PubMed HealthSearch

SEARCH · PubMed Health

Results for “inoculum”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

[Resistance to association of antibiotics (polymyxin and penicillin) in relation to cell concentration of two bacterial species in the same inoculum. Complementary inoculum effect].

Dense suspensions of Sa. typhi (Polys Penr) and of St. aureus (Polyr Pens) proliferate on gelose medium added with the two antibiotics only if the inoculum is mixed. The growth is probably due to the partial neutralization of the antibiotics following the formation of complexes between these antibiotics and some constituents of the two strains.

Drug Combinations

The inoculum effect of methicillin-susceptible Staphylococcus aureus on cefazolin and other antimicrobial agents.

UNLABELLED: The inoculum effect (IE) refers to a reduced susceptibility of methicillin-susceptible Staphylococcus aureus (MSSA) to certain antibiotics under high bacterial inocula and may contribute to treatment failure. This exploratory study assessed IE prevalence among 234 nonduplicate MSSA isolates across 11 agents spanning major therapeutic classes, including cefazolin, and characterized IE-positive clones via whole-genome sequencing to inform clinical strategies. Minimum inhibitory concentrations (MICs) were determined by broth microdilution at standard and high inocula. Whole-genome sequencing was performed on IE-positive strains to identify β-lactamase types and conduct multilocus sequence typing. The highest prevalence of IE was observed for trimethoprim-sulfamethoxazole (9.4%), followed by erythromycin (8.8%), linezolid (6.8%), penicillin (6.1%), clindamycin (5.5%), vancomycin (3.8%), cefazolin (3.0%), levofloxacin (1.5%), tetracycline (0.5%), and oxacillin and gentamicin (0.0%). All cefazolin IE-positive strains carried blaZ type A, and ST25 was the most common sequence type (42.9%). For trimethoprim-sulfamethoxazole, erythromycin, and clindamycin IE, ST7 was the most common sequence type (22.7%, 26.7%, and 33.3%, respectively). ST1281 and ST188 were the predominant sequence types among strains exhibiting linezolid IE and vancomycin IE (25.0% and 33.3%, respectively). Among the 234 MSSA strains, 66.7% of ST59, 60.0% of ST25, 58.3% of ST5, and 54.2% of ST7 strains exhibited IE to at least one antimicrobial agent. Cefazolin IE was associated with blaZ type A, and ST5, ST7, ST59, and ST25 were the major sequence types associated with IE across the antimicrobial classes tested. IMPORTANCE: Methicillin-susceptible Staphylococcus aureus (MSSA) can show an inoculum effect on multiple antimicrobial agents, which may reduce antibiotic activity under high-burden conditions. In this study, MSSA isolates from Shanghai exhibited inoculum effects on several commonly used agents, although the overall detection rates were low. Cefazolin inoculum effect was specifically associated with blaZ type A, and several major sequence types were more likely to exhibit this phenotype. These findings improve our understanding of the epidemiology of the inoculum effect in MSSA and may help guide laboratory detection and antimicrobial treatment decisions.

Cefazolin

[Relationship between the quality of the inoculum material and carminomycin biosynthesis by a culture of Actinomadura carminata].

The effect of the inoculum mycelium quality on carminomycin biosynthesis by Actinomadura carminata was studied. The time of the organism growth on the culture medium containing cornsteep liquor continued for 6 hours without losing by the inoculum of its seeding qualities during that period. The mycelium growth in the inoculum was more intensive under conditions of moderate aeration, i.e. 0.98-2.64 mg O2H1-min. Anincrease in the aeration rate up to 18.56 mg O2/1-min resulted in the growth suppression up to 40 per cent. No correlation between the aeration rate during the inoculum growth and the culture capacity for carminomycin biosynthesis and of the content of the complex in active components the fermentation medium were observed, when a 5-10 per cent of inoculum was used.

