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Biomedical subjects

T Kelley

Publications and source records attributed to T Kelley.

18 recordsLinked to original sources

The role of nitric oxide synthase/nitric oxide in vascular smooth muscle control.

Vascular compliance is dependent on endogenous and exogenous sources of nitric oxide (NO). In a discussion of therapeutics and NO derived via nitric oxide synthase (NOS) enzymes, it is necessary to examine the pathways of each drug to provide the clinical perfusionist with a greater understanding of the role of NOS/NO in vascular function. Endothelial-derived NO is a contributor in the vasoregulation of vascular smooth muscle. Therapeutics seek to mimic the vasodilatory effects of the endogenous NO. The therapeutics included in this review are nitroglycerin, nitroprusside, amyl nitrite, and inhalation of NO. L-Arginine supplementation provides additional substrate for the endogenous pathway that can augment NO production. NO is a small bioactive molecule involved in various biochemical pathways. Dysregulation of NO production can impair normal physiologic control of vascular compliance. Therefore, the purpose of this review is to provide the perfusionist with an understanding of the biochemical and pharmacological aspects of NOS/NO associated with vascular function.

Administration, Inhalation↗

FcgammaRIIb modulation of surface immunoglobulin-induced Akt activation in murine B cells.

We examined activation of the serine/threonine kinase Akt in the murine B cell line A20. Akt is activated in a phosphoinositide 3-kinase (PtdIns 3-kinase)-dependent manner upon stimulation of the antigen receptor, surface immunoglobulin (sIg). In contrast, Akt induction is reduced upon co-clustering of sIg with the B cell IgG receptor, FcgammaRIIb. Co-clustering of sIg-FcgammaRIIb transmits a dominant negative signal and is associated with reduced accumulation of the PtdIns 3-kinase product phosphatidylinositol 3,4,5-trisphosphate (PtdIns 3,4,5-P3), known to be a potent activator of Akt. PtdIns 3-kinase is activated to the same extent with and without FcgammaRIIb co-ligation, indicating conditions supporting the generation of PtdIns 3,4,5-P3. We hypothesized that the decreased Akt activity arises from the consumption of PtdIns 3,4,5-P3 by the inositol-5-phosphatase Src homology 2-containing inositol 5-phosphatase (SHIP), which has been shown by us to be tyrosine-phosphorylated and associated with FcgammaRIIb when the latter is co-ligated. In direct support of this hypothesis, we report here that Akt induction is greatly reduced in fibroblasts expressing catalytically active but not inactive SHIP. Likewise, the reduction in Akt activity upon sIg-FcgammaRIIb co-clustering is absent from avian B cells lacking expression of SHIP. These findings indicate that SHIP acts as a negative regulator of Akt activation.

Animals↗

Bacteraemia in the adult intensive care unit of a teaching hospital in Nottingham, UK, 1985-1996.

Bacteraemia is an important cause of morbidity and mortality in the intensive care unit. In this study the distribution of organisms causing bacteraemic episodes in patients in the adult intensive care unit of a large teaching hospital was determined. Particular emphasis was placed on the type of organisms isolated from community- and hospital-acquired bacteraemia, the suspected source of infection, the possible risk factors associated with bacteraemia, and outcome. The incidence of bacteraemia and fungaemia increased from 17.7 per 1000 admissions in 1985 to 80.3 in 1996. A total of 315 episodes of bacteraemia and fungaemia were documented over a 12-year period, of which 18% were considered community-acquired and 82% hospital-acquired. Gram-positive and gram-negative bacteria accounted for 46.9% and 31.5% of the episodes, respectively. Polymicrobial infection accounted for 17.8% and fungi for 3.8% of the episodes. Staphylococcus aureus (22.5%), Staphylococcus epidermidis (7.6%), and Streptococcus pneumoniae (7.9%) were the predominant gram-positive bacteria implicated, whereas Escherichia coli (6%), Enterobacter cloacae (7%), Klebsiella aerogenes (3.8%), Pseudomonas aeruginosa (5.1%), and Acinetobacter spp. (3.8%) were the predominant gram-negative bacteria isolated. The two most common sources of infection were the respiratory tract (39.7%) and an intravascular line (24.5%), but in 8.9% of episodes the focus of infection remained unknown. Bacteraemic patients stayed in the unit for a longer period (12 days) than did non-bacteraemic patients (3 days). The overall mortality related to bacteraemia and candidaemia was 44.4%. Surveillance of bacteraemia in the intensive care unit is important in detecting major changes in aetiology, e.g., the increasing incidence of gram-positive bacteraemia, the emergence of methicillin-resistant Staphylococcus aureus in 1995, and the emergence of Enterobacter cloacae. It is of value in determining empirical antimicrobial therapy to treat presumed infection pending a microbiological diagnosis and in directing the development of guidelines for infection prevention, e.g., guidelines for central venous catheter care.

Adolescent↗

Negative signaling in B cells: SHIP Grbs Shc.

