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PMID: 8083541 Published · ppublish English Journal Article Review

Liposome mediated depletion of macrophages: mechanism of action, preparation of liposomes and applications.

Journal of immunological methods ·Vol. 174 ·No. 1-2 ·1994-09-14 ·Pages 83-93

Van Rooijen N, Sanders A

Abstract

Selective depletion of macrophages from tissues in vivo can be used to investigate whether these cells are playing a role in defined biological processes. This question is particularly relevant to various host defense mechanisms. We have developed a macrophage 'suicide' technique, using the liposome mediated intracellular delivery of dichloromethylene-bisphosphonate (Cl2MBP or clodronate). The method is specific with respect to phagocytic cells of the mononuclear phagocyte system (MPS) for the following reasons: (1) The natural fate of liposomes is phagocytosis. (2) Once ingested by macrophages, the phospholipid bilayers of the liposomes are disrupted under the influence of lysosomal phospholipases. (3) Cl2MBP intracellularly released in this way does not easily escape from the cell by crossing the cell membranes. (4) Cl2MBP released in the circulation from dead macrophages or by leakage from liposomes, will not easily enter non-phagocytic cells and has an extremely short half life in the circulation and body fluids. In the present review, the preparation of Cl2MBP-liposomes has been described in detail. Furthermore, the mechanism of action of the new approach and its applicabilities are discussed.

MeSH Terms
Animals Clodronic Acid/administration & dosage Immunity, Cellular Liposomes Lymphoid Tissue/cytology Macrophages/cytology Mice Phagocytosis Rats
Chemicals
Liposomes Clodronic Acid
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Van Rooijen N
Department of Cell Biology, Faculty of Medicine, Free University, Amsterdam, Netherlands.
Sanders A
Article Info
Journal
Journal of immunological methods
Abbr.
J Immunol Methods
ISSN
0022-1759
Published
1994-09-14
Pages
83-93
Language
English
Region
Netherlands
NLM ID
1305440
Subset
IM
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