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PMID: 4075611 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

In vitro quantification of melanoma tumor cell invasion.

Clinical & experimental metastasis ·Vol. 3 ·No. 4 ·1985-00-00 ·Pages 221-33

Hendrix MJ, Gehlsen KR, Wagner HN, Rodney SR, Misiorowski RL, Meyskens FL

Abstract

In order to quantify the invasiveness of melanoma tumor cells in vitro, a modification of the amniotic basement membrane (BM) model, described by Liotta et al. (Cancer Letters, 11, 141, 1980), was used in combination with radiolabeled tumor cells. B16-F10 metastatic murine melanoma cells and a derived clone (B16-F10L) were prelabeled with 0.1 muCi/ml of [14C]thymidine for 20-24 h in serum-free medium at 37 degrees C. Following incubation, fetal bovine serum was added to a concentration of 5 per cent, and the cells were allowed to grow to confluency for the next 24-28 h. The labeled cells were seeded onto amniotic membranes situated in Membrane Invasion Culture System (MICS) chambers at a density of 2.5 X 10(4) per well. At various times points, radioactivity of tumor cells that completely traversed the membrane was determined using an under-the-membrane sampling method. The average percent invasion demonstrated by the B16-F10 line was 2.75 per cent, and 3.65 per cent exhibited by the B16-F10L cell line after 48-53 h in vitro. Since it was apparent that some variability in thickness existed among membrane samples, a morphological analysis was performed on five sectors of a three-inch-diameter sample from four different placentae. Differences and similarities in BM thickness within the same sector were noted by this technique and could possibly contribute to some variability observed in tumor cell invasion in this model. Another parameter examined was the proliferation of tumor cells in the upper and lower wells of the MICS chambers. By 48 h, approximately 32.1 per cent of the B16-F10 cell line as well as the clone had replicated in the upper wells associated with the BMs compared with a 32.9 per cent replication in the lower wells, which reaffirmed the viability of the tumor cells under experimental conditions and insured similarly replicating populations of cells. In order to quantify the invasiveness of radiolabeled tumor cells accurately through a biological membranous barrier, the proper concentration of cells must be used, tumor cell heterogeneity should be taken into consideration, the technique of sampling radiolabeled invasive cells should be critically analysed, and thickness of the membranous barrier should all be considered as possible important factors in the quantitative analyses.

