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Development of lymphoid tissue in a marsupial, Setonix brachyurus (quokka).

The development of the lymphoid tissues in a macropod marsupial is described. The liver is the only functional haemopoietic tissue at birth. Large lymphocytes first appear in the cervical thymus at 2 days, and in the thoracic thymus at 4 days after birth. Small lymphocytes appear 1-2 days later. The histological development of the two glands is similar, but the thoracic thymus develops much more slowly than the cervical. The appearance of Hassall's corpuscles in both thymus glands correlates with the onset of humoral immune responses in this animal. Lymph nodes first appear as aggregates of lymphocytes around the lymphatic vessels at 5 days, differentiate into cortex and medulla at about 14 days, but do not develop germinal centres until about 90 days. Small lymphocytes are not observed in the spleen until the 2nd week, and reactive centres do not appear until after 90 days of pouch life. Peyer's patches are not found until 60 days of age. Large lymphocytes are seen in the bone marrow at 14 days, but small lymphocytes are not found until the 1st month. Although the sequence of lymphoid development is similar to that seen in other animals, the rapidly with which it becomes functional suggests that it is an adaptive response to early contact with environment pathogens.

Age Factors

Morphologic study of the action of lymphoid tissue extracts in peroxidase arthritis.

By means of modelling arthritis by horseradish peroxidase it was possible to reproduce a process corresponding to immune synovitis. A considerable reduction of immunomorphological phenomena in joints, lymphoid tissue, heart, liver and kidneys was favoured by application of lymphoid tissue extracts. Comparison between the extracts of spleen and lymph nodes showed a more pronounced effect of spleen extract.

Animals

Effect of seasonal variation on lymphoid tissues of the lizards, Mabuya quinquetaeniata Licht. and Uromastyx aegyptia Forsk.

The thymus in the lizards Mabuya quinquetaeniata and Uromastyx aegyptia is highly involuted in winter but exhibits in the other seasons a rich lymphoepithelial organization. The splenic white pulp is severely depleted in winter but is extensively developed in spring, summer and autumn. In these seasons, the splenic lymphoid tissue of Mabuya occurs in a continuous phase throughout the organ obscuring the red pulp, whereas in Uromastyx the white pulp remains localized as periarteriolar aggregates and the red pulp is always clearly delineated. In both lizard species, gut-associated lymphoid tissue is well represented, especially in the large intestines and in Mabuya it is almost similar in different seasons. In Uromastyx, in winter, lymphoid nodules are only found in the caecum and the colon, but during warm seasons, inumerable nodules are distributed throughout the gut. The findings are important for a clearer understanding of immunologic competence in reptiles.

Animals

Influence of dietary protein restriction on immune competence. II. Effect on lymphoid tissue.

Weanling mice fed a 4 percent diet showed a generalized loss of lymphoid tissue which was greater than the loss of total body weight. This effect was greatest in the thymus greater than spleen greater than mesenteric lymph node. Cell loss was most pronounced during the 1st week on diets, then remained at stable levels for 3 weeks and showed a gradual rise thereafter. The effect was shown to be mediated partly by a cessation of growth in lymphoid organs due to the low protein intake and, secondly, an adrenal corticosteroid induced lympholysis which actually reduced cell numbers. Recirculating T cells and resident B cells were amongst the least affected cells whereas stem cells, non-migratory T cells and other reticuloendothelial cells were most depressed in numbers. At no stage was the germinal centre forming capacity of the mesenteric node lost although cell recruitment to antigenically stimulated nodes was diminished. During nutritional repletion the spleen, thymus and mesenteric node all showed different and characteristic regrowth. The spleen was most active initially and rapidly reconstituted haemopoietic cells and B cells. This was followed by the thymus which showed a delayed reinitiation of its normal growth kinetics which had been interrupted by the diet. The evidence suggested that full rehabilitation of the immune apparatus took place even after 2 months of nutritional deprivation.

Adrenal Cortex Hormones

Prolonged effects of nitrogen mustard on mouse haematopoietic and lymphoid tissues.