Actinomycetales

Effect of the inoculum size of cells on the maintenance of diploidy in cultured liver cells of the rat.

In culture, a cloned rat liver cell line, J-5-2, exhibited a high diploidy for 200 days after the last cloning (diploid line) but, thereafter, pseudodiploid cells gradually increased in number (pseudodiploid line). These diploid and pseudodiploid lines were inoculated at various sizes, and chromosome analysis was performed for 75 days of serial passages. Diploid line showed an increase of pseudodiploid cells at a large inoculum size. On the other hand, more than 80% of the cells examined maintained the diploid karyotype at a small inoculum size. Pseudodiploid line showed an increase of pseudodiploid cells at a large inoculum size and of diploid cells at a small inoculum size. These pseudodiploid cells contained three types of marker chromosomes, in which number 1 chromosome was found to be involved by the G-banding methods. The saturation density of the pseudodiploid line was much higher than that of the diploid line, and plating efficiency of the diploid line was also significantly higher than that of the pseudodiploid line, although the populating doubling time of these two lines was almost the same. Possible mechanisms for the effect of different inoculum sizes on the incidence of diploid cells and pseudodiploid cells are discussed.

Animals

Effect of inoculum size on the susceptibility of Haemophilus influenzae b to beta-lactam antibiotics.

The current prevalence of ampicillin-resistant Haemophilus influenzae b meningitis requires accurate knowledge of susceptibility to alternative antibiotics. One variable affecting susceptibility is inoculum size. We studied the susceptibility of 200 clinical isolates of H. influenzae b to ampicillin, carbenicillin, and cefamandole at inocula of 10(5) and 10(7) CFU by two techniques. Fifty ampicillin-susceptible and fifty ampicillin-resistant strains were tested for susceptibility to ampicillin by broth dilution while 100 of each were tested by agar dilution. An inoculum effect was found, being greatest with the ampicillin-resistant strains. The range of minimal inhibitory concentrations for the resistant strains was 25 to 800 microgram of ampicillin per ml at an inoculum of 10(5) and 2,000 to less than 6,000 microgram of ampicillin at 10(7); 1.0 to 150 microgram of carbenicillin per ml at 10(5) and 6.2 to 2,000 microgram of carbenicillin per ml at 10(7); 0.4 to 2.0 microgram of cefamandole at 10(5) and 1.0 to 125 microgram/ml at 10(7). Because of this inoculum effect, we would not recommend the use of carbenicillin or cefamandole for therapy of ampicillin-resistant H. influenzae meningitis.

Anti-Bacterial Agents

Genetically marked Rhizobium identifiable as inoculum strain in nodules of soybean plants grown in fields populated with Rhizobium japonicum.

The fate of an inoculum strain of Rhizobium japonicum was studied using a genetically marked strain I-11O subline carrying resistance markers for azide, rifampin, and streptomycin (I-110 ARS). At the time of planting into a field populated with R. japonicum, seeds of soybean cultivars Kent and Peking were inoculated with varying cell densities of strain I-110 ARS. At various times during the growing season, surface-sterilized root nodules were examined for the presence of the inoculum strain by plating onto selective media. The recovery of the inoculum strain was unambiguous, varying, in the case of Kent cultivar, from about 5% with plants (sampled at 51 days) that had been inoculated with 3 X 10(8) cells per cm of row to about 20% with plants (sampled at 90 days) that had been inoculated with 3 X 10(9) cells per cm. The symbiotically incompatible interaction of Peking and strain 110 in Rhizobium-populated field soil was confirmed by the finding that at 60 days after planting, only one nodule in 360 sampled contained strain I-110 ARS. The use of genetically marked Rhizobium bacteria was found to provide for precise identification of the inoculum strain in nodules of field-grown soybeans.

Azides

Active immunization against the malaria parasite Plasmodium berghei in mice. The immunizing inoculum.

