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Biomedical subjects

G A Hebert

Publications and source records attributed to G A Hebert.

11 recordsLinked to original sources

Phenotypic characterization, cellular fatty acid composition, and DNA relatedness of aerococci and comparison to related genera.

Aerococci can be misidentified as streptococci, enterococci, pediococci, lactococci, or leuconostocs. To distinguish the genus and determine if another species is needed in the present taxon, we analyzed 37 aerococci for cellular fatty acids and compared them with 377 strains of gram-positive cocci, including the species type strains from each of the related genera. The cellular fatty acid profile of aerococci was distinguishable from other genera. Two relatively novel fatty acids found in the aerococci were identified as C16:1 omega 9c and C16:1 omega 9t. Eleven strains of aerococci (including a strain originally identified as "Gaffkya" species) were chosen for DNA-DNA reassociation studies with the type strain Aerococcus viridans ATCC 11563; DNAs from eight of these strains were more than 75% related to the type strain and had 1 to 4% divergence in related sequences. The remaining three strains were 60 to 70% related to the type strain, had 7 to 11.5% divergence, and may represent a second species, Aerococcus genospecies 2. beta-Glucuronidase, alpha-galactosidase, and beta-galactosidase were useful in characterizing the aerococci.

Chloramphenicol O-Acetyltransferase

Recognition of a new serogroup of Legionnaires disease bacterium.

A strain of the Legionnaires disease bacterium (LDB) that was isolated by Joseph E. McDade from a postmortem lung specimen of a patient with fatal atypical pneumonia at the Veterans Administration Hospital in Togus, Maine was serologically different from 16 other strains of LDB that had been isolated previously from patients in other geographic locations. The serological differences of the Togus isolate were shown in results of direct and indirect fluorescent antibody staining and of immunoelectrophoresis with soluble antigen extracts. Seroconversion for the Togus strain of LDB in acute- and convalescent-phase sera from a second patient with atypical pneumonia at the Veterans Administration Hospital in Togus indicated that this patient had been infected with an LDB that was serologically similar or identical to the Togus isolate. The Togus serogroup of LDB should be considered when performing serological tests for Legionnaires disease.

Antigens, Bacterial

Four serogroups of Legionnaires' disease bacteria defined by direct immunofluorescence.

Thirty-five strains of Legionnaires' disease bacteria were shown to belong in four distinct serologic groups on the basis of findings obtained with direct fluorescent antibody testing. Thirty of the strains were placed in group 1, three in group 2, one in group 3, and one in group 4. Immunoelectrophoretic studies showed both unique and common antigens among the representative strains of the four serogroups.

Antigens, Bacterial

Improved immunoadsorption procedure with anion-exchange bacterial cell columns.

Bacterial cell columns for immunoadsorption were prepared with Streptococcus cells and triethylaminoethyl cellulose (Cellex-T) matrix material as a model system. Good column flow properties and satisfactory retention of the cells were obtained with ratios as high as 2 ml of packed cells/3 g dry weight of cellulose. Anion-exchange fractionation of whole serum by the Cellex-T was prevented by using 0.25 M NaCl in the developing buffer. Antibodies were adsorbed directly from whole serum and recovered in high yield by desorption at pH 2.3. Pre-exposing bacterial cells to formalin and washing them with acetone was necessary to ensure that they remained on the columns. One strain of Streptococcus salivarius (SS 908) was satisfactorily retained on a column only after cells were labeled with fluorescein isothiocyanate and washed with acetone. The means by which Cellex-T retains bacterial cells appears to be a combination of electronic attraction and physical entrapment.

Chromatography, Ion Exchange

Detection of Legionnaires disease bacteria by direct immunofluorescent staining.

Antisera and fluorescein isothiocyanate conjugates prepared for five strains of the Legionnaires bacteria were tested in both homologous and heterologous staining reactions with 10 isolates of the organism from patients in seven geographic areas. The strains were related but not identical as judged by the results of direct immunofluorescence staining. The conjugates were successfully used to detect Legionnaires disease bacteria in Formalin-fixed lung scrapings, in histological sections, and in fresh lung tissue obtained at biopsy or autopsy. In addition, the labeled antibodies are valuable for staining suspected cultures of the bacterium and for searching for the source of these organisms in soil, water, and other environmental niches. The reagents are highly specific for detecting the Legionnaires organism in clinical specimens.

Bacteria

Preparation of rabies fluorescein isothiocyanate-labeled immune globulin from mouse hyperimmune ascitic fluids.

Immunization conditions for the production of mouse immune ascitic fluids to be used for the preparation of rabies fluorescent antibody (FA) conjugate are presented. The use of optimal concentrations of ammonium sulfate for precipitation of gamma globulin resulted in a fraction consisting of 75% gamma globulin and 25% alpha-beta globulins with no detectable albumin. Dialysis labeling of the globulin fration with fluorescein isothiocyanate produced a specific rabies FA conjugate with negligible nonspecific background staining. This procedure represents a simple means of producing rabies FA conjugate.

Animals

Improved salt fractionation of animal serums for immunofluorescence studies.

With all animal serums studied except rat serum, an improved salt fraction that contained a high percentage of gamma-globulin and little or no albumin could be obtained by using optimal ammonium sulfate concentrations. These concentrations were less than the routinely used half-saturated solutions and different from the sometimes quoted one-third-saturated solutions. These are simple, economical methods for obtaining the antibody-containing globulin fractions from the serums of a variety of animals commonly used as antibody producers for immunofluorescence applications. Fluorescent antibody reagents prepared in this laboratory from serum fractions obtained by these optimal procedures provided conjugates that may be superior to those prepared from fractions obtained with a higher and uniform salt concentration.

