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Biomedical subjects

R B Read

Publications and source records attributed to R B Read.

At least 37 records · Page 2Linked to original sources

Thermal resistance of certain oncogenic viruses suspended in milk and milk products.

Thermal destruction rate curves were determined for adenovirus 12, reovirus 1, and herpes simplex virus in sterile milk, raw milk, raw chocolate milk, and raw ice cream mix. At 40 to 60 C, the curves were asymptotic to the base line. At 65 C, which is near the pasteurization standard, the curves approached a first-order reaction. Thermal resistance studies, by means of in vivo assays, of Moloney and Rauscher leukemia viruses and Moloney and Rous sarcoma viruses indicated that Rous sarcoma was the most resistant. A comparison of the 12D processes of Rous sarcoma virus, reovirus 1, adenovirus 12, and herpes simplex virus in ice cream mix (the most protective of the suspending menstrua studied) with the U.S. Public Health Service pasteurization standard indicated an adequate safety factor in current pasteurization practices.

Adenoviridae↗

Two-phase slug flow heat exchanger for microbial thermal inactivation research.

A continuous two-phase (air-liquid), slug flow, tubular heat exchanger was developed for microbial thermal inactivation research to give exposure times and temperatures in the range of high-temperature, short-time milk pasteurization as well as heat-treated sample volumes of at least 2 ml. The use of air to compartmentalize the liquid in the capillary tubing prevented the development of laminar flow, which enabled precise identification of the residence time of the fastest flowing particles in the heating, holding, and cooling sections of the instrument. Residence time distributions were quantitated by measuring the degree of spreading of radioactive tracers for water, whole milk, chocolate milk, cream, and ice-cream mix with holding temperatures from 50 to 72 C, holding times from 2 to 60 sec, and heating and cooling times of 1.7 sec each. For a holding time of 60 sec and a fastest particle velocity of 10.2 cm/sec, the velocity ratios of the fastest moving particle to the median particle were 1.05, 1.05, 1.10, and 1.13 for whole milk, chocolate milk, cream, and ice-cream mix, respectively. With shorter holding times, these velocity ratios were even closer to unity. These velocity ratios indicated that the instrument would be an effective tool for thermal inactivation research on microorganisms suspended in homogeneous fluids with a viscosity of 15 centipoises or less at the exposure temperature.

Air↗

Variation in plating efficiency of Salmonellae on eight lots of brilliant green agar.

The plating efficiency of Salmonella anatum, S. cubana, S. dublin, S. tennessee, and S. typhimurium was determined for eight lots of Brilliant Green Agar made by two manufacturers. Washed cells were used as the inoculum and cultures were incubated at 41.5 C. All lots of Brilliant Green Agar were supplemented with 12 mg of sulfadiazine per 100 ml of medium. Of the eight lots of Brilliant Green Agar tested, average recovery of the test salmonellae in three did not differ from recoveries with Trypticase Soy Agar, which was used as a control to indicate the number of viable salmonellae in the test suspension capable of growth on a nonselective medium. Two lots of Brilliant Green Agar gave salmonellae recoveries with geometric means about 25% lower than, and significantly different from, those of the control agar. The remaining three lots of Brilliant Green Agar were generally unproductive.

Culture Media↗

Instrument for study of microbial thermal inactivation.

An instrument was designed for the study of thermal inactivation of microorganisms using heating times of less than 1 sec. The instrument operates on the principle of rapid automatic displacement of the microorganism to and from a saturated steam atmosphere, and the operating temperature range is 50 to 90 C. At a temperature of 70 C, thermometric lag (time required to respond to 63.2% of a step change) of the fluid sample containing microorganisms was 0.12 sec. Heating time required to heat the sample to within 0.1 C of the exposure temperature was less than 1 sec, permitting exposure periods as brief as 1 sec, provided the proper corrections are made for the lethal effect of heating. The instrument is most useful for heat exposure periods of less than 5 min, and, typically, more than 500 samples can be processed for microbial inactivation determinations within an 8-hr period.

Bacteriological Techniques↗

Thermal resistance of salmonellae isolated from dry milk.

Salmonella anatum, S. binza, S. cubana, S. meleagridis, S. newbrunswick, and S. tennessee isolated from dry milk, and S. senftenberg 775W were studied for heat resistance to determine whether these organisms would survive pasteurization as recommended by the 1965 Pasteurized Milk Ordinance of the U.S. Public Health Service. Thermal inactivation determinations were made on washed cells of the test microorganisms suspended in sterile whole milk. Excluding S. senftenberg, D values ranged from 3.6 to 5.7 sec at 62.8 C, from 1.1 to 1.8 sec at 65.6 C, and from 0.28 to 0.52 sec at 68.3 C. Corresponding values for S. senftenberg were 34.0, 10.0, 1.2, and 0.55 sec for respective exposure temperatures of 65.5, 68.3, 71.7, and 73.9 C. The present milk pasteurization processes as recommended by the Public Health Service will inactivate all seven strains of salmonellae studied, provided that the initial concentration does not exceed a calculated 3 x 10(12) salmonellae per ml of milk.

Animals↗

Gamma irradiation of staphylococcal enterotoxin B.

The inactivation of enterotoxin B by gamma irradiation was studied by use of single-and double-gel-diffusion assay techniques. Enterotoxin B (99+% purity) was suspended either in 0.04 m Veronal buffer (pH 7.2) or in milk, dispensed and heat-sealed in borosilicate glass vials, and irradiated essentially at 21 to 26 C with a cobalt-60 source. Parallel titrations of irradiated enterotoxin B in Veronal buffer were made by use of gel-diffusion and cat assay procedures to establish the relative sensitivity of these two assay procedures to irradiated enterotoxin. Results were identical. A dose of 5 Mrad was required to reduce an enterotoxin B concentration of 31 mug/ml in Veronal buffer to less than 0.7 mug/ml. When milk was used as a vehicle, a dose of 20 Mrad was needed to inactivate a 30 mug/ml concentration of enterotoxin B to less than 0.5 mug/ml. With Veronal buffer and milk as vehicles, the D values (dose required to inactivate 90%) for enterotoxin B inactivation were 2.7 and 9.7 Mrad, respectively.

Animals↗