1.Vitamin D in Office Workers: A Review of Musculoskeletal and Immune System Optimization for Enhanced Productivity
Theresia Santi ; Ridwansyah Ridwansyah ; Rima Melati ; Budi Setiabudiawan
Acta Medica Indonesiana 2026;58(1):99-106
Abstract
Vitamin D deficiency is a significant health issue, particularly among office workers. This literature review emphasizes the availability of evidence on vitamin D deficiency and its impacts on musculoskeletal health and immune functions, especially amongst office workers. A literature search of PubMed, Scopus, and Web of Science identified relevant studies on the relationship between vitamin D status and musculoskeletal health and infection risks, highlighting the prevalence of vitamin D deficiency in office workers due to limited sunlight exposure and sedentary lifestyles. The risks of osteoporosis, muscle weakness, and musculoskeletal pain, as well as impaired immune system function, are carefully examined. Potential intervention strategies include implementing work schedules allowing for outdoor breaks, providing access to vitamin D-fortified foods or supplements, and routine screening for vitamin D levels. Addressing the low level of vitamin D in office workers is essential for promoting musculoskeletal health, supporting immune functions, and enhancing workforce productivity. This review underscores the need for further research and the implementation of evidence-based interventions to mitigate the impact of vitamin D deficiency in this population.
Vitamin D deficiency
;
office workers
;
musculoskeletal
;
Immunity
2.Correlation of cone- and rod-derived retinal nonperfusion on ultrawide field fluorescein angiography with diabetic retinopathy severity and diabetic macular edema.
Recivall P. Salongcay ; Anna Karina D. Leopando ; Lizzie Anne C. Aquino ; Tunde Peto ; Paolo S. Silva
Philippine Journal of Ophthalmology 2026;51(1):26-33
OBJECTIVE
To evaluate cone- and rod-specific nonperfusion indices (CPI, RPI) on ultrawide field fluorescein angiography (UWF-FA) and their correlation with diabetic retinopathy (DR) severity and center-involving diabetic macular edema (ciDME).
METHODSSixty-nine eyes of 43 patients with diabetes underwent UWF color photography (UWF-CP), UWF-FA, and macular optical coherence tomography (OCT). DR severity was graded by a masked reader on UWF-CP. UWFFA images were segmented into posterior pole (≤10 mm from fovea), mid-periphery (10–15 mm) and far periphery (>15 mm), and into the macula, within ETDRS fields and extended peripheral fields. Ischemic areas were quantified using ImageJ to calculate nonperfusion index (NPI), CPI, and RPI. ciDME was determined on OCT. Correlations were analyzed using Pearson coefficients (r).
RESULTSDR severity correlated significantly with global NPI (r = 0.56, p < 0.0001) and across all retinal zones (r = 0.35– 0.57). Both CPI (global: r = 0.56, p < 0.0001; zones: r = 0.42–0.59) and RPI (global: r = 0.55, p < 0.0001; zones: r = 0.40–0.59) showed similar associations. ciDME presence was also correlated with NPI (global: r = 0.40, p = 0.0014; zones: r = 0.42–0.54), CPI (global: r = 0.47, p = 0.0001; zones: r = 0.32–0.55), and RPI (global: r = 0.46, p = 0.0002; zones: r = 0.33–0.54).
CONCLUSIONSCone- and rod-related retinal nonperfusion strongly correlate with DR severity and ciDME. UWF-FA may help identify high-risk eyes and guide surveillance of ischemia-related progression. Further studies are needed to define ischemic thresholds predictive of vision-threatening complications.
Human ; Diabetic Retinopathy ; Photoreceptor Cells, Vertebrate ; Rods And Cones ; Fluorescein Angiography ; Macular Edema ; Retinaldehyde
3.Oral Alpha-Lipoic Acid, Vitamin B Complex, and Vitamin E Combination (Bionerv E+) for Treating Symptomatic Distal Sensory Polyneuropathy: Interim Analysis of a Randomized, Placebo-Controlled Trial
Fathimath Shazoo ; Ilham Ismail ; Rathika Rajah ; Wan Asyraf Wan Zaidi ; Rabani Remli ; Mahrunissa Mahadi ; Norlaila Mustafa ; Roszita Ibrahim ; Norasyikin A. Wahab
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):35-36
Introduction:
Diabetic sensorimotor polyneuropathy (DSPN) is a
common complication of long-standing diabetes mellitus
marked by neuropathic pain and sensory deficits. Evidence
supporting combination antioxidant and vitamin-based
therapy remains limited, particularly in patients with
chronic disease. This study aims to determine symptom
improvement after 12 weeks of oral alpha-lipoic acid,
vitamin B complex, and vitamin E (Bionerv E+) in chronic
diabetic patients with symptomatic DSPN.
