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Biomedical subjects

K Hirokawa

Publications and source records attributed to K Hirokawa.

At least 19 recordsLinked to original sources

Medullary but not cortical thymic epithelial cells present soluble antigens to helper T cells.

Thymic epithelial cell lines (TECs) were established from newborn C57BL/6 mice. They were classified into two types (medullary and cortical TECs) by using the monoclonal antibody (Th-3) that recognizes the meshwork structure of thymic cortical epithelial cells. Antigen-presenting activity of each TEC was determined by using ovalbumin-specific, I-Ab-restricted helper T cell lines. It was demonstrated that the medullary but not the cortical TECs functioned as antigen-presenting cells. This is the first evidence for the functional difference between the cortical and the medullary TEC.

Animals

An immunohistologic study of the epithelial components of 81 cases of thymoma.

Eighty-one cases of thymoma were studied immunohistologically with the use of three mouse monoclonal antibodies: one was specific for subcapsular-cortical, one for intra-cortical, and one for medullary epithelial cells. Twenty-eight (60.9%) of 46 polygonal cell thymomas were of the cortical type and 1 (2.2%) was of the medullary type. Ten (55.6%) of 18 spindle cell thymomas and 7 (41.2%) of 17 mixed cell thymomas were of the medullary type, and 1 (5.6%) of 18 spindle cell thymomas was of the cortical type. Fourteen (17.3%) of 81 thymomas were composed of epithelial cells that were triple positive immunologically; although these are unusual, they also may be present in the normal thymus. Based on these findings, triple-positive epithelium in the normal thymus consists of common stem cells that can differentiate into subcapsular-cortical, intra-cortical, and medullary epithelium; these cells may be the target cells for tumorigenesis. Epithelium in polygonal cell thymoma tends to differentiate into cortical epithelium, whereas epithelium in spindle and mixed cell thymomas differentiates into medullary epithelium.

Adult

Differential age-change in the numbers of CD4+CD45RA+ and CD4+CD29+ T cell subsets in human peripheral blood.

Peripheral blood mononuclear cells were obtained from people ranging in age from newborn to 102 years old and analyzed by dual color flow cytometer in terms of number and percentage of various subsets of T cells, B cells and natural killer cells (CD3, 4, 5, 8, 11b, 19, 20, 21, 25, 29, 45RA and 56). Numbers of T cells (CD3+ or CD5+ cells) significantly declined at the 3rd decade as compared with those of younger people, stayed at a relatively constant level between the 3rd and the 7th decade and gradually declined thereafter. In T cell subsets, both CD4 and CD8 positive positive cells decreased with age, but a decrease was more pronounced in the latter, showing an age-related increase of CD4/CD8 ratio. The most interesting finding was a contrasting age-change in two subsets of CD4+ T cells; i.e. a subset of suppressor inducer T cells (CD4+CD45RA+ naive cells) decreased with age, while a subset of helper inducer T cells (CD4+CD29+ memory cells) increased with age. CD20+ B cells also decreased with age in a manner similar to that observed in T cells. Natural killer cells (CD56) showed an increase in numbers with age. The relationship between these changes in various subsets of peripheral blood leukocytes and the age-related decline in immune functions has been discussed.

Adolescent

Aging and immunity.

The function of the immune system peaks at around puberty and gradually declines thereafter with advance in age. The age-related decline of immunological function primarily occurs in the T cell-dependent immune system and is generally associated with increase in susceptibility to infections as well as in incidence of autoimmune phenomena in the elderly. The age-related change in T cell-dependent immune functions can be ascribed to the physiological thymic atrophy which starts in an early stage of life. Emigration of T cells from the thymus to the periphery mainly takes place in the late fetal and newborn stage, and dramatically declines after puberty. In other words, the thymic capacity to promote T cell differentiation starts to change in the early stage of life in terms of quantity and quality of T cells. Thus, the composition of T cell-subsets in the periphery gradually changes with age, resulting in the alteration of T cell functions in the elderly. The restoration of immunological functions of the aged individuals is possible and might be beneficial for them to cope with various diseases associated with aging. Physiological thymic atrophy is controlled by both extrathymic and intrathymic factors, and is not a totally irreversible process. The process of thymic atrophy might be explained by further understanding of the relationship between the neuroendocrine and the immune systems.

