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Biomedical subjects

S E Johnson

Publications and source records attributed to S E Johnson.

At least 19 recordsLinked to original sources

Systemic Mycobacterium smegmatis infection in a dog.

A 3-year-old female Basset Hound was examined because of fever and lameness of 2 months' duration. Physical examination revealed a small cranial abdominal mass, which had an ultrasonographic appearance of a large abdominal lymph node. Cytologic examination of an ultrasound-guided fine-needle aspirate of the mass revealed a few macrophages that contained numerous linear unstained structures consistent with mycobacteria. Intracellular acid-fast bacilli were identified in an aspirate that was stained with modified Ziehl-Neelsen. Exploratory laparotomy revealed wide-spread abdominal lymphadenopathy. Histologic examination of hepatic and lymph node biopsy specimens revealed chronic granulomatous hepatitis and lymphadenitis. Acid-fast organisms isolated after bacteriologic culturing of a mesenteric lymph node specimen were identified as Mycobacterium smegmatis. Because the prognosis was poor, the dog was euthanatized.

Animals

Activation of skeletal muscle satellite cells and the role of fibroblast growth factor receptors.

Specific, high-affinity binding of FGF2 was evaluated in cultured skeletal muscle satellite cells from young (3- to 4-week-old) and adult (9- to 12-month-old) rats prior to the first division in culture. Specific binding of FGF2 was detected on satellite cells from young rats at 18 h postplating, the earliest time examined, but specific binding was not detectable until 42 h on satellite cells from old rats. This correlates well with the delayed entry into the cell cycle exhibited by adult satellite cells and with the ability of satellite cells from rats of these ages to proliferate in response to FGF2. Patterns of tyrosine phosphorylation in whole cell extracts, following stimulation by FGF2, indicated specific FGF2 phosphorylation of proteins of 150/145, 90, 42, and 35 kDa in cells from both age groups. Several growth factors were evaluated for their ability to stimulate early entry of adult satellite cells into the cell cycle, and none of the following growth factors were able to activate proliferation of these cells: FGF2, IGF-1, IGF-2, PDGF-BB, TGF-beta 1, or TGF-beta 2. In addition, specific binding of FGF2 to 48-h cultures of adult satellite cells was not stimulated by FGF2, IGF-1, IGF-2, PDGF-BB, or TGF-beta 2, and specific binding was significantly decreased (P < 0.05) by FGF2 and TGF-beta 2. Specific binding was significantly lower in cells treated with PDGF-BB than in cells treated with either form of IGF but was greater than in cells treated with FGF2 or TGF-beta 2. The results of these experiments suggest that expression of functional FGF receptors on the surface of satellite cells may represent an important step in the activation of quiescent satellite cells.

Age Factors

Ras p21Val inhibits myogenesis without altering the DNA binding or transcriptional activities of the myogenic basic helix-loop-helix factors.

MRF4, MyoD, myogenin, and Myf-5 are muscle-specific basic helix-loop-helix transcription factors that share the ability to activate the expression of skeletal muscle genes such as those encoding alpha-actin, myosin heavy chain, and the acetylcholine receptor subunits. The muscle regulatory factors (MRFs) also exhibit the unique capacity to initiate the myogenic program when ectopically expressed in a variety of nonmuscle cell types, most notably C3H10T1/2 fibroblasts (10T1/2 cells). The commitment of myoblasts to terminal differentiation, although positively regulated by the MRFs, also is controlled negatively by a variety of agents, including several growth factors and oncoproteins such as fibroblast growth factor (FGF-2), transforming growth factor beta 1 (TGF-beta 1), and Ras p21Val. The molecular mechanisms by which these varied agents alter myogenic terminal differentiation events remain unclear. In an effort to establish whether Ras p21Val represses MRF activity by directly targeting the MRF proteins, we examined the DNA binding and transcription activation potentials of MRF4 and MyoD when expressed in 10T1/2 cells or in 10T1/2 cells expressing Ras p21Val. Our results demonstrate that Ras p21Val inhibits terminal differentiation events by targeting the basic domain of the MRFs, and yet the mechanism underlying this inhibition does not involve altering the DNA binding or the inherent transcriptional activity of these regulatory factors. In contrast, FGF-2 and TGF-beta 1 block terminal differentiation by repressing the transcriptional activity of the MRFs. We conclude that the Ras p21Val block in differentiation operates via an intracellular signaling pathway that is distinct from the FGF-2 and TGF-beta 1 pathways.

