Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Emigrants”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Emigration and emigrants from Croatia between 1880 and 1980.

"Croatia ranks among those parts of Europe which have taken very high part in all forms of emigration flows in almost all periods of the last few centuries. The emigration from Croatia was caused by different reasons, such as historical, political, national, religious, social and other. It started in the 16th century and has been going on more or less intensively in different historical periods up to now.... We would like to emphasize that the problem of emigration was and is still actual for the Croatian nation, especially in view of the fact that emigration from Croatia did not stop and continues up to this day."

Croatia↗

Isonymy in emigrants from Ferrara in 1981-1988.

The distribution of surnames in the emigrants from the population of the town of Ferrara in the period 1981-88 was studied by sex and place of birth, namely Ferrara versus other places. Emigrants born in Ferrara were defined as first time emigrants and those who had previously immigrated to Ferrara were defined second time emigrants. It was found that random isonymy is smaller in second time emigrants. Sex ratio is not different in the two types of emigrants. As indicators of the abundance of surnames in a distribution, the common ecological indexes derived from entropy were used and compared between types of emigrants. It was found that redundancy, as isonymy, is larger in the first time emigrants than in second time emigrants. It was observed that second time emigrants were consistently and significantly older than first time emigrants, and that a considerable fraction of them, (22.4%) returned to their place of birth. A sexual dimorphism in age at emigration was observed in second time emigrants, females emigrating at an older age than males.

Adult↗

Role of protein synthesis and CD11/CD18 adhesion complex in neutrophil emigration into the lung.

The mechanism of neutrophil (PMN) emigration into the lung may be stimulus-dependent. This study examined PMN emigration in the lung induced by intratracheal instillation of lipopolysaccharide (LPS), Streptococcus pneumoniae (S. pneu) organisms, supernatant from S. pneu incubated with alveolar macrophages (AM phi), Escherichia coli (E. coli) organisms, or phorbol myristate acetate (PMA). Rabbits were pretreated with either the CD18 monoclonal antibody (MAb) 60.3, the protein synthesis inhibitor cycloheximide (Cx), or, in one case, both. Animals were then given one of the above stimuli to elicit PMN emigration. Four hours after the stimulus was instilled, animals were killed and total and differential cell counts were performed on bronchoalveolar lavage (BAL) fluid. PMN emigration in response to PMA was virtually abolished by MAb 60.3, but was not significantly inhibited by Cx. Emigration induced by LPS was inhibited by 80% by either MAb 60.3 or Cx, and greater than 94% when MAb 60.3 and Cx were given simultaneously. Emigration in response to E. coli organisms was 80% inhibited by MAb 60.3. Emigration induced by S. pneu was approximately 50% inhibited by MAb 60.3, but was greater than 90% blocked by Cx. The MAb 60.3 had approximately the same effect on PMN emigration toward the supernatant from co-incubation of AM phi with S. pneu as it did toward live S. pneu. It is concluded that the mechanism of PMN emigration into the lung is stimulus-dependent. The CD18-dependent mechanism is responsible for the majority of the emigration in response to PMA, E. coli LPS, and E. coli organisms. S. pneu and supernatant from S. pneu + AM phi produce a CD18-independent pathway. These data suggest the requirement for de novo protein synthesis for PMN emigration in response to LPS and S. pneu, but not for PMA-induced emigration.

Animals↗

Ileal Peyer's patch emigrants are predominantly B cells and travel to all lymphoid tissues in sheep.

The ileal Peyer's patch (PP) was selectively labeled with fluorescein isothiocyanate by extracorporeal perfusion in 7-12 week-old lambs and the lymphocyte lineage and fate of the emigrants was determined by fluorescence microscopy and flow cytometry. PP emigrants were found in all tissues examined, accounting for 10%-15% of ileal mesenteric lymph node (MLN). 1%-2% of jejunal MLN, jejunal PP, prescapular lymph node (PLN) and 3%-4% of spleen cells. All ileal PP emigrants enter the ileal MLN on their way to the circulation. Removal of the MLN prior to perfusion enabled emigrants to go directly to the circulation and extravasate in distant tissues faster than in intact animals. The ileal MLN might provide an additional level of regulation for ileal PP emigrants. The perfused ileal PP contained about 25 times more B cells than T cells. The emigrant cells found in different tissues included both T and B cells but came to reflect, although to a lesser degree, the B cell composition of the tissue from which they were derived. One day after perfusion the composition of PP emigrants was similar to that of the tissue within which they were found; the spleen was the exception with a bias towards B cells. By day 3 the ratio of B to T cells in the PP emigrants was 1 for jejunal MLN and PLN. 1.5 for ileal MLN and jejunal PP, and 4-5 for the spleen and blood. It was concluded that the PP-derived T cells were recirculating T cells that were in the ileal PP at the time of perfusion. These cells emigrated rapidly and equilibrated such that they accounted for about 1.5% of the T cell pool in various tissues. Most PP-derived B cells were probably produced in the PP. The greatest contribution (24.4%) that ileal PP emigrants made to the B cell pool of a tissue was with the ileal MLN through which they are obliged to pass. The contribution was lower but still very significant in blood (8.9%), spleen (6.8%), PLN (3.9%), jejunal MLN (3.5%) and jejunal PP (1.8%). There was no evidence that ileal PP emigrants made a greater relative contribution to either T or B cell populations in MLN or jejunal PP than to non-gut-associated sites. The B cells were distributed throughout the immune system, which is in accordance with the proposal that the ileal PP is a site of primary B cell genesis in sheep.

Animals↗