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D H Pincus

Publications and source records attributed to D H Pincus.

12 recordsLinked to original sources

Rapid identification of Candida dubliniensis with commercial yeast identification systems.

Candida dubliniensis is a newly described species that is closely related phylogenetically to Candida albicans and that is commonly associated with oral candidiasis in human immunodeficiency virus-positive patients. Several recent studies have attempted to elucidate phenotypic and genotypic characteristics of use in separating the two species. However, results obtained with simple phenotypic tests were too variable and tests that provided more definitive data were too complex for routine use in the clinical laboratory setting. The objective of this study was to determine if reproducible identification of C. dubliniensis could be obtained with commercial identification kits. The substrate reactivity profiles of 80 C. dubliniensis isolates were obtained by using the API 20C AUX, ID 32 C, RapID Yeast Plus, VITEK YBC, and VITEK 2 ID-YST systems. The percentages of C. dubliniensis isolates capable of assimilating or hydrolyzing each substrate were compared with the percentages from the C. albicans profiles in each kit's database, and the results were expressed as percent C. dubliniensis and percent C. albicans. Any substrate that showed >50% difference in reactivity was considered useful in differentiating the species. In addition, assimilation of methyl-alpha-D-glucoside (MDG), D-trehalose (TRE), and D-xylose (XYL) by the same isolates was investigated by the traditional procedure of Wickerham and Burton (L. J. Wickerham and K. A. Burton, J. Bacteriol. 56:363-371, 1948). At 48 h (the time recommended by the manufacturer for its new database), we found that the assimilation of four carbohydrates in the API 20C AUX system could be used to distinguish the species, i.e., glycerol (GLY; 88 and 14%), XYL (0 and 88%), MDG (0 and 85%), and TRE (15 and 97%). Similarly, results with the ID 32 C system at 48 h showed that XYL (0 and 98%), MDG (0 and 98%), lactate (LAT; 0 and 96%), and TRE (30 and 96%) could be used to separate the two species. Phosphatase (PHS; 9 and 76%) and alpha-D-glucosidase (23 and 94%) proved to be the most useful for separation of the species in the RapID Yeast Plus system. While at 24 h the profiles obtained with the VITEK YBC system showed that MDG (10 and 95%), XYL (0 and 95%), and GLY (26 and 80%) could be used to separate the two species, at 48 h only XYL (6 and 95%) could be used to separate the two species. The most useful substrates in the VITEK 2 ID-YST system were TRE (1 and 89%), MDG (1 and 99%), LAT (4 and 98%), and PHS (83 and 1%). While the latter kit was not yet commercially available at the time of the study, it would appear to be the most valuable for the identification of C. dubliniensis. Although assimilation of MDG, TRE, and XYL proved to be the most useful for species differentiation by the majority of commercial systems, the results with these carbohydrates by the Wickerham and Burton procedure were essentially the same for both species, albeit following protracted incubation. Thus, it is the rapidity of the assimilation achieved with the commercial systems that allows the differentiation of C. dubliniensis from C. albicans.

AIDS-Related Opportunistic Infections↗

Enzymatic activity profiling as a potential biotyping method for Ajellomyces dermatitidis.

Enzyme profiling was investigated as a means of recognizing biotypes and individual strains of Ajellomyces dermatitidis (anamorph, Blastomyces dermatitidis). Eighteen North American and 2 African representatives were tested with the Yeast-IDENT enzymatic activity profiling system (Analytab Products, Plainview, N.Y.). Significant variation was found between isolates, particularly in beta-galactosaminidase activity.

Aminopeptidases↗

Evaluation of the API 20C yeast identification system for the differentiation of some dematiaceous fungi.

Ninety-seven isolates of Cladosporium spp., Exophiala spp., Fonsecaea spp., Lecythophora hoffmannii, Phaeoannellomyces werneckii, Phialophora spp., Wangiella dermatitidis, and Xylohypha bantiana were used to evaluate the API 20C Yeast Identification System for the differentiation of dematiaceous fungi. Using the API 20C system, we were able to distinguish most species of Phialophora and Cladosporium and to separate L. hoffmannii from the species of Phialophora tested; X. bantiana from C. carrionii, C. resinae, and C. sphaerospermum; and W. dermatitidis from Exophiala jeanselmei and Exophiala spinifera. Ninety-two (60.1%) of 153 possible species-pair combinations were separated.

Cladosporium↗

Quantitative antimicrobial susceptibility test for Streptococcus pneumoniae using inoculum supplemented with whole defibrinated sheep blood.

The National Committee for Clinical Laboratory Standards recommends the use of lysed horse blood-supplemented Mueller-Hinton broth for determining the quantitative antimicrobial susceptibility of Streptococcus pneumoniae. This procedure may be difficult for laboratories using previously prepared or commercial MIC systems. Therefore, a study was undertaken to determine whether previously prepared microdilution trays containing Mueller-Hinton broth without blood could be used for determining the antimicrobial susceptibility of S. pneumoniae by adding whole defibrinated sheep blood to the bacterial suspension used to inoculate the trays. The presence of alpha-hemolysis was used as an indicator of bacterial growth. One hundred isolates of S. pneumoniae selected to represent a distribution of susceptibility patterns were tested by the National Committee for Clinical Laboratory Standards method and the sheep blood-supplemented-inoculum method. Greater than 94% agreement between the two methods was achieved. The sheep-blood-supplemented-inoculum procedure was highly reproducible and easy to perform and provides an acceptable alternative for determining the MICs for S. pneumoniae for laboratories using previously prepared or commercial microdilution systems.

Culture Media↗

Isolation and identification of yeasts and yeastlike organisms from clinical veterinary sources.

A total of 229 isolates of yeasts and yeastlike organisms recovered from a variety of clinical specimens were identified by using the API 20C microsystem in conjunction with morphological characteristics and urea hydrolysis. Of the 229, 218 (95.1%) were from bovine, porcine, canine, and equine species and the remaining 11 (4.9%) were from feline and avian species. The gastrointestinal and reproductive tracts were the major sources of yeasts and yeastlike organisms, representing 60 (26.2%) and 28 (12.2%) isolates, respectively.

Animal Diseases↗

Pathogenicity of Candida paratropicalis.

A new Candida species, Candida paratropicalis, was recently described. Four cases of infections due to C paratropicalis are reviewed in detail and an additional five cases are reviewed to establish the clinical relevance of this species of yeast. Candida paratropicalis was isolated from blood and several other body sites. Although the isolates tested were sensitive in vitro to amphotericin B and fluocytosine, significant morbidity and mortality were associated with the infections.

Aged↗

Diagnostic characters of an atypical Candida.

The morphological and physiological characters of an atypical Candida isolated from diverse clinical specimens are described. The colony and microscopic morphologies of the atypical Candida most closely resemble those of Candida tropicalis or of reported sucrose-negative variants of C. tropicalis. However, the atypical isolates differ from C. tropicalis by their inability to ferment sucrose or melezitose and from the sucrose-negative variants by their inability to assimilate inulin and their varied utilization of other carbon substrates.

Candida↗

Use of rapid auxanographic procedures for recognition of an atypical Candida.

An atypical Candida which can cause diagnostic problems in clinical laboratories has recently been characterized. Assimilation patterns of 29 clinical isolates of an atypical Candida were obtained by the API 30C (Analytab Products, Plainview, N.Y.)., Uni-Yeast-Tek (Flow Laboratories, Inc., Rockville, Md.), and dye pour-plate auxanographic methods. The low frequency of assimilation of cellobiose, sucrose, and melezitose noted in all of these procedures permitted the early recognition of the atypical character of the isolates.

Candida↗