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At least 19 recordsLinked to original sources

Migration, changing gender roles and stress: the Samoan case.

The impact of migration and social change on male and female role expectations is examined in an urban Samoan community. Expanding role expectations and role conflicts in the urban context are linked to differential experiences of stress by gender, which are in turn examined with respect to the health outcomes of arterial pressure, a measure of physical health status, and a psychosomatic complaint index.

Adult↗

Changes in the heritability components of anthropometric characters due to preselection and environment during migration.

Changes in the genetic and environmental components of the phenotypic variance of 20 morphological characters were studied in Mexican migrant and sedentary populations. As far as the changes in variance components and the average values of traits were concerned, it was found that some traits were subjected to different forms of selection pressure, some changed within the limits of the norm reaction, and some remained unchanged.

Adolescent↗

Fetal-adult phenotype transition, in terms of the serum dependency and growth factor requirements, of human skin fibroblast migration.

Since the migration of human fetal skin fibroblasts into a denuded area of a cell monolayer has been demonstrated to be serum-independent (fetal phenotype), whereas that of adult-donor skin fibroblasts is serum-dependent (adult phenotype), a study was carried out to determine at which life stage the fetal-adult phenotype transition, in terms of serum dependency of human skin fibroblast migration, occurs. The results demonstrated that this phenotype transition occurred before birth, and, therefore, the fetal skin fibroblast phenotype differed from those of infant-, child-, adult-, and elderly-donor skin fibroblasts. But, the fetal-, child-, and adult-donor skin fibroblast phenotypes did not change during in vitro aging. On the other hand, the growth factor requirement for human skin fibroblast migration changed similarly to the serum dependency for fibroblast migration: the signal for fibroblast migration changed from basic fibroblast growth factor for the fetal phenotype to platelet-derived growth factor for the adult phenotype.

Adult↗

Changing responsiveness to chemokines allows medullary plasmablasts to leave lymph nodes.

During T cell-dependent antibody responses lymph node B cells differentiate either to plasmablasts that grow in the medullary cords, or to blasts that proliferate in follicles forming germinal centers. Many plasmablasts differentiate to plasma cells locally, but some leave the medullary cords and migrate to downstream lymph nodes. To assess the basis for this migration, changes in the responsiveness of B cells to a range of chemokines have been studied as they differentiate. Naive B cells express high levels of CCR6, CCR7, CXCR4 and CXCR5. When activated B cells grow in follicles the expression of these chemokine receptors and the responsiveness to the respective chemokines is retained. During the extrafollicular response, plasmablast expression of CXCR5 and responsiveness to B-lymphocyte chemoattractant (CXCR5) as well as to secondary lymphoid tissue chemokine (CCR7) and stromal cell-derived factor (SDF)-1 (CXCR4) are lost while a weak response towards the CCR6 chemokine LARC is maintained. Despite losing responsiveness to SDF-1, extrafollicular plasmablasts still express high levels of CXCR4 on the cell surface. These results suggest that the combined loss of chemokine receptor expression and of chemokine responsiveness may be a necessary prerequisite for cells to migrate to the medullary cords and subsequently enter the efferent lymph.

Animals↗

Domain II of m-calpain is a Ca(2+)-dependent cysteine protease.

Calpain, a Ca(2+)-dependent cytosolic cysteine protease, proteolytically modulates specific substrates involved in Ca(2+)-mediated intracellular events, such as signal transduction, cell cycle, differentiation, and apoptosis. The 3D structure of m-calpain, in the absence of Ca(2+), revealed that the two subdomains (domains IIa and IIb) of the protease domain (II) have an 'open' conformation, probably due to interactions with other domains. Although the presence of an EF-hand structure was once predicted in the protease domain, no explicit Ca(2+)-binding structure was identified in the 3D structure. Therefore, it is predicted that if the protease domain is excised from the calpain molecule, it will have a Ca(2+)-independent protease activity. In this study, we have characterized a truncated human m-calpain that consists of only the protease domain. Unexpectedly, the proteolytic activity was Ca(2+)-dependent, very weak, and not effectively inhibited by calpastatin, a calpain inhibitor. Ca(2+)-dependent modification of the protease domain by the cysteine protease inhibitor, E-64c, was clearly observed as a SDS-PAGE migration change, indicating that the conformational changes of this domain are a result of Ca(2+) binding. These results suggest that the Ca(2+) binding to domain II, as well as to domains III, IV, and VI, is critical in the process of complete activation of calpain.

