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[Problems concerning the etiopathogenesis of bronchopulmonary suppurations].

The data supplied by analysis of more than 1 000 patients pointed to the wide range of the causal factors, the role of focal infections of the upper respiratory and digestive tracts and the mechanisms that interfere in the determinism of the bronchopulmonary suppurative syndrome, the septic particles migrating as a rule along the bronchogenic route.

Adult

The route of entry of leptospires into the kidney tubule.

To study the migration of Leptospira interrogans serotype pomona through the kidney, conventionally-reared mice aged 2 or 3 weeks were infected intraperitoneally with this organism. Within the first 4 days, the organisms migrated from the capillary lumina to the interstitial tissue and provoked an interstitial oedema. By the 10th day they were seen between the epithelial cells of the proximal convoluted tubules and by the 14th day many were located within tubular lumina. There was no evidence of viable leptospires within the cells of the proximal tubules, though occasionally structures resembling leptospiral fragments inside lysosomes were observed. At no stage during the study were glomerular lesions seen.

Animals

Further evidence for dissipative energy migration via triplet states in photosynthesis. The protective mechanism of carotenoids in Rhodopseudomonas spheroides chromatophores.

The protection action of carotenoids against irreversible photodestruction was discovered in photosynthetic bacteria by Stanieda and coworkers. In green plant material it was found by Wolff and Witt (1969) Z. Naturforsch, 24b, 1031-1037 and (1972) Proc. 2nd. Int. Congr. Photosynthesis Res. Stresa (Forti, G., Avron, M. and Melandri, A., eds.), Vol. 2, pp. 931-936, Dr. W. Junk, N. V. Publ. The Hague) that the formation of special carotenoid triplet states (via very rapid energy transfer from excited chlorophylls) and their fast radiationless decay in tau1/2 approximately 3 microns is at least one mechanism for the protective action of carotenoids to irreversible photooxidation of the chlorophylls. Hence, it is anticipated that the same mechanism might be realized also in bacteria. The present study gives evidence for such a "triplet valve" to be established also in bacteria. This conclusion was derived from the following observations: 1. The light-induced difference spectrum shows a bleaching of a carotenoid at three characteristic wavelength between 400 and 500 nm. A positive peak around 533 nm indicates the formation of a carotenoid triplet state. 2. The absorption changes can be induced by red light which excites only bacteriochlorophyll. This indicates an energy transfer from bacteriochlorophyll to carotenoids. 3. The light-induced carotenoid triplets decay radiationless in 3 microns in air-saturated aqueous suspensions of the chromatophores. 4. The carotenoid triplet formation occurs only at actinic flash intensities where the photosynthesis becomes saturated. 5. Addition of dithionite, which blocks photosynthesis, markedly increases the extent of carotenoid triplet formation. The different types of exciton migration within the photosynthetic unit are discussed, especially the routes leading to the dissipation of excess excitation energy.

Bacterial Chromatophores

The effect of the suckling stimulus on the migration of Strongyloides ratti in lactating rats.

The number of adult Strongyloides ratti which developed in the guts of lactating rats after subcutaneous injection of 4000 L3 on day 18--20 post partum was taken to be a measure of the relative importance of alternative larval routes. When injection was carried out at different times before and after weaning, larvae were diverted from a route bypassing the gut in nursing mothers to one leading to the gut ("migration reversal") in mothers without young in a period of less than 10 h. Migration reversal was mostly completed in lactating females injected at the time of weaning when compared with nulliparous controls. A stimulus-sensitive period shortly after injection, predicted from these dynamics, was demonstrated. Worms injected into lactating females 10 h after removal from their pups showed complete migration reversal. In similarly treated rats, given 1 h suckling 3 h after injection, migration reversal was practically abolished. These inter-relationships, in conjunction with earlier findings, are used to deduce the possible humoral mechanisms involved and to develop a working hypothesis to account for larval orientation based on features of the mammalian pulmonary microvasculature.

Animals

Serial founder effects and genetic differentiation during worldwide range expansion of monarch butterflies.

Range expansions can result in founder effects, increasing genetic differentiation between expanding populations and reducing genetic diversity along the expansion front. However, few studies have addressed these effects in long-distance migratory species, for which high dispersal ability might counter the effects of genetic drift. Monarchs (Danaus plexippus) are best known for undertaking a long-distance annual migration in North America, but have also dispersed around the world to form populations that do not migrate or travel only short distances. Here, we used microsatellite markers to assess genetic differentiation among 18 monarch populations and to determine worldwide colonization routes. Our results indicate that North American monarch populations connected by land show limited differentiation, probably because of the monarch's ability to migrate long distances. Conversely, we found high genetic differentiation between populations separated by large bodies of water. Moreover, we show evidence for serial founder effects across the Pacific, suggesting stepwise dispersal from a North American origin. These findings demonstrate that genetic drift played a major role in shaping allele frequencies and created genetic differentiation among newly formed populations. Thus, range expansion can give rise to genetic differentiation and declines in genetic diversity, even in highly mobile species.

