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Influence of hexadecylphosphocholine on the release of tumor necrosis factor and nitroxide from peritoneal macrophages in vitro

  • Original Paper
  • Experimental Oncology
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Abstract

Hexadecylphosphocholine (HPC) has been investigated intensively for its cancerostatic properties. One explanation for the mechanism of action of HPC assumes that it plays a role in stimulation of the immune system. In particular, its potency to activate macrophages has already been recognised for different lyso- and ether lipids. Important steps in the cascade for developing cytotoxic effects of macrophages on tumor cells are the release of nitric oxide radicals (NO) and/or tumor necrosis factor (TNF). The aim of our study was to examine the role of HPC as primer and/or trigger for macrophage activation to cytotoxicity. In our experiments we used HPC in free (micellar) or liposomal form in different primer/trigger combinations with lipopolysaccharide (LPS). A weak change in morphology was revealed by electron microscopy, if macrophages were harvested from mice previously treated with HPC or HPC multilamellar vesicles. This observation was quantified by the measurement of NO, TNF and cytotoxic activity of the peritoneal macrophages. A specific release of NO was induced by the combination of in vivo treatment with liposomal HPC and subsequent stimulation by LPS in vitro. This process started only after 12 h of in vitro incubation of macrophages with the endotoxin. The release of TNF was dependent of the primer/trigger combination used. A moderate priming effect was obtained with HPC in liposomal form independently of the trigger. On the other hand, liposomes as priming agents were found to induce a dramatic increase in TNF release after in vitro coculture with the trigger LPS. The high release of NO and TNF is accompanied by only a weak increase in tumor cytostasis. The best results were once more found with macrophages primed with liposomal HPC and then triggered with LPS.

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Abbreviations

HPC :

hexadecylphosphocholine

MLV :

multilamellar vesicle

TNF :

tumor necrosis factor

IFN :

interferon

LPS :

lipopolysaccharide

References

  • Andreesen R, Osterholz J, Luckenbach GA, Costabel U, Schulz A, Speth V, Munder PG, Löhr GW (1984) Tumor cytotoxicity of human macrophages after incubation with synthetic analogues of 2-lysophosphocholine. J Natl Cancer Inst 72: 53–59

    Google Scholar 

  • Berdel WE, Munder PG (1987) Antineoplastic action of ether lipids related to platelet-activating factor. In: Snyder F (ed) Platelet activating factor and related lipid mediators. Plenum, New York, pp 449–467

    Google Scholar 

  • Curley SA, Roh MS, Feig B, Oyedeji C, Kleinerman ES, Klostergaard (1993) Mechanisms of Kupffer cell cytotoxicity in vitro against the syngeneic murine colon adenocarcinoma line MCA26. J Leukoc Biol 53: 715–721

    Google Scholar 

  • Ding AH, Nathan CF, Stuehr DJ (1988) Release of reactive nitrogen intermediates and reactive oxygen intermediates from mouse peritoneal macrophages. J Immunol 141: 2407–2412

    Google Scholar 

  • Espevik T, Nissen-Meyer J (1986) A highly sensitive cell line, WEHI 164 clone 13, for measuring cytotoxic factor/tumor necrosis factor from human monocytes. J Immunol Methods 95: 99–105

    Google Scholar 

  • Fichtner I, Zeisig R, Naundorf H, Jungmann S, Arndt D, Asongwe G, Double JA, Bibby MC (1994) Antineoplastic activity of alkylphosphocholines (APC) in human breast carcinomas in vivo and in vitro; use of liposomes. Breast Cancer Res Treat 32: 269–279

    Google Scholar 

  • Geilen CC, Haase A, Wieder T, Arndt D, Zeisig R, Reutter W (1994) Phospholipid analogues: side chain- and polar head group-dependent effects on phosphatidylcholine biosynthesis. J Lipid Res 35: 625–632

    Google Scholar 

  • Herrmann DBJ, Bicker U, Pahlke W (1987) BM 41.400: a new antineoplastic, antimetastatic, and immune-stimulating drug. Cancer Detect Prev Suppl 1: 361

    Google Scholar 

  • Higuchi M, Higashi N, Taki H, Osawa T (1990) Tumor necrosis factor andl-argine-dependent mechanisms act synergistically as the major cytolytic mechanisms of activated macrophages. J Immunol 144: 1425–1431

    Google Scholar 

  • Hilgard P, Stekar J, Voegeli R, Engel J, Schumacher W, Eibl H, Unger C, Berger MR (1988) Characterization of the antitumor activity of hexadecylphosphocholine (D 18506). Eur J Cancer Clin Oncol 24: 1457–1461

    Google Scholar 

  • Hilgard P, Kampherm E, Nolan L, Pohl J, Reissmann T (1991) Investigation into the immunological effects of miltefosine, a new anticancer agent under development. J Cancer Res Clin Oncol 117: 403–408

    Google Scholar 

  • Jeannin JF, Klein R, Reisser D, Lagadec P, Vincent M, Tatischeff I (1988) Correlation between the synergistic effect of liposomes and endotoxins on the activation of macrophage tumoricidal activity and the effect of liposomes on the rough endoplasmic reticulum of macrophages. J Membrane Biol 104: 107–118

    Google Scholar 

  • Keller R, Keist R (1989) Abilities of activated macrophages to manifest tumoricidal activity and to generate reactive nitrogen intermidiates. Biophys Res Commun 164: 968–973

    Google Scholar 

  • Lorsbach RB, Murphy WJ, Lowenstein CJ, Snyder SH, Russell SW (1993) Expression of the nitric oxide synthase gene in mouse macrophages activated for tumor cell killing. J Biol Chem 268: 1908–1913

