.
Article in English | MEDLINE | ID: mdl-38684383

ABSTRACT

This randomized controlled clinical study aimed to assess the effectiveness of a nutrition intervention program for non-pregnant female workers in Vietnam. A total of 500 female workers were randomly assigned to the intervention and control groups. Participants in the intervention group were provided nutrition education, personalized specific dietary, and received oral nutrition supplements (ONS)-which contained multi-minerals and vitamins according to recommendations for adults for a duration of 12 wk, while participants in the control group received only nutrition education. The result shows the percentage of malnutrition by BMI in the control group rose from 15.6% to 21.3% after 12 wk; the figure for counterpart experienced a remain unchanged (p<0.05). Additionally, the mean of serum zinc in the intervention group significantly increased from 49.0±21.2 µg/dL to 53.6±19.5 µg/dL after 12 wk. Moreover, the intervention group demonstrated significant increases in serum iron and total serum calcium levels (p<0.05), with from 13.9±5.6 µmol/L to 15.3±5.8 µmol/L, and from 2.36±0.15 mmol/L to 2.4±0.09 mmol/L, respectively. The participants of the intervention group were more likely to have higher total serum calcium (Coef=0.04, p<0.05), serum iron (Coef=1.99, p<0.05), and serum zinc (Coef=18.9, p<0.05), which presents a reduce micronutrient deficiency. In conclusion, workplace nutrition interventions effectively mitigate micronutrient deficiencies and improve the nutritional status of female workers.


Subject(s)
Dietary Supplements , Malnutrition , Micronutrients , Nutritional Status , Workplace , Zinc , Humans , Female , Vietnam , Micronutrients/deficiency , Micronutrients/administration & dosage , Micronutrients/blood , Adult , Zinc/deficiency , Zinc/blood , Zinc/administration & dosage , Malnutrition/prevention & control , Malnutrition/epidemiology , Iron/blood , Middle Aged , Calcium/blood , Calcium/deficiency , Body Mass Index , Diet/methods , Vitamins/administration & dosage , Vitamins/blood , Health Education/methods
10.
Am J Physiol Heart Circ Physiol ; 326(6): H1396-H1401, 2024 Jun 01.
Article in English | MEDLINE | ID: mdl-38578238

ABSTRACT

Given the growing interest in the role of zinc in the onset and progression of diseases, there is a crucial demand for reliable methods to modulate zinc homeostasis. Using a dietary approach, we provide validated strategies to alter whole-body zinc in mice, applicable across species. For confirmation of zinc status, animal growth rates as well as plasma and urine zinc levels were evaluated. The accessible and cost-effective methodology outlined will increase scientific rigor, ensuring reproducibility in studies exploring the impact of zinc deficiency and repletion on the onset and progression of diseases.NEW & NOTEWORTHY This methods paper details dietary approaches to alter zinc homeostasis in rodents and qualitative and quantitative methods to ensure the zinc status of experimental animals. The outlined accessible and cost-effective protocol will elevate scientific rigor, ensuring reproducibility in studies exploring the impact of zinc deficiency and repletion on the onset and progression of a multitude of health conditions and diseases.


Subject(s)
Zinc , Zinc/deficiency , Zinc/metabolism , Zinc/urine , Zinc/blood , Animals , Reproducibility of Results , Mice , Mice, Inbred C57BL , Homeostasis , Male
11.
Proc Natl Acad Sci U S A ; 121(19): e2321216121, 2024 May 07.
Article in English | MEDLINE | ID: mdl-38687796

ABSTRACT

Cells must replicate their genome quickly and accurately, and they require metabolites and cofactors to do so. Ionic zinc (Zn2+) is an essential micronutrient that is required for hundreds of cellular processes, including DNA synthesis and adequate proliferation. Deficiency in this micronutrient impairs DNA synthesis and inhibits proliferation, but the mechanism is unknown. Using fluorescent reporters to track single cells via long-term live-cell imaging, we find that Zn2+ is required at the G1/S transition and during S phase for timely completion of S phase. A short pulse of Zn2+ deficiency impairs DNA synthesis and increases markers of replication stress. These markers of replication stress are reversed upon resupply of Zn2+. Finally, we find that if Zn2+ is chelated during the mother cell's S phase, daughter cells enter a transient quiescent state, maintained by sustained expression of p21, which disappears upon reentry into the cell cycle. In summary, short pulses of mild Zn2+ deficiency in S phase specifically induce replication stress, which causes downstream proliferation impairments in daughter cells.


