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  • Title: [Microbiological testing of the artificial gingival margin in dentures].
    Author: Hermann P, Klein I, Barna Z, Kaán M, Fejérdy P.
    Journal: Fogorv Sz; 2004 Jun; 97(3):123-7. PubMed ID: 15282978.
    Abstract:
    In everyday practice dental laboratories try to reproduce the natural form of sulcus gingivae at the transitional area between artificial teeth and gingiva of removable dentures, even on esthetically less important areas. Aim of these investigations were to examine how artificial recreation of the sulcus gingivae influences plaque retention, and what is the microbiological relevance of these. Investigations were carried out on the vestibular side of removable dentures of 32 randomly selected patients treated at the Department of Prosthodontics at the Faculty of Dentistry, Semmelweis University. Microbiological samples were taken from each patient using the same method. Samples were taken from the left upper first molars' artificial gingival margin using sterile paper points. Paper points were then transported in Eppendorf-tubes, in 2 ml of physiological saline solution, and processed within a two-hour period of time. Series dilutions were made of the sample solutions, then surface-streaked on Subaraud and Gentamycin, blood-agar, eosin-methylene blue and Mitis Salivarius culture enriched with Bacitracin. Subaraud culture was induced under aerob conditions, at room temperature for two days, then the total amount of fungi quantified. After pure-culturing Candida albicans ID-culture was used for identification, and BioMerieux ATB automatic equipment to identify different Candida species. From pure cultures identification was carried out with Gram-staining, Neisser-staining, catalase, oxidase and also with other biochemical reactions. Blood-agar was used to determine total germ count, and normal commensal pharyngeal and oral bacteria. After collecting the microbiological samples, the conventional shape of the dental margin of gingiva was abolished on one side of the dentures and a smooth transition was created between denture teeth and the artificial gingiva in the molar and premolar region. During our investigations only blastomycetes were found. Besides most common Candida albicans, Candida glabrata, tropicallis, spherica and lambica were also identified. Our patients did not miss artificial sulcus gingivae, had no aesthetic complaints about smooth transition between artificial teeth and gingiva. Microbiological investigations of the samples and the comparative analysis showed, that on the smooth transitional areas compared to conventionally shaped sulci significantly less gram-negative, gram-positive bacteria and oral fungi were found, and there was no plaque formation.
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