Hubert Pascale, Herman Ludivine, Maillard Catherine, Caberg Jean-Hubert, Nikkels Arjen, Pierard Gerald, Foidart Jean-Marie, Noel Agnès, Boniver Jacques, Delvenne Philippe
Department of Pathology B35, University Hospital of Liège, CHU Sart Tilman, 4000 Liège, Belgium.
FASEB J. 2007 Sep;21(11):2765-75. doi: 10.1096/fj.06-7646com. Epub 2007 Apr 30.
In addition to their direct antimicrobial activity, defensins might also influence adaptive immunity by attracting immature dendritic cells (DC). As these cells have been shown to be deficient in uterine cervix carcinogenesis, we evaluated the ability of alpha-defensin (HNP-2, human neutrophil defensin 2) and beta-defensin (HbetaD2, human beta defensin 2) to stimulate their migration in human papillomavirus (HPV)-associated (pre)cancers. We first observed, using RT-PCR and immunohistology, that HbetaD2 is absent in HPV-transformed keratinocytes and that it is weakly expressed in cervical (pre)neoplastic lesions in comparison with normal keratinocytes. We next demonstrated that defensins exert a chemotactic activity for DC in a Boyden Chamber assay and stimulate their infiltration in an in vitro-formed (pre)neoplastic epithelium (organotypic culture of HPV-transformed keratinocytes). To evaluate the ability of defensins also to recruit DC in vivo, we developed a model of immunodeficient mice grafted with organotypic cultures of HPV+ keratinocytes, which form an epithelium similar to a high-grade neoplastic lesion, with tumoral invasion and neovascularization. Intravenously injected human DC were able to infiltrate grafts of HPV+ keratinocytes after administration of HNP-2 in the transplantation chamber. Taken together, these results suggest that defensins could reverse a frequent immune alteration observed in cancer development.
除了具有直接的抗菌活性外,防御素还可能通过吸引未成熟的树突状细胞(DC)来影响适应性免疫。由于这些细胞已被证明在子宫颈癌发生过程中存在缺陷,我们评估了α-防御素(HNP-2,人中性粒细胞防御素2)和β-防御素(HbetaD2,人β防御素2)在人乳头瘤病毒(HPV)相关的(癌前)癌症中刺激其迁移的能力。我们首先使用逆转录聚合酶链反应(RT-PCR)和免疫组织学观察到,HbetaD2在HPV转化的角质形成细胞中不存在,并且与正常角质形成细胞相比,它在宫颈(癌前)肿瘤病变中表达较弱。接下来我们证明,在Boyden小室试验中,防御素对DC具有趋化活性,并在体外形成的(癌前)肿瘤上皮(HPV转化的角质形成细胞的器官型培养)中刺激它们的浸润。为了评估防御素在体内招募DC的能力,我们建立了一个免疫缺陷小鼠模型,该模型移植了HPV +角质形成细胞的器官型培养物,形成了类似于高级别肿瘤病变的上皮,伴有肿瘤侵袭和新血管形成。在移植腔中给予HNP-2后,静脉注射的人DC能够浸润HPV +角质形成细胞的移植物。综上所述,这些结果表明防御素可以逆转癌症发展过程中常见的免疫改变。