Groups of mice have been autopsied at regular intervals during the period of lymphomyeloid tissue regeneration which follows the phase of hypocellularity induced by the i.v. injection of 100 mug (4 mg/kg bodyweight) nitrogen mustard. The marrow cellularity recovered to levels in the normal range by the 8th day and remained in this range up to the 40th day. Subsequently, the marrow showed a slight degree of hypocellularity up to day 120. Granulocytes were predominant during the initial phase of marrow regeneration during the second week post-injection. The thymus exhibited periodic size variations such that it was substantially larger than the thymus of age-matched controls from 20-30 d, 46-73 d, and 75-100 d after injection. The lymph nodes and lymphoid tissue of the spleen regenerated only slowly to reach control values by 40-50 d. Superimposed on the recovering lymphoid tissue of the spleen was a phase of erythroid hyperplasia lasting from 10-18 d post-injection. This coincided with a shift from granulocytosis to erythroid hyperplasia in the marrow. This erythroid hyperplasia lasted until day 30 when the cellular composition of the marrow and spleen returned to normal. A possible explanation of these results is that nitrogen mustard introduces a degree of synchrony into stem cell proliferation and differentiation. Additionally, these results emphasize the role of the haematopoietic microenvironment in the control of stem cell differentiation.

Animals

[Nuclease activity in leukemia altered lymphoid tissue].

Activities of DNAase I, DNAase II, RNAase I and RNAase II were altered in lymphoid tissue during development of lymphoid leukosis in mice of AKR strain, during survival of the leukemic cells as well as in leukemic spleen tissue of mice C57BI with transplantable leukosis La. The enzymatic activity correlated with the step of the process, the rate of leukemic cells proliferation, with dimensions of organs. Variations in the enzymatic activity, as compared with normal state were dissimilar in development of leukosis; activity of the enzymes was either increased or decreased apparently due to their multiple functions in metabolism of nucleic acids.

Animals

Postnatal development of bronchus-associated lymphoid tissue (BALT) in the rat, Rattus norvegicus.

The pattern of development of bronchus-associated lymphoid tissue (BALT) in specified-pathogen-free and conventional (non-barrier maintained) rats over the initial 4 weeks of life appeared to be similar. BALT first appeared around the 2nd week of life and increased in amount over the following 2 weeks. Overlying large nodules of BALT the bronchial epithelium becomes infiltrated by lymphocytes to form a lymphoepithelium. This transformation occurs earlier in conventional rats, possibly because of the differing antigen levels to which they are exposed.

Animals

Comparison of the effects of the growth factor produced by Spirometra mansonoides and growth hormone in diabetic-hypophysectomized rats: lymphoid tissue.

Growth and development of the thymus is dependent on secretions from the anterior pituitary, presumably growth hormone. Diabetes mellitus is known to reduce immunological competence. These studies compare the effects of bovine growth hormone (bGH) and the growth factor produced by plerocercoid larvae of the tapeworm, Spirometra mansonoides, on metabolism of lymphoid tissue, thymus and spleen, in hypophysectomized rats made diabetic with a single intraperitoneal injection of alloxan. Whereas the control diabetic-hypophysectomized rats gradually lost weight throughout the experimental period, both bGH and plerocercoid infection caused significant weight gains during the experimental period. The diabetic-hypophysectomized rats treated with bGH had significantly heavier thymuses and spleens than controls. Plerocercoid infection also caused significant increases in thymus weights. Both bGH and plerocercoids stimulated the metabolic activity of thymocytes isolated from treated rats and tested for their ability to incorporate 3H-thymidine into DNA in vitro. Thus, these growth factors have similar effects on the lymphoid tissue of diabetic-hypophysectomized rats which are apparently independent of normal insulin levels. Whether this anabolic effect is direct or mediated by somatomedin remains to be determined.

Animals

Bronchus-associated lymphoid tissue (BALT) in the laboratory-bred and wild rat, Rattus norvegicus.

In juvenile wild rats, bronchus-associated lymphoid tissue (BALT) development was similar to that seen in adult specified-pathogen-free rats. In adult wild rats the BALT was widespread. In one animal infected with a mycoplasma-like organism, a region of bronchoepithelium overlying a large BALT nodule was seen, through which lymphocytes appeared able to pass to make direct contact with the bronchial lumen: the significance of this observation is discussed. There was no evidence of infection in lungs from any of the specified-pathogen-free animals, where small foci of BALT were seen.

Animals

Estimation of B- and T-lymphocytes in lymphoid tissue by means of photometry and 51Cr labelled marker erythrocytes.

