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Biomedical subjects

M Rodriguez

Publications and source records attributed to M Rodriguez.

At least 127 records · Page 7Linked to original sources

Subfamily of submaxillary gland-specific Mup genes: chromosomal linkage and sequence comparison with liver-specific Mup genes.

Mouse major urinary proteins (MUPs) are encoded by a family of ca. 35 genes that are expressed in a tissue-specific manner in several secretory organs; in the liver, in the submaxillary, sublingual, parotid and lachrymal glands, and in the skin sebaceous glands. In this paper we describe the isolation of a Mup gene, Mup-1.5a, which is expressed predominantly in the submaxillary gland of BALB/c mice. We show that Mup-1.5a is a member of a subfamily consisting of two closely related genes, both of which are closely linked to the Mup-1 locus on mouse chromosome 4. Mup-1 is the locus of a class of Mup genes (Group 1) expressed in the liver. The complete nucleotide sequence of Mup-1.5a has been determined, and was compared to a previously sequenced Group 1 Mup gene. The comparison shows that the differentially expressed Mup genes are uniformly divergent in exons, introns and in their flanking sequences. The regions of homology extend at least 5 kb into the 5' flanking region of Mup genes.

Animals

Role of natural killer cells as immune effectors in encephalitis and demyelination induced by Theiler's virus.

Infection of susceptible mice (SJL) with Theiler's murine encephalitis virus (TMEV) causes a biphasic disease characterized by gray matter inflammation followed by late chronic demyelination. The role of NK cells was studied in this model by using susceptible (SJL) or resistant (C57BL/10) mice. CNS TMEV titer were higher in SJL compared with C57BL/10 mice, correlating with a 50% lower NK cell activity in the SJL than in the C57BL/10 mice. When resistant (C57BL/10) mice were depleted of NK cells using either mAb NK1.1 or polyclonal anti-asialo-GM1, TMEV induced the development of diffuse encephalitis and meningitis early in the postinfection period (days 6 to 11). However, the second phase of TMEV-induced CNS disease (demyelination) was observed only in resistant C57BL/10 mice treated with anti-asialo-GM1. Experiments with beige/beige mice of C57BL/10 background showed a mild degree of gray matter inflammation but no demyelination. In conclusion, NK cells are critical effectors in protecting against TMEV-induced gray matter disease, whereas a different population of either NK1.1- NK cells, or other activated lymphocytes may be critical in resistance/susceptibility to demyelination.

Animals

Characterization of the inflammatory response in the central nervous system of mice susceptible or resistant to demyelination by Theiler's virus.

Intracerebral inoculation of mice with Theiler's murine encephalomyelitis virus results in an intense inflammatory response of mononuclear leukocytes which infiltrate into the central nervous system. Resistant strains of mice have the ability to clear virus whereas susceptible strains become infected persistently and are associated with chronic demyelination which is proposed to be immune-mediated. In an attempt to better understand the role of the immune response during demyelination, mononuclear leukocytes were isolated from the central nervous system of infected mice and stained by an immunoperoxidase technique with anti-Thy-1.2, anti-L3T4, anti-Lyt-2 and anti-MAC-1 mAb. Infection of susceptible SJL/J mice resulted in a biphasic immune response which peaked on days 7 and 27 post-infection. In contrast, a single peak (day 7) was observed in resistant C57BL/10SNJ mice. The presence of Thy-1.2, L3T4, and MAC-1+ cells was similar between the two strains. However, although the number of Lyt-2+ cells peaked on day 7 in C57BL/10SNJ mice, they were not detected in SJL/J mice until 14 days post-infection and gradually increased in number over the course of infection. To further study the role of T cells in demyelination, serial frozen sections of brain and spinal cord were stained for the presence of Lyt-2 and L3T4+ cells in the lesions of chronically infected SJL/J mice. L3T4+ cells were observed predominantly in perivascular regions while Lyt-2+ cells were observed infiltrating the parenchyma. These results provide further evidence that Lyt-2+ lymphocytes are important in the mechanism of susceptibility/resistance to Theiler's murine encephalomyelitis virus-induced demyelination.