Calcium↗

ATP citrate-lyase and glycogen synthase kinase-3 beta in 3T3-L1 cells during differentiation into adipocytes.

ATP citrate-lyase (CL), acetyl-CoA carboxylase (ACC) and glycogen synthase kinase-3 beta (GSK-3 beta) levels were measured in cytosol from 3T3-L1 cells during differentiation from fibroblasts into fat-cells. Protein levels were estimated from immunoblots using specific antisera. Cytosol from confluent cells contain significant amounts of GSK-3 beta, which fell during differentiation of these cells into adipocytes. CL from confluent cells was found to be mostly in the form of a single protein band of apparent mass 110 kDa. Levels of CL and ACC increased during cell differentiation into adipocytes. During the first 3 days of differentiation, CL migration changed, and it was expressed as a complex of protein bands of apparent mass 110 kDa, 113 kDa and 115 kDa. At later stages of differentiation, when these cells had assumed the phenotype of fat-cells, they expressed CL mainly as protein bands of 110 and 113 kDa. When samples containing these bands were treated with alkaline phosphatase, the 113 kDa protein band collapsed into the 110 kDa species. This suggests that the slower-migrating species of CL is a higher-order phosphorylation state of the same protein. Furthermore, when purified CL, mostly expressed as the 110 kDa species, was phosphorylated with cyclic AMP-dependent protein kinase alone or together with GSK-3 and resolved by SDS/PAGE, the phosphorylated CL now migrated more slowly as the 113 kDa and 115 kDa forms. CL phosphorylation was hormone-regulated, since, in samples from fat-cells that had the complex two-band pattern, when cultured in medium without serum or hormones, CL migration reverted to a single band of 110 kDa, similar to confluent cells. Treatment of these 'down-regulated' cells with insulin rapidly induced substantial amounts of the 113 kDa species, with a concomitant decrease in the 110 kDa species.

3T3 Cells↗

An analysis of neural receptive field plasticity by point process adaptive filtering.

Neural receptive fields are plastic: with experience, neurons in many brain regions change their spiking responses to relevant stimuli. Analysis of receptive field plasticity from experimental measurements is crucial for understanding how neural systems adapt their representations of relevant biological information. Current analysis methods using histogram estimates of spike rate functions in nonoverlapping temporal windows do not track the evolution of receptive field plasticity on a fine time scale. Adaptive signal processing is an established engineering paradigm for estimating time-varying system parameters from experimental measurements. We present an adaptive filter algorithm for tracking neural receptive field plasticity based on point process models of spike train activity. We derive an instantaneous steepest descent algorithm by using as the criterion function the instantaneous log likelihood of a point process spike train model. We apply the point process adaptive filter algorithm in a study of spatial (place) receptive field properties of simulated and actual spike train data from rat CA1 hippocampal neurons. A stability analysis of the algorithm is sketched in the. The adaptive algorithm can update the place field parameter estimates on a millisecond time scale. It reliably tracked the migration, changes in scale, and changes in maximum firing rate characteristic of hippocampal place fields in a rat running on a linear track. Point process adaptive filtering offers an analytic method for studying the dynamics of neural receptive fields.

Adaptation, Physiological↗

Gap junction-mediated cell-cell communication modulates mouse neural crest migration.