Aging

[Function, molecular structure and gene expression regulation of LD78].

LD78 is a member of a new cytokine superfamily, consisting of at least twelve small proteins, which are involved in inflammation and cell growth. Depending on their primary structure, these cytokines can be divided into two families, one of which contains LD78 and is known as the CC family. The protein and gene structures and the physiological functions of LD78 in comparison with the other CC family members are summarized here. Furthermore, the generation mechanism of the three LD78 genes and their expression are discussed.

Amino Acid Sequence

Ontogeny and development of extrathymic T cells in mouse liver.

We previously demonstrated that the liver may be a major site of extrathymic T-cell differentiation in mice. In the present study, the ontogeny and subsequent development of such T cells in the liver and other organs were investigated. This study was possible because these T cells have T-cell receptors (TcR) of intermediate intensity (i.e. intermediate TcR cells) and constitutively express a high level of interleukin-2 receptor beta chain (IL-2R beta). Therefore the two-colour staining for CD3 (or alpha beta TcR) and IL-2R beta identifies even a small proportion of intermediate TcR cells. The total numbers of mononuclear cells obtained from the liver, thymus and spleen varied from foetal to adult life. Especially in the liver, many haematopoietic cells were present in the parenchymal space at the foetal stage. There were no lymphocytes in the sinusoidal lumen at this period. In contrast, lymphocytes appeared in the hepatic sinusoids after birth and increased with ageing. Phenotypic analysis revealed that intermediate TcR cells appeared in the liver and spleen on Day 4 after birth. Bright TcR cells of thymic origin were also present in the peripheral organs on Day 4. Thereafter, intermediate TcR cells increased in the liver, whereas bright TcR cells increased in the periphery as a function of age. Similarly, thymectomized and congenitally athymic mice had mainly intermediate TcR cells in the liver and, to some extent, periphery. It is concluded that intermediate TcR cells, possibly of extrathymic origin, are generated only after birth and expand with ageing.

Aging

Production of a monoclonal antibody strongly reacting with immature thymic T lymphocytes and its immunohistological application.

A monoclonal antibody Th-5 has been produced against mouse immature thymic lymphocytes and employed to study the process of T cell differentiation in the thymus. Immunohistologically, Th-5 positive thymic T lymphocytes were first found at Day 12 of gestation. They increased in number as well as staining intensity until Day 18 of gestation and decreased thereafter. Th-5 antigen expression was not seen in lymphoid cells in the fetal liver. In the newborn thymus, lymphocytes in the subcapsular layer were still strongly positive, while other cortical lymphocytes became moderately positive for Th-5. Th-5 positiveness was more pronounced in the medulla than in the cortex in the thymus of young adult mice. The staining pattern of Th-5 in the thymus was apparently different from those with other T cell markers (Thy-1, CD3, CD4, CD5, CD8) including J11d, Pgp-1, IL-2R, and 3A10 (TCR gamma delta). Flow cytometric analyses showed that the expression of Th-5 was mostly associated with the Thy-1 antigen. However, the fluorescent intensity of Th-5 gradually declined with ontogenic development of the thymus, and the molecular size of the antigen was approximately 100 kDa, which is different from Thy-1 antigen (25-30 kDa). Considering these findings, the strong expression of Th-5 could be one of the markers of immature thymic T lymphocytes in the early phase of the ontogenic development.

Animals

Up-regulation of thrombomodulin by activation of histamine H1-receptors in human umbilical-vein endothelial cells in vitro.

Previous reports demonstrated that the expression of thrombomodulin (TM) in endothelial cells was modulated by various agents. Although TM was down-regulated by endotoxin or cytokines, up-regulation of TM was accomplished when endothelial cells were stimulated with unphysiologically high concentrations of cyclic AMP derivatives or tumour-promoting phorbol esters. We investigated the expression of TM in human umbilical-vein endothelial cells (HUVECs) by physiological substances that can be released into the bloodstream. Histamine (0.1-10 microM, 1-48 h) increased TM activity, TM antigen in cell lysates and TM mRNA levels, but 5-hydroxytryptamine and bradykinin had no effect. Enhancement of TM activity by histamine was completely blocked by the H1-selective antagonist pyrilamine, whereas the H2-antagonist cimetidine had no effect, showing that histamine up-regulates TM activity via H1-receptors on HUVECs. Enhanced TM activity by histamine and the resultant increase in protein C activation might play a role in a feedback regulation for prevention of vascular thrombosis.