Ammonium Sulfate

Conjugation methods in immunofluorescence.

We have described methods of labeling antibody preparations with FITC, TMRI, and RBI. The degree of labeling with FITC can be precisely controlled by using well-defined conjugation procedures and FITC of a known degree of purity. Our experience shows that relatively high F/P ratios of the order of 20 to 25 mug/mg are desirable for antibacterial conjugates. Many commercial preparations of rhodamine isothiocyanate are of very poor quality and are unsatisfactory for use in conjugate preparation. Therefore, one should analyze the rhodamine isothiocyanate product before preparing immune conjugates. Our experience indicates that very satisfactory conjugates of immune IgG or pure antibody can be prepared with TMRI of about 60% purity by using a dye-protein ratio of 20 mug/mg. The optimal dye-IgG ratio for labeling with RBI appears to be about two times that for labeling with TMRI because of the lower specific absorbance and fluorescence emission of RBI. Rhodamine conjugates may be preferred to FITC conjugates in certain situations where tissue autofluorescence interferes with the observation of the yellow-green emission of FITC. Furthermore, mixed rhodamine and FITC conjugates of different specificity can be used to great advantage in double-staining techniques that allow simultaneous screening for two antigenically different organisms on a single microscope slide.

Fluoresceins

Physicochemical characterization of direct fluorescent antibody reagents.

When the data from performance and physicochemical studies of conjugates are combined for analysis, the performance data and specific titers show a direct relationship to the physicochemical data (Table 2). These reagents were prepared from the same lot of antiserum. The specific titers are very misleading without the accompanying data (Table 2). The protein concentrations range from 4 to 10 mg/ml, the F/P ratios from 10 to 30, and CASE shows gamma-globulin to constitute 30 to 100% of the protein. CASE also shows the gamma-globulin F/P ratio to be only 10 to 20. Using these data, we calculated the concentrations of the gamma-globulins and normalized their titers to 10 mg/ml. The value of good fractionation procedures for recovering gamma-globulin and the desirability of obtaining optimal F/P ratios are reflected in the adjusted titers. Physicochemical characterization of conjugates identifies superior and deficient reagents and frequently reveals the cause of inadequate performance. In this way it serves as a quide for improving reagent quality.

Blood Proteins

Optimum immunization of rabbits for Streptococcus mutans antiserum and conjugate production and studies of batch immunoabsorption methods.

By far, the most significant rises in titers were seen with the immunization protocol used in series 6. Conjugates prepared from bleedings on the 33rd day produced exceptionally high titers for type b S mutans, and reasonably high titers for type a were obtained in a short time. A concentrated antigen with Formalin (13.4 ml) was given during a ten-day period followed by a two-week rest period, after which booster doses of either antigen with Formalin or live antigen were given (Fig 1). Based on evaluation of the immunization protocol just described, series 6 resulted in the highest titered reagents, but the data are insufficient to permit recommending that particular schedule without limitations. Our experience in the use of live antigens of S mutans for immunization is limited in that only types b, c, and e have been used in this way. The rabbits survived these injections, but the pathogenicity of other strains and other serotypes has not been determined. In addition, protocols including combined injections of killed and living organisms should be tested further for possible improvement in antibody production. In view of these considerations, our recommendations for production of high titered antiserums for S mutans in rabbits are as follows: -Take a preimmunization bleeding from each rabbit and screen by indirect FA tests with the antigens to be used. -Inject heavy concentrations (40 IU/ml) of Formalin-killed cells, intravenously. -Inject for eight to ten consecutive days, giving increasing doses of antigen ranging from 0.2 to 5.0 ml for a total of 12 to 15 ml. -Rest the rabbits for one week. If you are monitoring the progress of immunization, bleed the rabbits before giving booster injections. -Give booster injections on four consecutive days, giving 0.25, 0.5, 1.0, and 1.5 ml of live antigen that has been washed one time to remove traces of media and adjusted to a concentration of 40 IU/ml. If live antigen is not used, continue to give booster injections with killed antigen, injecting 2.0 ml on each of three consecutive days. -Rest the rabbits for one week and take sufficient blood to produce the trial reagents needed, or exsaguinate the rabbits. Absorption of type a conjugates resulted in the total loss of titer for type a cells. The cross-reactions with type b conjugate were easily eliminated by dilution, with the exception of the cross-reaction with S sanguis JC-43. Bratthall's absorption method eliminated all cross-reactions of the type b conjugate. Absorption of type c conjugate successfully removed the cross-reaction with type e cells; however, the loss of homologous type c titer was so great that this absorption is of limited value. High-titered conjugates for types d and e have been obtained by using batch absorption procedures.

Absorption

Evaluation of a semiautomated system for direct fluorescent antibody detection of salmonellae.

A semi-automatic system under development by Aerojet Medical and Biological Systems for the direct fluorescent antibody detection of salmonellae was evaluated with various food, feed, and environmental samples. All samples were simultaneously examined by Automated Bioassay System (ABS), manual direct fluorescent antibody procedures and cultural procedures. The ABS gave satisfactory results with the processed samples. It detected all of the culturally positive powdered egg and candy samples with no false-negative results and gave only 6.6 and 5.3% false-positive rates, respectively. With meatmeal samples the ABS failed to detect one culturally positive specimen that was also positive by manual fluorescent antibody and gave one (1.1%) false-positive result. A high rate of false-negative results was obtained by ABS on unprocessed samples of creek water, poultry, and sausage. Adding another enrichment step to the protocol reduced the false-negative rate considerably but severely increased the false-positive rate. The instruments worked reasonably well, but research is needed to improve enrichment procedures for samples to be processed by the system.

Evaluation Studies as Topic