Previous studies showed that conotruncal heart malformations can arise with the increase or decrease in alpha1 connexin function in neural crest cells. To elucidate the possible basis for the quantitative requirement for alpha1 connexin gap junctions in cardiac development, a neural crest outgrowth culture system was used to examine migration of neural crest cells derived from CMV43 transgenic embryos overexpressing alpha1 connexins, and from alpha1 connexin knockout (KO) mice and FC transgenic mice expressing a dominant-negative alpha1 connexin fusion protein. These studies showed that the migration rate of cardiac neural crest was increased in the CMV43 embryos, but decreased in the FC transgenic and alpha1 connexin KO embryos. Migration changes occurred in step with connexin gene or transgene dosage in the homozygous vs. hemizygous alpha1 connexin KO and CMV43 embryos, respectively. Dye coupling analysis in neural crest cells in the outgrowth cultures and also in the living embryos showed an elevation of gap junction communication in the CMV43 transgenic mice, while a reduction was observed in the FC transgenic and alpha1 connexin KO mice. Further analysis using oleamide to downregulate gap junction communication in nontransgenic outgrowth cultures showed that this independent method of reducing gap junction communication in cardiac crest cells also resulted in a reduction in the rate of crest migration. To determine the possible relevance of these findings to neural crest migration in vivo, a lacZ transgene was used to visualize the distribution of cardiac neural crest cells in the outflow tract. These studies showed more lacZ-positive cells in the outflow septum in the CMV43 transgenic mice, while a reduction was observed in the alpha1 connexin KO mice. Surprisingly, this was accompanied by cell proliferation changes, not in the cardiac neural crest cells, but in the myocardium- an elevation in the CMV43 mice vs. a reduction in the alpha1 connexin KO mice. The latter observation suggests that cardiac neural crest cells may have a role in modulating growth and development of non-neural crest- derived tissues. Overall, these findings suggest that gap junction communication mediated by alpha1 connexins plays an important role in cardiac neural crest migration. Furthermore, they indicate that cardiac neural crest perturbation is the likely underlying cause for heart defects in mice with the gain or loss of alpha1 connexin function.

Animals↗

An in vitro analogue of early chick limb bud outgrowth.

Our culture system appears to represent an in vitro analogue of early chick limb morphogenesis. Organized mesodermal cell accumulations resembling limb buds were derived from a monolayer of limb mesoderm cells when covered by limb ectoderm which included the apical ectodermal ridge (AER). The ridge retained its normal configuration when grown over a limb mesoderm monolayer and the mesoderm cells accumulated under the ridge to form a multilayered structure (10-25 cells in thickness) with the characteristic shape of a limb bud. Ectoderm which did not include the ridge failed to promote the formation of limb-like mesodermal accumulations thus the action of the ridge appears to be specific. The AER-elicited expression of mesodermal cell behaviour leading to early limb outgrowth is discussed in terms of possible morphogenetic mechanisms involved i.e. differential mitosis, cell migration, changes in cell shape and especially the adhesive properties of the cells.

Cell Division↗

Health promotion in the city: a review of current practice and future prospects in the United States.

To achieve its health goals, the United States must reduce the disproportionate burden of illness and poor health borne by urban populations. In the 20th century, patterns of immigration and migration, changes in the global economy, increases in income inequality, and more federal support for suburbanization have made it increasingly difficult for cities to protect the health of all residents. In the last 25 years, epidemics of human immunodeficiency virus infections and substance abuse and increases in homelessness, lack of health insurance, rates of violence, and concentrations of certain pollutants have also damaged the health of urban residents. Several common strategies for health promotion are described, and their relevance to the unique characteristics of urban populations is assessed. To identify ways to strengthen health promotion practices in U.S. cities, lessons have been taken from five related fields of endeavor: human rights, church- and faith-based social action, community economic development, youth development, and the new social movements. By integrating lessons from these areas into their practice, public health professionals can help to revitalize the historic mission of public health, contribute to creating healthier cities, and better achieve national health objectives.