Antigens

Regulatory mechanisms for thrombomodulin expression in human umbilical vein endothelial cells in vitro.

It has been reported that thrombomodulin (TM) expression in endothelial cells is modulated by various agents. We investigated cellular regulatory mechanisms for TM expression in human umbilical vein endothelial cells (HUVECs), incubated with agents, by measuring the time course changes in surface TM activity, total TM antigen in cell lysates, and TM mRNA levels. While dibutyryl cAMP (3 mM) increased TM mRNA levels in HUVECs and was followed by increased TM activity, dibutyryl cGMP had no effect on TM activity. Phorbol myristate acetate (PMA) induced rapid loss of surface TM activity (approximately 8 h) and later increased TM mRNA levels between 4 h and 40 h (maximum at 24 h), resulting in biphasic effects on TM activity. Tumor necrosis factor or interleukin-1 beta suppressed surface TM activity and TM mRNA levels. Internalization/degradation of TM in HUVECs incubated with PMA or cytokines was suggested by co-culture with chloroquine. The decrease in surface TM activity observed was not caused by the release of TM molecules from the cells into the conditioned media. These results suggest that TM activity in HUVECs is modulated by independent mechanisms involving cytoplasmic TM mRNA levels and internalization/degradation of TM molecules. These regulatory mechanisms may involve protein kinase A and protein kinase C-dependent mechanisms but are independent of protein kinase G.

Blotting, Northern

Age influence on the thymic capacity to promote differentiation of T cells: induction of different composition of T cell subsets by aging thymus.

Three kinds of experiments were performed to see the differential effect of aging thymus on T cell differentiation in nude mice and thymectomized mice. In the experiment of thymus grafting into nude mice, the thymic capacity to promote T cell differentiation was the highest at newborn stage, and declined to 80% of the peak level at as early as 1 week of age. The level at 4 weeks of age was 50-60% of the peak level and did not greatly change thereafter with advancing age of thymus donors, up to 24 months of age. However, composition of T cell subsets differed with age of thymus graft; i.e. L3T4(CD4)+ T cells were more easily induced than Lyt-2(CD8)+ T cells by aging thymus, resulting in an increase of the ratio of L3T4+/Lyt-2+ T cells with advancing age of thymus donors. The decreased number of T cells and their subsets in the mice thymectomized at 4 weeks of age could be almost totally recovered by the grafting of newborn thymus, but less efficiently by the grafting of 24-month-old thymus. In the latter case again, L3T4+ T cells were more easily induced than Lyt-2+ T cells, resulting in an increase of the ratio of L3T4+/Lyt-2+ T cells by the grafting of the old thymus. In neonatal mice thymectomized 3 days after the birth, Lyt-2+ T cells were more severely affected than L3T4+ cells, resulting in high ratio of L3T4+/Lyt-2+ T cells. It was suggested that the capacity of the thymus to induce T cells started to decline as early as 1 week of age and did not greatly change between 4 weeks and 24 months of age. However, the composition of T cell subsets induced by the thymus changed with age, with preference for L3T4+ T cells over Lyt-2+ T cells.

Aging

The biosynthesis of thrombomodulin and its enhancement by dibutyryl cAMP in a human megakaryoblastic cell line, UT-7.

Thrombomodulin (TM) is an endothelial cell membrane glycoprotein which modulates coagulation via the formation of thrombin-TM complexes. We investigated the human megakaryoblastic cell line (UT-7) for the presence of functional TM on the cell surface and in cell lysates using a specific enzyme-linked immunosorbent assay, a functional assay, and analysis by fluorescent activated cell sorter. We also examined the effect of cyclic nucleotides on TM in UT-7 cells. Quiescent UT-7 cells contained TM protein in cell lysates, but no TM antigen was observed on the cell surface. Dibutyryl cyclic AMP up-regulated TM: UT-7 cells transiently expressed functional TM antigen on the cell surface via de novo synthesis of TM protein resulting from increased TM mRNA levels. In contrast, dibutyryl cyclic GMP did not significantly affect TM antigen levels. The results suggest that megakaryocytes produce TM antigen and protein kinase A are involved in cellular mechanisms of TM expression.