Methodology:
This single-centre, randomized, double-blind, placebocontrolled trial at HCTM enrolled 31 patients with symptomatic DSPN, assigned to Bionerv E+ (n = 16) or placebo
(n = 15) for 12 weeks. Symptoms were assessed at baseline
and post intervention using the Neuropathy Impairment
Score–Lower Limb (NIS LL), Short Form McGill Pain
Questionnaire (SF MPQ), Toronto Clinical Scoring System
(TCSS), and nerve conduction studies (NCS).
Results:
A total of 31 participants were recruited; 18 completed
the study (11 intervention, 7 placebo). The cohort was
predominantly elderly (median age 68 ± 12 years), male
(51.6%), with long-standing diabetes (mean duration of
18.6 ± 8.2 years), and a mean hemoglobin A1c of 7.3 ± 0.6%.
A statistically significant reduction in TCSS score was
observed in the intervention arm (5.5 ± 3.8 vs 3.3 ± 3.4; p
= 0.002), indicating improvement in neuropathic symptom
severity in this chronic population. The SF MPQ scores
showed a downward trend in both arms, but were not
statistically significant. Among intervention participants
who completed sural NCS, three patients demonstrated
normalization, and five showed partial amplitude gains,
indicating directional improvement in nerve function. Four
patients with normal baseline studies exhibited further
amplitude gains. Otherwise, limited improvements were
observed in those with abnormal conduction velocity
parameters. Bionerv E+ was well tolerated, with only mild
and self-limiting adverse events reported.
Conclusion
Short-term supplementation with Bionerv E+ showed
improvement in neuropathic symptoms among longstanding diabetic patients. However, longer-term studies
with larger cohorts are necessary to determine its effects
on patients with DSPN.
Thioctic Acid
;
Vitamin B Complex
;
Polyneuropathies
;
Vitamin E
4.Expanding the Spectrum of Vitamin D-Dependent Ricket Type 2: Dominant-Negative VDR Mutation and Postpubertal Calcium Adaptation
Mohd Hazriq Awang ; Shireene Ratna Vethakkan ; Ooi Ying Guat ; Tharsini Sarvanandan
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):70-
Introduction:
Vitamin D-dependent rickets type 2 (VDDR2) is traditionally defined by biallelic vitamin D receptor (VDR) mutations
causing resistance to 1,25(OH)₂D. We describe a case of the
classical VDDR2 phenotype with a single VDR mutation
and an interesting physiological adaptation.
Case:
A female diagnosed with rickets at age three presented with
a femoral fracture, severe short stature, hypocalcemia (2.1
mmol/L; NR 2.35–2.70), hypophosphatemia (0.8 mmol/L;
NR 1.5–2.10), and evidence of renal phosphate wasting
(TMP/GFR 0.5 mmol/L; NR 1.5–2.4). Biochemistry showed
markedly elevated alkaline phosphatase (1,227 IU/L; NR
50–136) and secondary hyperparathyroidism (20.7 pmol/L;
NR 0.8–7.8). Despite hypocalcemia, 1,25(OH)₂D was
significantly elevated (>450 pmol/L; NR 60–150), consistent
with VDDR2. There was no initial family history; however,
subsequent evaluation of her mother—prompted by the
patient’s diagnosis—revealed a similar biochemical profile,
along with short stature (142 cm) and a history of multiple
fractures. Genetic analysis in both individuals identified a heterozygous missense mutation in exon 10 of the VDR
gene, affecting the ligand-binding domain, supporting a
pattern of dominant inheritance. The patient was treated
with cholecalciferol (1,200 IU daily), calcitriol (5–6 µg
daily), and calcium carbonate (2,000 mg daily). Although
biochemical responsiveness to therapy was evident,
poor adherence resulted in suboptimal metabolic control
throughout childhood and adolescence, including a second
fracture at age 15 and a final adult height of 124 cm. Notably,
calcium and phosphate levels progressively normalized
after puberty, with sustained biochemical stability despite
the patient omitting the treatment.
