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Research Article

High-throughput methods for screening liposome–macrophage cell interaction

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Pages 211-221 | Received 17 Jul 2014, Accepted 11 Nov 2014, Published online: 30 Dec 2014

References

  • Adler-Moore JP, Proffitt RT. (2008). Amphotericin B lipid preparations: what are the differences? Clin Microbiol Infect 14:25–36
  • Ai J, Biazar E, Jafarpour M, et al. (2011). Nanotoxicology and nanoparticle safety in biomedical designs. Int J Nanomedicine 6:1117–27
  • Aramaki Y, Takano S, Tsuchiya S. (2001). Cationic liposomes induce macrophage apoptosis through mitochondrial pathway. Arch Biochem Biophys 392:245–50
  • Arisaka M, Nakamura T, Yamada A, et al. (2010). Involvement of protein kinase Cdelta in induction of apoptosis by cationic liposomes in macrophage-like RAW264.7 cells. FEBS Lett 584:1016–20
  • Chieppa M, Bianchi G, Doni A, et al. (2003). Cross-linking of the mannose receptor on monocyte-derived dendritic cells activates an anti-inflammatory immunosuppressive program. J Immunol 171:4552–60
  • Chono S, Kaneko K, Yamamoto E, et al. (2009). Effect of surface-mannose modification on aerosolized liposomal delivery to alveolar macrophages. Drug Dev Ind Pharm 36:102–7
  • Chono S, Tanino T, Seki T, Morimoto K. (2007). Uptake characteristics of liposomes by rat alveolar macrophages: influence of particle size and surface mannose modification. J Pharm Pharmacol 59:75–80
  • Cotrim AP, Baum BJ. (2008). Gene therapy: some history, applications, problems, and prospects. Toxicol Pathol 36:97–103
  • Cryan SA, Devocelle M, Moran PJ, et al. (2006). Increased intracellular targeting to airway cells using octaarginine-coated liposomes: in vitro assessment of their suitability for inhalation. Mol Pharm 3:104–12
  • Daigneault M, Preston JA, Marriott HM, et al. (2010). The identification of markers of macrophage differentiation in PMA-stimulated THP-1 cells and monocyte-derived macrophages. PLoS one 5:e8668
  • Engel A, Chatterjee SK, Al-Arifi A, et al. (2003). Influence of spacer length on interaction of mannosylated liposomes with human phagocytic cells. Pharm Res 20:51–7
  • Espuelas S, Thumann C, Heurtault B, et al. (2008). Influence of ligand valency on the targeting of immature human dendritic cells by mannosylated liposomes. Bioconjug Chem 19:2385–93
  • Filion MC, Phillips NC. (1997). Toxicity and immunomodulatory activity of liposomal vectors formulated with cationic lipids toward immune effector cells. Biochim Biophys Acta 1329:345–56
  • Filion MC, Phillips NC. (1998). Major limitations in the use of cationic liposomes for DNA delivery. Int J Pharm 162:159–70
  • Forbes B, O'Lone R, Allen PP, et al. (2014). Challenges for inhaled drug discovery and development: induced alveolar macrophage responses. Adv Drug Deliv Rev 71:15–33
  • Gazi U, Martinez-Pomares L. (2009). Influence of the mannose receptor in host immune responses. Immunobiology 214:554–61
  • Gilleron J, Querbes W, Zeigerer A, et al. (2013). Image-based analysis of lipid nanoparticle-mediated siRNA delivery, intracellular trafficking and endosomal escape. Nat Biotech 31:638–46
  • Hibbitts A, Lieggi N, Mccabe O, et al. (2011). Screening of siRNA nanoparticles for delivery to airway epithelial cells using high-content analysis. Ther Del 2:987–99
  • Iwaoka S, Nakamura T, Takano S, et al. (2006). Cationic liposomes induce apoptosis through p38 MAP kinase-caspase-8-Bid pathway in macrophage-like RAW264.7 cells. J Leukoc Biol 79:184–91
  • Kawakami S, Sato A, Nishikawa M, et al. (2000a). Mannose receptor-mediated gene transfer into macrophages using novel mannosylated cationic liposomes. Gene Ther 7:292–9
  • Kawakami S, Wong J, Sato A, et al. (2000b). Biodistribution characteristics of mannosylated, fucosylated, and galactosylated liposomes in mice. Biochim Biophys Acta 1524:258–65
