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The relationship between vitamin D levels and depression: a genetically informed study.

BACKGROUND: Low vitamin D (vitD) levels are consistently associated with an increased risk of depression. However, the biological mechanisms underlying this relationship and potential shared genetic overlap remain elusive. METHODS: We investigated the genetic overlap and causal relationships between depression (N = 589,356) and vitD levels (N = 417,580) using genome-wide association study (GWAS) summary statistics. We performed genome-wide and local genetic correlation analyses, followed by quantification of polygenic overlap variants. Shared genetic loci were identified and mapped to genes, which were further analyzed through gene expression and lifespan brain expression trajectory analyses. Bidirectional causal relationships were examined using multiple Mendelian randomization approaches. RESULTS: We observed significant negative genetic correlations (rg = -0.079) and identified genetic overlap (N = 410 variants). Genes mapped to the 13 shared loci showed opposing expression patterns. Tissue- and cell-specific functional enrichment analyses revealed significant signals related to brain development, with distinct patterns emerging between fetal development and adulthood. Shared genes (TRMT61A, ITIH4, RASGRP1, CTNND1, HERC1, IP6K1, FURIN ESR1, ZMYND and GRM5) exhibited notable expression variation in the brian throughout the lifespan, aligning with functional enrichment findings. CONCLUSIONS: Our findings elucidate the shared biological mechanisms underlying the relationship between vitD and depression, suggesting that vitD play an important role in the development of depression through altered early neurodevelopmental processes.

Humans

25-hydroxy-vitamin D levels in a patient with hypervitaminosis D.

We measured the concentrations of serum calcium and 25-hydroxy-vitamin D in a patient with hypervitaminosis D during 3 months of therapy directed toward correcting the hypercalcemia. Serum calcium could not be maintained at normal concentration without specific therapy until 9 weeks after vitamin D was discontinued. Concentration of 25-hydroxy-vitamin D at the time was 285 ng/ml, approximately half of the value measured three weeks after withdrawal of vitamin D. Serial measurements of the concentration of 25-hydroxy-vitamin D seem to be a useful means of assessing the degree of intoxication in patients with hypervitaminosis D.

Aged

Comparison of Traditional Chinese Exercise and Equipment-Based Exercise on Glycaemic Control and Vitamin D Levels in Middle-Aged and Elderly Patients With Prediabetes: A Randomised Controlled Trial.

BACKGROUND: Prediabetes is a critical window for preventing progression to type 2 diabetes mellitus (T2DM). Both vitamin D deficiency and physical inactivity are associated with impaired glucose metabolism. This study compared the effects of Traditional Chinese Exercise (TCE) and Kuanle Equipment Exercise (KEE) on glycaemic measures, lipid profiles, body composition and serum 25-hydroxyvitamin D3 [25(OH)D3] in middle-aged and elderly adults with prediabetes. METHODS: We conducted a 12-week, single-centre, randomised controlled trial involving 62 participants with prediabetes (mean age 55.2 ± 8.4 years; 88.7% female). Participants were randomly assigned to control (usual care, n = 21), TCE (n = 20), or KEE (n = 21). Primary outcomes included fasting plasma glucose (FPG), 2-h OGTT glucose, glycated haemoglobin (HbA1c) and serum 25(OH)D3. Secondary outcomes comprised triglycerides, total cholesterol, LDL-C, HDL-C and body composition. RESULTS: At baseline, mean serum 25(OH)D3 was 21.53 ± 3.90 nmol/L. At 12 weeks, both TCE and KEE improved FPG, 2-h OGTT glucose, HbA1c and 25(OH)D3 versus control (all p ≤ 0.001). Relative changes in FPG were -9.4% (TCE) and -15.2% (KEE) versus -1.5% (control); corresponding changes were -14.6% and -21.2% for 2-h OGTT glucose, -6.7% and -12.9% for HbA1c, and +60.6% and +81.9% for 25(OH)D3. Direct TCE-KEE comparisons were not significant (all p > 0.05). In an exploratory analysis, change in 25(OH)D3 was inversely associated with change in 2-h OGTT glucose (partial r = -0.358, p = 0.006), but not with FPG, HbA1c, or triglycerides. CONCLUSIONS: Both TCE and KEE improved glycaemic outcomes and increased serum 25(OH)D3 compared with usual care in middle-aged and elderly adults with prediabetes. Although KEE produced numerically larger estimates, direct between-group comparisons were not significant, and the superiority of KEE over TCE was not established. These vitamin D findings require confirmation in trials that quantify sunlight exposure and dietary vitamin D intake.

Aged

Ultra-violet irradiation and 25-hydroxy-vitamin D levels in sick old people.

