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Altered patterns of T cell migration through lymph nodes and skin following antigen challenge.

Antigen challenge has profound effects on a regional lymph node (LN); it leads to an increase in blood flow to the node, and a marked increase in lymphocyte output through the efferent lymphatics. We used the isolated LN model developed in the sheep to see if antigen challenge in a LN resembled inflammation in peripheral tissues. Following stimulation with an antigen (purified protein derivative of tuberculin), lymphocyte output from the LN showed the typical periods of "lymphocyte shutdown" and "recruitment". The shutdown phase, when cell numbers in efferent lymph dropped by approximately 80%, affected almost exclusively the naive-type (adhesionlo, L-selectin+) T cell population. The large increase in T cell traffic through the node during the recruitment phase was mostly due to CD4+ memory-type T cells and, moreover, the majority of these T cells were L-selectin-, indicating that these cells were crossing from the blood by a molecular mechanism other than L-selectin interaction with its ligand, the "lymph node vascular addressin" (MECA-79). Examination of LN high endothelial venules revealed the presence of vascular cell adhesion molecule-1 (VCAM-1), an endothelial adhesion molecule which has been reported to bind preferentially memory-type T cells in inflammatory lesions. Within the skin, antigen challenge also induced the rapid expression of VCAM-1 on vascular endothelium. It was purely memory-type T cells (beta 1+, L-selectin+/-) that collected in lymph draining from this tissue. However within chronically inflamed skin, the MECA-79 determinant appeared on vascular endothelium, and a small proportion of T cells draining from chronically inflamed skin were of naive-type. The present results illustrate that there are similarities in the cellular and molecular events that characterize antigen stimulation of a LN and inflammation in a peripheral tissue.

Animals↗

MRI findings in regional migratory osteoporosis of the knee migrating from the femur to the tibia.

Regional migratory osteoporosis (RMO) is an uncommon self-limiting disease characterized by migrating bone marrow edema and osteoporosis. RMO of the knee with intra-articular migration is very rare. In such cases, different parts of the femur are usually involved. We report a case of intra-articular RMO of the knee migrating from the femur to the tibia--a pattern of migration that has not been previously described in the literature.

Femur↗

P311-induced myofibroblasts exhibit ameboid-like migration through RalA activation.

We previously showed that P311, an intracellular protein involved in cell migration, is found in human wound myofibroblast precursors (proto-myofibroblasts) and myofibroblasts. Furthermore, by binding to the TGF-beta1 latency associated protein (LAP), P311 induced NIH 3T3 cells to transform into non-fibrogenic myofibroblasts characterized by lack of TGF-beta1 production. Here we demonstrate that P311-induced myofibroblasts migrate in an ameboid rather than a mesenchymal pattern. Ameboid migration is characterized by lack of focal adhesions and stress fibers, absence of integrins and MMPs clustering/activation and changes in small GTPases activity, all leading to increased cell motility. P311-induced ameboid migration depended on activation of the GTPase RalA and was reverted to mesenchymal-type migration by RalA RNA interference. Ameboid migration was conserved in cells plated on fibrin, the initial wound matrix, but was switched back to mesenchymal-type migration by collagen I, the main ECM component in late stages of wound healing. TGF-beta1, the major stimulus of collagen production during wound repair, also reversed the ameboid phenotype to mesenchymal. Our studies therefore suggest that, by inducing RalA activity, P311 promotes a motile proto-myofibroblast and myofibroblast phenotype specifically adapted to rapidly populate the initial wound matrix.

Animals↗

Diverging patterns with endogenous labor migration.

"The standard neoclassical model cannot explain persistent migration flows and lack of cross-country convergence when capital and labor are mobile. Here we present a model where both phenomena may take place.... Our model is based on the Arrow-Romer approach to endogenous growth theory. We single out the importance of a (however weak) scale effect from the size of the workforce.... The main conclusion of this simple model is that lack of convergence, or even divergence, among countries is possible, even with perfect capital mobility and labor mobility."

Demography↗

Magnitude and pattern of thymic lymphocyte migration in neonatal mice.

