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Biomedical subjects

R S Safferman

Publications and source records attributed to R S Safferman.

At least 19 recordsLinked to original sources

The species concept and its application to tailed phages.

A recently proposed polythetic definition of virus species appears easily applicable to bacteriophages. Criteria for classification of tailed phages are evaluated. Morphology, DNA homology, and serology are the most important criteria for delineation of species, but no single criterion is satisfactory. Dot-blot hybridization and seroneutralization may suggest false relationships by detecting common sequences in the DNA of otherwise unrelated phages. Species of tailed phages can be defined by a combination of morphology and DNA homology or serology. A procedure for identification of novel phages is outlined. Phage names should include elements of host names.

Bacteriophages↗

Processing procedures for recovering enteric viruses from wastewater sludges.

A powdered beef extract specially formulated for recovering viruses from environmental samples and designated as beef extract V was evaluated using indigenous and viral seeded wastewater sludge samples. When beef extract V was used to process activated and aerobically digested sludge solids, virus recoveries were shown to be similar to other methods that used commercially available supplemented beef extract. When used to process other sludge solids (primary and activated without primary clarification), cytotoxicity resulted in the BGM cell line used for virus assay. When these sludge solids were processed with the supplemented commercially marketed beef extract cell toxicity did not occur. Metal concentrations in the processed sewage sludge eluates were analyzed, but based on the levels observed they could not be shown as the source of the cytotoxicity. This did not exclude possible synergistic cytotoxic effects or organometal complexes. The commercially marketed beef extract was supplemented with either a floccing aid (FeCl3), a filter aid (Celite) or a floc prepared from paste beef extract. The paste beef floc supplement proved to be the most useful and reliable method for processing for viruses from wastewater sludge solids.

Animals↗

Isolation of enterovirus and reovirus from sewage and treated effluents in selected Puerto Rican communities.

Sewage treatment plant effluents were surveyed for viral contributions to gastroenteritis outbreaks in Puerto Rico. Of the 15 sewage treatment plants studied, all discharged their effluents upstream from water treatment plant intakes. No base-line data on the degree of viral challenge to these sewage treatment plants or the subsequent reduction of viruses before discharge existed. Enterovirus counts were generally much higher than those found in the continental United States. At four plants, viruses in the incoming sewage exceeded 100,000 PFU/liter, and one of these, a trickling filter plant, was discharging 24,000 PFU/liter to receiving waters. Virus identification showed that more than 80% of the enterovirus isolates were coxsackievirus B5. These overwhelming viral numbers pointed to defects in the sewage treatment processes. Without reasonable barriers to protect receiving waters, several of the downstream communities were using raw waters that posed extraordinary demands on the ability of their water treatment plants to supply virologically safe drinking water.

Enterovirus↗

Assessment of recovery efficiency of beef extract reagents for concentrating viruses from municipal wastewater sludge solids by the organic flocculation procedure.

This study was designed to assess the capacity of beef extract reagents to form flocs suitable for virus adsorption. Reagent comparisons resulted in the establishment of a modified organic flocculation procedure to concentrate viruses desorbed from sewage sludge solids with currently available modified powdered beef extracts. The method, based on supplementation with paste beef extract floc, achieved virus recoveries comparable to those obtained with powdered beef extract produced before a 1979 change in the manufacturing process. When primary settled sludge solids originating from mostly domestic waste were eluted with an unsupplemented modified powdered beef extract, high virus recovery efficiency was observed upon concentration by organic flocculation. This appreciable increase might have been due to floc-forming substances that were present in the primary settled sludge. These substances did not appear to be present in settled sludge collected from biologically treated wastes. Apparently, the floc-forming substances had been either removed or substantially altered during biological treatment.

Adsorption↗

Use of bituminous coal as an alternative technique for field concentration of waterborne viruses.

A filter system that sandwiches a bituminous coal preparation between two prefilters was comparable to those presently used to recover human viruses from large volumes of water. This filter was effective over a pH range of 3.0 to 7.0. Poliovirus type 1 recoveries from 100-liter seeded samples of Cincinnati tap water did not vary significantly when compared with those of identical samples processed through Filterite and Millipore filters. In studies with raw domestic sewage, virus recoveries were nearly identical from comparable samples filtered through coal and Millipore disk filters. Thus, the availability of coal makes this filter system an inexpensive analytical tool, especially in developing nations, for virus concentration.