Community Participation↗

Role of mitogen-activated protein kinases in pulmonary endothelial cells exposed to cyclic strain.

The aim of this study was to examine the role of mitogen-activated protein kinases (MAPKs) activation in bovine pulmonary arterial endothelial cells (EC) exposed to cyclic strain. EC were subjected to 10% average strain at 60 cycles/min. Cyclic strain induced activation of extracellular signal-regulated kinase (ERK; 1.5-fold), c-Jun NH(2)-terminal protein kinase (JNK; 1.9-fold), and p38 (1. 5-fold) with a peak at 30 min. To investigate the functional role of the activated MAPKs, we analyzed cells after treatment with PD-98059, a specific ERK kinase inhibitor, or SB-203580, a catalytic inhibitor for p38, and after transient transfection with JNK(K-R), and MEKK(K-M) the respective catalytically inactive mutants of JNK1 and MAPK kinase kinase-1. Cyclic strain increased activator protein-1 (AP-1) binding activity, which was blocked by PD-98059 and SB-203580. Activity of AP-1-dependent luciferase reporter driven by 12-O-tetradecanoyl-phorbol-13-acetate-responsive element (TRE) was induced by cyclic strain, and this was attenuated by PD-98059, MEKK(K-M), JNK(K-R), and SB-203580. PD-98059 and SB-203850 did not inhibit cell alignment and migration induced by cyclic strain. MEKK(K-M) and JNK(K-R) transfection did not block cyclic strain-induced cell alignment. In conclusion, cyclic strain activates ERK, JNK, and p38, and their activation plays a role in transcriptional activation of AP-1/TRE but not in cell alignment and migration changes in bovine pulmonary arterial EC.

Animals↗

Epidural spinal cord stimulation in the management of reflex sympathetic dystrophy.

Eighteen subjects with intractable pain due to reflex sympathetic dystrophy (RSD) underwent treatment by epidural spinal cord stimulation (SCS). All the patients had previously undergone multiple sympathetic blocks and/or surgical sympathectomy with either no results or only temporary therapeutic effects. Four subjects did not experience any beneficial effects during a 1-week trial and the electrode was removed, and 14 patients had the system internalized surgically. In 4 cases two separate systems (electrode + pulse generator) were implanted, in order to cover distant areas of the body involved by the disease (neck, shoulders, upper extremities, trunk and lower extremities). Follow-up varies from 4 to 14 months. In the implanted group, pain relief was absent in 3 patients, minimal in 1, moderate in 5 and good in 6. Pain relief was strictly limited to the body parts covered by the parasthesiae induced by SCS. In 3 patients, SCS produced visible changes in the swelling of the painful extremities. None of the patients was made neurologically worse. In 7 patients there were technical problems related to electrode breakage or migration, change in the pattern of paresthesiae and poor connection due to body fluid infiltration. All the problems were corrected surgically under local anesthesia. SCS has some value in the management of refractory RSD pain in selected cases. Because of the limited series and follow-up, its value in the comprehensive management of RSD requires further investigation.

Adolescent↗

Genital ridges exert long-range effects on mouse primordial germ cell numbers and direction of migration in culture.

