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Isolation of Human Monocytes by Double Gradient Centrifugation and Their Differentiation to Macrophages in Teflon-coated Cell Culture Bags
Published on: September 9, 2014
Isolation of F. novicida-Containing Phagosome from Infected Human Monocyte Derived Macrophages
Valentina Marecic1, Olga Shevchuk2,3, Mateja Ozanic1
1Department of Microbiology and Parasitology, Faculty of Medicine, University of RijekaRijeka, Croatia.
Abstract:
Francisella is a gram-negative bacterial pathogen, which causes tularemia in humans and animals. A crucial step of Francisella infection is its invasion of macrophage cells. Biogenesis of the Francisella-containing phagosome (FCP) is arrested for ~15 min at the endosomal stage, followed by gradual bacterial escape into the cytosol, where the microbe proliferates. The crucial step in pathogenesis of tularemia is short and transient presence of the bacterium within phagosome. Isolation of FCPs for further studies has been challenging due to the short period of time of bacterial residence in it and the characteristics of the FCP. Here, we will for the first time present the method for isolation of the FCPs from infected human monocytes-derived macrophages (hMDMs). For elimination of lysosomal compartment these organelles were pre-loaded with dextran coated colloidal iron particles prior infection and eliminated by magnetic separation of the post-nuclear supernatant (PNS). We encountered the challenge that mitochondria has similar density to the FCP. To separate the FCP in the PNS from mitochondria, we utilized iodophenylnitrophenyltetrazolium, which is converted by the mitochondrial succinate dehydrogenase into formazan, leading to increased density of the mitochondria and allowing separation by the discontinuous sucrose density gradient ultracentrifugation. The purity of the FCP preparation and its acquisition of early endosomal markers was confirmed by Western blots, confocal and transmission electron microscopy. Our strategy to isolate highly pure FCPs from macrophages should facilitate studies on the FCP and its biogenesis.
Insights
Researchers developed a novel method to isolate Francisella-containing phagosomes (FCPs) from infected macrophages. This breakthrough facilitates studying the transient FCP stage crucial for tularemia pathogenesis.
Area of Science:
- Microbiology
- Cell Biology
- Immunology
Background:
- Francisella bacteria cause tularemia and invade host macrophages.
- The Francisella-containing phagosome (FCP) stage is transient and crucial for pathogenesis.
- Isolating FCPs has been difficult due to their short residence time and characteristics.
Purpose of the Study:
- To develop a method for isolating pure Francisella-containing phagosomes (FCPs) from infected human monocytes-derived macrophages (hMDMs).
- To enable further studies on FCP biogenesis and its role in Francisella pathogenesis.
Main Methods:
- Pre-loading macrophages with iron particles to eliminate lysosomes via magnetic separation.
- Utilizing iodophenylnitrophenyltetrazolium to increase mitochondrial density for separation from FCPs.
- Employing discontinuous sucrose density gradient ultracentrifugation for FCP isolation.
Main Results:
- A novel method for isolating highly pure FCPs from hMDMs was established.
- Purity of FCPs was confirmed using Western blots, confocal, and transmission electron microscopy.
- Isolated FCPs demonstrated acquisition of early endosomal markers.
Conclusions:
- The developed isolation strategy effectively purifies FCPs from macrophages.
- This method will significantly aid research into FCP biogenesis and Francisella infection mechanisms.