Subject(s)
Cell Proliferation , DNA Replication , S Phase , Zinc , Zinc/metabolism , Zinc/deficiency , Humans
13.
Clin Exp Med ; 24(1): 38, 2024 Feb 17.
Article in English | MEDLINE | ID: mdl-38367035

ABSTRACT

This review provides a concise overview of the cellular and clinical aspects of the role of zinc, an essential micronutrient, in human physiology and discusses zinc-related pathological states. Zinc cannot be stored in significant amounts, so regular dietary intake is essential. ZIP4 and/or ZnT5B transport dietary zinc ions from the duodenum into the enterocyte, ZnT1 transports zinc ions from the enterocyte into the circulation, and ZnT5B (bidirectional zinc transporter) facilitates endogenous zinc secretion into the intestinal lumen. Putative promoters of zinc absorption that increase its bioavailability include amino acids released from protein digestion and citrate, whereas dietary phytates, casein and calcium can reduce zinc bioavailability. In circulation, 70% of zinc is bound to albumin, and the majority in the body is found in skeletal muscle and bone. Zinc excretion is via faeces (predominantly), urine, sweat, menstrual flow and semen. Excessive zinc intake can inhibit the absorption of copper and iron, leading to copper deficiency and anaemia, respectively. Zinc toxicity can adversely affect the lipid profile and immune system, and its treatment depends on the mode of zinc acquisition. Acquired zinc deficiency usually presents later in life alongside risk factors like malabsorption syndromes, but medications like diuretics and angiotensin-receptor blockers can also cause zinc deficiency. Inherited zinc deficiency condition acrodermatitis enteropathica, which occurs due to mutation in the SLC39A4 gene (encoding ZIP4), presents from birth. Treatment involves zinc supplementation via zinc gluconate, zinc sulphate or zinc chloride. Notably, oral zinc supplementation may decrease the absorption of drugs like ciprofloxacin, doxycycline and risedronate.


Subject(s)
Acrodermatitis , Cation Transport Proteins , Copper , Zinc/deficiency , Humans , Copper/metabolism , Zinc/therapeutic use , Intestines/pathology , Ions/metabolism , Cation Transport Proteins/chemistry , Cation Transport Proteins/genetics , Cation Transport Proteins/metabolism
14.
Sci Rep ; 14(1): 2791, 2024 02 02.
Article in English | MEDLINE | ID: mdl-38307882

ABSTRACT

Zinc deficiency, affecting more than 2 billion people globally, poses a significant public health burden due to its numerous unfavorable effects, such as impaired immune function, taste and smell disorders, pneumonia, growth retardation, visual impairment, and skin disorders. Despite its critical role, extensive large-scale studies investigating the correlation between patient characteristics and zinc deficiency still need to be completed. We conducted a retrospective, cross-sectional observational study using a nationwide Japanese claims database from January 2019 to December 2021. The study population included 13,100 patients with available serum zinc concentration data, excluding individuals under 20 and those assessed for zinc concentrations after being prescribed zinc-containing medication. Significant associations with zinc deficiency were noted among older adults, males, and inpatients. Multivariate analysis, adjusting for age and sex, indicated significant associations with comorbidities, including pneumonitis due to solids and liquids with an adjusted Odds Ratio (aOR) of 2.959; decubitus ulcer and pressure area (aOR 2.403), sarcopenia (aOR 2.217), COVID-19 (aOR 1.889), and chronic kidney disease (aOR 1.835). Significant association with medications, including spironolactone (aOR 2.523), systemic antibacterials (aOR 2.419), furosemide (aOR 2.138), antianemic preparations (aOR 2.027), and thyroid hormones (aOR 1.864) were also found. These results may aid clinicians in identifying patients at risk of zinc deficiency, potentially improving care outcomes.


Subject(s)
Malnutrition , Zinc , Aged , Female , Humans , Male , Middle Aged , Cross-Sectional Studies , Demography , Japan/epidemiology , Malnutrition/epidemiology , Retrospective Studies , Zinc/deficiency , Databases, Factual
15.
Australas J Dermatol ; 65(3): e41-e44, 2024 May.
Article in English | MEDLINE | ID: mdl-38214409

ABSTRACT

Hair heterochromia may be caused by different mechanisms. At clinical work, we found a Chinese boy whose hair colour gradually turned to red. We record the diagnosis and treatment process and follow-up situation, finally find that altered hair colour phenotype is due to MC1R genetic mutations, rather than zinc deficiency. This rarely red hair colour phenotype improve our understanding of hair heterochromia caused by genetic mutations.


Subject(s)
Hair Color , Mutation , Receptor, Melanocortin, Type 1 , Zinc , Humans , Male , Hair Color/genetics , Receptor, Melanocortin, Type 1/genetics , Zinc/deficiency , Pigmentation Disorders/genetics
17.
Nutr Res ; 116: 80-88, 2023 08.
Article in English | MEDLINE | ID: mdl-37421933