Cell Differentiation

Hypodipsic hypernatremia in a dog with defective osmoregulation of antidiuretic hormone.

Hypernatremia was detected in a dog that was evaluated because of seizures. During hospitalization, the dog was fully conscious and remained hypernatremic when drinking voluntarily and when water was added to the food. Urine volume increased and urine osmolality decreased during an infusion of hypertonic saline (2.5% NaCl) solution, despite development of progressive hyperosmolality. There was no correlation between plasma antidiuretic hormone concentration and osmolality during the infusion study. The dog released antidiuretic hormone normally after nonosmotic stimulation (ie, apomorphine administration). These findings allowed a diagnosis of hypodipsic hypernatremia caused by destruction of hypothalamic osmoreceptors. At necropsy, there was hydrocephalus, atrophy of the septum pellucidum, and neuraxonal dystrophy of the cuneate nuclei. The underlying neurologic disease responsible for the CNS lesions could not be determined, but hydrocephalus may have led to pressure atrophy in the region of the hypothalamus that contains osmoreceptors.

Animals

Isolation and mapping of a single-locus minisatellite sequence marker to 1q36-qter and synteny group 10 in cattle and to 1q36-qter in sheep.

A minisatellite sequence (RD1613) was isolated from a bovine cosmid genomic library and its chromosomal location determined in cattle and sheep. In cattle, somatic cell hybrid panel analysis assigned RD1613 to the syntenic group U10 with a concordancy of 100%. In situ hybridization placed RD1613 onto bovine chromosome 1 in the region of bands q36-qter. This is the first in situ localization to chromosome 1 in cattle and allows the provisional assignment of syntenic group U10 to this chromosome. It was also found that RD1613 hybridized strongly to sheep genomic DNA. In situ hybridization localized RD1613 to sheep chromosome 1q36-qter, which is consistent with homology between cattle chromosome 1 and sheep chromosome 1q. The RD1613 probe detects a polymorphic single locus marker (designated D1S1) in both cattle and sheep and will be very useful in linkage studies.

Animals

Expression of epidermal growth factor family gene members in early mouse development.

Transcription of four members of the epidermal growth factor (EGF) family, EGF, TGF-alpha, Amphiregulin, and Cripto, was investigated in the ovulated unfertilized egg and preimplantation embryo using cDNA libraries. EGF was present as a maternal message only, TGF-alpha was present at low levels in each library, Amphiregulin was not detected, and Cripto transcripts were first detected in the blastocyst cDNA library. In situ hybridization studies of the implanting embryo revealed Cripto expression localized to the entire ectoderm and then to the rapidly growing ectoplacental cone. At gastrulation, Cripto was detected in the primitive streak and developing mesoderm. During organogenesis, Cripto localized to the developing heart. Two Cripto transcripts were detected: one is confined to the early embryo and teratocarcinoma cells, and the other, first found in the fetus, is the major form detected in adult organs.

Amphiregulin

Acid-base status at birth and subsequent neurosensory impairment in surviving 500 to 1000 gm infants.

OBJECTIVE: The purpose of this study was to assess, in infants born weighing < or = 1000 gm, if umbilical cord blood acid-base measures at birth are associated with an additional increase in neurosensory impairment. STUDY DESIGN: Of 289 surviving infants with a birth weight of 500 to 1000 gm born from 1979 to 1989, 219 had umbilical cord acid-base status measured at birth and were followed prospectively for > or = 1 year. Measures of neurologic impairment used in this study included mental retardation, cerebral palsy, and major neurosensory impairment. RESULTS: Gestational age was inversely associated with all neurosensory impairments and was a better predictor of subsequent impairment in this population than was birth weight. Very low umbilical cord pH values were also significantly related to adverse outcomes. There was also an inverse relationship between cord blood bicarbonate levels and major neurosensory impairment. The highly significant relationship between cord blood bicarbonate and pH values and the development of neurosensory impairments persisted in spite of adjustment for gestational age, birth weight, plurality, use of general anesthesia, maternal race, and presence of hypertension. CONCLUSION: An adverse acid-base status at birth is additive to the effect of gestational age in predicting neurosensory impairment in infants weighing < or = 1000 gm.

Acid-Base Equilibrium

Evaluation of total serum bile acids concentration and bile acid profiles in healthy cats after oral administration of ursodeoxycholic acid.