Conclusion
This case provides two important insights. First, it represents the fourth reported case worldwide demonstrating
a dominant-negative effect of a VDR gene mutation,
whereby a single mutant receptor interferes with wildtype VDR function. Second, it highlights postpubertal
calcium adaptation, in which vitamin D–independent
intestinal absorption may restore mineral homeostasis, and
disease severity can attenuate over time through adaptive
physiological mechanisms.
Calcium
;
Mutation
;
Vitamin D
;
Rickets
5.Role of acitretin in regulating glucose and lipid homeostasis in an imiquimod-induced psoriasis model mouse.
Kexin LONG ; Wangqing CHEN ; Manyun MAO ; Wu ZHU
Journal of Central South University(Medical Sciences) 2025;50(3):344-357
OBJECTIVES:
Psoriasis is a chronic inflammatory skin disease often accompanied by comorbidities such as hyperglycemia, insulin resistance, and obesity. Acitretin, as a second-generation retinoid, is used in the treatment of psoriasis. This study aims to explore the role of acitretin on glucose and lipid metabolism in psoriasis.
METHODS:
HepG2 cells were treated with acitretin under high- or low-glucose conditions. mRNA and protein expression levels of glucose transport-related genes were evaluated using real-time reverse transcription PCR (real-time RT-PCR) and Western blotting. Glucose uptake was analyzed by flow cytometry, and intracellular lipid droplet formation was assessed via Oil Red O staining. Healthy adult female BALB/C mice were randomly divided into 3 groups: a control group, an imiquimod (IMQ)-induced psoriasis model group (IMQ group), and an acitretin treatment group. Skin lesions and inflammatory markers were examined, along with changes in body weight, plasma glucose/lipid levels, and transcription of metabolic genes. Islets were isolated from normal and psoriasis-induced mice, and the effect of acitretin on insulin secretion was evaluated in vitro.
RESULTS:
Acitretin treatment increased glucose uptake and lipid droplet synthesis of HepG2 in high-glucose environment, with elevated transcription levels of glucose transport-related genes GLUT1 and GLUT4. Transcription of gluconeogenesis-related gene G6pase decreased, while transcription levels of glycogen synthesis-related genes AKT1 and GSY2 increased (all P<0.05), while acitretin inhibits glucose uptake and promotes gluconeogenesis in low-glucose environment. In vivo experiments revealed that compared with the control group, the blood glucose level in the IMQ group was significantly decreased (P<0.05), while acitretin treatment partially restored glucose homeostasis and alleviated weight loss. Ex vivo culture of islets from psoriatic mice revealed that acitretin reduced elevated insulin secretion and downregulated PDX-1 expression, while upregulating glucose homeostasis gene SIRT1 and insulin sensitivity gene PPARγ (all P<0.05). These findings suggest that acitretin plays a critical role in improving islet function and restoring islet homeostasis.
CONCLUSIONS
Acitretin helps maintain the balance between hepatic glycogenesis and gluconeogenesis, enhances insulin sensitivity, and improves pancreatic islet function, thereby promoting systemic and cellular glucose homeostasis.
Acitretin/therapeutic use*
;
Psoriasis/drug therapy*
;
Animals
;
Imiquimod
;
Humans
;
Glucose/metabolism*
;
Homeostasis/drug effects*
;
Mice
;
Lipid Metabolism/drug effects*
;
Mice, Inbred BALB C
;
Female
;
Hep G2 Cells
;
Disease Models, Animal
6.Risk factors for multiple myeloma and its precursor diseases.
