scholarly journals Maternal hypovitaminosis D: a cause of neonatal hypocalcemic seizures

2017 ◽  
Vol 4 (5) ◽  
pp. 1900
Author(s):  
G. Deepika ◽  
Chaitali R. Raghoji ◽  
Ashwini R. C. ◽  
G. Guruprasad

Neonatal late onset hypocalcemia is the one which occurs after 72 hours of life. 1,25 (OH)2- vitamin D and Parathormone (PTH) play crucial role in regulation of calcium and phosphorus homeostasis in the body. Vitamin D helps in the absorption of calcium and phosphorus from the gut. PTH promotes absorption of calcium from thick ascending loop of henle and distal tubule whereas it increases excretion of phosphorus. During hypocalcemia, parathormone level shoot up in the body to maintain normal calcium levels. In a patient with poor resources of vitamin D, there is disturbance of Calcium, phosphorus homeostasis leading on to clinical manifestations. Exclusively breast-fed infants without vitamin D supplementation and infants born to mothers with Vitamin D deficiency are at risk to develop Hypovitaminosis D and manifest symptoms of hypocalcemia.

Author(s):  
Nitin S. Lingayat ◽  
Saloni Manwani ◽  
Bratati S. Mishra

Vitamin D deficiency in neonates is not uncommon and is characterized by severe hypocalcemic symptoms. In babies with poor vitamin D resources, calcium, phosphorus, and homeostasis are affected, leading to neonatal hypocalcaemia clinical manifestations. Newborn babies with vitamin D deficiency are at risk of deficiency and hypocalcaemia. Therefore, vitamin D supplementation in pregnant and lactating mothers should be routinely considered. Of newborns with symptomatic hypocalcaemia admitted in Level III NICU in the rural part of western Maharashtra from October 2019 to September 2020 were reviewed. These babies were admitted to NICU due to several illnesses, including suspected sepsis, tachypnea, jaundice, etc. They were investigated for sepsis screen including Complete Blood count, CRP, Blood culture, CSF analysis. Cranial USG through anterior fontanelle and Neuro imaging and Electroencephalogram were done wherever necessary. This study intends to highlight the manifestation of maternal hypovitaminosis D on the mother and its effects on the neonate. Maternal hypovitaminosis leads to neonatal hypovitaminosis D and can present as hypocalcaemia.


2020 ◽  
Vol 17 (1) ◽  
pp. 73-81
Author(s):  
Marina A. Berkovskaya ◽  
Dana A. Kushkhanashkhova ◽  
Yulia P. Sych ◽  
Valentin V. Fadeev

This article provides a review of current literature on the effect of various doses of vitamin D on the parameters of calcium and phosphorus metabolism in patients after bariatric surgery. The decrease of bone mineral density is one of the most frequent complications of the bariatric surgery, which increases the risk of fractures. There are many different mechanisms for impaired mineral metabolism after bariatric surgery, but a decrease in the absorption of calcium and vitamin D plays a key role in this process. Vitamin D is the most important endocrine regulator of calcium homeostasis in the body, which provides the absorption of 90% of calcium in the gut. Patients with morbid obesity have a high risk of vitamin D deficiency even before surgery, which may worsen after operation and in the absence of timely treatment lead to severe disturbances of calcium and phosphorus metabolism. It was found that high doses of vitamin D after bariatric surgery can improve parameters of bone metabolism, and, as a result, prevent fractures after surgery, which generally has a beneficial effect on the quality of life and labor prognosis. The results of the studies available to date open up new opportunities for the prevention and treatment of postoperative complications associated with impaired bone metabolism.


2020 ◽  
Vol 90 (3-4) ◽  
pp. 195-199 ◽  
Author(s):  
Gaelle Chevallereau ◽  
Mathilde Legeay ◽  
Guillaume T. Duval ◽  
Spyridon N. Karras ◽  
Bruno Fantino ◽  
...  

Abstract. Despite the high prevalence of hypovitaminosis D in older adults, universal vitamin D supplementation is not recommended due to potential risk of intoxication. Our aim here was to determine the clinical profiles of older community-dwellers with hypovitaminosis D. The perspective is to build novel strategies to screen for and supplement those with hypovitaminosis D. A classification tree (CHAID analysis) was performed on multiple datasets standardizedly collected from 1991 older French community-dwelling volunteers ≥ 65 years in 2009–2012. Hypovitaminosis D was defined as serum 25-hydroxyvitamin D ≤ 50 nmol/L. CHAID analysis retained 5 clinical profiles of older community-dwellers with different risks of hypovitaminosis D up to 87.3%, based on various combinations of the following characteristics: polymorbidity, obesity, sadness and gait disorders. For instance, the probability of hypovitaminosis D was 1.42-fold higher [95CI: 1.27–1.59] for those with polymorbidity and gait disorders compared to those with no polymorbidity, no obesity and no sadness. In conclusion, these easily-recordable measures may be used in clinical routine to identify older community-dwellers for whom vitamin D supplementation should be initiated.