ABSTRACT

Zinc (Zn) deficiency has many adverse effects, including growth retardation, loss of appetite, vascular diseases, cognitive and memory impairment, and neurodegenerative diseases. In the current study, we investigated the hypothesis that dietary Zn inadequacy affects neurotrophic factors and proteostasis in the brain. Three-week-old Wistar/Kyoto male rats were fed either a Zn-deficient diet (D; < 1 mg Zn/kg diet; n = 18) or pair-fed with the control diet (C; 48 mg Zn/kg diet; n = 9) for 4 weeks. Subsequently, the rats in the D group were subdivided into two groups (n = 9), in which one group continued to receive a Zn-deficient diet, whereas the other received a Zn-supplemented diet (R; 48 mg Zn/kg diet) for 3 more weeks, after which the rats were sacrificed to collect their brain tissue. Markers of endoplasmic reticulum stress, ubiquitin-proteasome system, autophagy, and apoptosis, along with neurotrophic factors, were investigated by immunoblotting. Proteasomal activity was analyzed by the spectrofluorometric method. The results showed an altered ubiquitin-proteasome system and autophagy components and increased gliosis, endoplasmic reticulum stress, and apoptosis markers in Zn-deficient rats compared with the control group. Zinc repletion for 3 weeks could partially restore these alterations, indicating a necessity for an extended duration of Zn supplementation. In conclusion, a decline in Zn concentrations below a critical threshold may trigger multiple pathways, leading to brain-cell apoptosis.


Subject(s)
Nerve Growth Factors , Proteasome Endopeptidase Complex , Proteostasis , Zinc , Animals , Male , Rats , Diet , Nerve Growth Factors/metabolism , Proteasome Endopeptidase Complex/metabolism , Rats, Wistar , Ubiquitins/metabolism , Zinc/deficiency
19.
Nutrients ; 15(7)2023 Mar 30.
Article in English | MEDLINE | ID: mdl-37049525

ABSTRACT

Zinc is an essential micronutrient that is involved in several metabolic processes, especially children's growth and development. Although many previous studies have evaluated the zinc nutritional status of children, there are very few reports on children aged 6-18 years old. Furthermore, there are few reports on children's zinc nutrition status based on the Chinese population. According to WHO data, the prevalence of zinc deficiency in Asian countries is rather high and has resulted in high child mortality. In this study, we aimed to comprehensively assess zinc nutritional status and the prevalence of zinc deficiency among children aged 6-18 years in China based on nationally representative cross-sectional data. Subgroup comparisons were made under possible influencing factors. The potential risk factors of zinc deficiency were also discussed. A total of 64,850 children, equally male and female, were recruited from 150 monitoring sites in 31 provinces through stratified random sampling from China National Nutrition and Health Survey of Children and Lactating Mothers (CNNHS 2016-2017). Median and interquartile intervals were used to represent the overall zinc concentration levels and different subgroups. A Chi-square test was used to compare serum zinc levels and the prevalence of zinc deficiency in children under different group variables. In order to study the influencing factors of zinc deficiency, multiple logistic regression was utilized. It was found that the median concentration of serum Zn was 88.39 µg/dL and the prevalence of Zn deficiency was 9.62%. The possible influence factors for Zn deficiency were sex, anemia, nutritional status, city type and income. By conducting a subgroup analysis of the factors, it was found that males; those with anemia, stunting and low income; and children living in rural areas have a higher risk of Zn deficiency. This study offers a comprehensive analysis of Zn nutritional status among Chinese children, which provides reliable data for policy formulation to improve the zinc nutrition status of children.


Subject(s)
Deficiency Diseases , Nutritional Status , Zinc , Adolescent , Child , Female , Humans , Male , Anemia/epidemiology , Cross-Sectional Studies , East Asian People/statistics & numerical data , Malnutrition/blood , Malnutrition/epidemiology , Prevalence , Risk Factors , Zinc/blood , Zinc/deficiency , China/epidemiology , Deficiency Diseases/blood , Deficiency Diseases/epidemiology , Micronutrients/blood , Micronutrients/deficiency
20.
Biol Trace Elem Res ; 201(12): 5540-5545, 2023 Dec.
Article in English | MEDLINE | ID: mdl-36892689

ABSTRACT

Hand-foot skin reaction (HFSR) is a common skin-related adverse event induced by multikinase inhibitors targeting both platelet-derived growth factor receptor and vascular endothelial growth factor receptor, possibly due to inadequate repair following frictional trauma. Zinc is a trace element and essential nutrient in humans that plays critical roles in the development and differentiation of skin cells. Zinc transporters (Zrt- and Irt-like proteins and Zn transporters) and metallothioneins are involved in zinc efflux, uptake, and homeostasis and have been reported to be involved in skin differentiation. The underlying mechanism of HFSR remains unclear, and the association between HFSR and zinc has not been previously studied. However, some case reports and case series provide potential evidence to suggest that zinc deficiency may be involved in HFSR development and zinc supplementation may relieve HFSR symptoms. However, no large-scale clinical studies have been conducted to examine this role. Therefore, this review summarizes the evidence supporting a possible link between HFSR development and zinc and proposes potential mechanisms underlying this association based on current evidence.


Subject(s)
Malnutrition , Skin Diseases , Zinc , Humans , Protein Kinase Inhibitors/adverse effects , Skin/pathology , Vascular Endothelial Growth Factor A , Zinc/deficiency , Skin Diseases/chemically induced
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