Progulske A, Mishell R, Trummel C, Holt S C
Infect Immun. 1984 Jan;43(1):178-82. doi: 10.1128/iai.43.1.178-182.1984.
Highly purified preparations of the outer membrane and lipopolysaccharide (LPS) of Eikenella corrodens strain ATCC 23834 and the outer membrane fraction (OMF) of strain 470 were tested in in vitro biological assays. The OMFs of both strains were found to be mitogenic for BDF and C3H/HeJ murine splenocytes. The E. corrodens LPS was mitogenic for BDF spleen cells; however, doses of LPS as high as 50 micrograms/ml failed to stimulate C3H/HeJ cells. When incubated with T-lymphocyte-depleted C3H/HeJ splenocytes, the strain 23834 OMF demonstrated significant mitogenic activity, indicating that the OMF is a B-cell mitogen by a mechanism other than that elicited by conventional LPS. The E. corrodens 23834 OMF and LPS were stimulators of bone resorption when tested in organ cultures of fetal rat long bones. In contrast, the strain 470 OMF was only weakly stimulatory. Both OMFs and LPSs demonstrated "endotoxic" activity, since as little as 0.062 micrograms of E. corrodens LPS and 0.015 micrograms of the OMFs induced gelation in the Limulus amebocyte clotting assay. Thus, despite having a "nonclassical" LPS biochemistry, the E. corrodens LPS elicits classical endotoxic activities. These results also indicate that the surface structures of E. corrodens have significant biological activities as measured in vitro. The expression of such activities in vivo may play an important role in the pathogenesis of periodontitis as well as other E. corrodens infections.
对侵蚀艾肯菌菌株ATCC 23834的外膜和脂多糖(LPS)以及菌株470的外膜组分(OMF)的高纯度制剂进行了体外生物学测定。发现两种菌株的OMF对BDF和C3H/HeJ小鼠脾细胞具有促有丝分裂作用。侵蚀艾肯菌LPS对BDF脾细胞具有促有丝分裂作用;然而,高达50微克/毫升的LPS剂量未能刺激C3H/HeJ细胞。当与T淋巴细胞耗尽的C3H/HeJ脾细胞一起孵育时,菌株23834的OMF表现出显著的促有丝分裂活性,表明该OMF是一种B细胞促有丝分裂原,其作用机制不同于传统LPS引发的机制。在胎鼠长骨的器官培养中进行测试时,侵蚀艾肯菌23834的OMF和LPS是骨吸收的刺激剂。相比之下,菌株470的OMF只有微弱的刺激作用。两种OMF和LPS都表现出“内毒素”活性,因为在鲎变形细胞凝集试验中,低至0.062微克的侵蚀艾肯菌LPS和0.015微克的OMF就能诱导凝胶化。因此,尽管侵蚀艾肯菌LPS具有“非经典”的LPS生物化学性质,但它仍能引发经典的内毒素活性。这些结果还表明,在体外测定中,侵蚀艾肯菌的表面结构具有显著的生物学活性。这些活性在体内的表达可能在牙周炎以及其他侵蚀艾肯菌感染的发病机制中起重要作用。