| Literature DB >> 25428166 |
Kirsten Buschmann1, Raphaela Tschada2, Marie-Sophie Metzger3, Natascha Braach4, Navina Kuss5, Hannes Hudalla6, Johannes Poeschl7, David Frommhold8.
Abstract
BACKGROUND: Insufficient leukocyte recruitment may be one reason for the high incidence of life-threatening infections in preterm infants. Since the receptor of advanced glycation end products (RAGE) is a known leukocyte adhesion molecule and highly expressed during early development, we asked whether RAGE plays a role for leukocyte recruitment in preterm and term infants.Entities:
Mesh:
Substances:
Year: 2014 PMID: 25428166 PMCID: PMC4256735 DOI: 10.1186/s12865-014-0053-0
Source DB: PubMed Journal: BMC Immunol ISSN: 1471-2172 Impact factor: 3.615
Patient characteristics and laboratory values of umbilical cord blood
|
|
|
|
|
|
|---|---|---|---|---|
|
|
|
|
| |
| Number | n = 12 | n = 14 | n = 50 | |
|
| ||||
| GA (weeks) | 28 4/7 ± 1 4/7 | 33 1/7 ± 1 1/7 | 37 3/7 ± 1 2/7 | na |
| Birth weight (g) | 1130 ± 260*# | 1930 ± 570* | 3040 ± 520 | <0.001 |
| Female/male | 4/8 | 6/8 | 23/27 | na |
| APGAR 5ʹ | 8 ± 1 | 9 ± 1 | 9 ± 1 | ns |
| 10ʹ | 8 ± 1 | 9 ± 1 | 9 ± 1 | ns |
|
| ||||
| Arterial pH | 7.31 ± 0.07 | 7.30 ± 0.04 | 7.28 ± 0.05 | ns |
| CrP (mg/dl) | <0.05 | <0.05 | <0.05 | na |
| WBC/nl | 9.3 ± 3.6* | 12.3 ± 3.9 | 14.5 ± 7.9 | <0.05 |
| PMN (%) | 25.4 ± 12.8* | 32.4 ± 9.5* | 45.5 ± 14.2 | <0.001 |
| Hct (%) | 0.45 ± 0.05 | 0.50 ± 0.04 | 0.48 ± 0.06 | ns |
Data are given as mean ± SEM if applicable. GA, gestational age; APGAR score; WBC, White blood cell count; Hct, haematocrit; CrP, C-reactive protein; na, not applicable; ns, not significant. The asterisk (*) indicates significant differences vs. mature neonates and the pound key (#) vs moderately premature infants as given by the P value (ANOVA).
Figure 1Gestational age dependent distribution of blood cells after PMN isolation procedure. Granulocytes, erythroid progenitors and other cells (lymphocytes and myeloid precursors) from extremely, moderately premature and mature infants as well as adults were counted using differential May Gruenwald staining (mean ± SEM). Significant differences to extremely premature infants (<30 weeks of gestation) are indicated by asterisks (p <0.05).
Figure 2RAGE- and ICAM-1-dependent fetal neutrophil adhesion. Neutrophil adhesion of preterm and term infants and adults was analyzed in dynamic microflow chamber experiments (A) Neutrophil adhesion upon P-selectin, IL-8 and ICAM-1 was compared between the various age groups and to respective uncoated controls. (B) Neutrophil adhesion is shown for P-selectin and IL-8 coated flow chambers with and without ICAM-1. (C) ICAM-1-and sRAGE-dependent neutrophil adhesion in combination with P-selectin and IL-8-coating. Results are presented as mean + SEM from at least 5 separate individuals/experiments per group. Significant differences (p <0.05) to uncoated or P-selectin and IL-8 coated flow chambers are indicated by asterisks and by the pound key (as indicated).
Figure 3Effective RAGE- and ICAM-1-dependent fetal neutrophil adhesion. Neutrophil adhesion of preterm and term infants and adults was analyzed in dynamic microflow chamber experiments. The difference of neutrophil adhesion between uncoated controls and coating with P-selectin, IL-8 and RAGE or ICAM-1 is displayed as increase of adherent cells/FOV over background for the respective age groups. Results are presented as mean + SEM from at least 5 separate individuals/experiments per group. Significant differences (p <0.05) are indicated by asterisks.
Figure 4Plasma sRAGE levels in adults and infants during late gestation. The sRAGE plasma concentration of healthy adults was measured and compared to plasma of cord blood of neonates and premature infants (mean + SEM). Significant differences to adult levels are indicated by asterisk (p <0.05).
Figure 5Flow cytometric analysis of expression of LFA-1 and Mac-1 in adults and infants during late gestation. (A) Representative Mac-1 and (B) LFA-1 expression on neutrophils isolated from cord blood of preterm and term infants of different gestational ages were compared to adults and respective isotype controls. Alternatively, bar graphs of the mean fluorescence intensity of Mac-1 (C) and LFA-1 (D) expression are depicted for the respective investigated groups. These results are presented as mean + SEM from at least 3 separate experiments/group. Asterisks(*) indicate significant difference vs all other groups at p <0.05.