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Applicability of radiosurgery with heavy ion beams to inactivate specific organs in living organisms.

It was the aim of the study to test the applicability of radiosurgery in inactivating a specific organ through local irradiation with heavy ion beams. Silkworms were exposed to whole-body or local irradiation with carbon ion beams ((12)C(5+), 18.3 MeV/u, range=1.1 mm). After irradiation at the wandering stage, no significant differences were observed regarding either survival or cocoon quality between locally irradiated larvae and controls. Only localized effects were seen, such as the deletion of wings and functional disorders of the reproduction primordium, depending on both irradiation dose and site. This observation was not true for whole-body irradiated larvae. After local irradiation of the hemopoietic organs at the 4th instar premolting stage, the hemocyte densities were clearly reduced and the hemopoietic organ capacity was disrupted. The change in hemocyte densities was accompanied by changes of hemolymph components. These results show that radiosurgery utilizing heavy ion beams can destroy a specific organ or tissue in a living organism.

Animals↗

Organ-specific molecular classification of primary lung, colon, and ovarian adenocarcinomas using gene expression profiles.

Molecular classification of tumors based on their gene expression profiles promises to significantly refine diagnosis and management of cancer patients. The establishment of organ-specific gene expression patterns represents a crucial first step in the clinical application of the molecular approach. Here, we report on the gene expression profiles of 154 primary adenocarcinomas of the lung, colon, and ovary. Using high-density oligonucleotide arrays with 7129 gene probe sets, comprehensive gene expression profiles of 57 lung, 51 colon, and 46 ovary adenocarcinomas were generated and subjected to principle component analysis and to a cross-validated prediction analysis using nearest neighbor classification. These statistical analyses resulted in the classification of 152 of 154 of the adenocarcinomas in an organ-specific manner and identified genes expressed in a putative tissue-specific manner for each tumor type. Furthermore, two tumors were identified, one in the colon group and another in the ovarian group, that did not conform to their respective organ-specific cohorts. Investigation of these outlier tumors by immunohistochemical profiling revealed the ovarian tumor was consistent with a metastatic adenocarcinoma of colonic origin and the colonic tumor was a pleomorphic mesenchymal tumor, probably a leiomyosarcoma, rather than an epithelial tumor. Our results demonstrate the ability of gene expression profiles to classify tumors and suggest that determination of organ-specific gene expression profiles will play a significant role in a wide variety of clinical settings, including molecular diagnosis and classification.

Adenocarcinoma↗

Endotoxin induces organ-specific endothelial cell injury.

Endothelial cell (EC) injury is observed in clinically important pathological processes, including bacterial endotoxemia. We hypothesized that such pathological processes may exhibit target organ heterogeneity due to organ-specific heterogeneity of endothelial cells. To test this hypothesis, endothelial cells of aorta (AO), pulmonary artery (PA), left ventricle (LV), and right ventricle (RV) were cultured from individual sheep and exposed to bacterial endotoxin. Marked heterogeneity in endotoxin-induced cytotoxicity was observed. AOEC were the most sensitive, followed by PAEC, LVEC, and RVEC. This cytotoxicity was manifested as programmed cell death (apoptosis). All cells were able to express both interleukin-6 and endothelin-1 (ET-1) transcripts. Following exposure to bacterial endotoxin, interleukin-6 transcripts accumulated in all cells, whereas ET-1 expression was constant or slightly decreased. These data suggest that organ-specific heterogeneity of EC responsiveness to endotoxin is a potential determinant of organ-specific resistance to endotoxin and other mediators of injury.

Animals↗

Carcinogenicity and organ specificity of N-trimethylsilylmethyl-N-nitrosourea (TMS-MNU), N-neopentyl-N-nitrosourea (neoPNU), and N-methyl-N-nitrosourea (MNU) in rats.

