| Literature DB >> 19066610 |
E Oflazoglu1, I J Stone, L Brown, K A Gordon, N van Rooijen, M Jonas, C-L Law, I S Grewal, H-P Gerber.
Abstract
SGN-40 is a therapeutic antibody targeting CD40, which induces potent anti-lymphoma activities via direct apoptotic signalling cells and by cell-mediated cytotoxicity. Here we show antibody-dependent cellular phagocytosis (ADCP) by macrophages to contribute significantly to the therapeutic activities and that the antitumour effects of SGN-40 depend on Fc interactions.Entities:
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Year: 2008 PMID: 19066610 PMCID: PMC2634668 DOI: 10.1038/sj.bjc.6604812
Source DB: PubMed Journal: Br J Cancer ISSN: 0007-0920 Impact factor: 7.640
Figure 1SGN-40 mediates antibody-dependent cellular phagocytosis (ADCP) activity and requires functional Fc–FcγR interaction in vitro. (A) Binding of SGN-40 and SGN-40G1v1 to CD40+ Ramos cells was detected by flow cytometry. EC50 values are 0.510 and 0.528 nM for SGN-40 and SGN-40G1v1, respectively. (B) Binding of SGN-40 and SGN-40G1v1 to CHO DG-44 cell lines expressing human or mouse FcγRI (CD64) and FcγRIIIA V158 (CD16) as determined by flow cytometry. Data is reported as the percent of maximum fluorescence, calculated by the sample fluorescence divided by the fluorescence of cells stained with anti-CD40-Alexa Fluor 488. NMB=non-measurable binding. (C) SGN-40 induces ADCP activity in vitro as determined by flow cytometry and fluorescence microscopy. Ramos target cells were labelled with PKH26 lipophilic dye for tracking purposes, and treated with non-binding control IgG or SGN-40 MAb and mixed with human monocyte-derived macrophages (Mø). Mø were stained with PE-conjugated anti-CD11b. Cells present in the upper right quadrant (PKH26+CD11b+) are Mø that internalised tumour cells. For fluorescence microscopy, tumour cells were labelled with PKH67 (green) and the macrophages were detected with Alexa Fluor 568-conjugated antibody specific for CD11b (red). No ADCP activity was detected on control, CD40-negative Hodgkin's lymphoma (HL) cells L540cy (D) CD40-positive Ramos, WIL2-S and the CD40-negative L540cy target cells were labelled with PKH26 lipophilic dye, treated with varying concentrations of SGN-40, SGN-40G1v1 or non-binding control IgG then mixed with Mø. (E) Survival curve of mice implanted with Ramos tumour cells and left untreated or following treatment with 4 mg kg−1 SGN-40 or SGN-40G1v1 on day 1 (n=10 per group), untreated vs SGN-40 (P<0.0001), untreated vs SGN-40G1v1 (P=0.7190), SGN-40 vs SGN-40G1v1 (P<0.0001). Data shown are from one representative of a total of two independent experiments.
Figure 2Macrophages mediate antitumour activity of SGN-40 and requirement for intact Fc–FcγR interactions in vivo. (A) Mice implanted with Ramos tumours (NHL) were depleted of natural killer cells (−NK) (B) neutrophils (−Neut), (C) macrophages (−Mac) or (D) all subsets combined (−All). Mice were either left untreated or treated with 4 mg kg−1 SGN-40 on day 1 post tumour implantation (n=10 per group), using intraperitoneal injections. Untreated vs SGN-40 (P<0.0001), untreated vs −NK+SGN-40 (P<0.0001), SGN-40 vs −NK+SGN-40 (P=0.4611). Untreated vs −Neut+SGN-40 (P=0.0001), SGN-40 vs −Neut+SGN-40 (P=0.5969). Untreated vs −Mac+SGN-40 (P=0.002), SGN-40 vs −Mac+SGN-40 (P=0.0016). Untreated vs All depleted (P=0.0594), SGN-40 vs All depleted +SGN-40 (P=0.0004). Data shown are from one representative of a total of two or three independent experiments. (E) FACS analysis of spleen from NK cell-depleted mice using anti-DX5 antibody, or peripheral blood from neutrophil-depleted mice, using an anti-CD11b antibody. The right panels display IHC analysis of liver tissues isolated from macrophage-depleted mice using an anti-mouse-F4/80 antibody.