Ursodeoxycholic acid (UDCA; 10 mg/kg of body weight) was administered orally to 5 healthy cats for 3 months. Signs of illness were not apparent in any cat during treatment with UDCA. Results of monthly CBC, serum biochemical analysis, and urinalysis were unchanged during drug administration. There was a decrease in serum cholesterol concentration in 4 cats. Total postprandial serum bile acids (PPSBA) concentration was significantly (P = 0.0003) increased over total preprandial serum bile acids (PRSBA) concentration at all sample collection periods. The PRSBA and PPSBA concentrations were significantly (P < 0.05) increased at all sample collection periods after administration of UDCA, compared with baseline values. Ursodeoxycholic and tauroursodeoxycholic acids were not detected in serum prior to initiating administration of UDCA. Both bile acids were detected in the serum of all cats 1 and 2 months after UDCA administration and were detected in the serum of 2 cats 3 months after initiating UCDA administration. Hepatic ultrasonographic findings were normal before and after completion of UDCA administration. A mild, focal lymphocytic infiltrate was observed in 3 cats 3 months after initiating UDCA administration. Results of the study indicate that UDCA is absorbed into the systemic circulation of cats after oral administration, undergoes hepatic conjugation, and appears to be safe.

Administration, Oral

Systemic mycosis caused by Acremonium sp in a dog.

A 4-year-old female German Shepherd Dog was examined to determine the cause of ataxia, progressive head tilt, anorexia, lethargy, and weight loss of 3 weeks' duration. A vestibular syndrome, generalized lymphadenopathy, bilateral uveitis, and chorioretinitis with complete detachment of the left retina were detected. Abnormal clinicopathologic findings were isosthenuria and hyperglobulinemia. The non-functional left eye was enucleated and fungal organisms resembling Aspergillus spp were identified on histologic examination. Microbial culture of a urine sample yielded Acremonium sp, which was initially considered a contaminant. The dog was considered to have systemic aspergillosis and was treated with itraconazole for 7 months, until it was euthanatized because of persistent vomiting and anorexia. Postmortem examination revealed multisystemic pyogranulomatous and necrotizing inflammation of the myocardium, pericardium, liver, and kidneys; and granulomatous splenitis, lymphadenitis, retinitis, endometritis, and meningoencephalitis. Fungal culture of affected organs yielded Acremonium sp. These findings indicated that Acremonium spp can be pathogenic and should not be ignored when cultured.

Acremonium

Proliferating cell nuclear antigen (PCNA) is expressed in activated rat skeletal muscle satellite cells.

Skeletal muscle satellite cells from uninjured muscle of adult animals are generally found to be in a quiescent state, and when cultured, they remain quiescent in vitro for a period of time which is directly related to the age of the donor animal. A technique for studying the activation of satellite cells in primary cultures has been developed and employs proliferating cell nuclear antigen (PCNA) as a marker for entrance into the S phase of the cell cycle. PCNA is a protein involved in DNA replication and is maximally expressed in S phase of the cell cycle. We monitored PCNA expression in satellite cells isolated from young (3 week) and adult (9 month) rats, and our results indicate that satellite cells begin to accumulate PCNA prior to changes in cell number in both age groups. Using ELISA techniques, we demonstrated that addition of an extract of crushed muscle (CME) activated satellite cells and significantly reduced the length of the lag phase in cells from both age groups. Addition of bFGF shortened the lag phase of PCNA synthesis in satellite cells from 3-week-old rats but had no effect on the kinetics of PCNA expression in cells from 9-month-old rats. Based on our experiments, PCNA expression can be used as a marker to follow the entry of satellite cells into the cell cycle in primary mass cultures.

Animals

The gamma fibrinogen gene (FGG) maps to chromosome 17 in both cattle and sheep.

The gamma fibrinogen gene (FGG) was localised in both cattle and sheep using in situ hybridisation. The probe employed was a 1-kb bovine cDNA fragment. Based on observations of QFQ-banded chromosome preparations, this locus is on bovine chromosome 17q12-->q13 and on the homologous sheep chromosome 17. This localisation is, to our knowledge, the first assignment to chromosome 17 in either the bovine or ovine genome. In addition to localising FGG to this chromosome, the assignment provisionally maps the previously unassigned syntenic group U23, containing (besides FGG) the genes for mitochondrial aldehyde dehydrogenase 2 (ALDH2), interleukin 2 (IL2), immunoglobulin lambda (IGL), and beta fibrinogen (FGB), to chromosome 17 in cattle and probably to the same chromosome in sheep.