The carcinogenicity and organ specificity of TMS-MNU and neoPNU, a carbon-analogue of TMS-MNU, in rats were investigated and compared with those of MNU. Compounds were dissolved in olive oil and rats in the experimental groups received 20 weekly intragastric intubations of 10 mg/kg of MNU or equimolar amounts of TMS-MNU or neoPNU in the same manner. The experiment was terminated when the survivors were sacrificed at the 52nd week after the final administration. In the TMS-MNU and MNU groups, tumors of the forestomach were induced and the incidence was 100% in the groups of both sexes. In addition, tumors of the glandular stomach, nervous system, kidney, and lung were also observed in these groups. Neurogenic tumors were found more frequently in the MNU group than in the TMS-MNU group. The incidence of lung tumors, however, was higher in the TMS-MNU group than in the MNU group. On the other hand, in the control and neoPNU groups, no tumor was found in these organs except the lung, and all tumors observed in these two groups were histologically similar to spontaneous ones in this strain of rats. These results indicate that the carcinogenicity of N-alkyl-N-nitrosoureas is dependent on the chemical structure of their alkyl chain. The result of the present study coincides with the previous result that the species of TMS-MNU in the alkylating step is the same as that of MNU, but different from neoPNU. The difference in the organ specificity between TMS-MNU and MNU demonstrates that the organ specificity is dominantly dependent on the distribution of the chemicals, since TMS-MNU may possibly be distributed differently from MNU because of its different partition property.

Animals↗

Clinical significance of organ- and non-organ-specific autoantibodies on the response to anti-viral treatment of patients with chronic hepatitis C.

BACKGROUND: Development of organ- and non-organ-specific autoantibodies has been reported in hepatitis C virus patients treated with interferon-alpha plus/minus ribavirin. AIMS: To address whether prevalence and the titre of gastric parietal autoantibodies and non-organ-specific autoantibody in hepatitis C virus-treated patients were affected by therapy, and if the development of these antibodies carries any clinical significance on the response to treatment, as few studies in adults have been strictly designed to address the above hypothesis. METHODS: Samples at three time-points (baseline, end of treatment, end of follow-up) from 102 hepatitis C virus patients (39 sustained responders, 26 relapsers, 33 non-responders; four lost in follow-up) were studied for gastric parietal autoantibodies and/or non-organ-specific autoantibody by indirect immunofluorescence, commercial and in-house enzyme-linked immunosorbent assays. RESULTS: Sustained virological and biochemical response was associated with antinuclear antibody absence (end of treatment or end of follow-up), decrease of smooth-muscle antibody titres during therapy and gastric parietal autoantibodies negativity at baseline. However, after multivariate analysis only antinuclear antibody positivity at the end of treatment and increase of smooth-muscle antibody titres were associated with worst treatment response, independently of known factors of worst treatment outcome. CONCLUSIONS: We were able to demonstrate a negative correlation between the efficacy of anti-viral treatment for hepatitis C virus and the presence of antinuclear antibody and smooth-muscle antibody before treatment, or their increase during therapy.

Adult↗

Organ-specific adhesion of metastatic tumor cells in vitro.

Binding of tumor cells to cryostat sections of host organs was studied. B16-F10 melanoma cells and reticulum cell sarcoma cells demonstrated an organ specificity in their binding in vitro that reflected the organ specificity of their metastatic distribution 25 days after intravenous injection. These results provide evidence for specific binding of tumor cells to the tissues that they selectively colonize in vivo.

Adhesiveness↗

A T cell receptor transgenic model of severe, spontaneous organ-specific autoimmunity.

The development of mouse models of human organ-specific autoimmune diseases has been hampered by the need to immunize mice with autoantigens in potent adjuvants. Even autoantigen-specific T cell receptor transgenic models of autoimmunity have proven to be complex as the transgenic mice frequently fail to develop disease spontaneously. We have isolated a CD4(+) T cell clone (TxA23)that recognizes the gastric parietal cell antigen, H/K ATPase alpha-chain(630-641), from a mouse with autoimmune gastritis that developed after thymectomy on day 3 of life. The T cell receptor alpha and beta genes from this clone were used to generate A23 transgenic mice. All A23 transgenic animals spontaneously developed severe autoimmune gastritis, and evidence of disease was detected as early as day 10 of life. Gastritis could be transferred to immunocompromised mice with a limited number of transgenic thymocytes (10(3)), but as many as 10(7) induced only mild disease in wild-type animals. Due to the complete penetrance of spontaneous disease, identity of the auto-antigen, susceptibility to immunoregulation, and close relation to autoimmune gastritis in man, A23 transgenic mice represent a unique CD4(+) T cell-mediated disease model for understanding the multiple factors regulating organ-specific autoimmunity.

Amino Acid Sequence↗

Enhancement of the chemoprotective enzymes glucuronosyl transferase and glutathione transferase in specific organs of the rat by the coffee components kahweol and cafestol.