In the immunization procedure of Swiss and C3H/StZ mice against P. berghei the inoculum plays an important role. Only viable parasites are able to induce immunity when multiple inoculations (10(5) P.E. per mouse) or a single inoculation (1-4 X 10(7) P.E. per mouse) are administered. The inoculated parasitized erythrocytes should enter the vascular system. The subcutaneous route is inappropriate, since subsequent immune reactions are notably absent. In combination with a given suppressive regimen successful immunization depends on an optimum number of viable P.E. in the inoculum. All conditions that affect the proportion of viable parasites in the inoculum (route, storage, medium, temperature, donor) should be recognized and controlled. The actual immunizing capacity of the inoculum also depends on the magnitude and time of initiation of sulfathiazole treatment after inoculation. Suppressive treatment (300 mg/L) starting 2 days after inoculation was found optimal in order to render the procedure less sensitive to small differences in the number of P.E. inoculated. Conditions which lead to antimalarial immunity are apparently strain-specific.

Animals

Methods for storage of antimicrobial effectiveness test inoculum suspensions below freezing.

Studies were conducted to determine the suitability of storage below freezing of some antimicrobial effectiveness test inoculum organisms: Staphylococcus aureus, Escherichia coli, Pseudomonas aeruginosa, and Candida albicans. Several solutions used for protecting microorganisms subjected to storage below freezing were compared. Comparison of 10% dextrose with other solutions (distilled water; 0.07 M phosphate buffer, H 7.0, with 15% glycerol; and 0.07 M phosphate buffer, pH 7.0, with 7.5% dimethyl sufoxide) demonstrated that inoculum suspensions were most stable when prepared with 10% dextrose. After storage for 6 months at-50 degrees in a freezer, inoculum suspensions prepared with 10% dextrose retained viability and demonstrated suitability for use in antimicrobial effectiveness tests of dosage forms containg preservatives.

Candida albicans

Use of a heavy inoculum in the in vitro evaluation of the anti-staphylococcal activity of 19 cephalosporins.

The in vitro activity of 19 cephalosporins against 105 clinical isolates of Staphylococcus aureus and S. epidermidis was determined by using a heavy inoculum, i.e., 10(8) to 10(9) organisms per ml, to maximally challenge the antibiotics. The anti-staphylococcal activities of cephaloridine and 87/312 were consistently decreased by the use of a heavy inoculum when compared with the activity obtained with two less-concentrated inocula. The activity of most of the other compounds was also decreased with the use of a heavy inoculum, but this was observed only with selected isolates. Cephapirin, cephalothin, and cefazaflur were the most active drugs against the methicillin-susceptible isolates. Cephaloridine, cefamandole, cefazaflur, and 87/312 had substantial activity against methicillin-resistant staphylococci even with heavy inocula. With the exception of cefaclor against S. aureus, the orally absorbed cephalosporins were generally one-half to one-sixteenth as active as the parenterally administered cephalosporins. The median minimal inhibitory concentrations of five of the 12 parenteral cephalosporins were lower with the methicillin-susceptible S. aureus than with the methicillin-susceptible S. epidermidis strains.

Bacteriological Techniques

Immunological differences in Eimeria maxima: effect of a mixed immunizing inoculum on heterologous challenge.

The immunological differences known to exist between laboratory strains of Eimeria maxima was confirmed. Protection against challenge with different strains or field isolates of the species could be achieved by including small numbers (25 oocysts) of each in the immunizing inoculum. Similar protection was obtained when 4 distinct populations which were allowed to interbreed were used in the immunizing inoculum. This hybrid mixture of E. maxima was used to immunize chickens against challenge with 7 new isolates of E. maxima from poultry houses in different parts of England. The results show that although immunological differences exist within E. maxima good protection against many strains of this species may be achieved by initial infection with the hybrid mixture of E. maxima.

Animals

Modified inoculum for the enteric Minitek system from positive blood cultures.

