| Literature DB >> 28003811 |
Hamed Khalili1, Sakshi Malik2, Ashwin N Ananthakrishnan1, John J Garber3, Leslie M Higuchi4, Amit Joshi1, Joanna Peloquin5, James M Richter3, Kathleen O Stewart3, Gary C Curhan6, Amit Awasthi2, Vijay Yajnik3, Andrew T Chan7.
Abstract
BACKGROUND: Recent animal studies have identified that dietary salt intake may modify the risk and progression of autoimmune disorders through modulation of the IL-23/TH17 pathway, which is critical in the pathogenesis of ulcerative colitis (UC) and Crohn's disease (CD).Entities:
Keywords: Crohn’s disease; Nurses’ Health Study; TH17 pathway; dietary potassium; immune tolerance; inflammatory bowel disease; ulcerative colitis
Year: 2016 PMID: 28003811 PMCID: PMC5141241 DOI: 10.3389/fimmu.2016.00554
Source DB: PubMed Journal: Front Immunol ISSN: 1664-3224 Impact factor: 7.561
Baseline characteristics of participants according to quintiles of total dietary potassium intake.
| Q1 ( | Q2 ( | Q3 ( | Q4 ( | Q5 ( | |
|---|---|---|---|---|---|
| Age (years), mean (SD) | 42 (9) | 42 (9) | 43 (10) | 44 (10) | 45 (10) |
| Body mass index (kg/m2), mean (SD) | 25 (6) | 25 (5) | 25 (5) | 25 (5) | 25 (5) |
| Smoking | |||||
| Never | 60 | 58 | 56 | 54 | 50 |
| Past | 21 | 25 | 27 | 29 | 31 |
| Current | 19 | 17 | 17 | 17 | 19 |
| Latitude of residence, % | |||||
| Southern latitude | 14 | 14 | 14 | 15 | 16 |
| Appendectomy, % | 18 | 19 | 20 | 20 | 21 |
| Premenopause, % | 73 | 72 | 69 | 67 | 64 |
| Menopausal hormone therapy, % | |||||
| Never | 54 | 53 | 53 | 54 | 53 |
| Past | 20 | 21 | 21 | 21 | 21 |
| Current | 26 | 26 | 26 | 25 | 26 |
| Ever use of oral contraceptives, % | 70 | 69 | 68 | 67 | 65 |
| Regular use of NSAIDs, % | 12 | 12 | 11 | 12 | 13 |
| Fiber intake (g/day), mean (SD) | 14 (3) | 16 (4) | 17 (4) | 19 (5) | 22 (6) |
| Potassium intake (mg/day), mean (SD) | 2,218 (655) | 2,701 (703) | 2,996 (754) | 3,279 (824) | 3,754 (1,059) |
| Sodium intake (mg/day), mean (SD) | 1,916 (691) | 2,055 (696) | 2,091 (689) | 2,098 (694) | 2,079 (748) |
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Dietary sodium and potassium intake and risk of Crohn’s disease and ulcerative colitis.