2019 ◽  
Vol 9 (o3) ◽  
Author(s):  
Suaad Muhssen Ghazi ◽  
Fatin Shallal Farhan

Vitamin D deficiency is common in women with polycystic ovarian syndrome. Vitamin D plays an important physiologic role in reproductive functions of ovarian follicular development and luteinization through altering anti-müllerian hormone signaling, follicular stimulating hormone activity and progesterone production in human granulose cells. Vitamin D is precipitated in adipose fat tissues, making it notable to be used for the body as a result; obese people with high body mass index are already highly expected to have low levels of serum vitamin D.


Author(s):  
Maryam Mosavat ◽  
Aisling Smyth ◽  
Diana Arabiat ◽  
Lisa Whitehead

AbstractVitamin D contributes to numerous physiological processes within the body but primarily calcium and bone homeostasis. Emerging evidence highlights a novel role for vitamin D in maintaining and regulating optimal sleep. Sleep is a known regulator of bone health, highlighting the interconnectedness between vitamin D concentrations, sleep duration and bone metabolism. It is possible that the relationship between sleep length and vitamin D is bidirectional, with vitamin D playing a role in sleep health and conversely, sleep affecting vitamin D levels. Nevertheless, limited information on the direction of the interaction is available, and much remains to be learned concerning the complex relationship between insufficient sleep duration and vitamin D deficiency. Given the potential to implement interventions to improve sleep and vitamin D supplementation, understanding this relationship further could represent a novel way to support and improve health.


2021 ◽  
Vol 22 (10) ◽  
pp. 5251
Author(s):  
Ming-Yieh Peng ◽  
Wen-Chih Liu ◽  
Jing-Quan Zheng ◽  
Chien-Lin Lu ◽  
Yi-Chou Hou ◽  
...  

Coronavirus disease 2019 (COVID-19), caused by severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) is still an ongoing global health crisis. Immediately after the inhalation of SARS-CoV-2 viral particles, alveolar type II epithelial cells harbor and initiate local innate immunity. These particles can infect circulating macrophages, which then present the coronavirus antigens to T cells. Subsequently, the activation and differentiation of various types of T cells, as well as uncontrollable cytokine release (also known as cytokine storms), result in tissue destruction and amplification of the immune response. Vitamin D enhances the innate immunity required for combating COVID-19 by activating toll-like receptor 2. It also enhances antimicrobial peptide synthesis, such as through the promotion of the expression and secretion of cathelicidin and β-defensin; promotes autophagy through autophagosome formation; and increases the synthesis of lysosomal degradation enzymes within macrophages. Regarding adaptive immunity, vitamin D enhances CD4+ T cells, suppresses T helper 17 cells, and promotes the production of virus-specific antibodies by activating T cell-dependent B cells. Moreover, vitamin D attenuates the release of pro-inflammatory cytokines by CD4+ T cells through nuclear factor κB signaling, thereby inhibiting the development of a cytokine storm. SARS-CoV-2 enters cells after its spike proteins are bound to angiotensin-converting enzyme 2 (ACE2) receptors. Vitamin D increases the bioavailability and expression of ACE2, which may be responsible for trapping and inactivating the virus. Activation of the renin–angiotensin–aldosterone system (RAS) is responsible for tissue destruction, inflammation, and organ failure related to SARS-CoV-2. Vitamin D inhibits renin expression and serves as a negative RAS regulator. In conclusion, vitamin D defends the body against SARS-CoV-2 through a novel complex mechanism that operates through interactions between the activation of both innate and adaptive immunity, ACE2 expression, and inhibition of the RAS system. Multiple observation studies have shown that serum concentrations of 25 hydroxyvitamin D are inversely correlated with the incidence or severity of COVID-19. The evidence gathered thus far, generally meets Hill’s causality criteria in a biological system, although experimental verification is not sufficient. We speculated that adequate vitamin D supplementation may be essential for mitigating the progression and severity of COVID-19. Future studies are warranted to determine the dosage and effectiveness of vitamin D supplementation among different populations of individuals with COVID-19.


