Abstract
Hyaluronidase (HAse), a degrading enzyme of hyaluronic acid (HA), is highly expressed in patients with malignant glioma. The purpose of this study was to verify whether HAse is related to the invasion of glioma cells. We also investigated if glioma cells with higher mobility in 2-dimensioal (2-D) method have also higher mobility at 3-dimensional (3-D) environment. Malignant glioma cell lines (U87MG, U251MG, U343MG-A, and U373MG) were used, and their HAse expressions were evaluated by HA zymography. The migration ability was evaluated by simple scratch technique. The invasiveness of each cell lines was evaluated by Matrigel invasion assay and HA hydrogel invasion assay. In HA hydrogel invasion assay, colonies larger than 150 microm were regarded as positive ones and counted. Statistical analysis of migration ability and invasion properties of each cell lines was performed using t-test. In scratch test to examine migration ability of each cell lines, U87MG cells were most motile than others, and U343MG-A least motile. The HAse was expressed in U251MG and U343MG-A cell lines. However, U87MG and U373MG cell lines did not express HAse activity. In Matrigel invasion assay, the cell lines expressing HAse (U251MG and U343MG-A) were more invasive in the presence of HA than HAse deficient cell lines (U87MG and U373MG). In HA hydrogel invasion assay, the HAse-expressing cell lines formed colonies more invasively than HAse-deficient ones. Malignant Glioma cells expressing HAse were more invasive than HAse-deficient ones in 3-dimensional environment. Therefore, it might be suggested that invasion of malignant gliomas is suppressed by inhibition of HAse expression or HA secretion. Additionally, the ability of 2-D migration and 3-D invasion might not be always coincident to each other in malignant glioma cells.
Keywords
Hyaluronic acid
Hyaluronic acid hydrogel
Hyaluronidase
Invasion
Malignant glioma
Migration
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Jin Shu-Guang
Department of Neurosurgery, Chonnam National University Research Institute of Medical Sciences, Chonnam National University Hwasun Hospital & Medical School, Gwangju, Korea.
Jeong Young-Il
Jung Shin
Ryu Hyang-Hwa
Jin Yong-Hao
Kim In-Young
References (24)
24 references, click to expand
-
Glioma invasion in vitro is mediated by CD44-hyaluronan interactions.
J Pathol. 1997 Apr;181(4):434-8
PMID: 9196442
-
Controlled chemical modification of hyaluronic acid: synthesis, applications, and biodegradation of hydrazide derivatives.
J Control Release. 1998 Apr 30;53(1-3):93-103
PMID: 9741917
-
Hyaluronidase is more elevated in human brain metastases than in primary brain tumours.
Anticancer Res. 2002 Jul-Aug;22(4):2423-7
PMID: 12174938
-
Use of the Matrigel-based assay to measure the invasiveness of leukemic cells.
Exp Hematol. 1994 Jul;22(7):559-65
PMID: 8013571
-
The biology of cell locomotion within three-dimensional extracellular matrix.
Cell Mol Life Sci. 2000 Jan 20;57(1):41-64
PMID: 10949580
-
Functions of hyaluronan.
Ann Rheum Dis. 1995 May;54(5):429-32
PMID: 7794055
-
The six hyaluronidase-like genes in the human and mouse genomes.
Matrix Biol. 2001 Dec;20(8):499-508
PMID: 11731267
-
Taking cell-matrix adhesions to the third dimension.
Science. 2001 Nov 23;294(5547):1708-12
PMID: 11721053
-
Hyaluronan: fundamental principles and applications in cancer.
J Intern Med. 1997 Jul;242(1):41-8
PMID: 9260565
-
HA receptors: regulators of signalling to the cytoskeleton.
J Cell Biochem. 1996 Jun 15;61(4):569-77
PMID: 8806080
-
Expression of hyaluronidase by tumor cells induces angiogenesis in vivo.
Proc Natl Acad Sci U S A. 1996 Jul 23;93(15):7832-7
PMID: 8755562
-
Interaction of CD44 with different forms of hyaluronic acid. Its role in adhesion and migration of tumor cells.
Cell Commun Adhes. 2002 May-Jun;9(3):117-30
PMID: 12521133
-
Hyaluronan-binding proteins in development, tissue homeostasis, and disease.
FASEB J. 1993 Oct;7(13):1233-41
PMID: 7691670
-
In vitro reconstruction of human dermal equivalent enriched with endothelial cells.
Biomaterials. 2003 Mar;24(7):1205-11
PMID: 12527261
-
Smooth muscle cell adhesion on crosslinked hyaluronan gels.
J Biomed Mater Res. 2002 Apr;60(1):195-205
PMID: 11835176
-
Hyaluronan-cell interactions in cancer and vascular disease.
J Biol Chem. 2002 Feb 15;277(7):4593-6
PMID: 11717318
-
Some observations on the localization of hyaluronic acid in adult, newborn and embryonal rat brain.
Int J Dev Neurosci. 1992;10(1):45-57
PMID: 1376955
-
Glioblastoma cells do not intravasate into blood vessels.
Neurosurgery. 1995 Jan;36(1):124-32; discussion 132
PMID: 7708148
-
Increased hyaluronate synthesis is required for fibroblast detachment and mitosis.
Biochem J. 1986 Oct 15;239(2):445-50
PMID: 3101667
-
Reticulated hyaluronan hydrogels: a model for examining cancer cell invasion in 3D.
Matrix Biol. 2004 Jun;23(3):183-93
PMID: 15296946
-
General mechanisms of metastasis.
Cancer. 1997 Oct 15;80(8 Suppl):1529-37
PMID: 9362419
-
Brain extracellular matrix.
Glycobiology. 1996 Jul;6(5):489-92
PMID: 8877368
-
Assessment of the cytotoxicity of photocrosslinked dextran and hyaluronan-based hydrogels to vascular smooth muscle cells.
Biomaterials. 2002 Aug;23(16):3299-307
PMID: 12099272
-
Cell interactions with three-dimensional matrices.
Curr Opin Cell Biol. 2002 Oct;14(5):633-9
PMID: 12231360