Animals

Toxicity of intrathecally administered cytotoxic drugs and their antitumor activity against an intrathecal Walker 256 carcinosarcoma model for meningeal carcinomatosis in the rat.

Meningeal carcinomatosis in humans is refractory to most attempts at therapy and has a grave prognosis. As part of a search for new agents to treat meningeal carcinomatosis, the toxicity of a series of antitumor agents administered through an implanted catheter directly into the cerebrospinal fluid (CSF) of the lumbar spinal cord of 200-g rats has been examined. The highest non-toxic dose (HNTD) of the agents producing no signs of histological damage, motor dysfunction, or neurobehavioral changes was bleomycin (80 micrograms), cytarabine (640 micrograms), dacarbazine (1 microgram), doxorubicin (20 micrograms), 5-fluorouracil (150 micrograms), methotrexate (1000 micrograms), mitomycin C (10 micrograms), and triethylene phosphoramide (800 micrograms). No toxicity was observed at the highest dose that could be administered because of limited solubility of 1,3-bis(2-chloroethyl)-1-nitrosourea (100 micrograms), or diaziquone (70 micrograms). The rat model gave reasonable prediction of the toxicity of antitumor agents that have been administered intra-CSF to humans but with a tendency to underpredict toxicity. The antitumor activity of the agents administered intra-CSF at the HNTD against a Walker 256 carcinosarcoma model for meningeal carcinomatosis in the rat was examined. Diaziquone, doxorubicin, methotrexate, and mitomycin C gave a 25% or greater increase in lifespan and diaziquone and mitomycin C gave some long-term survivors. BCNU, bleomycin and 5-fluorouracil gave less than a 25% increase in lifespan. When mitomycin C was administered intra-CSF at the HNTD and diaziquone at the limit of solubility daily for 4 days there was no toxicity and an increase in survival of Walker 256 carcinosarcoma tumored animals compared to animals administered a single daily dose. Intrathecal diaziquone was more active against meningeal Walker 256 carcinosarcoma than i.v. diaziquone. Intravenous methotrexate had no activity against meningeal Walker 256 carcinosarcoma. We conclude that intra-CSF administration of some anticancer agents such as diaziquone and mitomycin C at doses that do not produce toxicity can significantly increase the survival of rats with experimental meningeal carcinomatosis.

Animals

The evolution of osteomalacia in the rat with acute aluminum toxicity.

Aluminum toxicity is the presumed cause of aluminum-associated osteomalacia. In animal models, osteomalacia has been produced after a prolonged course of aluminum. In the present study, rats with renal failure received 20 mg intraperitoneal aluminum during a 2 day period. This model allows sequential observations in the development of osteomalacia. Rats were sacrificed and studied 5, 12, 25, and 40 days after aluminum administration. No differences were observed in serum calcium, phosphorus, or creatinine as a consequence of aluminum administration. Compared with control rats, parathyroid hormone was decreased at 12 and 25 days. A direct correlation was present between plasma and bone aluminum at 12 days (r = 0.92, p less than 0.01), 25 days (r = 0.85, p less than 0.005), and 40 days (r = 0.88, p less than 0.001) but not 5 days after aluminum administration. Plasma aluminum peaked at 5 days (727 +/- 89 micrograms/liter, mean +/- SEM) and bone aluminum at 40 days (273 +/- 40 micrograms/g). Aluminum had profound effect on bone histology. At 5 days there was a decrease in osteoblast surface and osteoid surface; at 12 days osteoblast surface and osteoid surface returned to normal but osteoclast surface decreased. Subsequently there was a progressive increase in osteoid surface and osteoid volume. Bone formation rate measured at 12, 25, and 40 days was decreased at these intervals. In conclusion, (1) high plasma aluminum may be directly toxic to the osteoblast; (2) progressive osteoid accumulation is secondary to matrix (osteoid) deposition, which exceeds the depressed bone formation rate; (3) the progressive decrease in plasma aluminum and increase in bone aluminum suggest that bone has a high affinity for aluminum but may have a relatively slow rate of uptake at any given time; (4) aluminum may directly decrease parathyroid hormone; (5) the correlation between plasma and bone aluminum suggest an exchange is present; and (6) aluminum toxicity may independently affect the osteoblast and bone mineralization.