The coffee components kahweol and cafestol (K/C) have been reported to protect the colon and other organs of the rat against the formation of DNA adducts by 2-amino-1-methyl-6-phenylimidazo[4,5- b]pyridine (PhIP) and aflatoxin B1. PhIP is a cooked-food mutagen to which significant human exposure and a role in colon cancer etiology are attributed, and, interestingly, such cancers appear to develop at a lower rate in consumers of coffees with high amounts of K/C. Earlier studies in rodent liver have shown that a key role in the chemopreventive effect of K/C is likely to be due to the potential of these compounds to induce the detoxification of xenobiotics by glutathione transferase (GST) and to enhance the synthesis of the corresponding co-factor glutathione. However, mutagens like PhIP may also be detoxified by UDP-glucuronosyl transferase (UDPGT) for which data are lacking regarding a potential effect of K/C. Therefore, in the present study, we investigated the effect of K/C on UDPGT and, concomitantly, we studied overall GST and the pattern of individual GST classes, particularly GST-theta;, which was not included in earlier experiments. In addition, we analyzed the organ-dependence of these potentially chemopreventive effects. K/C was fed to male F344 rats at 0.122% in the chow for 10 days. Enzyme activities in liver, kidney, lung, colon, salivary gland, pancreas, testis, heart and spleen were quantified using five characteristic substrates and the hepatic protein pattern of GST classes alpha, mu, and pi was studied with affinity chromatography/HPLC. Our study showed that K/C is not only capable of increasing overall GST and GST classes alpha, mu, and pi but also of enhancing UDGPT and GST-theta. All investigated K/C effects were strongest in liver and kidney, and some response was seen in lung and colon but none in the other organs. In summary, our results show that K/C treatment leads to a wide spectrum of increases in phase II detoxification enzymes. Notably, these effects occurred preferentially in the well perfused organs liver and kidney, which may thus not only contribute to local protection but also to anti-carcinogenesis in distant, less stimulated organs such as the colon.

Animals↗

Organ-specific autoimmunity in mice whose T cell repertoire is shaped by a single antigenic peptide.

Organ-specific autoimmune diseases have been postulated to be the result of T cell response against organ-specific self-peptides bound to MHC molecules. Contrary to this paradigm, we report here that transgenic mice lacking MHC class I expression and expressing an MHC class II I-A(b) molecule that presents only a single peptide (E alpha 52-68) spontaneously develops peripheral nervous system-specific autoimmune disease with many of the histopathological features found in experimental allergic neuritis. Reciprocal bone marrow chimeras produced using susceptible and resistant lines revealed that bone marrow-derived cells determined disease susceptibility. While the expression of the I-A(b)-E alpha 52-68 complex in the periphery was readily detectable in both lines, its expression on thymic dendritic cells responsible for tolerance induction was markedly lower in the susceptible line than in the resistant line. Consistent with this, CD4(+) T cells that can be activated by the I-A(b)-E alpha 52-68 complex were found in the susceptible line, but not in the resistant line. Such CD4(+) T cells conferred the disease to the resistant line by adoptive transfer, and administration of Ab specific for the I-A(b)-E alpha 52-68 complex inhibited disease manifestation in the susceptible line. These results indicate that disease development involves systemic T cell reactivity to I-A(b)-E alpha 52-68 complex, probably caused by incomplete negative thymocyte selection.

Animals↗

Multispecific substrate recognition of kidney-specific organic anion transporters OAT-K1 and OAT-K2.

We characterized the interactions of various compounds with OAT-K1 and OAT-K2, kidney-specific organic anion transporters. By using Madin-Darby canine kidney cells stably transfected with OAT-K1 or OAT-K2 cDNA, the antitumor drug methotrexate, the mycotoxin ochratoxin A, endogenous organic anions (thyroid hormones, taurocholic acid, and conjugated steroids), and the antiretroviral drug zidovudine were shown to be substrates for these transporters. Although the apparent Michaelis constant (Km) values of methotrexate for OAT-K1 and OAT-K2 were 2.1 and 1.8 microM, respectively, 2.5 mM methotrexate inhibited only 20% of the 125I-thyroid hormones uptake via these transporters. In addition, 100 microM methotrexate did not have any effect on [3H]zidovudine uptake via OAT-K1 or OAT-K2. Similarly, several substrates caused little or no mutual inhibition at concentrations much higher than their Km values for these transporters. Moreover, intracellular methotrexate trans-stimulated the OAT-K1- and OAT-K2-mediated uptake of [3H]folic acid, but not that of other compounds. Organic anion-transporting polypeptide 2 (oatp2), a liver-type homolog of OAT-K1 and OAT-K2, showed similar events. The inhibition constant values of triiodothyronine and taurocholic acid for [3H]digoxin uptake in oatp2-expressing oocytes resulted in 50.4 and 1.48 mM, respectively, which were about 9- and 40-fold higher than their Km values for oatp2, respectively. These findings suggested that several substrates interact with these transporters at different amino acid residue(s). Taken together, these observations suggested that OAT-K1 and OAT-K2 could serve as multispecific transporters, mediating transport of a wide variety of endogenous substances, xenobiotics, and their metabolites in the kidney, presumably via several interaction sites in their molecules.