Some new techniques for estimating B- and T-lymphocytes in lymphoid tissue are introduced. The density of marker erythrocytes on closed chamber incubated sections was estimated by the light transmission in relation to the number of the respective lymphocyte subpopulation, measured on suspensions of eluted lymphocytes. Using 51Cr labelled marker erythrocytes, the number of adsorbed marker erythrocytes per lymphocyte could be estimated from the gamma-irradiation of the section. The number of lymphocytes in the section was determined by the amount of protein in the section compared with the protein amount of a tissue specimen of known wet weight and known lymphocyte content. Furthermore, the number of adsorbed marker erythrocytes per rosette in suspensions of eluted lymphocytes was estimated by means of radioactively labelled marker erythrocytes.

Appendicitis

Feline panleukopenia. III. Development of lesions in the lymphoid tissues.

Germfree and specific pathogen-free cats were inoculated with feline panleukopenia virus. Cats were necropsied 2 to 6 days after inoculation and tissues from the thymus, lymph nodes and spleen taken for histological and immunofluorescence studies. Necrosis of lymphoid cells in the thymic cortex began 3 days after inoculation and continued for 5 to 6 days after inoculation when the thymus was nearly depleted of lymphocytes. Immunofluorescence studies showed the lesions to be caused by virus. There was gross and histological involution of the thymus in both germfree and specific pathogen-free cats. The lymph nodes and spleen of uninoculated germfree cats looked "inactive" and lacked well developed lymphoid follicles and paracortical areas. In both germfree and specific pathogen-free cats there was necrosis in both follicular and paracortical areas of the lymph nodes and follicular and periarteriolar areas of the spleen 3 to 4 days after inoculation. Immunofluorescence showed these areas had virus infection. By 5 to 6 days after inoculation, these areas were populated by many lymphoblastoic cells. Even though significant destruction of lymphoid cells occurred, subsequently, in cats that develop mild clinical illness, these lymphoid tissues seemed stimulated rather than depleted of lymphocytes.

Animals

Small lymphocytes in peripheral lymphoid tissues of nude mice. Life-span and distribution.

The distribution of small lymphocytes according to life-span in the peripheral lymphoid tissues of the mouse mutant "nude" has been studied by means of auto-radiography and scintillation counting to evaluate the localization of B lymphocytes with varying life-span. The vast majority of the lymphocytes in this congenitally athymic mouse are relatively long-lived, although few cells live for 6 weeks or more. Differences in labelling percentages of blood, spleen and lymph node lymphocytes indicated a production of lymphocytes with a short residence time in the spleen. A similar production was not seen in the lymph nodes. While the lymphocytes in the spleen were evenly distributed according to life-span, the paracortical lymphocytes in lymph nodes were found to have a generally shorter life-span than those of the cortex, in opposition to findings in normal mice. The cortical cells which were by far the most numerous in the lymph nodes seemed to be more sessile than para-cortical lymphocytes. The life-span of these latter cells are comparable to those of thoracic duct lymphocytes, and the scarcity of cells in the paracortex reflects the small number of recirculating lymphocytes in nude mice.

Animals

Effect of daily injections of ACTH on growth and on the adrenal and lymphoid tissues of two strains of immature fowls.

1. The effects of daily injections of ACTH (30 IU/kg) or physiological saline on growth and on adrenal and lymphoid tissues of Rhode Island Red (RIR) and Light Sussex (LS) chickens were compared at 1, 2 and 3 weeks of age. 2. Saline injections retarded skeletal growth in both strains during the 1st week but only affected weight gain in LS birds. 3. Injections of ACTH depressed growth rate, caused adrenal enlargement and deplenished adrenal cholesterol to the same extent in both strains. 4. ACTH caused a greater reduction in bursal size in RIR than in LS birds. Spleen size was reduced by ACTH only in RIR birds. 5. At 2 and 3 weeks the plasma concentrations of corticosterone of RIR birds were greater than those of LS birds. Plasma corticosterone concentrations were within the normal range 24 h after the last injection of ACTH in both strains. 6. Plasma concentrations of growth hormone was unaffected by ACTH treatment in RIR birds, but it was increased in LS birds after 3 weeks of treatment.

Adrenal Glands

[Development of hematopietic and lymphoid tissues in conjoint bone marrow and thymus transplants].