Animals

Serum lipoprotein concentrations and hepatic lesions in obese cats undergoing weight loss.

Serum lipoprotein concentrations, routine serum biochemical values, and morphologic changes of the liver were evaluated in cats undergoing weight loss. Food was withheld from 6 obese and 6 control cats for 3 days (days 0 to 2), followed by feeding 50% of previous food intake for 26 days (days 3 to 28). Percutaneous liver biopsy specimens were obtained from all cats on days 0, 7, 14, and 28. Blood samples for serum biochemical analysis and lipoprotein profiles were obtained on days 0, 3, 7, 14, and 28. All cats lost weight throughout the study, and none developed signs of clinical illness, including those of idiopathic hepatic lipidosis syndrome. Serum total cholesterol concentrations decreased initially in all cats, but rapidly returned to normal after day 3 in obese cats, suggesting altered cholesterol metabolism during dietary restriction. Low-density lipoprotein concentrations decreased throughout the study in control cats, but were unchanged in obese cats. Examination of liver biopsy specimens from each cat revealed minimal lipid accumulation in all specimens, although some specimens contained hydropic degeneration.

Animal Feed

Desmin is present in proliferating rat muscle satellite cells but not in bovine muscle satellite cells.

The presence of desmin was characterized in cultured rat and bovine satellite cells and its potential usefulness as a marker for identifying satellite cells in vitro was evaluated. In primary cultures, positive immunohistochemical staining for desmin and skeletal muscle myosin was observed in rat and bovine myotubes. A small number of mononucleated cells (20% of rat satellite cells and 5% of bovine satellite cells) were myosin-positive, indicative of post-mitotic differentiated myocytes. In bovine satellite cell cultures 13% of the mononucleated cells were desmin-positive, while 84% of the mononucleated cells in rat satellite cell cultures were desmin-positive. Rat satellite cell mass cultures and bovine satellite cell clonal density cultures were pulsed with 3H-thymidine, and autoradiographic data revealed that greater than 94% of dividing rat cells were desmin-positive, suggesting that desmin is synthesized in proliferating rat satellite cells. However, no desmin was seen in cells that incorporated labeled thymidine in bovine satellite cell clones. Analysis of clonal density cultures revealed that only 14% of the mononucleated cells in bovine satellite cell colonies were desmin-positive, whereas 98% of the cells in rat satellite cell colonies were desmin-positive. Fibroblast colonies from both species were desmin-negative. In order to further examine the relationship between satellite cell differentiation and desmin expression, 5-bromo-2'-deoxyuridine (BrdU) was added to culture medium at the time of plating to inhibit differentiation. Fusion was inhibited in rat and bovine cultures, and cells continued to divide. Very few desmin-positive cells were found in bovine cultures, but greater than 90% of the cells in rat cultures stained positive for desmin. The presence of desmin and sarcomeric myosin was also evaluated in regenerating rat tibialis anterior five days after bupivacaine injection. In regenerating areas of the muscle many desmin-positive cells were present, and only a few cells stained positive for skeletal muscle myosin. Application of desmin staining to rat satellite cell growth assays indicated that rat satellite cells cultured in serum-containing medium were contaminated with fibroblasts at levels that ranged from approximately 5% in 24 hr cultures to 15% in mature cultures. In defined medium 4 day cultures contain approximately 95% to 98% desmin-positive satellite cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Real ear measures of auditory brain stem response click spectra in infants and adults.

This study investigated spectral differences for auditory brain stem response (ABR) clicks measured in infant and adult ear canals. Click stimuli were presented via insert earphones into the ear canals of 15 adults and 11 infants at 30 and 60 dB nHL. An ER-7C probe microphone fed the stimulus to a spectrum analyzer for analysis of spectral content. Infants had spectral peaks at higher frequencies (mean = 2339.77 Hz) than adults (mean = 1618.75 Hz). The infants also exhibited greater variability in their spectral peaks (SD = 669.37) than did adults (SD = 319.0). The total energy of the clicks was the same in infants' and adults' ears. These results indicate that click stimuli such as those used for ABR testing resonate in infant and adult ears differently, and that the resonance in infants is much more variable than the resonance of adults. These findings provide additional evidence for the need to use infant norms when screening infant hearing using the ABR. Similarly, the findings suggest that infant ABRs may be more correlated with higher frequency behavioral thresholds than those assumed for adults.