Twelve elderly patients in a rehabilitation ward were given a four-week course of ultra-violet irradiation from a Vitalux lamp. They were compared with 12 controls selected from the same ward. Treatment produced a significant elevation in plasma 25-hydroxy-vitamin D (25OHD) by the end of the second week and concentrations continued to rise over the four-week period. Subject showing the greatest response were those starting with the lowest levels of plasma 25OHD. The findings suggest that ultra-violet irradiation is an effective means of treating vitamin D deficiency in old age and that patients with the greatest degree of deficiency show the greatest response.

Aged

The importance of phosphate in regulating plasma 1,25-(OH)2-vitamin D levels in humans: studies in healthy subjects in calcium-stone formers and in patients with primary hyperparathyroidism.

We observed that plasma 1,25-(OH)2-D concentrations average 87 +/- 30 SD pmol/l in 48 healthy adults without a personal or family history of kidney stones. Plasma 1,25-(OH)2-D concentrations were significantly elevated among 26 patients with recurrent calcium-containing renal stones and hypophosphatemia: 150 +/- 74 pmol/l; P less than 0.001, and among 9 patients with proven parathyroid adenoma and hypophosphatemia: 200 +/- 54 pmol/l; P less than 0.001. Plasma 1,25-(OH)2-D levels in these 3 groups were inversely correlated with serum phosphate concentration: plasma 1,25-(OH)2-D, pmol/l = 282 - 141 X serum PO4, mmol/l; r = 0.51; P less than 0.001. During dietary PO4 deprivation lasting 11 to 16 days in 10 healthy women, serum PO4 fell and plasma 1,25-(OH)2-D concentrations rose whereas in 8 healthy men neither serum PO4 nor 1,25-(OH)2-D concentrations changed. The change from control in plasma 1,25-(OH)2-D levels were correlated with the change from control in serum PO4 concentrations: delta1,25-(OH)2-D, pmol/l = 1 - 82 X delta serum PO4 mmol/l; r = 0.59; P less than 0.01. We conclude that reductions in serum PO4 concentrations, either directly or indirectly, stimulate renal synthesis of 1,25-(OH)2-D in humans.

Adult

Correlation between rs7041 and rs4588 polymorphisms in vitamin D binding protein gene and COVID-19-related severity and mortality.

BACKGROUND: The vitamin D binding protein (DBP) plays a critical role in both innate and adaptive immune systems, participating in several clinical conditions, including coronavirus disease 2019 infection severity, and mortality rate. The study aimed to investigate the correlation between rs7041 and rs4588 polymorphisms in the DBP gene and Coronavirus Disease-2019 (COVID-19) severity and mortality, in patients of Suez Canal University Hospitals in Ismailia, Egypt. METHODS: A case-control study enrolled 220 individuals; 140 COVID-19 patients and 80 healthy controls. Serum 25(OH) vitamin D levels were determined by the enzyme-linked immunosorbent assay (ELISA), and rs7041 and rs4588 polymorphisms of the DBP gene were genotyped using the polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP). RESULTS: The study found that both groups had vitamin D deficiency, which was considerably lower in the COVID-19 patients group compared to controls. Among COVID-19 patients, there was a significant difference in vitamin D levels according to the disease severity indicating that vitamin D levels can be used as predictors of COVID-19 severity. Negative significant correlations between genetic variants rs4588 CA genotype and genetic variants rs7041 TT genotype and COVID-19 prevalence (p = 0.006 and 0.009 respectively) were proved. No significant correlations between all the genetic variants of both rs4588 and rs7041 and COVID-19 severity (p > 0.05). Positive significant correlations between both genetic variants rs4588 CA genotype and genetic variants rs7041 TG genotype and COVID-19 mortality (p = 0.029 and 0.031 respectively). CONCLUSION: vitamin D deficiency increased the severity of COVID-19. The DBP polymorphism correlated with vitamin COVID-19 prevalence and mortality.

Humans

The calcium and vitamin D status in an elderly female population and their response to administered supplemental vitamin D3.

Recent reports have implicated the importance of impaired calcium absorption, inadequate dietary vitamin D, and low serum vitamin D levels in the genesis of metabolic bone diseases in the elderly. This study evaluated the dietary intakes of calcium and Vitamin D, calcium absorption, and serum 25 hydroxycholecalciferol (25 OH D) levels in a population of women (mean age 83 yrs) compared to healthy volunteers (mean age 35 yrs). Dietary intakes of both calcium and vitamin D and serum 25 OH D levels were found to be comparable in both groups. Calcium absorption was normal in the subjects studied and did not change significantly after two 2-week periods of oral supplementation with vitamin D3 in doses of 500 I.U./day and 10,000 I.U./day, although the serum 25 OH D levels rose significantly and comparably in both groups. Thus other etiological factors may play relevant roles in the causation of bone diseases in the elderly and unless deficient dietary or serum vitamin D levels are demonstrated, empirical supplementation with vitamin D should not be undertaken. The differences of the above findings from previously published data are discussed.