Animal Distribution

Immune response of the intestinal mucosa to cholera toxoid.

The intestinal immune response to cholera toxoid was studied in dogs and rats. Oral or intraperitoneal priming followed by duodenal boosting with toxoid reulted in antitoxin-containing plasma cells (ACC) in jejunal lamina propria of rats. Priming and boosting by the intraperitoneal route alone induced almost no jejunal response. Lamina propria ACC were derived largely from migrating immunoblasts, which appeared earlier among thoracic duct lymphocytes. Protection of dogs after repeated subcutaneous immunization with toxoid was mediated largely, or entirely, by serum-derived antibody. The sequence of subcutaneous priming and repeated oral boosting induced longer lasting protection mediated almost entirely by the local intestinal immune mechanism. The results suggest that cholera immunization should be specifically designed to stimulate the intestinal immune mechanism and that the subcutaneous oral immunizing sequence may be an efficient way to do this.

Administration, Oral

Migration and turnover of entero-endocrine and caveolated cells in the epithelium of the descending colon, as shown by radioautography after continuous infusion of 3H-thymidine into mice.

Adult male mice were given a continuous infusion of about 0.5 muCi of 3H-thymidine per gram body weight per day for periods varying from 1 to 60 days. Semithin sections of descending colon were cut from/plastic-embedded blocks and stained by a method combining silver impregnation and iron hematoxylin, by which argentaffin entero-endocrine cells and caveolated cells could be identified. From radioautographs, the labeling index of these cells was determined. One to three days after the beginning of 3H-thymidine infusion, label is observed in some of the stained entero-endocrine cells in the bottom of the crypts; the apices of these cells reach the crypt lumen and are joined to neighboring cells by terminal bars (junctional complexes). After five to seven days, labeled entero-endocrine cells are seen on the sides of the crypts, where their base stretches along the basement membrane and their apex has lost its terminal bar connections to neighboring cells. Finally, by 13 and 24 days, labeled cells are observed within the epithelium at the mucosal surface. The turnover time, which is taken to be equal to the mean time required for migration from site of origin to site of loss on the mucosal surface, has been estimated at 23.3 days. This is much longer than the 4.6 days required by the two main cell types of the epithelium -- vacuolated-columnar and mucous cells -- to travel the same route. It is likely that, after entero-endocrine cells lose their terminal bar attachment to other epithelial cells, they migrate independently and very slowly. Labeled caveolated cells are first seen in the crypt bottom one day after the beginning of 3H-thymidine infusion. By three to five days, they are on the sides of the crypts; their base is stretched along the basement membrane, but their apex retains its attachment to neighboring cells by terminal bars. By seven days, labeled caveolated cells are on the mucosal surface. Their turnover time has been assessed at 8.2 days. This is, again, longer than for the two main types to which they are bound by terminal bars throughout migration. The discrepancy is explained by the caveolated cells arising deeper in the crypts than most vacuolated-columnar and mucous cells.

Animals

Suppression of cell-mediated immunity after infection with attenuated rubella virus.

The effects of attenuated rubella virus infection upon cell-mediated immunity of human volunteers were studied. The volunteers received the vaccine either by nose drops or by the subcutaneous route. Changes in cell-mediated immunity in terms of delayed cutaneous sensitivity to recall antigens, phytohemagglutination stimulation, and spontaneous migration inhibitory factor-like activity were studied at various time periods after infection. Spontaneous migration inhibitory factor-like activity was studied on supernatants of the lymphocytes obtained from the volunteers and incubated for 72 h in the absence of any antigens. A significant proportion of the volunteers showed suppression of one or more parameters of cell-medicated immunity tested by week 2 of infection compared to the control; however, there was no correlation between suppression of the various parameters studied. No difference was noticed in the incidence of cell-mediated immunity suppression between nose drops and subcutaneous route groups.

Adult

Genomic reconstruction of the Pakistani Roma reveals dual South Asian ancestry, medieval bottlenecks, and the early dispersal routes of the Romani people.