    Google Scholar 

  • Lowenstein CJ, Alley EW, Raval P, Snowman AM, Snyder SH, Russell SW, Murphy WJ (1993) Macrophage nitric oxide synthase gene: two upstream regions mediate induction by interferon gamma and lipopolysaccharide. Proc Natl Acad Sci USA 90: 9730–9734

    Google Scholar 

  • Maurer HR, Hilgard P (1992) Induction of tumor cell differentiation by alkylphosphocholines: a new approach for in vitro screening. Alkylphosphocholines: new drugs in cancer chemotherapy. Prog Exp Tumor Res 34: 90–97

    Google Scholar 

  • Naito M, Kudo I, Mukai-Sato Y, Tsushima S, Nomura H, Nojima S, Inoue K (1987) Activation of mouse peritoneal macrophages by synthetic glycero-glycolipid liposomes. Cancer Immunol Immunother 24: 158–164

    Google Scholar 

  • Noseda A, White JG, Godwin PL, Jerome WG, Modest EJ (1989) Membrane damage in leukemic cells induced by either and ester lipids: an electron microscopic study. Exp Mol Pathol 50: 69–83

    Google Scholar 

  • Rietschel ET, Kirikae T, Schade FU, Mamat U, Schmidt G, Loppnow H, Ulmer AJ, Zahringèr U, Seydel U, Padova F (1994) Bacterial endotoxin: molecular relationship of structure to activity and function. FASEB J 8: 217–225

    Google Scholar 

  • Severn A, Wakelam MJO, Liew FY (1992) The role of protein kinase C in the induction of nitric oxide synthesis by murine macrophages. Biochem Biophys Res Commun 188: 997–1002

    Google Scholar 

  • Singh RK, Fidler IJ (1993) Synergism between human recombinant monocyte chemotactic and activating factor and lipopolysaccharide for activation of antitumor properties in human blood monocytes. Lymphokine Cytokine Res 12: 285–291

    Google Scholar 

  • Überall F, Oberhuber H, Maly K, Zaknun J, Demuth L, Grunicke HH (1991) Hexadecylphosphocholine inhibits inositol phosphate formation and protein kinase C activity. Cancer Res 51: 807–812

    Google Scholar 

  • Uhing RJ, Adams DO (1989) Molecular events in the activation of murine macrophages. Agents Actions 26: 9–14

    Google Scholar 

  • Unger C, Damenz W, Fleer EAM, Kim DJ, Breiser A, Hilgard P, Engel J, Nagel G, Eibl H (1989a) Hexadecyl-phosphocholine, a new ether lipid analogue. Studies on the antineoplastic activity in vitro and in vivo. Acta Oncol 28: 213–217

    Google Scholar 

  • Unger C, Eibl H, Breiser A, Heyden HW, Engel J, Hilgard P, Sindermann H, Peukert M, Nagel GA (1989b) Hexadecylphosphocholine in the topical treatment of skin metastasis: a phase I trial. Contrib Oncol 37: 219–223

    Google Scholar 

  • Waga T, Nakamura M, Honda Z, Ferby T, Toyoshima S, Ishiguro S, Shimizu T (1993) Two distinct signal transduction pathways for the activation of guinea-pig macrophages and neutrophils by endotoxin. Biochem Biophys Res Commun 197: 465–472

    Google Scholar 

  • Weisz A, Oguchi S, Cicatiello L, Esumi H (1994) Dual mechanism for the control of inducible-type NO synthase gene expression in macrophages during activation by interferon-gamma and bacterial lipopolysaccharide. Transcriptional and posttranscriptional regulation. J Biol chem 269: 8324–8333

    Google Scholar 

  • Yamamoto N, Ngwenya BJ (1987) Activation of mouse peritoneal macrophages by lysophospholipids and ether derivatives of neutral lipids and phospholipids. Cancer Res 47: 2008–2013

    Google Scholar 

  • Yu SF, Koerner TJ, Adams DO (1990) Gene regulation in macrophage activation: differential regulation of genes encoding for tumor necrosis factor, interleukin-1, JE and KC by interferon-gamma and lipopolysaccharide. J Leukoc Biol 48: 412–419

    Google Scholar 

  • Zeisig R, Fichtner I, Arndt D, Jungmann S (1991) Antitumor effects of alkylphosphocholines in different murine tumor models: use of liposomal preparations. Anticancer Drugs 2: 411–417

    Google Scholar 

  • Zeisig R, Jungmann S, Arndt D, Schütt A, Nissen E (1993) Antineoplastic activity in vitro of free and liposomal alkylphosphocholines. Anticancer Drugs 4: 57–64

    Google Scholar 

  • Zeisig R, Jungmann S, Fichtner I, Daemen T, Arndt D (1994) Cytotoxic effects of alkylphosphocholines or alkylphosphocholine-liposomes and macrophages on tumor cells. Anticancer Res 14: 1785–1790

    Google Scholar 

  • Zhang X, Morrison DC (1993) Lipopolysaccharide structure-function relationship in activation versus reprogramming of mouse peritoneal macrophages. J Leukoc Biol 54: 444–450

    Google Scholar 

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This work was supported by a grand from the Federal Ministry for Research and Technology of Germany (0319564A)

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Zeisig, R., Rudolf, M., Eue, I. et al. Influence of hexadecylphosphocholine on the release of tumor necrosis factor and nitroxide from peritoneal macrophages in vitro. J Cancer Res Clin Oncol 121, 69–75 (1995). https://doi.org/10.1007/BF01202215

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  • DOI: https://doi.org/10.1007/BF01202215

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