Aluminum

Algal partner regulates fungal urease in the lichen Evernia prunastri by producing a protein which inhibits urease synthesis.

Occurrence of a protein controlling urease synthesis (PIUS) at the transcriptional level in the lichen Evernia prunastri has been previously reported (Perez-Urria & Vicente, Physiol Plant 65: 433-438, 1985; id. Endocyt C Res 3: 311-316, 1986). In this work it was found that 0.1 mM cycloheximide seems to inhibit PIUS synthesis when lichen thalli are incubated on PIUS inducer, L-arginine. PIUS has been purified and characterized by PAGE, electrofocusing and amino acid analysis. It is a glycoprotein containing a homopolymer of fructose bound to the protein. PIUS has been located in whole thallus and lichenized mycobiont but remains undetectable in cultured fungi. PIUS is only detected in photobiont cells when they are axenically cultured on arginine. Thus, it is postulated that PIUS could be synthesized by lichenized photobionts from which it moves to mycobionts where it inhibits the production of fungal urease.

Amino Acids

Neurophysiological follow-up in a case of chronic progressive epilepsia partialis continua of childhood.

We report the waking and sleeping polygraphic and evoked potential data recorded during the follow-up of a child with chronic progressive epilepsia partialis continua of childhood (Bancaud's type II). The findings that emerged from these investigations coupled with the clinical pattern enabled us to delineate the course of this rare condition and provided clues for a tentative interpretation of the pathogenesis of the repetitive myoclonic jerks typical of epilepsia partialis continua, on which there is as yet no consensus. In our case involvement of cortico-subcortical systems seems probable.

Child

Gonadal influences on behavioral deterioration with aging of male rats.

There is much evidence that gonadal steroids modulate brain and behavioral development. However their possible influence on age-related deteroriation of brain and behavior has received little attention. We now present evidence that neonatal castration reduces the decline in locomotion, motor coordination, and circadian activity rhythms that normally accompanies old age in male rats. Three behavioral tests (open field, Rota-Rod, and wheel running) were conducted with aged male rats (24 months). Those castrated in the first 24 hr of postnatal life were more active in the open field (P less than 0.001) than aged rats that were sham-operated neonatally. The sham-operated aged males showed a more marked deterioration of motor coordination in the Rota-Rod (P less than 0.01) and greater disorganization of circadian wheel-running (P less than 0.05) than the neonatal castrates or than young rats neonatally sham-operated.

Aging

Anti-mu treatment suppresses immunoglobulin light-chain gene expression and Peyer's patch development.

