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Candida albicans adhesion and biofilm formation on phosphated and non-phosphate containing poly(methylmethacrylate) polymers.

机译:白色念珠菌在含磷酸盐和不含磷酸盐的聚甲基丙烯酸甲酯聚合物上的粘附力和生物膜形成。

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摘要

Denture-induced stomatitis is prevalent among prosthesis users, particularly the elderly and institutionalized where it has been estimated to be present in over 60-65% of denture wearers. Treatment of this clinical condition is problematic due to incomplete disinfection of the acrylic surface and rapid microbial re-colonization. Moreover, ingestion or aspiration of pathogens in denture plaque exposes the elderly and immunocompromised to unexpected infections.Acrylic polymers have generally been used to replace missing teeth and periodontal tissues in edentulous or partially dentate patients. Currently, edentulous adults in the US population are common, with complete edentulism greater than 41% among Americans aged 65 and older. Poly (methyl methacrylate) [PMMA] is the most commonly used denture base material, and satisfies most esthetic, physical and mechanical criteria for an intra-oral prosthesis. However, the absence of ionic charge may inhibit the selective adsorption of salivary antimicrobials which could provide a more protective pellicle coat.Salivary antimicrobials such as defensins and histatins are cationic peptides, which are strongly adsorbed onto the tooth surface by electrostatic interaction. Absence of an ionic surface on PMMA not only minimizes the adsorption of defense molecules on denture surfaces, attractive London-van der Waals forces actually facilitate adherence of Candida albicans and other microorganisms. This is a prerequisite for denture biofilm formation and subsequent denture stomatitis.The goal of this research project is to assess the ability of phosphated polymers to inhibit C. albicans adhesion and biofilm formation, in the hope of preventing denture-induced stomatitis. The novel denture-base polymers incorporate a charge through bead suspension polymerization with poly (methyl methacrylate) [PMMA] and a phosphate containing monomer. Other groups have also been looking to alter denture base surfaces using other techniques.The possible effects of this project include a new generation of denture-base polymers with great potential for clinical and commercial application in a large population of denture and oral prosthesis users.
机译:假牙使用者在假牙使用者中尤为普遍,尤其是在老年人和机构内,据估计假牙使用者中有60-65%以上是假牙。由于丙烯酸表面的不完全消毒和快速的微生物重新定殖,这种临床状况的治疗存在问题。此外,在义齿斑块中摄入或吸入病原体会使老年人暴露,并且免疫力低下会导致意料之外的感染。丙烯酸聚合物通常被用于代替无牙或部分牙齿的患者的牙齿缺失和牙周组织。目前,在美国人口中,无牙齿的成年人很普遍,在65岁以上的美国人中,完全无牙齿的现象超过41%。聚(甲基丙烯酸甲酯)[PMMA]是最常用的义齿基料,并且满足口腔内假体的大多数美学,物理和机械标准。然而,离子电荷的缺乏可能会抑制唾液抗菌剂的选择性吸附,从而提供更具保护性的防护膜涂层。唾液抗菌剂(如防御素和组蛋白)是阳离子肽,可通过静电相互作用强烈吸附在牙齿表面。 PMMA上不存在离子表面,不仅使义齿表面上的防御分子吸附减至最小,吸引人的伦敦范德华力实际上促进了白色念珠菌和其他微生物的粘附。这是假牙生物膜形成和随后的假牙口腔炎的先决条件。本研究项目的目的是评估磷酸盐化聚合物抑制白色念珠菌粘附和生物膜形成的能力,以期预防假牙诱发的口腔炎。新型义齿基聚合物通过与聚(甲基丙烯酸甲酯)[PMMA]和含磷酸盐的单体的珠粒悬浮聚合反应引入电荷。其他小组也一直在寻求使用其他技术来改变义齿基托表面。该项目的可能效果包括新一代义齿基托聚合物,该聚合物在大量义齿和口腔修复用户中具有巨大的临床和商业应用潜力。

著录项

  • 作者

    Ryan, Kathryn.;

  • 作者单位

    Marquette University.;

  • 授予单位 Marquette University.;
  • 学科 Biology Microbiology.
  • 学位 M.S.
  • 年度 2010
  • 页码 103 p.
  • 总页数 103
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:06

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