Bucladesine

Determination of interleukin 2 receptor number of Con A stimulated human lymphocytes with aging.

Defective proliferative responses of lymphocytes from elderly donors to various mitogens have been reported in numerous studies. The aim of the present work was to monitor the kinetic response of lymphocytes obtained from elderly and young individuals regarding the Con A stimulated proliferative response and IL-2 receptor expression. The studies were performed by flow cytometric analysis using FITC conjugated anti-IL-2 receptor monoclonal antibody. The data obtained show that beside a detectable decrease in the proliferative capacity of peripheral blood lymphocytes from elderly subjects, the mean IL-2 receptor number/cell did not decrease, but even slightly increased under ConA stimulation. The pattern of distribution of IL-2 receptor positive lymphocytes is different in young and elderly individuals. These data suggest that the decreased proliferative response observed with aging is not due to the decrease of IL-2 receptor number, but most probably to an altered post-receptorial signal transduction mechanism, coupled to changes in responsive cell populations.

Adult

[Observation of cellular communication in the corneal endothelium using a small molecular weight fluorescent dye].

The metabolic and functional connection between corneal endothelial cells is thought to depend on the transfer of small molecules via gap junctions, as has been reported for other tissues. Cell-to-cell communication in the corneal endothelium was studied by monitoring the spread of fluorescence following the direct injection of Lucifer Yellow CH into single endothelial cells of the excised rabbit cornea. The image of the endothelial cells was observed during the injection and post-injection periods using specular microscopy and fluorescence microscopy. In the fresh cornea, the dye transferred readily from the injected endothelial cell to its neighbors. In damaged cells, dye transfer was slower or did not occur. After 5 hours of incubation in tissue culture medium 199, the specular microscopic image degraded, lowered cell membrane potential and decreased dye transfer rate were measured. This study showed that in normal corneal endothelial cells there were efficient cell communication channels between neighboring cells, and as the endothelium becomes less viable, cell communication is inhibited.

Animals

Deficiency of kallikrein-like enzyme activities in cerebral tissue of patients with Alzheimer's disease.

We examined the changes in the intracerebral activities, at the time of postmortem autopsy, in patients with Alzheimer's disease. When compared with the control group, the activity of kallikrein-like enzyme was significantly decreased, while prolyl endopeptidase activity increased, in the patients group. Aprotinin inhibited 50% of the activity of the former enzyme at 2 x 10(-7) M. Taken together with the results of a multivariate study, the above findings may indicate that intracerebral kallikrein deficiency plays an important role in the pathogenesis of Alzheimer's disease.

Aged

Immunohistological study of senile brains by using a monoclonal antibody recognizing beta amyloid precursor protein: significance of granular deposits in relation with senile plaques.

Immunochemical analyses revealed that a monoclonal antibody Am-3 recognized beta amyloid precursor protein (beta APP) in senile plaques extracted from Alzheimer's brain, but did not recognize beta amyloid protein. Immunohistochemically, however, the staining pattern of Am-3 in frozen section of Alzheimer's brain was almost the same with that of rabbit polyclonal antibody to beta amyloid peptide which could recognize both beta amyloid protein and beta APP. In other words, beta APP was present in senile plaques of various types, cerebrovascular amyloid and granular deposits. The granular deposits were 5-10 microns in size and laminarily distributed in the 1st, 3rd and 4th layers of cerebral cortex. They were especially abundant in 1st and 4th layers where senile plaques were usually fewer in number. Although the distribution in the cerebral cortex was different between the senile plaques and the granular deposits, the number of the granular deposits was well correlated with that of senile plaques. The granular deposits were negative in Congo-red birefringence, but contained beta amyloid protein as well as beta APP fragment judging from positive staining by both Am-3 and polyclonal antibody to synthetic beta amyloid peptide. Thus, they could be regarded as "pre-amyloid".

Aged