Anti-mu treated mice have been used extensively as a model for suppressed B-cell development [Murgita R. A., Mattioli C. A. and Tomasi T. B., Jr. (1973) J. exp. Med. 138, 209; Manning D. D. (1975) J. Reticuloendothel. Soc. 18, 63; Manning D. D. and Jutila J. W. (1972) J. Immun. 108, 282; Janeway C. A., Jr., Murgita R. A., Weinbaum F. I., Asofsky R. and Wigzell H. (1977) Proc. natn. Acad. Sci. U.S.A. 74, 4582; Hayglass K. T., Naides S. J., Benacerraf B. and Sy M.-S. (1985) J. Molec. Cell. Immun. 2, 107; Manning D. D. (1972) J. Immun. 109, 1152; Cooper M. D., Kearney J. F., Gathings W. E. and Lawton A. R. (1980) Immun. Rev. 52, 29; Burrows P. D., Kearney J. F., Lawton A. R. and Cooper M. D. (1978) J. Immun. 120, 1526]. However, little molecular evaluation has been performed on these animals to determine the level at which B-lineage cells are arrested. Experiments reported here were designed to determine the effects of anti-mu treatment of newborn mice on Ig-specific mRNA expression in lymphocyte populations. Newborn CBA/J mice received i.p. injections of goat anti-mu IgG or non-immune goat IgG, every 2 days, from birth until age 4 weeks. The degree of B-cell suppression in anti-mu treated mice was evident by low serum Ig levels and lack of surface Ig+ cells in splenic lymphocytes. Morphologically, spleens of B-cell depleted mice were slightly reduced or normal size, while the total area of Peyer's patches (PP) was three-fold less than control mice. Spleen cells from anti-mu suppressed mice contained high levels of mu-mRNA, but markedly reduced levels of mRNA specific for other Ig heavy-chain isotypes, as determined by DNA excess dot blot and Northern blot hybridizations. RNA specific for other sequences (actin or IL-2 receptor) was not affected and hybridization to parent plasmid (pACYC) was not detected. In addition, suppression of kappa- and lambda-mRNA accumulation was evident. This was surprising, since the target for anti-mu treatment appears to be a B-cell population expressing intact surface IgM, a stage in B-cell development in which both mu- and light-chain-specific mRNA accumulation should be detected. Our results suggest one of the following models: (1) anti-mu treatment deletes all Ig+ cells from the animal, so that only mu expressing pre-B-cells remain; or (2) anti-mu suppresses B-cell development by inhibiting kappa and lambda transcription, perhaps by some feedback mechanism in which the presence of surface Ig is required to maintain light-chain transcription.

Animals

Update on the epidemiology of multiple sclerosis.

Neuroepidemiology has been important in providing clues about the cause and pathogenesis of multiple sclerosis. In this review, we update the incidence and prevalence rates of multiple sclerosis in Olmsted County, Minnesota, and examine the potential role of viruses, exposure to animals, toxins, trauma, and diet in the development of this disease. Diseases of probable autoimmune nature have also been linked to multiple sclerosis. These descriptive data may contribute to the formulation of testable specific hypotheses about the pathogenesis and treatment of multiple sclerosis and other demyelinating diseases.

Age Factors

Immunosuppressive treatment of multiple sclerosis.

Multiple sclerosis is thought, by many investigators, to be an immunologic disease. Therefore, a rationale exists for treating this disease by immunosuppressive therapy. In exacerbating-remitting multiple sclerosis, corticosteroids and adrenocorticotropic hormone are the most widely used drugs; high doses of intravenously administered methylprednisolone have recently gained favor. Chronic progressive multiple sclerosis has been treated with a number of immunosuppressive regimens, several of which have shown promise to date. Cyclophosphamide and azathioprine have been used most often and are reviewed in this report, as are other agents currently under investigation. No firm guidelines for the treatment of chronic progressive multiple sclerosis can be offered, but an approach to immunosuppressive therapy is suggested in this review.

Adrenal Cortex Hormones

Multiple sclerosis: basic concepts and hypothesis.

Multiple sclerosis, an inflammatory disease of the central nervous system, is characterized by primary destruction of myelin. This review covers recent advances in neuropathology, immunogenetics, neuroimmunology, and neurovirology that have provided insights regarding its pathogenesis. Three hypotheses are discussed: (1) autoimmunity, (2) "bystander" demyelination, and (3) immune destruction of persistently infected oligodendrocytes. A paradigm for induction of primary demyelination is proposed in which immune cells recognize "foreign" antigens on the surface of oligodendrocytes in the context of major histocompatibility complex gene products. The final result of this scheme may be "dying-back gliopathy," the alteration being noted first in the most distal extension of the oligodendrocyte--that is, the myelin sheaths.

Animals

Tubulointerstitial nephritis due to vancomycin.

Vancomycin was used to treat a patient with Staphylococcus aureus endocarditis. After 3 weeks of therapy, the patient developed a diffuse maculopapular rash, which resolved upon stopping the drug. Rechallenge with vancomycin several days later resulted in reappearance of the rash and rapid onset of acute anuric renal failure. Renal biopsy revealed acute granulomatous interstitial nephritis. This is the first report of biopsy-proven vancomycin-induced acute interstitial nephritis. Renal function should be monitored closely in patients receiving vancomycin therapy.

