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Biomedical subjects

I Müller

Publications and source records attributed to I Müller.

At least 109 records · Page 6Linked to original sources

Exacerbation of experimental murine cutaneous leishmaniasis with CD4+ Leishmania major-specific T cell lines or clones which secrete interferon-gamma and mediate parasite-specific delayed-type hypersensitivity.

Leishmania major-specific T cell lines were derived from mice sensitized to the parasite. The cells were of the CD4+ T cell lineage and, upon adoptive transfer, were found to be capable of inducing parasite-specific delayed-type hypersensitivity. Adoptive transfer of these L. major-specific T cells to syngeneic recipients which were either normal, T cell deficient or B cell and antibody deficient led to exacerbation of infection upon subsequent challenge with L. major. This suggested that host T cells, B cells and antibody were not required for the L. major-specific T cells to exert their exacerbative effect on the course of cutaneous leishmaniasis. Additional studies revealed that the adoptive transfer of graded doses of these L. major-specific T cells always resulted in exacerbation of infection. Study of the localization pattern of the cells following transfer showed that they migrate preferentially to the site of the lesions. Furthermore, although the induction phase of this phenomenon was immunologically specific, its effector phase was not. Finally, T cell clones were derived from the L. major-specific T cell lines. The T cell clones were phenotypically and functionally identical to the T cell lines from which they were derived. Adoptive transfer of these parasite-specific T cell clones to normal syngeneic recipients induced an exacerbated course of infection with L. major. Interestingly, when these cloned T cells were specifically activated in vitro, the cells produced interleukin 2 and interferon-gamma, but no interleukin 4, indicating that they belong to the murine Th1 subset of CD4+ T cells.

Animals↗

Experimental infections in chickens with Chilomastix gallinarum, Tetratrichomonas gallinarum, and Tritrichomonas eberthi.

Flagellates from the caeca of a diseased hen and a diseased goose were transmitted to 35 specific pathogen-free (SPF) chickens. The flagellates of chicken origin were identified as Chilomastix gallinarum, Tritrichomonas eberthi, and Tetratrichomonas gallinarum. T. eberthi was not detected in the material of goose origin. Morphologic studies did not reveal any differences between Chilomastix and Tetratrichomonas specimens from chicken or goose origin. The species from the goose were identified as C. gallinarum and T. gallinarum (Syn. T. anseris Hegner, 1929). Both trichomonad species produced pseudocysts that developed in the faeces of chickens within 3 h after excretion. Only 17% of the trichomonads excreted had reached the pseudocyst stage. All three flagellate species are infective to chickens when inoculated per rectum or per os or when consumed with chlorinated tap water. The prepatency period was always less than 24 h. SPF chickens between 2 and 30 days of age were equally susceptible. The infections persisted at a high level of intensity throughout the observation periods, i.e. up to 7 months. Of 35 inoculated SPF chickens, 2 developed disease (emaciation, ruffled feathers, diarrhoea, dilatation of the caeca). The three flagellate species were cultivated in Diamond's medium for 110 days. Cryopreserved and cultivated flagellates retained their infectivity to chickens.

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Repair of damage caused by UV- and X-irradiation in the amoeboflagellate Naegleria gruberi.

Cysts of Naegleria gruberi have a normal UV- and an extremely high X-ray resistance compared to other protozoans. Caffeine and 3-aminobenzamide applied to excysting amoeba after irradiation in the encysted state (UV and X-rays) by feeding with drug-containing bacteria increased lethality, while fractionated irradiation (UV) and liquid-holding (UV and X-rays) increased survival. Illumination with visible light after UV-irradiation restored almost 100% viability. The results are discussed in regard to the activity of repair mechanisms.

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Establishment of resistance to Leishmania major infection in susceptible BALB/c mice requires parasite-specific CD8+ T cells.

