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Biomedical subjects

N Frost

Publications and source records attributed to N Frost.

8 recordsLinked to original sources

Anti-herpes simplex virus and cytostatic activity of some new 5-substituted 1-(4-hydroxybutyl)-and 1-(2-hydroxyethoxymethyl) uracil nucleoside analogues.

Two series of 5-substituted acyclic uracil nucleoside analogues (5-X-acyclo-U) were evaluated for their inhibitory effects against three herpes simplex virus type 1 (HSV-1) strains and one type 2 (HSV-2) strain in a plaque inhibition assay on human embryonic lung fibroblast (HELF) cell cultures as well as for their ability to inhibit the proliferation of baby hamster kidney cells in suspension (BHK-S) culture. Acyclovir [9-(2-hydroxyethoxymethyl)guanine; ACV] and (S)-9-(2,3-dihydroxypropyl)adenine [(S)-DHPA] were used as reference compounds. Only two derivatives, 1-(4-hydroxybutyl)-5-(2,2-dibromovinyl)uracil (Br2V-HBU) and 1-(2-hydroxyethoxymethyl)-5-(2,2-dibromovinyl)-uracil (Br2V-HEMU) proved active, but only at high concentrations (57-350 mumol/l) and without selectivity of anti-herpes activity, whereas ACV showed strong inhibition of HSV-1 and HSV-2 and a low cytostatic effect on BHK-S cells (50% inhibitory concentrations are 0.25-0.73, 2.1, and 240 mumol/l for HSV-1, HSV-2, and BHK-S, respectively), demonstrating a high antiherpes selectivity. In contrast, all other 5-X acyclo-U analogues [X = methyl, ethyl, propyl, butyl, vinyl, and 2-bromovinyl; acyclo = 1-(4-hydroxybutyl) and 1-(2-hydroxyethoxymethyl)] as well as the reference compound (S)-DHPA were inactive at concentrations up to 0.5-1 mmol/l. Some structure to activity relationships of acyclic pyrimidine and purine nucleoside analogues are discussed.

Acyclovir

A comparison between measured and calculated changes in the lung function after operation for pulmonary cancer.

Eighteen patients operated on for pulmonary cancer, the procedure varying from the removal of two segments to pneumonectomy, were subjected to measurement of the spirometric values VC, FEV1, FRC and RV preoperatively and 2-3 months postoperatively. The possibility of predicting the postoperative values from the number of segments removed was studied, partly with standard percentages (5.26%) per segment (method I), and partly with a percentage per segment in the affected area, calculated from the preoperative regional lung function tests using 133xenon. This latter test was carried out with a mobile apparatus using four detectors with tubular colimators and from the anterior surface of the thorax. Both methods of calculation gave, for the material as a whole, good agreement between the postoperative (measured) and the calculated values. However, with regard to certain patients, the regional lung function tests gave important information on preoperative reduced function in the affected area. In these patients, method No. II was by far the best for prediction of the postoperative values.

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