MeSH Terms
Amnion/ultrastructure Animals Basement Membrane/ultrastructure Cell Line Female Humans In Vitro Techniques Melanoma/pathology Methods Mice Mice, Inbred C57BL Neoplasm Invasiveness/diagnosis Pregnancy Thymidine/metabolism
Chemicals
Thymidine
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Hendrix M J
Gehlsen K R
Wagner H N
Rodney S R
Misiorowski R L
Meyskens F L
References (34)
34 references, click to expand
  1. Evaluation of anticancer drug schedule dependency using an in vitro human tumor clonogenic assay.
    Cancer Chemother Pharmacol. 1984;12(3):135-41 PMID: 6705130
  2. A morphological characterization of melanoma tumor cell interaction with a basement membrane model in the absence and presence of an anticancer agent.
    Scan Electron Microsc. 1984;(Pt 4):1973-82 PMID: 6395316
  3. Malignant melanoma of the skin. I. The association of tumor depth and type, and patient sex, age, and site with survival.
    Cancer. 1983 Oct 1;52(7):1330-41 PMID: 6883293
  4. The pathogenesis of cancer metastasis.
    Nature. 1980 Jan 10;283(5743):139-46 PMID: 6985715
  5. Loss of basement membrane components by invasive tumors but not by their benign counterparts.
    Lab Invest. 1983 Aug;49(2):140-7 PMID: 6348406
  6. Evaluation of S phase synchronization by analysis of DNA replication in 5-bromodeoxyuridine.
    Exp Cell Res. 1973 Nov;82(1):137-42 PMID: 4270895
  7. Plasminogen activators in human malignant melanoma.
    J Natl Cancer Inst. 1984 Jun;72(6):1213-22 PMID: 6374238
  8. Tumor invasion and host extracellular matrix.
    Cancer Metastasis Rev. 1983;2(2):129-52 PMID: 6352011
  9. Polymorphonuclear leukocyte migration through human amnion membrane.
    J Cell Biol. 1981 Nov;91(2 Pt 1):459-67 PMID: 7309792
  10. Studies on a human melanoma cell line: effect of cell crowding and nutrient depletion on the biophysical and kinetic characteristics of the cells.
    J Cell Physiol. 1981 Apr;107(1):85-100 PMID: 7217226
  11. Fibronectin enhancement of directed migration of B16 melanoma cells.
    Cancer Res. 1984 Apr;44(4):1657-63 PMID: 6704972
  12. Comparison of the metastatic properties of B16 melanoma clones isolated from cultured cell lines, subcutaneous tumors, and individual lung metastases.
    Cancer Res. 1982 Jul;42(7):2770-8 PMID: 7083167
  13. Laminin and fibronectin promote the haptotactic migration of B16 mouse melanoma cells in vitro.
    J Cell Biol. 1984 Apr;98(4):1474-80 PMID: 6715409
  14. Relation of in vitro colony survival to clinical response in a prospective trial of single-agent chemotherapy for metastatic melanoma.
    J Clin Oncol. 1984 Nov;2(11):1223-8 PMID: 6387058
  15. The usefulness of human tumor cell lines in the study of chemosensitivity. A study of malignant melanomas.
    Int J Cancer. 1981 Oct 15;28(4):403-8 PMID: 7309286
  16. Selection of successive tumour lines for metastasis.
    Nat New Biol. 1973 Apr 4;242(118):148-9 PMID: 4512654
  17. In vitro selection of murine B16 melanoma variants with enhanced tissue-invasive properties.
    Cancer Res. 1980 May;40(5):1636-44 PMID: 7370995
  18. New method for preparing large surfaces of intact human basement membrane for tumor invasion studies.
    Cancer Lett. 1980 Dec;11(2):141-52 PMID: 7459842
  19. Cell detachment and metastasis.
    Cancer Metastasis Rev. 1983;2(2):111-27 PMID: 6352010
  20. Membrane invasion culture system (MICS).
    Med Instrum. 1984 Sep-Oct;18(5):268-71 PMID: 6493100
  21. Dynamic heterogeneity: rapid generation of metastatic variants in mouse B16 melanoma cells.
    Science. 1984 Jun 1;224(4652):998-1001 PMID: 6719130
  22. Role of collagenases in tumor cell invasion.
    Cancer Metastasis Rev. 1982;1(4):277-88 PMID: 6309368
  23. Protein synthesis but not DNA synthesis is required for tumor cell invasion in vitro.
    Invasion Metastasis. 1984;4(2):73-83 PMID: 6429083
  24. Tumor progression, oncogenes and the evolution of metastatic phenotypic diversity.
    Clin Exp Metastasis. 1984 Apr-Jun;2(2):85-105 PMID: 6543697
  25. Collagenase immunolocalization studies of cutaneous secondary melanomas.
    Br J Cancer. 1980 Aug;42(2):260-5 PMID: 6252926
  26. Secretion of basement membrane collagen degrading enzyme and plasminogen activator by transformed cells--role in metastasis.
    Int J Cancer. 1982 Nov 15;30(5):669-73 PMID: 6295970
  27. Quantitation of differential sensitivity of human-tumor stem cells to anticancer drugs.
    N Engl J Med. 1978 Jun 15;298(24):1321-7 PMID: 77475
  28. Type IV collagenase immunoreactivity in invasive breast carcinoma.
    Lancet. 1983 Feb 5;1(8319):296-7 PMID: 6130313
  29. Primary bioassay of human tumor stem cells.
    Science. 1977 Jul 29;197(4302):461-3 PMID: 560061
  30. Specificity of arrest, survival, and growth of selected metastatic variant cell lines.
    Cancer Res. 1978 Nov;38(11 Pt 2):4105-11 PMID: 359132
  31. Interaction of human carcinoma cells with an epithelial layer and the underlying basement membrane. A new model.
    Arch Geschwulstforsch. 1981;51(1):40-4 PMID: 7259440
  32. Tumor invasion and the extracellular matrix.
    Lab Invest. 1983 Dec;49(6):636-49 PMID: 6317982
  33. The biology of cancer invasion and metastasis.
    Adv Cancer Res. 1978;28:149-250 PMID: 360795
  34. An in vitro quantitative assay for tumor cell invasion.
    Cancer Res. 1978 Oct;38(10):3218-24 PMID: 688212
Article Info
Journal
Clinical & experimental metastasis
Abbr.
Clin Exp Metastasis
ISSN
0262-0898
Published
1985-00-00
Pages
221-33
Language
English
Region
Netherlands
NLM ID
8409970
Subset
IM
Grants
NCI NIH HHS · CA23074 · United States
NCI NIH HHS · CA27502 · United States
NCRR NIH HHS · RRO5675-17 · United States
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