Although CD4+ T cells are generally accepted to be responsible for the determination of resistance to infection in experimental murine cutaneous leishmaniasis, a contribution of CD8+ lymphocytes to immunity can be demonstrated under certain well-defined conditions. Normally highly susceptible BALB/c mice can be rendered resistant to infection with Leishmania major promastigotes by a single injection of monoclonal anti-CD4 antibodies at the beginning of infection. Mice treated in such a way can heal their primary cutaneous lesions and acquire immunity to subsequent challenge infection. Both the resolution of the primary infection and the induced state of immunity to reinfection in these mice is shown to be dependent upon the anti-leishmanial effector functions of CD8+ T cells. Furthermore, in contrast to control infected BALB/c mice, which are unable to mount a delayed-type hypersensitivity (DTH) response to viable parasites, mice cured as a result of treatment with anti-CD4 antibodies in vivo exhibit a strong DTH response, which can be significantly reduced by injection of either anti-CD4 or anti-CD8 monoclonal antibodies prior to antigenic challenge with viable promastigotes. Moreover, increased numbers of specific CD8+ T cells, able to transfer Leishmania-specific DTH responses, were found in lymphoid organs of BALB/c mice rendered resistant to infection by immunointervention with anti-CD4 monoclonal antibodies at the beginning of infection. Neutralization in vivo of interleukin 4 during the course of infection in BALB/c mice also enables these otherwise susceptible mice to resolve their cutaneous lesions and to decrease the parasite burden in infected tissues. CD8+ T cells are required for both of these beneficial effects. Taken together, these results indicate that in the immune BALB/c mouse, as in the normally resistant CBA mouse, CD8+ lymphocytes are involved in the elimination of L. major and in the establishment and maintenance of immunity against infection with this parasite.

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[The content of DNA, RNA and total protein in different skeletal muscles, in the diaphragm, in the right and left heart ventricles and in the musculature of the esophagus, the stomach and the urinary bladder of normally developed piglets and splayleg piglets of different body weights].

Studies were conducted into concentrations of RNA, DNA, and total protein in various skeletal muscles, diaphragm, right and left ventricles as well as in musculature of the oesophagus, stomach, and urinary bladder of 25 normally developed piglets and 24 sprayleg piglets of differentiated body weight (B.W.). DNA concentration was found to be at its highest in piglets of lowest B.W. The Protein: DNA-quotient increased along with growing B.W. The average value of this quotient in the anterior tibial muscle and brachial triceps muscle of sprayleg piglets was lower than that in normally developed piglets. Average values of the RNA:DNA quotients in the brachial triceps muscle, anterior section of the long dorsal muscle, left ventricle, and stomach muscles were also lower in sprayleg piglets. In newborn piglets, DNA concentrations in ventricles as well as in the muscles of the stomach and oesophagus were higher than those recordable from skeletal muscles. Causes of incapability of newborn piglets to stand on their own feet are discussed in some detail.

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[Bioclimatic assessment of a tropical site--a criterion for decisions concerning breeding and technology for successful animal production in the tropics].

The values of the body temperature and breathing frequency were taken from young pigs and sows at a tropical location in order to study the relations between measured climatic values and their complex derivations (the amount of cooling down, enthalpy, sultriness factor, and water vapour pressure). The relevance was weighted of the natural and calculated climatic values for the thermoregulation of the animals. A practical example is given of the discrepancies between a genuine tropical climate and the demands made by pigs and hens on their climatic environment. From this, conclusions are drawn for successfully keeping and breeding these species at tropical locations.

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Immune responses to defined epitopes of the circumsporozoite protein of the murine malaria parasite, Plasmodium yoelii.

We have investigated the immunogenicity of defined sequences of the circumsporozoite (CS) protein of the murine malaria parasite, Plasmodium yoelii. A 21-ner synthetic peptide from the nonrepetitive region of the CS protein (position 59-79, referred to as Py1) induced T cell proliferative responses in H-2d and, to a lesser extent, in H-2b mice. Conversely, a synthetic peptide (referred to as Py4) consisting of four (QGPGAP) repeats of the P. yoelii CS protein, induced an antibody response only in H-2b mice. No antibody response was observed when the Py3 peptide, consisting of three (QGPGAP) repeats, was used as an immunogen. When cross-linked to the Py4 repetitive peptide, the Py1 sequence behaved as a T helper epitope allowing the production of anti-Py4 antibodies in H-2d mice. Several long-term T cell lines and clones specific for the nonrepetitive Py1 peptide were originated in vitro from both H-2d and H-2b mice. These lines and clones were CD4+ and proliferated in a major histocompatibility complex-restricted fashion. Furthermore, Py1-specific T cell lines and clones did not proliferate in the presence of synthetic peptides from an analogous region of another rodent malaria parasite, P. berghei, despite the high degree of homology existing in this sequence of the two CS proteins. Finally, supernatants from 7 out of 13 clones (from BALB/c mice) produced detectable amounts of interleukin 2 and interferon-gamma; whereas supernatants from the 4 clones from C57BL/6 and 2 from BALB/c mice contained detectable amounts of interleukin 5. These results show that functionally heterogenous CD4+ T cell populations, belonging to either TH1 or TH2 subset, are activated upon immunization of mice with the P. yoelii Py1 synthetic peptide. It is not yet known what differential role these CD4+ subsets play during the malaria infection or after immunization with different malaria T cell epitopes. This knowledge may have a particular impact in the design of effective subunit vaccines against malaria.

