Vitamin D Metabolism and Human Health, 2nd Edition

A special issue of Metabolites (ISSN 2218-1989). This special issue belongs to the section "Nutrition and Metabolism".

Deadline for manuscript submissions: 10 December 2026 | Viewed by 971

Editors


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Guest Editor
Department of Bromatology, Collegium Pharmaceuticum, Poznan Unversity of Medical Sciences, 60-806 Poznań, Poland
Interests: vitamin D; metabolism; nutrigenetics and nutrigenomics; nutrition and metabolic diseases; nutritional education; functional foods; antioxidants
Special Issues, Collections and Topics in MDPI journals

E-Mail Website
Guest Editor
Department of Physical Pharmacy and Pharmacokinetics, Collegium Pharmaceuticum, Poznan University of Medical Sciences, 6 Święcickiego Street, 60-781 Poznań, Poland
Interests: vitamin D; bioanalysis of endogenous compounds; HPLC-MS/MS; method validation; pharmacokinetics; pharmacogenetics
Special Issues, Collections and Topics in MDPI journals

E-Mail Website
Guest Editor
Department of Bromatology, Collegium Pharmaceuticum, Poznan University of Medical Sciences, 60-806 Poznan, Poland
Interests: vitamins and minerals; metabolism; nutrition; nutrition assessment; nutritional and metabolic diseases; nutritional education; functional foods; food technology
Special Issues, Collections and Topics in MDPI journals

Special Issue Information

Dear Colleagues,

We are pleased to announce the launch of a new Special Issue, “Vitamin D Metabolism and Human Health, 2nd Edition”, a continuation of a previously successful Special Issue.

Vitamin D is a key factor in maintaining a healthy status. Various observational studies have reported the association between vitamin D deficiency and an elevated risk of bone diseases and osteoporosis, cardiovascular disease, diabetes mellitus, metabolic syndrome and obesity, autoimmune diseases, certain types of cancer and mental health disorders such as depression and cognitive decline.

Vitamin D metabolism involves multiple organs and complex regulatory mechanisms that convert inactive vitamin D into its active form, which is essential for calcium and phosphate homeostasis, immune function and overall health. Calcitriol, the active form of vitamin D, exerts its effects by binding to the vitamin D receptor, which is a nuclear receptor found in various tissues, including the intestines, kidneys, bones and immune cells. Polymorphisms in the vitamin D receptor gene can affect the receptor’s efficiency in binding vitamin D, its expression and its ability to regulate gene transcription. Understanding individual genetic variations could aid in the tailoring of vitamin D supplementation strategies. People with vitamin D receptor polymorphisms that reduce the efficiency of the receptor may require higher doses of vitamin D to achieve optimal health outcomes. In addition, single-nucleotide polymorphisms in genes related to the vitamin D pathway may influence the vitamin D status in the body and thus determine the potential response to vitamin D supplementation.

Despite the availability of vitamin D from sunlight and dietary sources, vitamin D deficiency is a worldwide issue, especially in regions with limited sun exposure, darker-skinned populations, the elderly and those with health conditions that affect vitamin D absorption. Understanding the factors that influence vitamin D metabolism, including sunlight exposure, diet, organ health and genetic factors, is crucial for maintaining adequate levels of vitamin D and optimizing health. Raising awareness and educating society about the global burden of vitamin D deficiency through research publications could promote the development of solutions to this widespread problem. Long-term studies that track vitamin D levels and health outcomes in diverse populations could provide invaluable insights into its role in the prevention of chronic diseases and promotion of overall health. These studies could be crucial in developing robust, evidence-based public health recommendations. Novel research tools such as genetic testing, personalized nutrition approaches and advancements in immunology offer opportunities for novel research. Therefore, research on vitamin D metabolism and its broad impact on health is not only highly relevant but also crucial in improving global health. Despite numerous studies, many questions remain and this makes the topic of vitamin D dynamic and open to further research. This Special Issue therefore focuses on vitamin D metabolism and human health, the analysis of metabolic perturbations (effect of drugs, nutrients, environment, etc., on metabolism/metabolic pathway), diseases and errors in metabolism and the development of methodologies for detecting metabolites or changes in the metabolic pathway. We welcome the submission of longitudinal studies, randomized controlled trials, systematic reviews and meta-analyses on vitamin D metabolism and its impact on human health.

Dr. Magdalena Kowalówka
Prof. Dr. Marta Karaźniewicz-Łada
Dr. Ilona Górna
Guest Editors

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Keywords

  • vitamin D
  • metabolites vitamin D
  • metabolic pathways
  • metabolic perturbations
  • vitamin D re-ceptor
  • enzymes
  • polymorphism
  • vitamin D deficiency
  • health
  • metabolic diseases
  • nutrition

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Published Papers (1 paper)

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Review

26 pages, 1148 KB  
Review
Content of Vitamin D2 in Alternative Biological and Nutritional Sources and Its Effectiveness as Compared to Vitamin D3—A Narrative Review
by Filip Bieg, Agnieszka Galanty, Patricia Arancibia-Ávila, Shela Gorinstein and Paweł Paśko
Metabolites 2026, 16(7), 485; https://doi.org/10.3390/metabo16070485 - 10 Jul 2026
Viewed by 639
Abstract
Background/Objectives: Interest in alternative, non-animal sources of vitamin D has increased due to the global prevalence of its deficiency and the growing demand for plant-based dietary options. Mushrooms and algae have emerged as potential sustainable sources of vitamin D2 and, in [...] Read more.
Background/Objectives: Interest in alternative, non-animal sources of vitamin D has increased due to the global prevalence of its deficiency and the growing demand for plant-based dietary options. Mushrooms and algae have emerged as potential sustainable sources of vitamin D2 and, in selected cases, vitamin D3 following ultraviolet (UV) exposure. However, the comparative bioavailability and clinical effectiveness of vitamin D2 relative to vitamin D3 remain controversial. This review aims to evaluate the content of vitamin D2 in mushrooms and algae, the impact of UV irradiation on its synthesis, and the effectiveness of vitamin D2 supplementation compared with vitamin D3 in humans. Methods: PubMed, ScienceDirect, and Google Scholar were searched (1996–2026). Only human intervention studies were included when assessing clinical efficacy. Data on natural sources and pharmaceutical formulations were analyzed. Results: UV irradiation markedly increases vitamin D2 content in mushrooms, as compared to cultivated products. Algal vitamin D content varies, depending on species and UV exposure, with no robust clinical trials confirming improvement of serum 25(OH)D after algal supplementation. Across multiple randomized controlled trials, vitamin D2 consistently increased circulating 25(OH)D2 but frequently reduced 25(OH)D3 and demonstrated lower efficacy in raising total 25(OH)D compared with vitamin D3, as confirmed by a recent meta-analysis. Conclusions: Although UV-enhanced mushrooms represent a quantifiable dietary source of vitamin D2, clinical evidence consistently indicates lower efficacy of vitamin D2 compared with vitamin D3. Algae cannot currently be considered a validated source of vitamin D for improving human vitamin D status. Further mechanistic and long-term clinical studies are required. Full article
(This article belongs to the Special Issue Vitamin D Metabolism and Human Health, 2nd Edition)
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