跳到主要导航 跳到搜索 跳到主要内容

AAV2-mediated transfer of the human aquaporin-1 cDNA restores fluid secretion from irradiated miniature pig parotid glands

  • R. Gao
  • , X. Yan
  • , C. Zheng
  • , C. M. Goldsmith
  • , S. Afione
  • , B. Hai
  • , J. Xu
  • , J. Zhou
  • , C. Zhang
  • , J. A. Chiorini
  • , B. J. Baum
  • , S. Wang
  • Capital Medical University
  • National Institutes of Health

科研成果: 期刊稿件文章同行评审

65 引用 (Scopus)

摘要

Previously (Shan et al, 2005), we reported that adenoviral vector-mediated transfer of the human aquaporin-1 (hAQP1) cDNA to minipig parotid glands following irradiation (IR) transiently restored salivary flow to near normal levels. This study evaluated a serotype 2, adeno-associated viral (AAV2) vector for extended correction of IR (single dose; 20 Gy)-induced, parotid salivary hypofunction in minipigs. At 16 weeks following the IR parotid salivary flow decreased by 85-90%. AAV2hAQP1 administration at week 17 transduced only duct cells and resulted in a dose-dependent increase in salivary flow to ∼35% of pre-IR levels (to ∼1 ml per 10 min) after 8 weeks (peak response). Administration of a control AAV2 vector or saline was without effect. Little change was observed in clinical chemistry and hematology values after AAV2hAQP1 delivery. Vector-treated animals generated high anti-AAV2 neutralizing antibody titers by week 4 (∼1:1600) and significant elevations in salivary (∼15%), but not serum, granulocyte macrophage colony-stimulating factor levels. Following vector administration, salivary Na 2+ was dramatically increased, from ∼10 to ∼55 mM (at 4 weeks) and finally to 39 mM (8 weeks). The findings demonstrate that localized delivery of AAV2hAQP1 to IR-damaged parotid glands leads to increased fluid secretion from surviving duct cells, and may be useful in providing extended relief of salivary hypofunction in previously irradiated patients.

源语言英语
页(从-至)38-42
页数5
期刊Gene Therapy
18
1
DOI
出版状态已出版 - 1月 2011

学术指纹

探究 'AAV2-mediated transfer of the human aquaporin-1 cDNA restores fluid secretion from irradiated miniature pig parotid glands' 的科研主题。它们共同构成独一无二的指纹。

引用此