Amino Acid Sequence↗

Peptide-primed CD4+ cells and malaria sporozoites.

We have mapped a T cell epitope in the circumsporozoite (CS) protein of the murine malaria parasite, Plasmodium yoelii. A 21-mer synthetic peptide corresponding to the amino acid positions 59-79 (referred to as Py1), induced specific proliferation in BALB/c and C57BL/6 mice, and provided help for the production of antibodies to peptides from the repetitive region, (QGPGAP)n, of the same CS protein, when mice were immunized with the Py1 peptide conjugated to the repetitive peptide. Long-term CD3+CD4+CD8-TCR alpha beta+ T cell lines and clones were derived from both strains of mice. These lines and clones, that proliferated in an MHC-restricted fashion, did not recognize peptides from the homologous region of another murine malaria parasite, P. berghei. About 50% of these clones produced detectable amounts of IFN-gamma and IL-2, whereas the remaining produced IL-4, IL-5, and IL-6. In preliminary experiments, some of these clones specifically inhibited P. yoelii sporozoite development in vitro and conferred protection in vivo in passive transfer experiments. These findings show that heterogenous T cell populations are activated in mice upon immunization with a short peptide from the P. yoelii CS protein and that some of these cells could be active in the effector arm of the immune response against malaria sporozoites.

Amino Acid Sequence↗

Effects of centrally administered substance P on cyclic AMP levels in particular brain areas of rats.

Effects of centrally (intracerebro-ventricularly) administered synthetic substance P on the metabolism of cAMP in 19 brain areas were investigated. Substance P administration increased cAMP levels considerably in the frontal cortex, the central gray matter and in the nucleus of the solitary tract, and to a lesser extent in the bed nucleus of the stria terminalis and in the anterior hypothalamic nucleus. Cyclic AMP levels were decreased in the globus pallidus, the habenula, the posterior hypothalamic nucleus and in the locus coeruleus while other brain areas showed no changes in cAMP levels.

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Haemoparasites of equines: impact on international trade of horses.

The geographical distribution of Babesia equi and Babesia caballi and their tick vectors is discussed. Control of infections with these protozoa is hampered by the lack of a suitable antiprotozoal drug and a reliable serological test. No vaccine is available. Ehrlichia risticii (the causal agent of Potomac horse fever) and E. equi are rickettsial parasites which are difficult to control. Little is known of their geographical distribution and vectors. Early diagnosis is required for tetracycline therapy to be effective and there is a need for a rapid test to provide an early diagnosis.

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[The esthetic effect of surgical treatment of idiopathic scoliosis].

Idiopathic scoliosis has a negative impact on the heart and lungs in the deformed chest, its creates a cosmetic defect, i.e. asymmetry of the paravertebral prominence, shortening of the trunk, asymmetry of the shoulders and protruding scapulae. Later it may cause pain and nervous disorders. In a group of 46 patients aged 15.5 years with thoracic right-sided idiopathic scoliosis the effect of operation by Harrington's instrumentation and spondylodesis on improvement of the curvature and the cosmetic effect were investigated. Preoperative curvature of 69 degrees according to Cobb improved to 35 degrees (by 50%) and the prominence from 38 mm before operation to 23 mm after operation (by 32%). The operation had also a positive effect from the cosmetic aspect which is of great psychological importance for the patients, in particular girls.

Adolescent↗

[The effect of intravenous administration of arginine and glycine on the blood plasma content of glucose, insulin, free fatty acids and total alpha-amino-N-compounds in lambs of different ages].