Neonatal mice were given a subcapsular, intrathymic injection of thymidine-(3)H using a modified microneedle technique, and the migration of labeled cells to spleen, lymph nodes, Peyer's patches, and bone marrow was followed radioautographically with time. Assuming that nonlabeled lymphocytes migrated in the same manner as labeled lymphocytes, it can be concluded that the majority of lymphocytes present within mesenteric lymph nodes (74%) and Peyer's patches (61%), and a large proportion of those located in popliteal lymph nodes (40%) and the spleen (26%), were of thymic origin. Evidence is presented indicating that these are minimum values. The difference in the magnitude of thymic cell migration to gut-associated lymphoid tissue on the one hand and to the spleen and popliteal lymph node on the other hand was tentatively attributed to antigenic stimulation from the intestinal flora which develops during the first days of life. Thymus-derived lymphocytes were scattered throughout the lymph node cortex and splenic follicles. No noticeable thymic cell migration to the bone marrow was found. Labeling indices in the peripheral lymphoid organs paralleled those of cortical thymic lymphocytes suggesting the thymic cortex as the major source of migrants. By 2 days postinjection, the mean grain counts of labeled lymphocytes in all peripheral lymphoid tissues were higher than the mean grain counts of labeled lymphocytes in the thymus. At 7 days postinjection heavily labeled cells constituted 11-16% of the labeled population in peripheral tissues while they were absent from the thymic cortex. These results indicate that a fraction of thymus-derived cells, upon settling in the periphery, remained in, or reentered, a nonproliferative phase for at least 7 days. Conversely, many thymus-derived lymphocytes underwent division in the periphery and/or penetrated the intestinal epithelium. Since the relative number of thymus-derived cells found in the mesenteric lymph nodes of 1- and 2-day old mice was considerably higher than the percentage of cells at this site having the theta (theta) alloantigen, as reported by other authors, the possibility exists that theta-antigen on thymus-derived lymphocytes may, at least in a fraction of these cells, no longer be detectable as they reach the peripheral organs.

Animals↗

Changes in adhesion molecule expression during distinct patterns of immune cell migration in the inflamed lung.

In response to antigen inhalation, immune cells including alveolar macrophages expressing a VIP1 receptor subtype (VIP1R), lymphocytes and leukocytes participate in the inflammatory event, migrating into and from vascular regions in lung tissue of sensitized mice. To analyze these migratory mechanisms of immune cells, we immunohistochemically examined the expression of the following: cellular adhesion molecules, lymphocyte function-associated antigen-1 (LFA-1) very late activation antigen-4 (VLA-4), and the alpha V (alpha v) subunit and their respective ligands, intercellular adhesion molecule-1 (ICAM-1), vascular cell adhesion molecule-1 (VCAM-1), and fibronectine; the examination was carried out in pulmonary tissue from days 0, 2, 6 and 12 following intratracheal administration of sheep red blood cells (SRBC) as an antigen to previously sensitized mice. Two days following the antigen challenge, VIP1R-positive macrophages strongly expressing the alpha v integrin subunit were found clustered on the endothelial surface and among the aggregates of perivascularly infiltrated leukocytes. On the endothelium of arteries, veins and capillaries, alpha v immunoreactivity was prominently reduced, whereas staining for fibronectin was enhanced more than the prechallenge control level. The blood vessel endothelium was also stained positive for VCAM-1 and ICAM-1, while many of the infiltrating lymphocytes were positive for VLA-4 and LFA-1 immunolabelings. By post-challenge, day 6, delta v integrin subunit immunoreactivity was re-expressed on the blood vessel endothelium and only weakly expressed on VIP1R-positive macrophages, which were in retreat from the leukocyte-aggregating perivascular region and located in the alveoli. VLA-4 bearing lymphocytes conspicuously increased in number among the perivascular leukocytes, while immunoreactivity for LFA-1, VCAM-1, ICAM-1 and fibronectin was unchanged from that for post-challenge day 2. The results indicate that the expression of the alpha v-bearing integrin and its ligand fibronectin drastically changes as pulmonary inflammatory responses. These changes in expression of adhesion molecules during immune response may play an important role in the dynamic regulation of VIP1R-positive macrophage migration in the lung parenchymal compartment.

