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Vitamin D Hình ảnh

11 hình ảnh từ nghiên cứu có bình duyệt

Tất cả Psyllium Husk Bifidobacterium lactis Fructooligosaccharides (FOS) Lactobacillus plantarum Peppermint Oil Pancreatic Enzymes (Pancrelipase) Curcumin Vitamin A Medium-Chain Triglycerides (MCT Oil) Galactooligosaccharides (GOS) Lactobacillus gasseri Aloe Vera (Inner Leaf Gel) Alpha-Galactosidase Vitamin D L-Glutamine Inulin Ginger Lactase Berberine Omega-3 Fatty Acids (EPA/DHA) Bovine Colostrum Zinc Bifidobacterium bifidum Butyrate (Sodium/Calcium Butyrate) Bacillus coagulans Saccharomyces boulardii Lactobacillus acidophilus N-Acetyl Cysteine (NAC) Bifidobacterium longum
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Figure 5
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Animal models of colitis demonstrate that vitamin D deficiency exacerbates intestinal inflammation, while supplementation or VDR activation attenuates disease severity. These findings support a mechanistic link between vitamin D status and IBD pathophysiology.

The Role of Vitamin D in Inflammatory Bowel Disease: Mechanism to Management.

Fig 1. Workflow and DNA microarray analysis. Workflow in the acquisition of an IBS genetic “fingerprint” from patient sample to transcriptomic analysis. Differentially expressed genes from mucosal tissue biopsy samples in the sigmoid colon of patients dia
Figure 2 Chart

Workflow and DNA microarray analysis. Workflow in the acquisition of an IBS genetic “fingerprint” from patient sample to transcriptomic analysis.

Identification of putative transcriptomic biomarkers in irritable bowel syndrome (IBS): Differential gene …

Fig 2. Gene expression fold change in IBS patients relative to control patients using RT-qPCR testing. In total, 29 genes of interest were evaluated with only 23 being reported here (only those genes with at least two independent RT-qPCR plate replicates
Figure 3 Chart

Gene expression fold change in IBS patients relative to control patients using RT-qPCR testing. In total, 29 genes of interest were evaluated with only 23 being reported here (only those genes with at least two independent RT-qPCR plate replicates are included).

Identification of putative transcriptomic biomarkers in irritable bowel syndrome (IBS): Differential gene …

Fig 3. IBS-Associated gene regulation by 1,25D. The mRNA levels of each gene were determined using quantitative real-time polymerase chain reaction (RTqPCR) for a total of three to six replicates. Values are reported as fold change relative to pooled cont
Figure 4 Chart

IBS-Associated gene regulation by 1,25D. The mRNA levels of each gene were determined using quantitative real-time polymerase chain reaction (RTqPCR) for a total of three to six replicates.

Identification of putative transcriptomic biomarkers in irritable bowel syndrome (IBS): Differential gene …

Figure 1. Effects of C. butyricum and 25-hydroxyvitamin D3 on the latency-to-lie time, tibial content of calcium and phosphorus, BMD and bone-breaking strengthen of broilers. (A) LTL. (B) calcium. (C) phosphorus. (D) BMD. (E) bone-breaking strengthen. (F)
Figure 1 Chart

Effects of dietary Clostridium butyricum and 25-hydroxyvitamin D3 supplementation on latency-to-lie time in a poultry model, indicating improvements in leg health and bone strength.

Dietary Clostridium butyricum and 25-Hydroxyvitamin D3 modulate bone metabolism of broilers through …

Figure 2
Figure 2 Chart

Experimental data from a study on dietary Clostridium butyricum and 25-hydroxyvitamin D3 and their combined effects on bone metabolism through gut microbiota modulation in poultry.

Dietary Clostridium butyricum and 25-Hydroxyvitamin D3 modulate bone metabolism of broilers through …

Figure 4. Effects of Clostridium butyricum and 25-hydroxyvitamin D3 on the hypothalamic and intestinal brain-gut peptides in broilers. (A) Caecal 5-HT content. (B) Caecal DA content. (C) Caecal GLP-1 content. (D) Ileal PYY content. (E) Hypothalamic 5-HT c
Figure 3 Chart

Hypothalamic signaling pathway analysis in poultry fed Clostridium butyricum and 25-hydroxyvitamin D3, examining effects on bone metabolism regulatory mechanisms.

Dietary Clostridium butyricum and 25-Hydroxyvitamin D3 modulate bone metabolism of broilers through …

Figure 5. Effects of Clostridium butyricum and 25-hydroxyvitamin D3 on caecal SCFAs in broilers. (A) acetic acid level. (B) propionic acid level. (C) isobutyric level. (D) butyric level. (E) isovaleric level. (F) valeric level. Con birds fed basal diet wi
Figure 4 Chart

Caecal short-chain fatty acid (SCFA) concentrations in poultry supplemented with Clostridium butyricum and 25-hydroxyvitamin D3, linking gut fermentation products to bone metabolism modulation.

Dietary Clostridium butyricum and 25-Hydroxyvitamin D3 modulate bone metabolism of broilers through …

Figure 6. Effects of Clostridium butyricum and 25-hydroxyvitamin D3 on metagenome of broilers’ caecal microflora. (A) gene number venn graph. (B) core_Pan gene dilution curve. (C) species relative abundance histogram display based on genus level. (D) speci
Figure 5 Chart

Metagenomic analysis of caecal microbiota in poultry receiving Clostridium butyricum and 25-hydroxyvitamin D3 supplementation, revealing shifts in microbial community structure.

Dietary Clostridium butyricum and 25-Hydroxyvitamin D3 modulate bone metabolism of broilers through …

Figure 7. Effects of Clostridium butyricum and 25-hydroxyvitamin D3 on caecal microflora on genus and species levels in broilers. (A) top 12 distinguished genus based on Kruskal_Wallis analysis; (B) top 12 distinguished species based on Kruskal_Wallis anal
Figure 6 Chart

Caecal microbial composition data from poultry treated with Clostridium butyricum and 25-hydroxyvitamin D3, showing taxonomic-level changes associated with improved bone metabolism.

Dietary Clostridium butyricum and 25-Hydroxyvitamin D3 modulate bone metabolism of broilers through …

Figure 8. Effects of Clostridium butyricum and 25-hydroxyvitamin D3 on KEGG metabolic pathways of caecal microflora in broilers based on metagenomics. (A) Functional level PCA analysis. (B) Functional level PCoA analysis. (C) Heatmap of KEGG pathways. (D)
Figure 7 Chart

Metagenomic analysis of caecal microbiota in poultry receiving Clostridium butyricum and 25-hydroxyvitamin D3 supplementation, revealing shifts in microbial community structure.

Dietary Clostridium butyricum and 25-Hydroxyvitamin D3 modulate bone metabolism of broilers through …