Aluminum↗

Comparison of commercial beef extracts and similar materials for recovering viruses from environmental samples.

Microbiological- and food-grade beef extracts, protein hydrolytic, enzymatic and autolytic digestion products, and whole protein materials were examined for their potential effectiveness for eluting adsorbed enteroviruses from membrane filters with observed efficiencies ranging from less than 1 to 69%. Concentration of enteroviruses from solutions of these protein and protein-derived products by organic flocculation ranged in efficiency from 2 to 125%. Both elution and concentration were dependent upon virus type, as well as nature, source, and production lot of the material being tested. Determining the efficiency of virus concentration was complicated by virus aggregation and apparent virus inactivation by low pH. Effectiveness of concentrating viruses by organic flocculation from solutions prepared with the various test materials seemed independent of the amount of precipitate produced during the flocculation procedure. Quality assurance tests were proposed by which solutions prepared from beef extracts, whole protein, and protein-derived materials could be evaluated for use in eluting adsorbed viruses from membrane filters and for concentrating viruses by organic flocculation. Food-grade beef extract seemed equal to microbiological-grade beef extract in terms of both virus elution and concentration. Several of the nonbeef extract materials evaluated were as effective as beef extract for virus concentration, but were less effective for virus elution.

Adsorption↗

A method for concentrating viruses recovered from sewage sludges.

Buffered 10% beef extract eluates of primary, activated, and anaerobic mesophilically digested sludges were concentrated 20-fold by the Katzenelson organic flocculation procedure after diluting the beef extract in the eluates to a final concentration of 3%. The weighted mean recovery of virions from the concentrates was approximately 58% of the numbers present in the unconcentrated buffered 10% beef extract eluates. Flocculation of eluates that contained buffered 10% beef extract at times produced poor flocs. Application of the Katzenelson procedure to the diluted buffered 10% beef extract procedure for recovering virions from sludges permits an economy in the number of cell cultures required for assays of virions in beef extract eluates that is necessary in most laboratories.

Animals↗

A method for recovering viruses from sludges.

Primary, activated, and anaerobic mesophilically digested sludges were salted with MgCl2 (divalent cations) or AlCl3 (trivalent cations) and acidified to bind indigenous unadsorbed virions to the sludge solids; the sludges were centrifuged, and the adsorbed virions were eluted from the solids with buffered 10% beef extract. The elution yields with this procedure were superior to those obtained from sludges that had been salted or acidified only. Homogenization of sludges prior to other treatment did not increase the numbers of virions recovered.

Aluminum↗

Concentration of poliovirus in water by molecular filtration.

The efficiency of concentrating poliovirus 1 from distilled water samples was determined by using a recirculating-flow molecular filtration system. The most efficient recoveries were achieved against members with a 10,000 nominal molecular weight limit pretreated with flocculated beef extract. This procedure yielded a mean virus recovery of 67%.

Adsorption↗

Survival of enteric viruses under natural conditions in a subarctic river.

The survival of enteric viruses was studied in the vicinity of Fairbanks, Alaska at selected stations along a 317-km section of the Tanana River. This section was located downstream from all known domestic wastewater sources and was effectively sealed by a total ice cover. The mean flow time through the region was 7.1 days, during which initial viral population showed a relative survival rate of 34%. The tracing of native viruses at such great distances in the complete absence of other point and nonpoint viral sources has not been previously reported. Of the two methods of virus concentration used, viral recoveries from the disk adsorption virus elution procedure were far greater than those achieved with the Aquella system employed at that time. The fact the ratio of enteric viruses to fecal indicator bacteria was not constant clearly inferred that these bacteria were not an effectual measure of virus concentration. The persistence of fecal coliforms and fecal streptococci, however, attested to the microbiological health risk involved.

Alaska↗

Observations on the Occurrence, Distribution, and Seasonal Incidence of Blue-green Algal Viruses.

Phycovirus populations were found in 11 of the 12 waste stabilization ponds studied. These populations were comprised solely of blue-green algal (BGA) viruses. Two virus types were observed, one of which was related to the previously reported LPP-1 virus. The incidence and magnitude of the LPP group indicated that several of the ponds supported well-established BGA virus populations of this type. Counts as high as 270 plaque-forming units/ml were noted; however, marked differences in the nature and magnitude of these BGA viruses were apparent even in geographically related ponds of similar design. Of the algal strains found dominant in these ponds, none was of the type reported susceptible to the LPP viruses.

Journal Article↗