The functional gametes of all vertebrates first arise in the early embryo as a migratory population of cells, the primordial germ cells (PGCs). These migrate to, and colonise, the genital ridges (GR) during the early organogenesis period, giving rise to the complete differentiating gonad. PGCs first become visible by alkaline phosphatase staining in the root of the developing allantois at 8.5 days post coitum (dpc). At 9.5 dpc they are found in the wall of the hind-gut and, during the following three days, they migrate along the hind-gut mesentery to the dorsal body wall, and then to the genital ridges. By 12.5 dpc, the great majority of PGCs have colonised the genital ridges. During this period the number of PGCs increases from less than 100 to approximately 4000. In a previous paper (Donovan et al. 1986), we showed that 10.5 dpc PGCs can be explanted from the hind-gut mesentery, and will spread and migrate on feeder cell layers. We showed also that the intrinsic ability of PGCs to spread and migrate changes as they colonise the genital ridges. In this paper, we examine extrinsic factors that control PGC behaviour in vitro. Using PGCs taken from 8.5 dpc embryos, at the beginning of their migratory phase, we show that culture medium conditioned by 10.5 dpc genital ridges causes an increase in the number of PGCs in these cultures. We also show that PGCs migrate towards 10.5 dpc genital ridges in preference to other explanted organs. These experiments show that genital ridges exert long-range effects on the migrating population of PGCs.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

The affinity of integrin alpha(4)beta(1) governs lymphocyte migration.

The interaction of integrin alpha(4)beta(1) with endothelial VCAM-1 controls the trafficking of lymphocytes from blood into peripheral tissues. Cells actively regulate the affinity of alpha(4)beta(1) for VCAM-1 (activation). To investigate the biological function of alpha(4)beta(1) activation, we isolated Jurkat T cell lines with defective alpha(4)beta(1) activation. Using these cells, we found that alpha(4)beta(1)-stimulated alpha(L)beta(2)-dependent cell migration was dramatically reduced in cells with defects in alpha(4)beta(1) activation. These cells required 20 times more VCAM-1 to promote alpha(L)beta(2)-dependent cell migration. This defect was at the level of alpha(4)beta(1) affinity as an activating alpha(4)beta(1) Ab rescued alpha(4)beta(1)-stimulated alpha(L)beta(2)-dependent migration. In contrast, migration of alpha(4)beta(1) activation-defective cells on VCAM-1 alone was enhanced at higher VCAM-1 densities. Thus, alpha(4)beta(1) activation determines a set point or threshold at which VCAM-1 can regulate alpha(L)beta(2)-dependent as well as alpha(4)beta(1)-dependent cell migration. Changes in this set point may specify preferred anatomical sites of integrin-dependent leukocyte emigration from the bloodstream.

Cell Adhesion↗

The changing role of the hospital in Europe: causes and consequences.

The United Kingdom, faced with a legacy of long-term under investment, has embarked on a major programme of hospital development. This raises many questions. What factors influence the work of the hospital? How can hospitals continue to adapt to changing circumstances? This paper draws on a recent study of the role of the hospital in Europe. It identifies major gaps in information about what hospitals do and how they are changing. International comparisons are especially difficult because of differences in definitions. The challenges that hospitals face can be categorised under three broad headings: the health needs of the population; opportunities and constraints they face in providing care; and the consequences of wider societal and economic factors that shape their environment. Health needs reflect the composition of the population (births, ageing, and migration), changes in risk factors, and changes in public expectations. Hospitals gain opportunities, but also face constraints as a result of changes in the workforce on which they draw and the technology that is available to them. They must also work within the constraints imposed by wider societal developments, such as the economy. Hospitals must also take account of their role as centres of teaching and research, as well as their responsibilities to the local community. Hospitals across Europe have changed considerably in the 1990s, with more people being admitted but staying for shorter periods. With the additional demands created by growing rates of day care and outpatients, hospitals are currently much busier places than in the past. There have also been considerable reconfigurations of hospitals in many countries. Some have been more successful in implementing change than others. Successful change is more likely where a whole system approach to health care is taken. Granting managerial autonomy to individual hospitals makes change less likely. Planning approaches are more successful than market-based ones. Change often requires construction of new facilities. The increasingly rapid pace of change in health care means that hospitals will have to adapt much more quickly than in the past. This will require a long-term programme of sustained and stable investment.

Europe↗

Secondary lymphoid-tissue chemokine (SLC) is chemotactic for mature dendritic cells.

