ZERO WORLD RESEARCHアミノ酸・有機酸の学術文献データベース

Hypoxia-induced nitric oxide production and tumour perfusion is inhibited by pegylated arginine deiminase (ADI-PEG20).

Scientific reports2016Burrows N, Cane G, Robson M, et al.
研究デザインその他の原著論文
対象ヒト・動物 併記

記録の確認項目

研究デザイン
その他の原著論文
対象
ヒト・動物 併記
出版年
2016
出典
doi.org
抄録の表示
表示あり
出版状態
有効な記録
状態確認日
2026/08/17
収集日
2026/08/13
鮮度
確認期限内
確認段階
自動処理
記録状態
公開

抄録

The hypoxic tumour microenvironment represents an aggressive, therapy-resistant compartment. As arginine is required for specific hypoxia-induced processes, we hypothesised that arginine-deprivation therapy may be useful in targeting hypoxic cancer cells. We explored the effects of the arginine-degrading agent ADI-PEG20 on hypoxia-inducible factor (HIF) activation, the hypoxia-induced nitric oxide (NO) pathway and proliferation using HCT116 and UMUC3 cells and xenografts. The latter lack argininosuccinate synthetase (ASS1) making them auxotrophic for arginine. In HCT116 cells, ADI-PEG20 inhibited hypoxic-activation of HIF-1α and HIF-2α, leading to decreased inducible-nitric oxide synthase (iNOS), NO-production, and VEGF. Interestingly, combining hypoxia and ADI-PEG20 synergistically inhibited ASS1. ADI-PEG20 inhibited mTORC1 and activated the unfolded protein response providing a mechanism for inhibition of HIF and ASS1. ADI-PEG20 inhibited tumour growth, impaired hypoxia-associated NO-production, and decreased vascular perfusion. Expression of HIF-1α/HIF-2α/iNOS and VEGF were reduced, despite an increased hypoxic tumour fraction. Similar effects were observed in UMUC3 xenografts. In summary, ADI-PEG20 inhibits HIF-activated processes in two tumour models with widely different arginine biology. Thus, ADI-PEG20 may be useful in the clinic to target therapy-resistant hypoxic cells in ASS1-proficient tumours and ASS1-deficient tumours.

MeSH

AnimalsArginineArgininosuccinate SynthaseBasic Helix-Loop-Helix ProteinsBlotting, WesternCell HypoxiaCell Line, TumorEndothelial PAS Domain-Containing Protein 1HCT116 CellsHumansHydrolasesHypoxiaHypoxia-Inducible Factor 1, alpha SubunitMechanistic Target of Rapamycin Complex 1Mice, SCIDMultiprotein ComplexesNeoplasmsNitric OxideNitric Oxide Synthase Type IIPerfusionPolyethylene GlycolsTOR Serine-Threonine KinasesTumor BurdenUnfolded Protein ResponseVascular Endothelial Growth Factor AXenograft Model Antitumor Assays

DOI 10.1038/srep22950

PMID 26972697

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