| Q1 | Q2 | Q3 | Q4 | Q5 | ||
|---|---|---|---|---|---|---|
| Cases/person-years | 68/637,956 | 65/646,862 | 55/647,848 | 41/647,065 | 44/640,516 | |
| Age-adjusted HR, 95% CI | 1.00 | 0.94 (0.67–1.33) | 0.79 (0.55–1.13) | 0.59 (0.40–0.88) | 0.63 (0.43–0.92) | 0.002 |
| MV-adjusted HR, 95% CI | 1.00 | 0.91 (0.64–1.29) | 0.76 (0.52–1.11) | 0.58 (0.38–0.88) | 0.62 (0.40–0.95) | 0.005 |
| Cases/person-years | 71/637,956 | 74/646,862 | 71/647,848 | 61/647,065 | 58/640,516 | |
| Age-adjusted HR, 95% CI | 1.00 | 1.02 (0.74–1.42) | 0.97 (0.69–1.34) | 0.83 (0.59–1.17) | 0.80 (0.56–1.13) | 0.09 |
| MV-adjusted HR, 95% CI | 1.00 | 1.00 (0.71–1.39) | 0.94 (0.66–1.33) | 0.79 (0.54–1.15) | 0.74 (0.50–1.11) | 0.08 |
| Cases/person-years | 53/638,430 | 54/645,396 | 54/645,264 | 37/646,930 | 75/644,226 | |
| Age-adjusted HR, 95% CI | 1.00 | 1.01 (0.69–1.48) | 1.01 (0.69–1.47) | 0.69 (0.45–1.06) | 1.41 (0.99–2.01) | 0.25 |
| MV-adjusted HR, 95% CI | 1.00 | 1.00 (0.68–1.46) | 0.98 (0.67–1.44) | 0.67 (0.44–1.02) | 1.32 (0.92–1.89) | 0.44 |
| Cases/person-years | 62/638,430 | 68/645,396 | 66/645,264 | 72/646,930 | 67/644,226 | |
| Age-adjusted HR, 95% CI | 1.00 | 1.10 (0.78–1.56) | 1.05 (0.74–1.48) | 1.15 (0.82–1.61) | 1.07 (0.75–1.51) | 0.68 |
| MV-adjusted HR, 95% CI | 1.00 | 1.08 (0.77–1.53) | 1.03 (0.73–1.46) | 1.12 (0.80–1.58) | 1.04 (0.73–1.48) | 0.77 |
CI, confidence interval; Q, quintiles.
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Risk of Crohn’s disease and ulcerative colitis according to dietary potassium intake in strata of SNPs in T.
| Control ( | Crohn’s disease ( | Ulcerative colitis ( | ||
|---|---|---|---|---|
| Entire cohort (NHS + NHSII) | 1.00 | 0.93 (0.86–1.00) | 0.98 (0.91–1.05) | |
| rs7657746 ( | GG ( | 1.00 | 1.58 (1.15–2.16) | 1.12 (0.90–1.54) |
| AG ( | 1.00 | 0.96 (0.86–1.07) | 1.02 (0.93–1.12) | |
| AA ( | 1.00 | 0.90 (0.82–0.98) | 0.90 (0.83–0.98) | |
| rs10758669 ( | AA ( | 1.00 | 0.89 (0.81–0.98) | 0.97 (0.89–1.06) |
| AC ( | 1.00 | 0.98 (0.88–1.10) | 0.97 (0.87–1.07) | |
| CC ( | 1.00 | 1.02 (0.86–1.21) | 1.04 (0.90–1.19) | |
| 0.12 | 0.58 | |||
| rs12942547 ( | GG ( | 1.00 | 0.93 (0.78–1.11) | 0.97 (0.84–1.12) |
| AG ( | 1.00 | 0.97 (0.87–1.08) | 1.03 (0.93–1.14) | |
| AA ( | 1.00 | 0.92 (0.82–1.02) | 0.93 (0.85–1.03) | |
| 0.48 | 0.42 | |||
| rs1819333 ( | GG ( | 1.00 | 0.93 (0.80–1.07) | 0.96 (0.86–1.08) |
| GT ( | 1.00 | 0.91 (0.82–1.00) | 0.93 (0.85–1.02) | |
| TT ( | 1.00 | 1.01 (0.91–1.12) | 1.02 (0.92–1.13) | |
| 0.18 | 0.41 | |||
| rs3024505 ( | GG ( | 1.00 | 0.93 (0.86–1.00) | 0.96 (0.89–1.03) |
| AG ( | 1.00 | 1.03 (0.89–1.19) | 1.06 (0.94–1.19) | |
| AA ( | 1.00 | 0.68 (0.34–1.36) | 0.83 (0.62–1.12) | |
| 0.73 | 0.92 |
Bold values representing statistically significant P-value.