Intravenous infusion of 0.5 mmol/kg B.W. to lambs aged eight to 14, 15 to 21, 22 to 28, and 29 to 35 days led to higher blood plasma levels of insulin and total alpha-amino-N. Rises were stronger and longer lasting after infusion of 1.25 mmol/kg B.W. of arginine. Blood plasma levels of glucose and free fatty acids were temporarily decreased in response to infusion. Infusion to lambs aged between eight and 14 days of 0.5 mmol/kg B.W. of glycin did not change insulin, glucose nor free fatty acids, though total alpha-amino-N was very slightly increased for very short time. Infusion of 1.25 mmol/kg B.W. of glycin proved less effective than that of arginine with regard to higher levels of insulin and total alpha-amino-N.

Aging↗

Immunity to experimental infection with Leishmania major: generation of protective L3T4+ T cell clones recognizing antigen(s) associated with live parasites.

Exacerbation and resolution of lesions induced by Leishmania major promastigotes are, at least in part, the result of the activity of distinct parasite-specific L3T4+ T lymphocytes. The present report describes L. major-specific cloned L3T4+ T lymphocytes capable of transferring substantial protective immunity to normal highly susceptible BALB/c mice. The two protective T cell clones analyzed appear to recognize antigen associated only with live L. major parasites. Therefore, the pattern of antigen reactivity of these protective T cell clones is different from that of the previously described parasite-specific L3T4+ T cells which contribute to exacerbation of disease. The results presented in this report indicate that the two opposite effects of parasite-specific L3T4+ T cells on the disease process could be mediated by functionally similar L3T4+ T cells differing in their antigen specificity.

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Analysis of the cellular parameters of the immune responses contributing to resistance and susceptibility of mice to infection with the intracellular parasite, Leishmania major.

Although the course of infection induced by L.major in mice is influenced by several factors, including the parasite virulence, the macrophage permissiveness to this parasite and response to T cell-produced lymphokines, this review has been restricted to summarizing, the recent data concerning the T-cell responses generated during infection and their effect on the disease process. Experimental evidence strongly suggests that T-cell responses play a fundamental role in resistance and susceptibility of mice to infection with L.major. It appears that resolution of lesion and exacerbation of disease result from the activity of distinct specific CD4+ T cells. There is a consensus of opinion that CD4+ T cells from the TH1 functional phenotype are generally endowed with protective function through their secreted lymphokines (e.g. IFN-gamma). However, some evidence exists that other lymphokines (e.g. TNF) might be involved in resolution of lesions. Results exist which indicate that some TH1 CD4+ T cells also contribute to susceptibility to infection. Their specificity differs from that of protective TH1 cells in the sense that these T cells might recognize parasite antigens not appropriately presented by parasitized macrophages and therefore, although releasing IFN-gamma, would not be able to concentrate this lymphokine on the surface of macrophages containing multiplying L.major. It appears that parasite-specific TH2 cells play an important role, through the IL-4 that they produce, in the severe disease seen in BALB/c mice. Determining the mechanisms responsible for the expansion of TH2 cells in genetically susceptible mice as well as assessing whether or not some parasite antigens are preferentially recognized by TH1 and TH2 cells are areas of investigation of prime importance for the rational design of a vaccine against leishmaniasis. Several observations indicate that CD8+ T cells have a role in the resolution of lesions induced by this parasite. Precise investigation of the mechanism(s) accounting for their beneficial effect might depend upon our ability to derive and maintain in vitro homogenous populations and clones of L.major-specific CD8+ T cells.

Animals↗

[The effect of intravenous administration of butyrate, isobutyrate and isovalerate to lambs aged 8-45 days on the blood plasma content of glucose, insulin, free fatty acids and total alpha-amino-N].

Massive dose injections of butyrate, isobutyrate, and isovalerate (1.25 mmol/kg body weight) as well as of physiological saline solutions were applied to 4 groups of lambs aged 8 to 15, 16 to 22, 23 to 29, and 30 to 45 days. Blood samples were drawn prior to infusion as well as 5, 15, 30, 60, 90, 120, and 180 minutes from mid-infusion. Original glucose and insulin levels in the blood plasma of 87 lambs had been 5.24 +/- 0.85 mmol/l or 191 +/- 106 pmol/l, respectively. Infusion of these solutions led to temporary rise in blood plasma levels of glucose, insulin, and free fatty acids. The highest insulin level increase resulted from isovalerate infusion. Total alpha amino nitrogen in blood plasma went down. It appeared to be obvious that lambs, even before their forestomachs came into action, responded to infusion of volatile fatty acids by increase in insulin secretion.

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