Wanyun MA ; Liang ZHAO ; Wen ZHOU
Journal of Central South University(Medical Sciences) 2025;50(4):560-572
Multiple myeloma (MM) is a common hematologic malignancy that originates from precursor conditions such as monoclonal gammopathy of undetermined significance (MGUS) and smoldering multiple myeloma (SMM). Identifying its risk factors is crucial for early intervention. The etiology of MM is multifactorial, involving race, familial clustering, gender, age, obesity, cytogenetic abnormalities, and environmental exposures. Among these, cytogenetic abnormalities and modifiable factors play pivotal roles in MM pathogenesis and progression. 1) cytogenetic abnormalities. Primary abnormalities [e.g., hyperdiploidy, t(11;14), t(14;16)] emerge at the MGUS stage, while secondary abnormalities [e.g., 1q+, del(17p)] drive disease progression. The accumulation of 1q+ promotes clonal evolution, and del(17p) is associated with significantly reduced survival. 2) modifiable risk factors. Obesity promotes MM via the acetyl-CoA synthetase 2 (ACSS2)-interferon regulatory factor 4 (IRF4) pathway. Vitamin D deficiency weakens immune surveillance. Exposure to herbicides such as Agent Orange and glyphosate increases MGUS incidence. Insufficient UV exposure, by reducing vitamin D synthesis, elevates MM risk. Gut microbiota dysbiosis (enrichment of nitrogen-cycle bacteria and depletion of short-chain fatty acids producers) induces chromosomal instability through the ammonium ion-solute carrier family 12 member 22 (SLC12A2)-NEK2 axis. Therefore, risk-based screening among high-risk populations (e.g., those who are obese, elderly, or chemically exposed), along with early interventions targeting cytogenetic abnormalities [e.g., B cell lymphoma 2 (Bcl-2) inhibitors for t(11;14), ferroptosis inducers for t(4;14)] and modifiable factors (e.g., vitamin D supplementation, gut microbiota modulation), may effectively delay disease progression and improve prognosis.
Humans
;
Multiple Myeloma/epidemiology*
;
Risk Factors
;
Obesity/complications*
;
Chromosome Aberrations
;
Monoclonal Gammopathy of Undetermined Significance/etiology*
;
Gastrointestinal Microbiome
;
Vitamin D Deficiency/complications*
;
Precancerous Conditions/genetics*
7.Effect of retinoic acid on delayed encephalopathy after acute carbon monoxide poisoning: Role of the lncRNA SNHG15/LINGO-1/BDNF/TrkB axis.
Fangling HUANG ; Su'e WANG ; Zhengrong PENG ; Xu HUANG ; Sufen BAI
Journal of Central South University(Medical Sciences) 2025;50(6):955-969
OBJECTIVES:
The neurotoxicity of carbon monoxide (CO) to the central nervous system is a key pathogenesis of delayed encephalopathy after acute carbon monoxide poisoning (DEACMP). Our previous study found that retinoic acid (RA) can suppress the neurotoxic effects of CO. This study further explores, in vivo and in vitro, the molecular mechanisms by which RA alleviates CO-induced central nervous system damage.
METHODS:
A cytotoxic model was established using the mouse hippocampal neuronal cell line HT22 and primary oligodendrocytes exposed to CO, and a DEACMP animal model was established in adult Kunming mice. Cell viability and apoptosis of hippocampal neurons and oligodendrocytes were assessed using the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay and Annexin V/propidium iodide (PI) double staining. The transcriptional and protein expression of each gene was detected using real-time fluorescence quantitative PCR (RT-qPCR) and Western blotting. Long noncoding RNA (lncRNA) SNHG15 and LINGO-1 were knocked down or overexpressed to observe changes in neurons and oligodendrocytes. In DEACMP mice, SNHG15 or LINGO-1 were knocked down to assess changes in central nervous tissue and downstream protein expression.
RESULTS:
RA at 10 and 20 μmol/L significantly reversed CO-induced apoptosis of hippocampal neurons and oligodendrocytes, downregulation of SNHG15 and LINGO-1, and upregulation of brain-derived neurotrophic factor (BDNF) and tyrosine kinase receptor B (TrkB) (all P<0.05). Overexpression of SNHG15 or LINGO-1 weakened the protective effect of RA against CO-induced cytotoxicity (all P<0.05). Knockdown of SNHG15 or LINGO-1 alleviated CO-induced apoptosis of hippocampal neurons and oligodendrocytes and upregulated BDNF and TrkB expression levels (all P<0.05). Experiments in DEACMP model mice showed that knockdown of SNHG15 or LINGO-1 mitigated central nervous system injury in DEACMP (all P<0.05).
