van Spriel A B, van den Herik-Oudijk I E, van Sorge N M, Vilé H A, van Strijp J A, van de Winkel J G
Department of Immunology, University Hospital Utrecht, 3584 GA Utrecht, The Netherlands.
J Infect Dis. 1999 Mar;179(3):661-9. doi: 10.1086/314643.
Invasive fungal infections are an increasing problem for immunocompromised patients. As an approach to improve targeting of polymorphonuclear leukocytes (PMNL) toward Candida albicans, the effect of bispecific antibodies (BsAbs) directed against C. albicans and either FcalphaRI or FcgammaRI was evaluated. Control PMNL and in vivo granulocyte colony-stimulating factor (G-CSF)-primed PMNL served as effector cells. A new radiometric killing assay for measuring candidacidal activity was developed to facilitate quantification of PMNL-mediated killing of C. albicans. BsAbs directed to either FcgammaRI (CD64) or FcalphaRI (CD89) on human PMNL effectively enhanced both phagocytosis and killing of C. albicans in vitro. Fungicidal activity triggered via FcgammaRI required in vivo priming with G-CSF, whereas FcalphaRI-mediated activity was not dependent on this growth factor. Furthermore, PMNL from human FcgammaRI-transgenic mice effectively phagocytosed and eliminated C. albicans in the presence of BsAbs. These results document the capacity of FcR-directed BsAbs and G-CSF to trigger antifungal immune responses.
侵袭性真菌感染对于免疫功能低下的患者而言,正成为一个日益严重的问题。作为一种提高多形核白细胞(PMNL)对白色念珠菌靶向作用的方法,研究人员评估了针对白色念珠菌以及FcalphaRI或FcgammaRI的双特异性抗体(BsAb)的作用。对照PMNL和体内经粒细胞集落刺激因子(G-CSF)预处理的PMNL用作效应细胞。开发了一种新的放射性杀伤试验来测量杀念珠菌活性,以促进对PMNL介导的白色念珠菌杀伤作用的定量分析。针对人PMNL上的FcgammaRI(CD64)或FcalphaRI(CD89)的BsAb在体外有效增强了对白色念珠菌的吞噬作用和杀伤作用。通过FcgammaRI触发的杀真菌活性需要在体内用G-CSF进行预处理,而FcalphaRI介导的活性不依赖于这种生长因子。此外,在BsAb存在的情况下,来自人FcgammaRI转基因小鼠的PMNL能有效吞噬并清除白色念珠菌。这些结果证明了针对FcR的BsAb和G-CSF触发抗真菌免疫反应的能力。