Animals↗

Effects of morphological patterning on endothelial cell migration.

The migration of vascular endothelial cells (ECs) plays an important role in vascular remodeling. Here we studied the effects of cell morphology on the migration of bovine aortic ECs by culturing cells on micropatterned strips of collagen matrix (60-, 30-, and 15-microm wide). The spreading areas of the cells on 15- and 30-microm wide strips were 30% lower than those on 60-microm wide strips and unpatterned collagen. The cells on 15-microm wide strips completely aligned in the direction of the strip, and had significantly lower shape index than those in all other groups. On strips of all widths, ECs tended to migrate in the direction of strips. ECs on 15-microm wide strips had highest speed, particularly in the direction of the strip. Vinculin staining showed that the leading edge of ECs on 15-microm wide strips had focal adhesions that were oriented with their lamellipodial protrusion and the direction of cell migration; this arrangement of the focal adhesions may promote EC migration. The present study provides direct evidence on the role of cell morphology in EC migration, and will help us to understand the mechanisms of EC migration during angiogenesis and wound healing.

Animals↗

Spatial patterns of out-migration in Maharashtra: 1961-71.

In view of the importance of migration in Maharashtra state. India an attempt is made to identify the areas of out-migration, and to assess the probable causes for it. The analysis is confined to the decade 1961-1971 and based on secondary data, with the taluka as the unit of analysis. The total number of births and deaths in each taluka for the period of study was complied and enabled the natural increase of population to be computed. A comparison of this with the actual increase as indicated by the census made it possible to identify the areas of out-migration. The study revealed that the out-migration talukas were located in 3 areas and that the relative significance of out-migration varied. The analysis indicated that the causes of out-migration were probably unfavorable relief efforts, susceptibility to drought, closure of household industries, and the 'pull' effect of metropolitan centers like Bombay.

Asia↗

Do unloading periods affect migration characteristics of cemented femoral components? An in vitro evaluation with the Exeter stem.

Prosthetic migration has been identified as a marker for future revision of cemented total hip reconstructions. This could be tested at a pre-clinical stage with dynamic loading experiments. The purpose of this study was to assess the effects of resting periods, which are a considerable part of the daily activity cycle, on the migration characteristics of femoral cemented stems. Ten polished Exeter stems were implanted in composite femurs and loaded either with a continuous load or a discontinuous load. Continuous loading involved 345,600 loading cycles at 1 Hz, whereas the discontinuous loading involved loading at 1 Hz for 2.5 hours and a resting period of 21.5 hours for a period of four days. Hence, a total of 36,000 loading cycles were applied to these reconstructions. The subsidence patterns of the prostheses were considerably affected by the resting periods. The prostheses exhibited a step-wise migration pattern with migration steps of about 50 microns after every resting period, whereas the continuously loaded prostheses showed a more gradual migration pattern. The final subsidence of the specimens when loaded with resting periods was significantly less than the subsidence measured without resting periods. However, these specimens were loaded with fewer loading cycles. If this was taken into account, the discontinuously loaded specimens had a four fold higher average migration per loading cycle than the specimens that were loaded continuously. In conclusion, the resting periods had a considerable effect on the migration patterns, which should be realized when these stems are analyzed with pre-clinical tests.

Activities of Daily Living↗

Internal migration in Russia during the economic transition.

"A World Bank demographer analyzes patterns of migration among Russia's regions from shortly before the break-up of the Soviet Union and the onset of economic reforms through the first five years of independence. The analysis focuses on two large migration streams currently occurring in Russia--the return migration of Russians, as well as Russian speakers, to Russia from the other republics of the former Soviet Union and massive out-migration from the Russian North to the western and southern portions of the country. These migration streams are assessed in terms of both their impacts on current population numbers in Russia's regions and as a basis for projections of population change into the early 21st century."

Demography↗