4.8 Article

Influence of chondroitin sulfate and hyaluronic acid on structure, mechanical properties, and glioma invasion of collagen I gels

期刊

BIOMATERIALS
卷 32, 期 31, 页码 7932-7940

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2011.07.018

关键词

Collagen; Hyaluronic acid; Chondroitin sulfate; Confocal microscopy; Material properties

资金

  1. Beckman Young Investigator Award
  2. Camille Dreyfus Teacher Scholar Award
  3. NSF [0754919]
  4. NSF DGE [0801530]
  5. NIH [RC1GM091804]
  6. Direct For Education and Human Resources
  7. Division Of Graduate Education [0801530] Funding Source: National Science Foundation
  8. Division Of Chemistry
  9. Direct For Mathematical & Physical Scien [0754919] Funding Source: National Science Foundation

向作者/读者索取更多资源

To mimic the extracellular matrix surrounding high grade gliomas, composite matrices composed of either acid-solubilized (AS) or pepsin-treated (PT) collagen and the glycosaminoglycans chondroitin sulfate (CS) and hyaluronic acid (HA) are prepared and characterized. The structure and mechanical properties of collagen/CS and collagen/HA gels are studied via confocal reflectance microscopy (CRM) and rheology. CRM reveals that CS induces fibril bundling and increased mesh size in AS collagen but not PT collagen networks. The presence of CS also induces more substantial changes in the storage and loss moduli of AS gels than of PT gels, in accordance with expectation based on network structural parameters. The presence of HA significantly reduces mesh size in AS collagen but has a smaller effect on PT collagen networks. However, both AS and PT collagen network viscoelasticity is strongly affected by the presence of HA. The effects of CS and HA on glioma invasion is then studied in collagen/GAG matrices with network structure both similar to (PT collagen-based gels) and disparate from (AS collagen-based gels) those of the corresponding pure collagen matrices. It is shown that CS inhibits and HA has no significant effect on glioma invasion in 1.0 mg/ml collagen matrices over 3 days. The inhibitory effect of CS on glioma invasion is more apparent in AS than in PT collagen gels, suggesting invasive behavior in these environments is affected by both biochemical and network morphological changes induced by GAGs. This study is among the few efforts to differentiate structural, mechanical and biochemical effects of changes to matrix composition on cell motility in 3D. (C) 2011 Elsevier Ltd. All rights reserved.

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