A modified Minitek inoculum procedure for the identification of Enterobacteriaceae from positive blood cultures was shown to be reliable. The method consisted of inoculating the Minitek enteric and nonfermenter broth with blood culture fluid and incubating the inoculum for 4 h before use.

Bacteriological Techniques

Superiority of a soil debris isolation method over a beet seed colonization method for assay of Rhizoctonia solani at high soil inoculum densities.

A quantitative soil debris isolation method (all debris from known weight of soil plated) and a garden beet seed saprophytic colonization method were compared over a 1-year period for assaying Rhizoctonia solani population. Four fields of different soil textures were selected. Within each field four areas of healthy and four areas of diseases (rhizoctonia root and crown rot) sugarbeets were sampled bimonthly from August 1976 until June 1977. The maximum numbers of R. solani colonies obtained by the debris method were 2 per gram of soil in areas of healthy beets, and 11 per gram of soil in areas of diseased sugarbeets. At such high inoculum densities the beet seed colonization method underestimated R. solani populations, because the inoculum per unit of soil exceeded the numbers of beet seeds per unit of soil available for colonization. Modifications of the beet seed method did not significantly alter results of colonization assays. Ranked correlation comparisons of assay methods yielded r = 0.81 for all data.

Mitosporic Fungi

A study of the critical bacterial inoculum to cause a stimulus to wound healing.

Results of previous work have shown that wounds infected with gram-negative bacteria may be stronger than uninfected wounds. The inoculum in these studies was about 2 X 10(7) organisms. Laparotomy wounds were swabbed with inocula of from 10(2) to 10(9) organisms, Escherichia coli. Only with inocula of 10(6) or greater were all parts of all wounds infected by gross inspection. All wounds inoculated with 10(7) organisms, or more, were significantly stronger than the wounds of the control group on the 14th day. A smaller inoculum--10(3) to 10(6)--also resulted in stronger wounds, but not consistently so.

Animals

Simple inoculum standardizing system for antimicrobial disk susceptibility tests.

A collaborative study was undertaken to evaluate a simple, convenient device which expedites inoculum standardization for antimicrobial disk susceptibility tests. The Inocupac system (Minnesota Mining & Manufacturing [3M] Co., St. Paul, Minn.) was used to perform disk tests in parallel with the standard Bauer-Kirby method. Five investigators tested 100 selected isolates, each in triplicate. Inter- and intralaboratory precision of both disk procedures was essentially comparable. The Inocupac system failed to consistently provide satisfactory growth with some streptococci, but when testing common gram-negative bacilli, staphylococci, and most enterococci, the Inocupac system gave zones about the same size (+/-2 mm) as the Bauer-Kirby procedure. Interpretive agreement between the two test systems varied from 90 to 99% with different antimicrobial agents, and repeated tests with the Bauer-Kirby method demonstrated the same degree of interpretive agreement. The Inocupac system is a valid alternative method for inoculating disk susceptibility tests.

Anti-Bacterial Agents

Prolongation of Bacillus firmus survival on human skin by a spore inoculum.

A case report is presented of an individual who carried vegetative cells of Baccillus firmus on multiple sites of his body for over a year. With the aim of investigating the survival mechanisms of Bacillus species on human skin, vegetative cells or spores of this microorganism were applied to the forearms of volunteers. Whereas vegetative cells were rapidly eliminated, the bacillus was recovered up to 2 weeks following an inoculum of spores. Persistence was not passive since germination, growth, and possible sporulation were demonstrated. We observed strong individual differences in the carriage of bacilli.

Adult

[Inoculum effects and bacterial resistance (author's transl)].

Massive bacterial populations are frequently involved in infection. Such dense cultures may appear 'resistant' to therapeutically achievable concentrations of some antibacterial agents in vitro, but the implications of this for treatment are not always clear. A better understanding of the mechanisms responsible for inoculum effects may help in assessing their clinical significance and some possible approaches to this goal are described.

Anti-Bacterial Agents