Dendritic cells (DC) take up antigen from the periphery and migrate to the lymphoid organs where they present the processed antigens to T cells. The propensity of DC to migrate changes during DC maturation and is probably dependent on alterations in the expression of chemokine receptors on the surface of DC. Secondary lymphoid tissue chemokine (SLC), a recently discovered chemokine for naïve T cells, is primarily expressed in secondary lymphoid organs and may be important for colocalizing T cells with other cell types important for T-cell activation. We show here that SLC is a potent chemokine for mature DC but does not act on immature DC. SLC also induced calcium mobilization specifically in mature DC. SLC and Epstein-Barr virus-induced molecule 1 ligand chemokine completely cross-desensitized the calcium response of each other, indicating that they share similar signaling pathways in DC. The finding that SLC is a potent chemokine for DC as well as naïve T cells suggests that it plays a role in colocalizing these two cell types leading to cognate T-cell activation.

Cells, Cultured↗

[The worldwide challenges of "new" or reemerging communicable diseases at the dawn of the 21st century].

In the first part of this review, AIDS, prion diseases, Hantavirus and arbovirus infections, Ebola hemorrhagic fever, legionellosis, hepatitis C, enterotoxigenic Escherichia coli infections, Lyme disease, tuberculosis have provided alarming examples of emerging or reemerging infectious diseases. In this second part, the stress is placed on the reemergence of diphtheria and of serious streptococcal infections, on bartonelloses, Chlamydia infections, fungal infections, while malaria and cholera are still prevalent in several areas. The increasing resistance of too many pathogens to antimicrobial agents is a major source of concern, directly related to the challenge of nosocomial infections. An infectious cause has been demonstrated (or strongly suspected) for various diseases and the scope of infectiology keeps widening, while the threat of bioterrorism cannot be neglected. The causes of the emergence or reemergence of infectious diseases are multiple and diverse, often in direct relation with human activities (population migrations, changes in husbandry or farming practices, worldwide exchanges of goods and foods, inadequate uses of antibiotics) but also with climatic variations in several areas. The challenge represented by this unexpected comeback of infections to the forefront of human and animal pathology can only be met with a significant improvement of hygienic practices, cessation of certain dangerous behaviors and also, of course, with the development of novel antimicrobial molecules (acting on original targets) as well as of a whole series of new specific vaccines.

Anti-Bacterial Agents↗

Increased levels of junB and c-jun mRNAs in male germ cells following testicular cell dissociation. Maximal stimulation in prepuberal animals.

We have examined the relative transcript levels of the junB and c-jun proto-oncogenes during development of the mouse testis. junB and c-jun mRNA levels are low in total RNA from intact immature or mature testes. Dissociation of testicular cells, however, increases the levels of junB and c-jun mRNAs, with higher increases in the dissociated cells from testes of 8-day-old mice than from 17-day-old or sexually mature mice. These differences in junB and c-jun mRNA levels localize to specific cell types. In testes from 8-day-old mice, the mRNA levels for both proto-oncogenes are higher in type B spermatogonia and in the interstitial cell fraction than in type A spermatogonia. In testes of 17-day-old mice, the highest mRNA levels for both proto-oncogenes are seen in preleptotene spermatocytes and interstitial cells, with decreasing levels in leptotene/zygotene spermatocytes and prepuberal pachytene spermatocytes. junB and c-jun mRNAs are nearly undetectable in pachytene spermatocytes, round spermatids, and residual bodies/cytoplasts. The increased junB mRNA levels originate not only from the expected 2.1-kilobase transcript but from a more slowly migrating transcript of about 2.3 kilobases. RNase H analysis demonstrates that this migration change was due to an increase in mRNA polyadenylation. The low levels of junB and c-jun mRNAs in intact testes and the much higher levels in isolated cells from identical testes suggest that the disruption of cell-to-cell contact increases the amount of junB and c-jun transcripts in specific cells of the testis. Coupled with this increase, structural changes are seen with the junB mRNA.

Animals↗