Millar S J, Goldstein E G, Levine M J, Hausmann E
Infect Immun. 1986 Jan;51(1):302-6. doi: 10.1128/iai.51.1.302-306.1986.
Two separate species of lipopolysaccharide (LPS) from Bacteroides gingivalis 381 have been isolated. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis demonstrated not only the heterogeneity of each species, but also that they represented high- and low-molecular-weight LPS entities. Although both contained the same carbohydrate and fatty acid components, the proportions of these differed between the LPS species. The direct effects of these two species in modulation of bone resorption and bone collagen and noncollagen protein synthesis have been examined. In a bone resorption assay, these two species stimulated 45Ca release from prelabeled fetal rat bones in a concentration range of 0.5 to 3.0 micrograms/ml. The two LPS species also elicited a 30 to 40% reduction in collagen protein formation at 10 micrograms/ml. Responses of the same order of magnitude were observed with LPS from Salmonella minnesota at 10 micrograms/ml. The higher-molecular-weight LPS species also significantly inhibited noncollagen protein formation. This is the first report that LPS from B. gingivalis 381, a suspected periodontal pathogen, inhibits bone collagen formation and, in conjunction with the bone resorption potency, further implicates LPS in alveolar bone loss associated with periodontal disease.
已从牙龈卟啉单胞菌381中分离出两种不同的脂多糖(LPS)。十二烷基硫酸钠-聚丙烯酰胺凝胶电泳不仅显示了每种脂多糖的异质性,还表明它们代表了高分子量和低分子量的LPS实体。虽然两者都含有相同的碳水化合物和脂肪酸成分,但这些成分在不同的LPS种类中的比例有所不同。已经研究了这两种脂多糖对骨吸收以及骨胶原和非胶原蛋白合成调节的直接作用。在一项骨吸收试验中,这两种脂多糖在0.5至3.0微克/毫升的浓度范围内刺激了预先标记的胎鼠骨骼中45Ca的释放。这两种脂多糖在10微克/毫升时还引起胶原蛋白形成减少30%至40%。在10微克/毫升时,来自明尼苏达沙门氏菌的LPS也观察到了相同数量级的反应。高分子量的LPS种类也显著抑制非胶原蛋白的形成。这是关于来自疑似牙周病原体牙龈卟啉单胞菌381的LPS抑制骨胶原形成的首次报道,并且结合其骨吸收能力,进一步表明LPS与牙周病相关的牙槽骨丧失有关。