4.7 Article

Enhanced macromolecule diffusion deep in tumors after enzymatic digestion of extracellular matrix collagen and its associated proteoglycan decorin

Journal

FASEB JOURNAL
Volume 22, Issue 1, Pages 276-284

Publisher

FEDERATION AMER SOC EXP BIOL
DOI: 10.1096/fj.07-9150com

Keywords

FRAP; ECS; hyluronan

Funding

  1. NATIONAL EYE INSTITUTE [R01EY013574] Funding Source: NIH RePORTER
  2. NATIONAL HEART, LUNG, AND BLOOD INSTITUTE [R01HL059198, R01HL073856] Funding Source: NIH RePORTER
  3. NATIONAL INSTITUTE OF BIOMEDICAL IMAGING AND BIOENGINEERING [R01EB000415, R37EB000415] Funding Source: NIH RePORTER
  4. NATIONAL INSTITUTE OF DIABETES AND DIGESTIVE AND KIDNEY DISEASES [R01DK035124, P30DK072517, R37DK035124] Funding Source: NIH RePORTER
  5. NEI NIH HHS [EY13574] Funding Source: Medline
  6. NHLBI NIH HHS [HL73856, HL59198] Funding Source: Medline
  7. NIBIB NIH HHS [EB00415] Funding Source: Medline
  8. NIDDK NIH HHS [DK72517, DK35124] Funding Source: Medline

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Drug access to tumors is limited by diffusion through the tumor interstitium. We used a micro-fiberoptic epifluorescence photobleaching method to determine the role of extracellular matrix (ECM) components in macromolecule diffusion deep in tumor tissue. In subcutaneous B16 tumors in living mice, translational diffusion of 10 kDa FITC-dextran was slowed 2- to 3- fold (compared with its diffusion in water) within a depth of 0.2 mm from the tumor surface, but >10-fold beyond a depth of 1 mm. Diffusion of larger macromolecules, FITC-albumin and 500 kDa FITC-dextran, was slowed by up to 40-fold at 0.5 mm and 300-fold at 2 mm. Intratumoral collagenase (to digest collagen) or cathespin C (to digest decorin) each increased diffusion of 10 kDa FITC-dextran by similar to 2-fold. However, these treatments dramatically increased diffusion (> 10-fold) of larger macromolecules, such as 500 kDa dextran, in deep tumor (2 mm depth). Intratumoral hyaluronidase, in contrast, slowed diffusion throughout the tumor. In vitro measurements in defined gel-like mixtures of collagen, hyaluronan, and decorin closely recapitulated results in tumors in vivo. Mathematical modeling quantified the roles of extracellular space volume fraction and dimensions, and indicated a substantial effect of cell density on diffusion in deep tumor. Our data define the determinants of diffusion in deep tumor and suggest collagen and decorin digestion to greatly facilitate macromolecule delivery.

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