| Literature DB >> 18461143 |
Conor P Doherty1, Sharon E Cox, Antony J Fulford, Steven Austin, David C Hilmers, Steven A Abrams, Andrew M Prentice.
Abstract
BACKGROUND: Iron supplementation is employed to treat post-malarial anaemia in environments where iron deficiency is common. Malaria induces an intense inflammatory reaction that stalls reticulo-endothelial macrophagal iron recycling from haemolysed red blood cells and inhibits oral iron absorption, but the magnitude and duration of these effects are unclear. METHODOLOGY/PRINCIPALEntities:
Mesh:
Substances:
Year: 2008 PMID: 18461143 PMCID: PMC2330157 DOI: 10.1371/journal.pone.0002133
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Baseline characteristics (means (S.D.) or geometric means (S.D.)).
| Malaria | Non-malaria anaemia | p | |
| n | 37 | 36 | / |
| Hb (g/l) | 83.7 (11.6) | 90.6 (12.1) | 0.02 |
| Age (years) | 2.24 (0.5) | 2.29 (0.5) | 0.69 |
| Whz | −1.4 (0.86) | −1.3 (0.8) | 0.66 |
|
| 5.9 (1.5) | 8.5 (5.8) | <0.000 |
|
| 74.1 (74.8) | 5.8 (21.5) | <0.000 |
|
| 127 (53) | 157 (111) | 0.06 |
|
| 59 (205) | 32 (62) | 0.02 |
geometric means.
Figure 1Haemoglobin response (mean & 95% CI).
Figure 2Loge zinc protoporphyrin measurements (mean & 95% CI).
Measurements above 4.1 may be indicative of iron deficiency [10].
Figure 3Loge ferritin measurements (mean & 95% CI).
Measurements below 2.5 may be indicative of iron deficiency [10].
Figure 4Loge soluble transferrin receptor measurements (mean & 95% CI).
Measurements above 2.14 may be indicative of iron deficiency [9].
Figure 5Loge erythropoetin measurements (mean & 95% CI).
Measurements above 2.8 are above the normal range (R&D systems).
stable isotope incorporation correlations (number of observations).
|
| ||||||
| Hb | Log ferr | Log ZnPP | Log STfR | Log Epo | Log CRP | |
| Log Isotope incorp. | −0.17(34) | −0.43(32) | −0.02(34) | 0.14(32) | 0.05(30) | −0.35(32) |
| Hb | −0.36(35) | −0.45(37) | −0.28(35) | −0.7 (33) | −0.15(35) | |
| Log ferritin | 0.24(35) | −0.42(35) | 0.6 (33) | 0.61(35) | ||
| Log ZnPP | 0.12(35) | 0.4(33) | 0.4(35) | |||
| Log STfR | 0.05(33) | −0.17(35) | ||||
| Log Epo | 0.42(33) | |||||
|
| ||||||
| Hb | Log ferr | Log ZnPP | Log STfR | Log Epo | Log CRP | |
| Log Isotope incorp. | −0.14(61) | −0.22(51) | 0.24(59) | 0.29(59) | 0.27(58) | −0.44(54) |
| Hb | 0.09(62) | −0.6(70) | −0.29(70) | −0.66(69) | −0.06(64) | |
| Log ferritin | −0.15(62) | 0.03(62) | −0.25(62) | 0.25(57) | ||
| Log ZnPP | 0.54(69) | 0.52(68) | −0.05(63) | |||
| Log STfR | 0.45(69) | −0.08(64) | ||||
| Log Epo | −0.02(64) | |||||
The combined non-malaria group represents data of 57Fe absorption on Day 1 and 58Fe absorption on Day 15. All correlations expressed as Spearman coefficients.
p<0.05.
p<0.01.
Effects of inflammation and whz score on % stable isotope incorporation (mean (SD) and N) in the combined 57Fe and 58Fe group.
| CRP<10 mg/l | CRP>10 mg/l | ||
| Whz >−1 | 42.6 (15.1) n = 16 | 24.1 (8.2) n = 2 | p = 0.12 |
| Whz <−1 | 30.1 (17.7) n = 27 | 14.3 (11.7) n = 15 | p = 0.02 |
| p = 0.02 | p = 0.3 |