Aged

Synthesis of gastrin antagonists, analogues of the C-terminal tetrapeptide of gastrin, by introduction of a beta-homo residue.

A series of analogues of Boc-Trp-Leu-Asp-Phe-NH2, a potent gastrin agonist, were synthesized by introducing a beta-homo residue in the sequence. These compounds were tested in vivo on acid secretion, in the anesthetized rat, and for their ability to inhibit binding of labeled gastrin to its receptors on gastric mucosal cells. These analogues behaved as gastrin antagonists. The most potent compounds in this series were Boc-Trp-Leu-beta-homo-Asp-NHCH2C6H5 (10) (IC50 = 1 microM, ED50 = 0.2 mg/kg), Boc-Trp-Leu-beta-homo-Asp-NHCH2CH2C6H5 (11) (IC50 = 0.75 microM, ED50 = 0.5 mg/kg), Boc-Trp-Leu-beta-homo-Asp-Phe-NH2 (12) (IC50 = 1.5 microM, ED50 = 0.1 mg/kg), and Boc-Trp-Leu-beta-homo-Asp-D-Phe-NH2 (13) (IC50 = 2 microM, ED50 = 0.1 mg/kg). We could demonstrate the importance of the region of the peptide bond between leucine and aspartic acid and of the structure of the C-terminal dipeptide Asp-Phe-NH2, for exhibiting biological activity on acid secretion.

Animals

Synthesis and biological activity of some partially modified retro-inverso analogues of cholecystokinin.

Syntheses of some partially modified retro-inverso analogues of the C-terminal octa- or heptapeptide of cholecystokinin are described. These analogues (in which the C-terminal carboxamide was deleted or not) were obtained by reverting one or several peptide bonds in the parent molecule. All these compounds were able to inhibit binding of labeled CCK-8 to rat pancreatic acini and guinea pig brain membranes and to stimulate amylase release from rat pancreatic acini with various potencies. Some of these derivatives reproduce only part of the biological response of CCK on amylase release.

Amino Acid Sequence

Behavioral lateralization in rats and dopaminergic system: individual and population laterality.

Recently, we reported that practice facilitates the expression of the behavioral asymmetry in rats at individual and population levels. In the present study we investigated the side preference in the performance of four different tasks during 10 successive days. The practice increased individual laterality and internal consistency in all tasks. In addition, practice facilitated the expression of marked population laterality in two tasks (78.1% and 63.3% for right bias). The influence of dopaminergic systems on these behaviors was evaluated with apomorphine and with 6-hydroxydopamine lesions ipsi- and contralateral to the side preference. The results suggest that there is a presynaptic dominance contralateral to the side preference in the four tests. However, as influences of dopaminergic systems were different in each task and because the tests were unrelated, the results suggest that the behavioral laterality in rats, as in humans, is a phenomenon caused by different and relatively independent systems.

Animals

Desferrioxamine therapy in hemodialysis patients with aluminum-associated bone disease.

Aluminum toxicity in dialysis patients is associated with decreased bone turnover and a relative parathyroid hormone (PTH) deficiency. Desferrioxamine (DFO), a chelating agent, has been reported to improve bone histology in aluminum associated, low turnover bone disease in dialysis patients not subjected to parathyroidectomy. Information on the effect of DFO therapy on parathyroid gland function is lacking. In the present study, in addition to changes in bone histology, parathyroid gland function was evaluated in 18 hemodialysis patients with aluminum associated, low turnover bone disease (osteomalacia and aplastic bone disease) before and after one year of DFO treatment (1 to 6 g/week). Parathyroid gland function was assessed by using a calcium free and high calcium (3.5 to 4 mEq/liter) hemodialysis bath.(ABSTRACT TRUNCATED AT 250 WORDS)

Aluminum