Absorption

Parathyroid hormone and calcitonin levels in vitamin D deficient rickets.

In six infants aged between 5 and 8 months with vitamin D deficient rickets, we have studied blood levels of calcium (Ca), phosphorus (P), alkaline phosphatase, immunoreactive parathyroid hormone (PTH) and calcitonin (CT), as well as urinary excretion of Ca, P, hydroxyproline and cyclic AMP, both under basal conditions and during a 4h infusion of 20 mg/kg 10% Ca gluconate in normal saline. Under basal conditions all the infants had high alkaline phosphatase (range: 470--770 U.I./1); PTH (range: 620--1200 pg Eq/ml) and CT (range: 440--750 pg/ml) but two infants had hypocalcaemia and four had normocalcaemia and hypophosphataemia. The urinary Ca excretion was low whereas the urinary P, hydroxyproline and cyclic AMP excretions were high. During Ca infusion the total serum Ca and CT levels increased, while alkaline phosphatase and PTH fell. After the end of the infusion, CT levels fell perceptibly; phosphaturia, hydroxyprolinuria and cyclic AMP decreased on the day of the infusion.

Alkaline Phosphatase

25-hydroxy-vitamin D, diet and sunlight exposure in patients admitted to a geriatric unit.

Dietary intake, sunlight exposure and 25-hydroxy-vitamin D levels were estimated in 62 patients admitted to a geriatric assessment unit. There was a significant correlation between vitamin D intake and 25-hydroxy-vitamin D levels but none between sunlight exposure and these. This suggests that in old age dietary deficiency may be a more important cause of metabolic bone disease than limited sunlight exposure.

Adolescent

[25-OH-vitamin D in the serum of patients with femoral-neck fractures].

In 10 women with femoral neck fracture, 10 with fracture(s) evolved from accidents (mainly traffic accidents) and 10 without disease (controls) in January and July, the 25-OH-vitamin D levels in serum were measured by a competitive protein binding assay. Patients with femoral neck fractures exhibited significantly (p less than 0.05) lower 25-OH-vitamin D levels than the other groups. Additionally, in patients with femoral neck fractures calcium x phosphate product in serum was subnormal (below 25). In Germany, prophylactic dietary supplementation of vitamin D seems feasible.

Aged

Phenytoin, phenobarbitone and serum cholesterol.

Epileptics receiving phenytoin and/or phenobarbitone medication are observed to have an exceedingly low incidence of myocardial infarction. Serum cholesterol samples from 96 epileptics treated with these anticonvulsant drugs have been measured and found not to deviate from values found in a mass screening carried out in the same geographical area. Since medication with phenytoin/phenobarbitone reduces vitamin D levels in serum and intake of this vitamin is positively correlated to myocardial infarction, we suggest that vitamin D might be a factor to be considered.

Adolescent

Investigating the mechanisms linking vitamin D to coronary artery disease: A mediating proteomics Mendelian randomisation study.

Coronary artery disease (CAD) is a leading cause of mortality and morbidity globally, with its elevated rates of disability and death posing a significant public health concern. Vitamin D is a crucial bioactive compound involved in numerous physiological processes and has garnered considerable interest due to its potential health benefits. The association between vitamin D and CAD has been a prominent focus of scholarly investigation. However, there remains considerable debate regarding whether vitamin D confers protective effects against CAD, and the underlying mechanisms by which vitamin D influences CAD remain inadequately understood. Mendelian randomization analysis was performed using large-scale genome-wide association study data to examine the causal relationship between serum 25-hydroxyvitamin D (25(OH)D) levels and CAD. Plasma proteomics data were subsequently employed for mediation analysis, followed by enrichment analysis to identify intermediary metabolic or signaling pathways through which serum 25(OH)D may mediate the onset and progression of CAD. The Mendelian randomization analysis indicated that higher serum 25(OH)D levels were associated with a reduced risk of CAD (odds ratio [95% confidence interval]: 0.799 [0.643-0.993], P = .043). No evidence of pleiotropy (P = .949) or heterogeneity (P = .630) was observed in the results. The protein-mediated analysis identified 19 plasma proteins, including Serine/threonine-protein kinase TBK1, membrane associating domain domain-containing protein 2, and interleukin-17D, as key mediators through which reduced vitamin D levels contribute to the development of CAD. The mediation effects ranged from 4.85 to 34.49%. Following the identification of these 19 mediating proteins, 59 intermediary pathways were further pinpointed through which serum vitamin D influences CAD risk. Increased levels of 25(OH)D may reduce the risk of CAD. Further, plasma proteomics-mediated analyses have uncovered potential mechanisms through which 25(OH)D influences the development of CAD, offering a detailed framework for understanding the relationship between vitamin D deficiency and CAD progression. This provides novel evidence to support the recommendation of appropriate vitamin D supplementation as part of lifestyle guidance for CAD patients.

Coronary Artery Disease