Animals↗

Mediation of organ specificity in chemical carcinogenesis.

Organ and species specificity in the experimental induction of cancer by chemical agents has been widely observed and is incompletely understood even though the phenomenon has become a persistent puzzle in oncology. Animal model experiments and epidemiological data on human cancer morbidity from environmental causative agents would lead to the conclusion that some organs are more susceptible because they tend to concentrate and (or) retain a given agent more than other tissues. The routes of administration or unique features in the metabolism of the agent explain the differences in some instances only. We propose an additional general mechanism: an organ (or cell type) may be specifically and differentially susceptible to the action of an agent if, by happenstance, a major storage or secretory protein constituent of the cell binds the agent in question reversibly, thereby concentrating or retaining the agent.

9,10-Dimethyl-1,2-benzanthracene↗

Organ-specific nuclear RNAs in tobacco.

We investigated the developmental regulation of nuclear RNA sequences in tobacco vegetative (leaf, root, stem) and floral (petal, ovary, anther) organ systems using RNA-excess X single-copy DNA hybridization reactions. We found that 18% of the single-copy DNA, equivalent to 1.1 X 10(5) kilobases (kb) of diverse transcripts, is represented in the nuclear RNA of each organ. Each nuclear RNA population has both shared and organ-specific sequences. Depending upon the nuclear RNA, 10-40% of the complexity, or 1.1-4.4 X 10(4) kb of diverse sequence, is organ-specific. Collectively, at least 45% of the single-copy DNA, or 3 X 10(5) kb, is represented in the nuclear RNA of the entire plant. Hybridization experiments with polysomal RNA showed that organ-specific mRNAs are present in both the unique and shared nuclear RNA subsets. Together, our results show that tobacco nuclear RNA sequences are under striking developmental control and that both transcriptional and post-transcriptional processes play a role in regulating plant gene expression.

Base Sequence↗

ICA and organ-specific autoantibodies among Japanese patients with early-onset insulin-dependent diabetes mellitus--the JDS study.

The Japan Diabetes Society (JDS) conducted a multicenter study on the immunogenetics of insulin-dependent diabetes mellitus (IDDM) among Japanese. The previous report of the JDS study described HLA types and other immunogenetic markers in Japanese patients with IDDM. In the present report, the autoimmunity of Japanese patients was studied by measuring ICA and other organ-specific autoantibodies in patients with different durations of IDDM. The prevalences of ICA were the highest in the first year after diagnosis (73.1%) and decreased to 58.0%, 18.3% and 2.8% in 1-5 years, 5-10 years and 10 years or more after diagnosis, respectively (P < 0.01), while the prevalences of the other organ specific autoantibodies increased gradually with duration of IDDM from 20% in the first year to 35% in 10 years or more after diagnosis (P < 0.05). There were no sex differences in the prevalences of ICA but those of other organ-specific autoantibodies were significantly higher in female patients than in male patients (P < 0.01). The prevalence of ICA was not correlated with sex, age at onset or HLA types. In one of the subjects, a girl, the titers of ICA increased in parallel with a decrease in insulin secretion before the development of overt IDDM and declined thereafter. These findings suggest that IDDM might develop when the autoimmunity specific to pancreatic islets is triggered in people with underlying autoimmunity as shown by the presence of organ-specific autoantibodies other than ICA.

Adolescent↗

Analysis of Arabidopsis PsbQA gene expression in transgenic tobacco reveals differential role of its promoter and transcribed region in organ-specific and light-mediated regulation.

