Dissociation between phagocytosis and phagosome-lysosome fusion.

C Capo, C Farnarier, A M Benoliel, P Bongrand, R Depieds
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Abstract

The acridine orange technique was used to explore phagosome-lysosome fusion (P-L fusion) in thioglycollate-elicited rat peritoneal macrophages. Sheep red blood cells were coated with IgG or IgM plus complement, or treated with neuraminidase, tannic acid or glutaraldehyde; then both their capacity to be ingested by macrophages and their ability to induce P-L fusion after ingestion were assayed. Their capacity to be engulfed by macrophages was similar, but glutaraldehyde-treated erythrocytes were far more efficient than the other particles in triggering P-L fusion. Hence, both processes must be driven by different mechanisms. No correlation was found between the surface charge of test particles (as assayed by cell electrophoresis) and their ability to trigger phagocytosis or P-L fusion. However, glutaraldehyde-treated erythrocytes were found to be more hydrophobic than the other particles, as previously reported. Hence, particle hydrophobicity might favor P-L fusion. The implication of these findings are discussed.

吞噬作用与吞噬体-溶酶体融合之间的分离。
采用吖啶橙技术研究巯基乙酸诱导的大鼠腹腔巨噬细胞吞噬体-溶酶体融合(P-L融合)。用IgG或IgM +补体包被绵羊红细胞,或用神经氨酸酶、单宁酸或戊二醛处理;然后检测它们被巨噬细胞吞噬的能力和吞噬后诱导P-L融合的能力。它们被巨噬细胞吞噬的能力相似,但戊二醛处理的红细胞在触发P-L融合方面远比其他颗粒有效。因此,这两个过程必须由不同的机制驱动。测试颗粒的表面电荷(通过细胞电泳测定)与它们触发吞噬或P-L融合的能力之间没有相关性。然而,戊二醛处理的红细胞被发现比其他颗粒更疏水,如先前报道的那样。因此,粒子的疏水性可能有利于P-L聚变。讨论了这些发现的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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