Acoustic Stimulation

Localization of the beta-subunit of follicle stimulating hormone in cattle and sheep by in situ hybridization.

The locus for the beta-subunit of the follicle stimulating hormone gene (FSHB) has been determined in both cattle and sheep by in situ hybridization of a bovine and an ovine cDNA probe, respectively, to metaphase chromosomes. Our results show that the FSHB locus is on cattle chromosome 15 in the region of bands q24-qter and in sheep on the cytogenetically homologous chromosome 15, also in the region q24-qter. The mapping of the FSHB gene in cattle together with the location of other genes (CAT, HBB and PTH) previously found to be syntenic in cattle and on human chromosome 11p, defines an evolutionarily conserved synteny. The localization of the FSHB gene to a cytogenetically homologous region in cattle and sheep is consistent with the hypothesis of extensively conserved chromosome structure in these two species.

Animals

Safety and immunogenicity of subcutaneous H. influenzae vaccines in 15-17 month-old children.

To evaluate the safety and immunogenicity of subcutaneously administered PRP and PRP-D, one hundred and one healthy 15 to 17 month-old children were randomly assigned to receive two subcutaneous doses, 2 months apart, of either vaccine. The incidence of local and systemic reactions did not differ significantly between the two groups. PRP antibody levels in the pre-immunization sera of 95% of subjects were below the level associated with immediate protection from Hib disease (less than 0.15 microgram/ml). After the first dose, 32% of PRP and 70% of PRP-D (p less than 0.001) recipients achieved antibody levels of greater than or equal to 0.15 microgram/ml, and 8% and 26% (p = 0.003) respectively achieved levels greater than or equal to 1 microgram/ml, a level believed to predict long-term protection. After the second dose, antibody levels greater than or equal to 0.15 microgram/ml were reached in 38% of PRP and 88% of PRP-D (p less than 0.001) recipients and levels of greater than or equal to 1 microgram/ml were reached in 22% and 78% respectively (p less than 0.001). The geometric mean levels of PRP antibody after immunization were significantly higher in the PRP-D group after both the first and second doses (p less than 0.001). These results suggest that subcutaneous administration of both vaccines is safe, but PRP-D results in significantly higher antibody levels compared to PRP. The levels were lower than what has been reported following intramuscular administration.

Antibodies, Bacterial

Positive and negative regulation of a tumor necrosis factor response in melanoma cells.

Tumor necrosis factor (TNF) elicits a wide variety of responses in target cells by binding to cell surface receptors, but the signal transduced from these receptors in unclear. We examined the role of two different second messenger systems in the regulation of plasminogen activator inhibitor, type 2 (PAI-2) induction by TNF in SK-MEL-109 melanoma cells. Synthesis of PAI-2 and transcription of its mRNA could be induced by a protein kinase C (PKC) activator, phorbol myristate acetate. In addition, induction of PAI-2 synthesis by TNF was blocked by two PKC inhibitors, staurosporine and 1-(5-isoquinolinesulfonyl)-2-methylpiperazine dihydrochloride. The inhibitor of cyclic nucleotide-dependent protein kinases, N-[2-(methylamino)-ethyl]-5-isoquinoline sulfonamide dihydrochloride, was much less effective in decreasing PAI-2 synthesis. Staurosporine and 1-(5-isoquinolinesulfonyl)-2-methylpiperazine dihydrochloride also inhibited both TNF- and phorbol myristate acetate-induced PAI-2 mRNA accumulation. We measured the binding of 3H-labeled phorbol dibutyrate to membrane and cytosol fractions of TNF-treated SK-MEL-109 cells and found a transient redistribution of 3H-labeled phorbol dibutyrate binding from cytosol to membrane fractions in response to TNF. In contrast to the positive regulation by PKC in promoting TNF-induced PAI-2 synthesis cAMP inhibited this response. Pretreatment of cells with agents that raise intracellular cAMP levels completely abolished TNF-induced PAI-2 synthesis. Addition of cAMP-elevating agents during TNF induction could also block PAI-2 synthesis. PAI-2 mRNA accumulation in response to TNF was inhibited, but not completely abolished, by cAMP-elevating agents, suggesting that cAMP also exerted its inhibitory effect at the translation level. The positive regulation of a TNF response by PKC and its negative modulation by cAMP may provide a means for intracellular coordination of signals from interacting extracellular factors in regulating TNF responses in different target cells.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine