Bovine Lactoferrin and Lactoferricin, a Peptide Derived from Bovine Lactoferrin, Inhibit Tumor Metastasis in Mice
- 1 February 1997
- journal article
- Published by Wiley in Japanese Journal of Cancer Research
- Vol. 88 (2), 184-190
- https://doi.org/10.1111/j.1349-7006.1997.tb00364.x
Abstract
We investigated the effect of a bovine milk protein, lactoferrin (LF–B), and a pepsin–generated peptide of LF–B, lactoferricin (Lfcin–B), on inhibition of tumor metastasis produced by highly metastatic murine tumor cells, B16–BL6 melanoma and L5178Y–ML25 lymphoma cells, using experimental and spontaneous metastasis models in syngeneic mice. The subcutaneous (s.c.) administration of bovine apo–lactoferrin (apo–LF–B, 1 mg/mouse) and Lfcin–B (0.5 mg/monse) 1 day after tumor inoculation significantly inhibited liver and lung metastasis of L5178Y–ML25 cells. However, human apo–lactoferrin (apo–LF–H) and bovine holo–lactoferrin (holo–LF–B) at the dose of 1 mg/mouse failed to inhibit tumor metastasis of L5178Y–ML25 cells. Similarly, the s.c. administration of apo–LF–B as well as Lfcin–B, but not apo–LF–H and holo–LF–B, 1 day after tumor inoculation resulted in significant inhibition of lung metastasis of B16–BL6 cells in an experimental metastasis model. Furthermore, in in vivo analysis for tumor–induced angiogenesis, both apo–LF–B and Lfcin–B inhibited the number of tumor–induced blood vessels and suppressed tumor growth on day 8 after tumor inoculation. However, in a long–term analysis of tumor growth for up to 21 days after tumor inoculation, single administration of apo–LF–B significantly suppressed the growth of B16–BL6 cells throughout the examination period, whereas Lfcin–B showed inhibitory activity only during the early period (8 days). In spontaneous metastasis of B16–BL6 melanoma cells, multiple administration of both apo–LF–B and Lfcin–B into tumor–bearing mice significantly inhibited lung metastasis produced by B16–BL6 cells, though only apo–LF–B exhibited an inhibitory effect on tumor growth at the time of primary tumor amputation (on day 21) after tumor inoculation. These results suggest that apo–LF–B and Lfcin–B inhibit tumor metastasis through different mechanisms, and that the inhibitory activity of LF–B on tumor metastasis may he related to iron (Fe3+)–saturation.Keywords
This publication has 33 references indexed in Scilit:
- Effects of Lactoferrin and Its Peptides on Proliferation of Rat Intestinal Epithelial Cell Line, IEC-18, in the Presence of Epidermal Growth FactorBioscience, Biotechnology, and Biochemistry, 1995
- MDP-Lys(L18), a lipophilic derivative of muramyl dipeptide, inhibits the metastasis of haematogenous and non-haematogenous tumours in miceVaccine, 1994
- A review: The active peptide of lactoferrinPediatrics International, 1994
- Identification of a mannose-acetate-specific 87-kDa receptor responsible for human NK and LAK activityImmunology Letters, 1994
- Iron depletion: A defense against intracellular infection and neoplasiaLife Sciences, 1992
- Antibacterial spectrum of lactoferricin B, a potent bactericidal peptide derived from the N‐terminal region of bovine lactoferrinJournal of Applied Bacteriology, 1992
- Inhibition of tumor‐induced angiogenesis by the administration of recombinant interferon‐γ followed by a synthetic lipid‐a subunit analogue (GLA‐60)International Journal of Cancer, 1992
- Identification of the bactericidal domain of lactoferrinBiochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1992
- Structure of human lactoferrin: Crystallographic structure analysis and refinement at 2·8 Å resolutionJournal of Molecular Biology, 1989
- Préparation et propriétés de la lactosidérophiline (lactotransferrine) du lait de femmeBiochimica et Biophysica Acta, 1960