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Biomedical subjects

K Garvey

Publications and source records attributed to K Garvey.

7 recordsLinked to original sources

Blood lancing systems for skin puncture.

Blood tests increasingly require only a few microlitres of blood. Lancing systems used for the collection of blood have the potential to transmit infection if used improperly. These systems vary in the amount of blood and pain produced.

Blood Specimen Collection↗

Selecting blood glucose monitoring systems.

A wide range of blood glucose monitoring systems is available for use in different applications. The systems have varying characteristics which should be taken into consideration during selection. Operator technique can influence the quality of the results.

Bias↗

Blood glucose measuring systems.

Glucose monitoring and lancing systems have proved useful in a range of patient testing applications in hospitals, general practice and for use by patients at home. Products are becoming easier to use and less technique dependent. It is important to be aware of their specific characteristics and to adhere to manufacturers' and local hospital laboratory guidelines.

Blood Glucose Self-Monitoring↗

Cloning of the gene encoding rat JAK2, a protein tyrosine kinase.

A complete cDNA clone encoding the rat JAK2 protein tyrosine kinase was isolated from an Nb2-SP (rat pre-T lymphoma cell line) cDNA library. The nucleotide (nt) and deduced amino acid (aa) sequences for this clone were determined and an open reading frame of 3399 bp, encoding a protein of a deduced mass of 130 kDa, was found. The coding regions of the rat and murine Jak2 clones share 93.4% nt identity and 97.1% aa identity. Northern analysis demonstrated that the 5-kb mRNA is highly abundant in brain and spleen, less abundant in skeletal muscle and testis, and detectable in kidney, heart, lung and liver. Translation of the rat Jak2 mRNA in rabbit reticulocytes results in a protein which is specifically immunoprecipitated by antibodies (Ab) recognizing JAK2, but not by Ab recognizing JAK1.

Amino Acid Sequence↗

Problems associated with the analysis and interpretation of saliva lithium.

The correlation between serum and saliva lithium levels in patients undergoing lithium prophylaxis therapy is discussed. Although a high correlation can be obtained, there is an unacceptably high individual variation of paired results. Two strategies were used in an attempt to improve the reliability of saliva as a predictor of serum levels. A naturally occurring marker in saliva and serum was used. This showed high correlation but still did not prevent large sporadic differences. Serially paired results in individual patients also showed occasional excessive variation. Although saliva lithium has been used for monitoring when serum assessment is impracticable, it is considered that it is, as yet, an unreliable technique.

Humans↗

Significance of the hydrogen ion concentration in synovial fluid in rheumatoid arthritis.

The hydrogen ion (H+) concentration and pCO2 were measured in the synovial fluid (SF) from the knee joints of 130 patients with arthritis by an acid-base analyser (ABL2 Acid-Base Laboratory), using a simple technique which prevented contact with air. H+ concentration was significantly higher in SF from 60 RA patients (mean 64.4 n mol/l; range 38-142 n mol/l) compared with patients with OA (mean 44 n mol/l; range 29-56 n mol/l), and 40 with other arthritides (mean 52 n mol/l). The H+ concentration in the SF showed a significant association with other variables of local inflammation-platelet, total leucocyte and polymorph counts, 5-nucleotidase, acid phosphatase and IgA levels in the SF and the clinical knee score, but not with the volume of the effusion. A similar relationship between these variables of inflammatory activity and SF pCO2 was also established. A higher SF H+ concentration was also found in systemically active disease, but no difference in SF pH between seropositive and seronegative patients. Whilst the pH of SF approximated to that of the blood in OA, it was significantly lower in the SF in RA. SF pH is a useful marker of local inflammatory activity, and its measurement is simple, reliable and rapid. It is relevant because changes in pH influence many of the processes involved in inflammation and the pH difference between SF and blood influences the transfer of drugs into the joint.

Arthritis↗