CONCLUSIONS
RA alleviates CO-induced apoptosis of hippocampal neurons and oligodendrocytes, thereby reducing central nervous system injury and exerting neuroprotective effects. LncRNA SNHG15 and LINGO-1 are key molecules mediating RA-induced inhibition of neuronal apoptosis and are associated with the BDNF/TrkB pathway. These findings provide a theoretical framework for optimizing the clinical treatment of DEACMP and lay an experimental foundation for elucidating its molecular mechanisms.
Animals
;
RNA, Long Noncoding/physiology*
;
Brain-Derived Neurotrophic Factor/genetics*
;
Carbon Monoxide Poisoning/complications*
;
Mice
;
Tretinoin/pharmacology*
;
Nerve Tissue Proteins/metabolism*
;
Membrane Proteins/metabolism*
;
Apoptosis/drug effects*
;
Hippocampus/cytology*
;
Receptor, trkB/metabolism*
;
Neurons/drug effects*
;
Male
;
Brain Diseases/etiology*
;
Oligodendroglia/drug effects*
;
Signal Transduction
;
Cell Line
8.Observation and analysis of Vitamin D levels in 147 children undergoing adenoidectomy and/or tonsillectomy.
Jun DU ; Qinglong GU ; Yingxia LU ; Guimin HUANG ; Xiaojun ZHAN ; Lin WANG ; Xiaoyan WANG
Journal of Clinical Otorhinolaryngology Head and Neck Surgery 2025;39(6):515-522
Objective:To observe and analyze the levels of vitamin D(VD) and their influencing factors in children undergoing adenoidectomy and/or tonsillectomy. Methods:A total of 147 children who received adenoidectomy and/or tonsillectomy in our hospital from November 2018 to March 2019 were selected as the experimental groups, gender and age matched 147 healthy children of the same period were selected as the control group. The differences of VD levels between the two groups were compared, the factors affecting VD levels were investigated, and patients with VD deficiency/insufficiency in the experimental groups were followed up postoperatively. Results:The VD levels of the experimental groups were(19.6±6.6) ng/mL and those of the control groups were (22.5±6.5)ng/mL, which was significantly different (P<0.01). The experimental groups were divided into inflammation groups and Sleeping disorder breathing(SDB)groups. The VD levels of the two groups were (19.1±6.7)ng/mL and (21.9±6.4)ng/mL, which was significantly different (P<0.05). Regression analysis showed that VD levels were negatively correlated with age, body mass index (BMI), adenoid hypertrophy, tonsil hypertrophy and Anti-streptolysin O(ASO)levels (P<0.05). VD values were remeasured one year postoperatively in 23 of 72 children in the VD deficiency/deficiency groups, and there was a statistically significant difference between preoperative and postoperative VD values[(14.3±3.9)ng/mL and (17.1±5.5) ng/mL, respectively, P<0.05]. There was a significant difference in postoperative VD value between the inflammation groups and the SDB groups[ (15.6±5.9) ng/mL and (20.5±2.1) ng/mL, respectively, P<0.05]. Conclusion:Children who underwent adenoidectomy and/or tonsillectomy had lower VD levels than healthy children.VD levels decreased with increasing age,BMI and ASO values,and associated with the size of adenoid and tonsil. Preoperative VD levels were lower in the inflammation groups, adenoidectomy and/or tonsillectomy improved VD deficiency/insufficiency status, and postoperative elevation of VD levels was more pronounced in the SDB groups.
Humans
;
Tonsillectomy
;
Adenoidectomy
;
Vitamin D/blood*
;
Vitamin D Deficiency
;
Male
;
Female
;
Postoperative Period
;
Child
;
Case-Control Studies
;
Child, Preschool
9.Changes in circulating levels of calcium and bone metabolism biochemical markers in patients receiving denosumab treatment.
Yuancheng CHEN ; Wen WU ; Ling XU ; Haiou DENG ; Ruixue WANG ; Qianwen HUANG ; Liping XUAN ; Xueying CHEN ; Ximei ZHI
Journal of Southern Medical University 2025;45(4):760-764
OBJECTIVES:
To investigate the changes in blood levels of calcium and bone metabolism biochemical markers in patients with primary osteoporosis receiving treatment with denosumab.