Negative signaling in B cells is initiated by co-crosslinking of the antigen receptor and the Fcy receptor, resulting in cessation of B-cell signaling events and, in turn, inhibiting B-cell proliferation and antibody secretion. Here, a competitive role is proposed for SHIP in blocking the interaction of Shc with the Grb2-Sos complex of proteins that lead to Ras activation in B cells.

Allergy and Immunology↗

Pyrolysis mass spectrometry studies on Bacillus anthracis, Bacillus cereus and their close relatives.

Pyrolysis mass spectrometry was used to examine strains of B. anthracis, of B. cereus, of B.cereus either proven to cause emetic illness or connected with outbreaks of emetic food poisoning and of B.thuringiensis. Analysis of the data-set for all strains allowed differentiation between B.anthracis, the emetic B.cereus and B.thuringiensis but B.cereus strains could not be clearly discriminated. Removal of data for the B.thuringiensis and the emetic B.cereus strains, followed by re-analysis, allowed clear separation of the B. anthracis and B. cereus groups. Furthermore, PyMS was found to be capable of discriminating between some strains of B.anthracis, and demonstrating sub-groupings of others. This work provides further evidence of the ability of PyMS to distinguish rapidly between very closely related organisms and indicates its potential in epidemiology.

Bacillus anthracis↗

Recruitment and phosphorylation of SH2-containing inositol phosphatase and Shc to the B-cell Fc gamma immunoreceptor tyrosine-based inhibition motif peptide motif.

Recently, we and others have demonstrated that negative signaling in B cells selectively induces the tyrosine phosphorylation of a novel inositol polyphosphate phosphatase, p145SHIP. In this study, we present data indicating that p145SHIP binds directly a phosphorylated motif, immunoreceptor tyrosine-based inhibition motif (ITIM), present in the cytoplasmic domain of Fc gammaRIIB1. Using recombinant SH2 domains, we show that binding is mediated via the Src homology region 2 (SH2)-containing inositol phosphatase (SHIP) SH2 domain. SHIP also bound to a phosphopeptide derived from CD22, raising the possibility that SHIP contributes to negative signaling by this receptor as well as Fc gammaRIIB1. The association of SHIP with the ITIM phosphopeptide was activation independent, while coassociation with Shc was activation dependent. Furthermore, experiments with Fc gammaRIIB1-deficient B cells demonstrated a genetic requirement for expression of Fc gammaRIIB1 in the induction of SHIP phosphorylation and its interaction with Shc. Based on these results, we propose a model of negative signaling in which co-cross-linking of surface immunoglobulin and Fc gammaRIIB1 results in sequential tyrosine phosphorylation of the ITIM, recruitment and phosphorylation of p145SHIP, and subsequent binding of Shc.

Animals↗

How will care be rationed?

No bill before Congress fully answers the explosive question of who gets how much care--and who ultimately makes the hard choices. But experts say health care rationing of some kind is inevitable. Here's how to decipher the debate, and what it means for your practice.

Forecasting↗

Characterization of exopolymers of aquatic bacteria by pyrolysis-mass spectrometry.

Exopolymers from a diverse collection of marine and freshwater bacteria were characterized by pyrolysis-mass spectrometry (Py-MS). Py-MS provides spectra of pyrolysis fragments that are characteristic of the original material. Analysis of the spectra by multivariate statistical techniques (principal component and canonical variate analysis) separated these exopolymers into distinct groups. Py-MS clearly distinguished characteristic fragments, which may be derived from components responsible for functional differences between polymers. The importance of these distinctions and the relevance of pyrolysis information to exopolysaccharide function in aquatic bacteria is discussed.

Carbohydrates↗

GM1 inhibits early signaling events mediated by PDGF receptor in cultured human glioma cells.

Binding of platelet-derived growth factor receptor (PDGF) to its receptor (PDGFR) activates its receptor tyrosine kinase which autophosphorylates tyrosine residues. The p85 regulatory subunit of phosphatidylinositol 3-kinase (PI 3-kinase) binds to specific phosphotyrosines on PDGFR-beta and through the associated p110 catalytic subunit of PI 3-kinase catalyzes the formation of lipids that are involved in intracellular signaling. We examined if GM1 affects interactions between PDGFR-beta and specific proteins involved in PDGFR-mediated signaling. U-1242 MG cells were studied under different growth conditions using immunoprecipitation and Western Blot analysis. PDGF-stimulated the association of PDGFR-beta with p85, ras GTPase-activating protein and PLC gamma. GM1 decreased these associations in parallel with decreased tyrosine phosphorylation of PDGFR. PDGF augmented the activity of PI 3-kinase associated with PDGFR-beta, and this was attenuated by GM1. However, GM1 did not alter SH2 domains of p85. GM1 probably inhibits PDGF-induced signaling proteins with PDGFR-beta by inhibiting phosphorylation of specific tyrosines on the receptor which bind to SH2-domains on signaling proteins.

Brain Neoplasms↗