Arabidopsis PsbQ, encoding a 16 kDa protein of the oxygen-evolving complex, is regulated by light and is expressed preferentially in leaf tissues. To analyze the components required for light-regulated and organ-specific expression of PsbQA, several promoter constructs were generated and expressed in tobacco. The 2.2 kb promoter could confer organ-specific expression of the reporter gene, whereas regulatory elements for light-dependent induction could not be located within this promoter and the transcribed region extending up to a second exon, represented by a genomic fragment encompassing the gene. The genomic fragment representing the transcribed region, however, could confer light regulation even on a constitutive promoter, as observed by steady-state mRNA analysis in T0 and T1 tobacco plants. The results obtained have led to the conclusion that regulatory elements for organ-specificity mainly reside in the promoter region whereas the transcribed region of the gene has an important role in light regulation.

5' Untranslated Regions↗

[Islet-cell antibodies and organ-specific antibodies in diabetic children and adolescents. Relationship with age, age at onset, duration of diabetes, residual insulin secretion and retinopathy (author's transl)].

The prevalence of islet-cell antibodies and of 10 organ-specific auto-antibodies was determined in 71 diabetic children and adolescents whose mean duration of diabetes was 4 1/2 years. Forty-four p. cent of the patients had autoantibodies; 15% had islet-cell antibodies and 31% had organ specific antibodies. The prevalence of antinuclear, gastric parietal cell and striated muscle antibodies was significantly higher in diabetics than in controls. There was no relationship between prevalence of antibodies and age of the diabetics nor age at the onset of the disease. The frequency of circulating islet-cell antibodies tended to decrease with the duration of diabetes while organ-specific antibodies remained stable. The study failed to demonstrate any correlation between measurable C-peptide and the presence of autoantibodies. Diabetic retinopathy, diagnosed by fluorescein angiography, was not related to the presence of autoantibodies.

Adolescent↗

Postpartum thyroiditis: an organ specific syndrome which is not associated with a postpartum polyclonal B-cell activation.

Recent reports have detailed the presence of autoantibodies characteristic of non-organ specific autoimmune diseases in the serum of patients with autoimmune postpartum thyroiditis (PPT). These observations suggest that PPT could be part of a polyclonal B-cell activation postpartum. We have measured 4 non-organ specific autoantibodies (anti-DNA, anti-cardiolipin, anti-nuclear factor (ANF) and antibodies against extractable nuclear antigens (ENA)) together with autoantibodies against thyroglobulin and thyroid peroxidase in a group of PPT women at 4 time points during the first year postpartum (early, time of hyperthyroidism, time of hypothyroidism, late). Whilst 18/18 patients showed thyroid specific autoantibody changes there was only a low frequency of occurrence of the non-organ specific autoantibodies (ENA 2/18; ANF 1/18; anti-DNA 2/18; anti-dsDNA 0/18; anti-cardiolipin 0/18) and, when positive, the response was poor. We conclude that PPT is not associated with a polyclonal b-cell activation but is a postpartum rebound of a thyroid specific autoimmune phenomenon.

Antibodies, Antinuclear↗

The presence of non-organ-specific autoantibodies is associated with a negative response to combination therapy with interferon and ribavirin for chronic hepatitis C.

BACKGROUND: Non-organ-specific autoantibodies are found in a considerable number of anti-HCV positive patients. Previous studies investigated the clinical relevance of these antibodies in patients treated with interferon monotherapy, but not combination therapies. METHODS: Anti-nuclear, anti-smooth muscle, anti-mitochondrial, anti-neutrophil-cytoplasmatic and anti-liver/kidney microsomal antibodies were determined in 78 consecutive anti-HCV positive patients by indirect immunofluorescence. The presence of these antibodies was related to demographic variables and to the outcome of antiviral combination therapy with interferon-alpha and ribavirin in 65 patients. RESULTS: In our study, positivity for autoantibodies was associated with higher alanine aminotransferase levels and higher mean values for HCV-RNA (p < 0.01). Furthermore, negativity for non-organ-specific autoantibodies was associated with a favourable treatment outcome of combination therapy with at least one negative RT-PCR for HCV-RNA during treatment (OR 4.65, 95% CI 1.31 to 16.48, p = 0.02). ANA and SMA staining patterns and titers were not correlated to treatment response. With multiple logistic regression analysis, positivity for autoantibodies and HCV genotype were independently associated with outcome of antiviral combination therapy (p = 0.02). CONCLUSIONS: The absence of non-organ-specific autoantibodies might indicate a significantly higher chance for viral clearance in response to combination therapy for chronic hepatitis C infection. Therefore, despite of an overall higher treatment response, the addition of the immunomodulatory drug ribavirin could accentuate immunological differences that affect treatment outcome and might have been less obvious in earlier studies analysing interferon monotherapy.

Antibody Specificity↗