  • Kawakami S, Yamashita F, Nishikawa M, et al. (1998). Asialoglycoprotein receptor-mediated gene transfer using novel galactosylated cationic liposomes. Biochem Biophys Res Commun 252:78–83
  • Kelly C, Jefferies C, Cryan SA. (2011). Targeted liposomal drug delivery to monocytes and macrophages. J Drug Deliv 2011:727241
  • Kobayashi N, Karisola P, Pena-Cruz V, et al. (2007). TIM-1 and TIM-4 glycoproteins bind phosphatidylserine and mediate uptake of apoptotic cells. Immunity 27:927–40
  • Kohro T, Tanaka T, Murakami T, et al. (2004). A comparison of differences in the gene expression profiles of phorbol 12-myristate 13-acetate differentiated THP-1 cells and human monocyte-derived macrophage. J Atheroscler Thromb 11:88–97
  • Lawlor C, O'Sullivan MP, Rice B, et al. (2012). Therapeutic aerosol bioengineering of targeted, inhalable microparticle formulations to treat Mycobacterium tuberculosis (MTb). J Mater Sci Mater Med 23:89–98
  • Lawlor C, O'Sullivan MP, Sivadas N, et al. (2011). The application of high-content analysis in the study of targeted particulate delivery systems for intracellular drug delivery to alveolar macrophages. Mol Pharm 8:1100–12
  • Liao HS, Matsumoto A, Itakura H, et al. (1999). De novo expression of the class-A macrophage scavenger receptor conferring resistance to apoptosis in differentiated human THP-1 monocytic cells. Cell Death Differ 6:245–55
  • Lv H, Zhang S, Wang B, et al. (2006). Toxicity of cationic lipids and cationic polymers in gene delivery. J Control Release 114:100–9
  • Malmsten M. (2002). Surfactants and polymers in drug delivery. New York: Basel, CRC Press
  • Mayhew E, Ito M, Lazo R. (1987). Toxicity of non-drug-containing liposomes for cultured human cells. Exp Cell Res 171:195–202
  • Mckim Jr JM. (2010). Building a tiered approach to in vitro predictive toxicity screening: a focus on assays with in vivo relevance. Comb Chem High Throughput Screen 13:188–206
  • Moghimi SM, Hunter AC. (2001). Recognition by macrophages and liver cells of opsonized phospholipid vesicles and phospholipid headgroups. Pharm Res 18:1–8
  • O'Sullivan MP, O'Leary S, Kelly DM, Keane J. (2007). A caspase-independent pathway mediates macrophage cell death in response to Mycobacterium tuberculosis infection. Infect Immun 75:1984–93
  • Puri A, Loomis K, Smith B, et al. (2009). Lipid-based nanoparticles as pharmaceutical drug carriers: from concepts to clinic. Crit Rev Ther Drug Carrier Syst 26:523–80
  • Tak PP, Firestein GS. (2001). NF-kappaB: a key role in inflammatory diseases. J Clin Invest 107:7–11
  • Takano S, Aramaki Y, Tsuchiya S. (2003). Physicochemical properties of liposomes affecting apoptosis induced by cationic liposomes in macrophages. Pharm Res 20:962–8
  • Tsuchiya S, Kobayashi Y, Goto Y, et al. (1982). Induction of maturation in cultured human monocytic leukemia cells by a phorbol diester. Cancer Res 42:1530–6
  • Wiethoff CM, Smith JG, Koe GS, Middaugh CR. (2001). The potential role of proteoglycans in cationic lipid-mediated gene delivery. Studies of the interaction of cationic lipid-DNA complexes with model glycosaminoglycans. J Biol Chem 276:32806–13
  • Wijagkanalan W, Higuchi Y, Kawakami S, et al. (2008a). Enhanced anti-inflammation of inhaled dexamethasone palmitate using mannosylated liposomes in an endotoxin-induced lung inflammation model. Mol Pharmacol 74:1183–92
  • Wijagkanalan W, Kawakami S, Takenaga M, et al. (2008b). Efficient targeting to alveolar macrophages by intratracheal administration of mannosylated liposomes in rats. J Control Release 125:121–30
  • Xu X, Xie Q, Shen Y, et al. (2010). Involvement of mannose receptor in the preventive effects of mannose in lipopolysaccharide-induced acute lung injury. Eur J Pharmacol 641:229–37
  • Zuhorn IS, Engberts JB, Hoekstra D. (2007). Gene delivery by cationic lipid vectors: overcoming cellular barriers. Eur Biophys J 36:349–62

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