ter Steeg P F, van der Hoeven J S
Preventive and Community Dentistry, University of Nijmegen.
Antonie Van Leeuwenhoek. 1990 Feb;57(2):63-70. doi: 10.1007/BF00403156.
Previous experiments have indicated that enrichment of subgingival plaque in human serum can lead to the accumulation of Treponema denticola. T. denticola depends on bacterial interactions for its growth in serum. Aim of the present study was to identify specific microorganisms involved in the growth stimulation of T. denticola. To this end, strains isolated from previous plaque enrichment cultures were tested for growth stimulation in co-cultures with T. denticola. In addition, growth of T. denticola was tested in culture filtrates of the same strains, Bacteroides intermedius, Eubacterium nodatum, Veillonella parvula and Fusobacterium nucleatum were found to enhance growth of T. denticola in co-cultures. A continuous co-culture of T. denticola, F. nucleatum and B. intermedius in human serum gave very high levels of T. denticola, up to 3.10(9).ml-1. Mechanisms involved in growth stimulation may include the ability of B. intermedius and E. nodatum to cleave the protein-core of serum (glyco-)proteins, making these molecules accessible for degradation by T. denticola. In addition, E. nodatum was found to produce a low-molecular weight growth-factor for T. denticola, that was heat-stable and acid as well as alkaline resistant. V. parvula may provide peptidase activities complementary to those of T. denticola. The nature of the growth enhancing activity of F. nucleatum is yet unknown. The data support the dependency of T. denticola on other bacterial species for growth in the periodontal pocket.
先前的实验表明,人血清中龈下菌斑的富集可导致具核梭杆菌的积聚。具核梭杆菌在血清中的生长依赖于细菌间的相互作用。本研究的目的是鉴定参与具核梭杆菌生长刺激的特定微生物。为此,对先前从菌斑富集培养物中分离出的菌株与具核梭杆菌共培养时的生长刺激情况进行了测试。此外,还在相同菌株的培养滤液中测试了具核梭杆菌的生长,结果发现中间普氏菌、结节真杆菌、小韦荣球菌和具核梭杆菌在共培养时可促进具核梭杆菌的生长。在人血清中对具核梭杆菌、具核梭杆菌和中间普氏菌进行连续共培养,可获得非常高的具核梭杆菌水平,高达3.10(9).ml-1。生长刺激所涉及的机制可能包括中间普氏菌和结节真杆菌裂解血清(糖)蛋白的蛋白核心的能力,使这些分子可供具核梭杆菌降解。此外,还发现结节真杆菌可产生一种具核梭杆菌的低分子量生长因子,该因子热稳定,耐酸和耐碱。小韦荣球菌可能提供与具核梭杆菌互补的肽酶活性。具核梭杆菌生长增强活性的性质尚不清楚。这些数据支持具核梭杆菌在牙周袋中生长对其他细菌种类的依赖性。