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Figure 1Effect of extracellular potassium on generation of Foxp3. (A,B) Naïve (CD4+ CD45RO−CD25−) and memory (CD4+CD45RO+) CD4+ T cells were sorted and stimulated in vitro with anti-CD3 and anti-CD28 in presence of KCl (40mM) and CFSE, and Foxp3 expression was determined by intracellular staining and analyzed by flow cytometry after 6 days in vitro. (C) Naïve (CD4+ CD45RO−CD25−) and memory (CD4+CD45RO+) CD4+ T cells were sorted and stimulated in vitro with anti-CD3 and anti-CD28 in presence of TGF-β (2 ng/ml) with and without KCl (40mM), Foxp3 expression was determined by intracellular staining and analyzed by flow cytometry after 6 days in vitro. (D,E) Naïve (CD4+ CD45RO−CD25−) and memory (CD4+CD45RO+) CD4+ T cells were sorted and were stimulated in vitro with anti-CD3 and anti-CD28 in presence of TGF-β (2 ng/ml) and indicated doses of KCl, after 5–6 days, culture cells were analyzed for the intracellular levels of Foxp3 protein by flow cytometry. (F) Sorted naïve human CD4+ T cells were activated with anti-CD3 and anti-CD28, cells were polarized into TH17 conditions (TGF-β1 + IL-6 + IL-21 + IL-23 + IL-1β) in vitro either in normal media or media containing potassium (40mM), polarized TH17 cells were analyzed by flow cytometry after 6 days for percentage of Foxp3-expressing CD4+ T cells. Data are a cumulative plot of five individuals, each dot represents one individual (n = 5). Error bars SD **P < 0.01, ***P < 0.001 (Student’s t-test). (G) Naïve CD4+ T cells were activated with anti-CD3 and anti-CD28, cells were either polarized into TH17 culture condition (TGF-β1 + IL-6 + IL-21 + IL-23 + IL-1β) or TGF-β1 alone or without any cytokines (TH0) either in normal media or media containing potassium (40mM), cells were analyzed by flow cytometry for live/dead stain (Life technologies) by cell viability assay and represented as frequency of viable CD4+ T cells. Data are a cumulative plot of six to seven individuals. Each dot represents one individual. n.s., non-significant.
Figure 2Mechanism of extracellular potassium-mediated generation of Treg. (A–C) Naïve (CD4+ CD45RO−CD25−) CD4+ T cells were sorted from total PBMCs, cells were stimulated in vitro with anti-CD3 and anti-CD28 and polarized into TH17 cells with and without potassium (40mM). After 24 h of in vitro polarization, cells were analyzed by flow cytometry for the phosphorylated levels of Smad2 (B) and total levels of Smad2 protein (C). Cells were analyzed at 48 h for the expression of Smad2 mRNA by q-RT PCR (D), data are a cumulative representative plot of three individuals (n = 3), each dot represents one individual. *P < 0.05 (Student’s t-test). (E,F) Naïve (CD4+ CD45RO−CD25−) CD4+ T cells were sorted from total PBMCs. Cells were stimulated in vitro with anti-CD3 and anti-CD28 and polarized into TH17 cells with or without potassium (40mM). After 24 h of in vitro polarization, cells were analyzed by flow cytometry for the phosphorylation of Smad3 (E) and total levels of Smad2 protein (F) and mRNA expression was analyzed at 48 h for the Smad3 by q-RT PCR, data are a cumulative representative plot of three individuals (n = 3), each dot represents one individual, **P < 0.01 (Student’s t-test). (G) Naïve (CD4+ CD45RO−CD25−) CD4+ T cells were sorted from total PBMCs and in vitro stimulated with anti-CD3 and anti-CD28 with TH17 culture condition with or without potassium (40mM). After 48 h of activation, cells were analyzed by q-RT PCR of Smad7 mRNA. Representative plot of five individuals (n = 5), each dot represents one individual, *P < 0.05 (Student’s t-test).