The Roma people represent one of the largest and most historically enigmatic diasporas in Eurasia, illuminating human migration patterns and cultural resilience across continents. Despite extensive research on European Roma as the diaspora endpoint, the genetic legacy of their putative South Asian source populations remains critically underexplored, leaving fundamental gaps in understanding the pre-diaspora demographic structure and early dispersal dynamics. This study uniquely positions Pakistani Roma as a potential ancestral reservoir, offering a rare window into the pre-migration phase distinct from derived European Roma populations shaped by centuries of post-dispersal admixture. We analyze 82 Pakistani Roma from Punjab using high-resolution genome-wide SNP data and comprehensive mitochondrial haplogroup profiling to reconstruct their genetic origins, population structure, and historical trajectory. Analyses reveal a dual ancestry profile comprising 50-82% Indus Valley related, 20-30% Onge related, and up to 26% Steppe derived components, with three distinct subgroups exhibiting varying affinities along a South Asian to Central Western Eurasian continuum reflecting jati-like endogamy. A severe demographic bottleneck ~800 years ago coincides with medieval socio-political upheavals, while major Eurasian admixture is dated to ~660 years ago. Mitochondrial haplogroups H (45.12%) and M (26.83%) underscore dual maternal influences from West and South Eurasia. Pakistani Roma retain substantially higher South Asian ancestry than their European counterparts, establishing them as a genetically distinct population preserving the ancestral pre-diaspora state. These findings redefine the Romani origin narrative and underscore the critical value of understudied South Asian minorities in reconstructing complex human migration pathways and diaspora formation mechanisms.

Humans

Possible initiation of viral encephalomyelitis in dogs by migrating lymphocytes infected with distemper virus.

The principal pathways by which viruses spread to the central nervous system (C.N.S.) are considered to be direct invasion along peripheral nerves or the haematogenous route. The latter is thought to involve passive transfer or active replication of virus in C.N.S. endothelial cells. In this study histological evidence of mild perivascular encephalomyelitis was found 8-10 days after infection of dogs with canine distemper virus (C.D.V.). C.D.V. antigen and viral nucleocapsids were detectable in the mononuclear cells infiltrating nervous tissue and C.D.V. was isolated from lymphoid tissue and buffy-coat cells. C.N.S. infection may thus be initiated by migrating virus-infected lymphocytes and this pathway may operate in other viral disorders of the C.N.S.

Animals

Salmonella enteritidis infection in rats: antigens involved in cell-mediated immunity.

When rats are sub-lethally infected with S. entertidis by the intravenous route, there is a period of at least 14 days in which peritoneal exudate cells are unable to migrate from capillary tubes on to glass surfaces; thereafter they migrate as do macrophages from normal animals. The migration of peritoneal cells from rats infected 18-21 days previously is inhibited by lipopolysaccharide (LPS) prepared from homologous and heterologous strains of Salmonella. The apparent non-specificity of LPS activity in the macrophage migration inhibition test has been resolved by demonstrating that lipid A, containing less than 0.01% protein amino acids, is also capable of eliciting this test of cell-mediated immunity.

Animals

Bronchopulmonary cellular response to aluminum and zirconium salts.

The bronchopulmonary cellular immunological response to repeated intratracheal inoculation of aluminum chlorhydrate, sodium zirconium lactate, and zirconium aluminum glycine was examined in rabbits. Results of a dose-response experiment using 0.1, 1.0, and 10.0-mg intratracheal inoculations of each metallic salt demonstrated significant bronchopulmonary histopathology in the 10.0-mg dose-response groups only. Acute lesions were histologically characterized by an inflammatory response centered around respiratory bronchioles. Although epithelioid cell formation was evident in 10.0 mg of aluminum salt (aluminum chlorhydrate and zirconium aluminum glycine) -injected animals, no well-defined granulomas characterized by an orderly arrangement of epithelioid cells, lymphocytes, and giant cells were evident in any of the experimental groups employed. All three metallic salts induced "activated" bronchopulmonary macrophages as determined by an in vitro phagocytic assay. This activation was likely nonimmunological since no measurable differences were observed in metallic salt-induced delayed skin reactivity or migration inhibition factor production between inoculated and uninoculated rabbits. The above observations suggest that aluminum and zirconium salts administered in comparatively high dosage via the respiratory tract route can induce respiratory bronchiolitis and activation of alveolar macrophages in the absence of demonstrable delayed hypersensitivity.

Aluminum

[Posterior (retrovascular) mediastinocervical goiters].