METHODS:
Seventy-three patients with primary osteoporosis treated in our Department between December, 2021 and December 2023 were enrolled. All the patients were treated with calcium supplements, vitamin D and calcitriol in addition to regular denosumab treatment every 6 months. Blood calcium, parathyroid hormone (PTH), osteocalcin (OC), type I procollagen amino-terminal propeptide (PINP), and type I collagen carboxy-terminal telopeptide β special sequence (β‑CTX) data before and at 3, 6, 9, and 12 months after the first treatment were collected from each patient.
RESULTS:
Three months after the first denosumab treatment, the bone turnover markers (BTMs) OC, PINP, and β-CTX were significantly decreased compared to their baseline levels by 39.5% (P<0.001), 56.2% (P<0.001), and 81.8% (P<0.001), respectively. At 6, 9, and 12 months of treatment, OC, PINP, and β-CTX remained significantly lower than their baseline levels (P<0.001). Blood calcium level was decreased (P<0.05) and PTH level increased (P<0.05) significantly in these patients at months of denosumab treatment, but their levels were comparable to the baseline levels at 6, 9, and 12 months of the treatment (P>0.05).
CONCLUSIONS
Denosumab can suppress BTMs and has a good therapeutic effect in patients with primary osteoporosis, but reduction of blood calcium and elevation of PTH levels can occur during the first 3 months in spite of calcium supplementation. Blood calcium and PTH levels can recover the baseline levels as the treatment extended, suggesting the importance of monitoring blood calcium and PTH levels during denosumab treatment.
Humans
;
Denosumab/therapeutic use*
;
Calcium/blood*
;
Parathyroid Hormone/blood*
;
Biomarkers/blood*
;
Osteoporosis/blood*
;
Osteocalcin/blood*
;
Procollagen/blood*
;
Female
;
Collagen Type I/blood*
;
Peptide Fragments/blood*
;
Bone Density Conservation Agents/therapeutic use*
;
Bone and Bones/metabolism*
;
Male
;
Middle Aged
;
Vitamin D
;
Peptides/blood*
;
Aged
10.A stable mouse model of chronic liver fibrosis induced by vitamin A deficiency and intraperitoneal CCl4 injection.
Journal of Southern Medical University 2025;45(7):1527-1534
OBJECTIVES:
To prepare a stable mouse model of chronic liver fibrosis induced by dietary vitamin A (VA) deficiency combined with CCl4 injections.
METHODS:
A total of 126 Balb/c mice were randomized into 3 groups for feeding with a normal VA diet or a VA-deficient diet containing 500 or 200 IU/kg VA. After 4 weeks of feeding, half of the mice in each group were given intraperitoneal injections of 5% CCl4 (10 mL/kg, twice a week) for 8 weeks. Serum retinol, ALT/AST and liver index of the mice were examined, liver tissue pathologies were observed with HE and Masson staining, and liver fibrosis score and oxidative stress level were evaluated.
RESULTS:
Four weeks of VA-deficient feeding, especially at 200 IU/kg, significantly lowered serum retinol level of the mice. CCl4 injections for 8 weeks obviously increased liver index and ALT/AST and caused obvious liver fibrosis in all the mice, but liver pathologies were more severe in the 2 VA-deficient groups; severe liver necrosis with inflammatory cell infiltration was observed in 200 IU/kg VA group, where 2 mice died. After discontinuation of CCl4, the mice with normal dietary VA showed gradual recovery of the liver index, ALT/AST, liver cord structure and liver fibrosis; the mice with VA deficiency, however, showed no significant improvements in these parameters, and the mice with 200 IU/kg VA still had serious abdominal adhesion, false lobules and massive inflammatory cell infiltration with a fibrosis stage score of 3. The oxidative damage index 8-OHdG was significantly higher in 500 IU/kg VA group than in normal VA group after CCl4 modeling.
CONCLUSIONS
Feeding with diet containing 500 IU/kg VA for 4 weeks and 10 mL/kg CCl4 injections for 8 weeks can result in stable moderate to severe liver fibrosis in mice without spontaneous reversal at 8 weeks of drug withdrawal.
Animals
;
Mice
;
Mice, Inbred BALB C
;
Disease Models, Animal
;
Carbon Tetrachloride
;
Vitamin A Deficiency/complications*
;
Male
;
Liver Cirrhosis/etiology*
;
Oxidative Stress
;
Vitamin A/blood*


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