The model of heterotopic transplantation of the mixture of bone marrow and thymus fragments was used to study the interaction of hemopoietic and lymphoid tissues under their direct contact. The bone marrow and thymus fragments of adult mice F1 (CBAXXC57BL) were transplanted separately or in the mixture under the kidney capsule of mice of the same strain. During the whole period of observation (from 10 days up to 14 months), the development of bone marrow and thymus fragments in the joint transplants proceeded independently, no "mixed" stroma appeared, and the stroma of each organ ensured the differentiation characteristic of its organ. The development of joint transplants somewhat differs from that of isolated transplants: on the 10th day a greater amount of hemopoietic tissues was noted in the former; the bone marrow component increases continuously up to 6 months (vs. 1--2 months in the isolated transplants); the bone and hemopoietic tissues predominate in the joint transplants by 14 months, the amount of thymic tissue markedly decreases but it does not disappear completely.

Animals

[Lymphoid tissue and the body's non-specific resistance].

In experiments on rats and mice the author and his pupils showed that nonspecific effect of stimulators brought about in the first hours following the exposure migration of cells from the lymphoid organs, increase in the number of lymphoid cells in the bone marrow by 40-60%, appearance in the bone marrow of T-cells, and increase in the number of hemopoietic cells (CFU). This contributed to the activation of hemopoiesis and to development of transient hyperplasia of the bone marrow to the stage of elevated resistance of the organism. It was shown that transplantation of T-cells performed in the first hours after the sublethal irradiation hastened regeneration of hemopoiesis. All the data indicated above testify to the role of the lymphoid tissue in nonspecific resistance of the organism.

Animals

Distribution of Ia-antigen-like molecules on non-lymphoid tissues.

Ia-antigen-like molecules are expressed on cells within several different non-lymphoid tissues of the guinea-pig. In indirect immunofluorescence analyses anti-Ia-antigen antibodies stained epithelial cells lining the intestinal tract, the bile ducts, the respiratory tract and the urinary tract. The rabbit antibodies against Ia antigens also stained the cells of the parotid and the submandibular glands. Evidence was also obtained suggesting that the reticuloepithelial cells of the thymus, like the Kupffer cells of the liver, express Ia-antigen-like molecules. In several cases indirect immunoprecipitation analyses and SDS-polyacrylamide gel electrophoresis confirmed the immunofluorescence studies inasmuch as Ia-antigen-like subunits with apparent molecular weights of 26,000 and 34,000 could be isolated from the non-lymphoid organs.

Animals

Effects of cyclophosphamide on the lymphoid tissues and humoral and cellular immune responsiveness of young calves.

Cyclophosphamide (CY) was given IV to 5-month-old calves (ten doses; each dose of 5.0 mg/kg, 2-day intervals between doses). The effects of CY on circulating leukocytes, lymphoid tissues, and the humoral and cellular immune responses were assessed. The numbers of total leukocytes, lymphocytes, and neutrophils and platelets decreased significantly. The lymphocyte population was depleted in the cortex of the thymus and B-dependent areas of the spleen and lymph nodes. Significant decreases occurred in the frequency of the peripheral blood lymphocytes-bearing surface immunoglobulin (Ig) and in serum IgM and IgG concentrations. Primary serum antibody responses to avian erythrocytes and Brucella abortus strain 19 antigens were diminished or delayed. The blastogenic responses of peripheral blood lymphocytes to phytohemagglutinin P, concanavalin A, pokeweed mitogen, and to purified protein derivative and B abortus antigens were enhanced as was the delayed hypersensitivity reaction to the tuberculin skin test. While a diminished humoral immune response was associated with CY treatment, the cell-mediated response was potentiated. The effect of CY was transitory with most variables returning to near base line within 24 days after CY was ceased.

Animals

[Immunoblasts. Morphology and significance in reactive and proliferative syndromes of lymphoid tissues].

The term immunoblast created by Dameshek, is useful in routine cytological and histopathological practice, for the diagnosis of lymphadenites and malignant blood diseases. This term designates a group of cells, the appearance of which is quite different from other cells of the lymphoid tissue. Their morphological characteristics are precise and they resemble transformed lymphocytes. These immunoblasts are derived from T and B lymphocytes. Using purely morphological methods the type B of certain immunoblasts may be suggested. Immunoblasts of the clear centers of follicles, immunoblasts undergoing plasma cell transformation, tumour cells constituting nodular immunoblastosarcomas, immunoblasts appearing in the tumor population of the myelomas and of Waldenström's macroglobulinaemia. The term immunoblast which evokes precise morphological criteria, should be maintained. This term cannot designate only B lymphocytes, but also transformed lymphocytes of type B or T.

B-Lymphocytes