Three cases are presented of endo-thoracic goiters with posterior, retro-vascular developement, a very rare variety of the mediastino-cervical goiter. The anatomic pathways are described, along which this variety of goiter can migrate inside the thorax, as well as the radiologic signs which allow to make a diagnosis. In view of making a choice of the access route the importance of the diagnosis is particularly stressed, before surgery is attempted. It is also demonstrated that the best route is the vertical cervicosternotomy of the partial type (the Welti technique), completed by antero-lateral thoracotomy in the III-rd right intercostal space.

Adult

Host defence mechanisms against dengue virus infection of mice.

Serum obtained from mice 3 to 5 weeks after the third i.p. dose of dengue type 2 virus (DV) protected recipient mice against intracerebral challenge with DV, whereas the serum obtained after 1 and 2 weeks provided minimum protection. Adoptive intravenous transfer of immune spleen cells obtained from mice 1 to 5 weeks after immunization did not protect recipient mice against even a small dose (10 LD50) of DV. Depletion of T-cells by treatment of mice with anti-thymocyte serum did not potentiate DV infection. Development of a cell-mediated immune response (CMI) against DV was noted only at two periods by the leucocyte migration inhibition test (LMI), with borderline values of 20 and 21%. Dengue virus did not cause illness or death in mice when given by i.p. or i.v. routes and this was not affected by pre-treatment of mice with silica to damage local macrophages. It is concluded that humoral antibody plays a critical role in recovery from primary dengue virus infection of mice whereas CMI and macrophages appear to have no protective role.

Animals

Cutaneous T-cell lymphomas: clues of a skin-thymus interaction.

The common cellular denominator of the neoplastic lymphocytes of the cutaneous lymphomas is the presence of membrane markers of T-cell identity. For this reason these disorders are grouped together as "cutaneous T cell lymphomas". These neoplastic T-cells have a characteristic tissue distribution (preferentially infiltrating the skin and sparing the bone marrow). The abnormal T-cells of the leukemic phase of these disorders produce large amounts of macrophage migration inhibitory factor, which may adversely affect macrophage mobilization, and also stimulate differentiation of B-cells into plasma cells. The antigenic properties, the usual slow rate of replication, and the circulatory route of these cells may be exploitable in the development of more specific therapeutic approaches to the management of affected patients. Although these T-cells have an affinity for the skin, the role of this organ in the proliferation and differentiation of these cells is as yet not established. Localization of the primary site(s) of proliferation awaits completion of in vivo kinetic studies. The neoplastic T-cells from such patients provide important cellular reagents for the study of diverse aspects of lymphocyte biology. They have already been used to investigate mechanisms of lymphocyte triggering, isolate histocompatibility antigens, and characterize anti-T-cell immunoglobulin from patients with systemic lupus erythematosus.

Humans

Double-ended pigtail ureteral stent: useful modification to single end ureteral stent.

A newly created ureteral stenting catheter of double-ended pigtail design is introduced. The pigtail design at both ends maintains the catheter in place by serving as a solid anchoring device, both intravesically and within the renal pelvis; upward or downward migration of the stent is thus prevented. It is designed also to minimize trigonal irritation. The catheter can be introduced easily either cystoendoscopically or through a percutaneous antegrade route, or by a combination of both methods. It offers the additional advantage of being readily available from an inexpensive stock source; it may be quickly and easily custom made and shaped for any ureter by the physician immediately prior to its insertion. It thus avoids having to have premanufactured, more expensive ureteral stents of different lengths. Open surgery for upper urinary tract decompression can thus be avoided.

Aged

Immunity to foot-and-mouth disease virus in guinea pigs: clinical and immune responses.

Clinical and immune responses were determined for guinea pigs infected with different doses of foot-and-mouth disease virus (FMDV) type A12, strain 119, administered by different routes. Vesicles developed on the tongue or heel pad 1 day after these areas were intradermally inoculated with FMDV. However, vesicles did not develop on the feet and tongue until 3 to 4 days after the intradermal inoculation of FMDV in the flank skin or after intracardiac or subcutaneous inoculation. Infected guinea pigs developed neutralizing antibody, immediate skin reactivity of the Arthus type (4 h), and delayed skin reactivity. In addition to a delayed skin response, the presence of a cell-mediated immune response to FMDV was shown by the specific production of macrophage migration inhibition factor by peritoneal exudate cells in response to FMDV. Kinetic studies showed that neutralizing antibodies were detected at 3 days postinfection, and Arthus and delayed skin reactivity were detected at 4 days postinfection. Some guinea pigs developed either mild or subclinical infections. Regardless of the dose of infectious virus, the route of inoculation, the severity of disease, or the time of clinical onset of disease, infected guinea pigs developed similar immune responses.

Animals