Author(s):  
Matthew F Warren ◽  
Kimberly A Livingston

Abstract The risk of vitamin D insufficiency in humans is a global problem that requires improving ways to increase vitamin D intake. Supplements are a primary means for increasing vitamin D intake, but without a clear consensus on what constitutes vitamin D sufficiency, there is toxicity risk with taking supplements. Chickens have been used in many vitamin D-related research studies, especially studies involving vitamin D supplementation. Our state-of-the-art review evaluates vitamin D metabolism and how the different hydroxylated forms are synthesized. We provide an overview with how vitamin D is absorbed, transported, excreted, and what tissues in the body store vitamin D metabolites. We also discuss a number of studies involving vitamin D supplementation with broilers and laying hens. Vitamin D deficiency and toxicity are also described and how they can be caused. The vitamin D receptor (VDR) is important for vitamin D metabolism. However, there is much more that can be understood with VDR in chickens. Potential research aims involving vitamin D and chickens should explore VDR mechanisms which could lead to newer insights with VDR. Utilizing chickens in future research to help with elucidating vitamin D mechanisms has great potential to advance human nutrition. Finding ways to increase vitamin D intake will be necessary because the coronavirus 2019 disease (COVID-19) pandemic is leading to increased risk of vitamin D deficiency in many populations. Chickens can provide a dual purpose with addressing pandemic-caused vitamin D deficiency: 1) vitamin D supplementation gives chickens added value with possibly leading to vitamin D-enriched meat and egg products; and 2) chickens’ use in research provides data for translational research. Expanding vitamin D-related research in chickens to include more nutritional aims in vitamin D status has great implications with developing better strategies to improve human health.


Author(s):  
Yogiraj Vaijanathrao Chidre ◽  
Amir Babansab Shaikh

Background: Osteoporosis is a common age related problem especially in women, with a consequent increase in bone fragility and susceptibility to fracture. Apart from Calcium, another nutrient that plays an important role in the mineralization of skeleton in Vitamin D. Osteocalcin, which is produced primarily by osteoblasts during bone formation, is considered to be one of the markers for osteoporosis.Methods: 314 women above the age of 40 were included into the study. A thorough physical and clinical examination, assessment of vital parameters, anthropometry evaluation was done for all patients. Bone mineral density was calculated using central DXA osteodensitometer at lumbar spine L1-L4, hip and ultradistal radius (in some cases.). Blood samples were taken for the detection of ionized calcium, phosphorus, alkaline phosphatase, 25hydroxivitamin D (25 ODH) and serum parathyroid hormone (PTH) by chemiluminiscent assay. Bone markers such as osteocalcin were measured as required.Results: Out of the 314 women attending our OPD, 96 of them were diagnosed as having osteoporosis. 24 out of them had fragility fractures, mainly of the hip, and 82 had ostepenia. Elevated levels of calcium (8.96 mg/dl), parathyroid hormone (58.76 pg/ml) and osteocalcin (24.46 ng/ml) were observed. Vitamin D deficiency of ≤ 20 was seen in 59 (63%) of the cases, insufficient in 23 (24%) and only 12 (13%) of these women had normal Vitamin D levels.Conclusions: Osteocalcin is a promising marker for the detection of osteoporosis. There is a considerable Vitamin D deficiency among the women with osteoporosis, and it is under-treated. It is essential to provide Vitamin D supplementation to these women especially those who are at high risk for fragility fractures.


2018 ◽  
Vol 12 (1) ◽  
pp. 226-247 ◽  
Author(s):  
Alessandra Nerviani ◽  
Daniele Mauro ◽  
Michele Gilio ◽  
Rosa Daniela Grembiale ◽  
Myles J. Lewis

Background: Systemic Lupus Erythematosus (SLE) is a systemic autoimmune disease characterised by abnormal activation of the immune system, chronic inflammation and organ damage. Lupus patients are more prone to be vitamin D deficient. However, current evidence is not conclusive with regards to the role played by vitamin D in SLE development, progression, and clinical manifestations. Objective: Here, we will summarise the current knowledge about vitamin D deficiency prevalence, risk factors, molecular effects, and potential pathogenic role in SLE. We will focus on the link between vitamin D deficiency and lupus clinical manifestations, and on the clinical trials assessing the effects of vitamin D supplementation in SLE. Method: A detailed literature search was performed exploiting the available databases, using “vitamin D and lupus/SLE” as keywords. The relevant interventional trials published over the last decade have been considered and the results are reported here. Conclusion: Several immune cells express vitamin D receptors. Thus, an immunomodulatory role for vitamin D in lupus is plausible. Numerous observational studies have investigated the relationship between vitamin D levels and clinical/serological manifestations of SLE with contrasting results. Negative correlations between vitamin D levels and disease activity, fatigue, renal and cardiovascular disease, and anti-dsDNA titres have been described but not conclusively accepted. In experimental models of lupus, vitamin D supplementation can improve the disease. Interventional trials have assessed the potential therapeutic value of vitamin D in SLE, but further larger studies are needed.


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