Prevention of radiation-induced salivary hypofunction following hKGF gene delivery to murine submandibular glands

Clin Cancer Res. 2011 May 1;17(9):2842-51. doi: 10.1158/1078-0432.CCR-10-2982. Epub 2011 Mar 2.

Abstract

Purpose: Salivary glands are significantly affected when head and neck cancer patients are treated by radiation. We evaluated the effect of human keratinocyte growth factor (hKGF) gene transfer to murine salivary glands on the prevention of radiation-induced salivary hypofunction.

Experimental design: A hybrid serotype 5 adenoviral vector encoding hKGF (AdLTR(2)EF1α-hKGF) was constructed. Female C3H mice, 8 weeks old, were irradiated by single (15 Gy) or fractionated (6 Gy for 5 days) doses to induce salivary hypofunction. AdLTR(2)EF1α-hKGF or AdControl was administered (10(8) - 10(10) particles per gland) to both submandibular glands (SG) by retrograde ductal instillation before irradiation (IR). Salivary flow was measured following pilocarpine stimulation. Human KGF levels were measured by ELISA. SG cell proliferation was measured with bromodeoxyuridine labeling. Endothelial and progenitor or stem cells in SGs were measured by flow cytometry. The effect of SG hKGF production on squamous cell carcinoma (SCC VII) tumor growth was assessed.

Results: In 3 separate single-dose IR experiments, salivary flow rates of mice administered the AdLTR(2)EF1α-hKGF vector were not significantly different from nonirradiated control mice (P > 0.05). Similarly, in 3 separate fractionated IR experiments, the hKGF-expressing vector prevented salivary hypofunction dramatically. Transgenic hKGF protein was found at high levels in serum and SG extracts. AdLTR(2)EF1α-hKGF-treated mice showed increased cell proliferation and numbers of endothelial cells, compared with mice treated with AdControl. hKGF gene transfer had no effect on SCC VII tumor growth ± radiation.

Conclusions: hKGF gene transfer prevents salivary hypofunction caused by either single or fractionated radiation dosing in mice. The findings suggest a potential clinical application.

Publication types

  • Evaluation Study
  • Research Support, N.I.H., Intramural

MeSH terms

  • Animals
  • Carcinoma / radiotherapy
  • Female
  • Fibroblast Growth Factor 7 / administration & dosage
  • Fibroblast Growth Factor 7 / genetics*
  • Fibroblast Growth Factor 7 / physiology
  • Gene Transfer Techniques
  • Genetic Therapy
  • Head and Neck Neoplasms / radiotherapy
  • Humans
  • Mice
  • Mice, Inbred C3H
  • Radiation Injuries, Experimental / complications
  • Radiation Injuries, Experimental / prevention & control*
  • Radiotherapy / adverse effects
  • Recombinant Proteins / administration & dosage
  • Recombinant Proteins / genetics
  • Salivary Gland Diseases / etiology
  • Salivary Gland Diseases / physiopathology
  • Salivary Gland Diseases / prevention & control*
  • Salivary Glands / metabolism
  • Salivary Glands / physiopathology*
  • Salivary Glands / radiation effects
  • Submandibular Gland / metabolism*
  • Submandibular Gland / pathology
  • Submandibular Gland / radiation effects
  • Tumor Cells, Cultured

Substances

  • FGF7 protein, human
  • Recombinant Proteins
  • Fibroblast Growth Factor 7