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En Face Detection of Nitric Oxide and Superoxide in Endothelial Layer of Intact Arteries
Published on: February 25, 2016
Nitric oxide levels in human preneoplastic colonocytes determine their susceptibility toward antineoplastic agents
Uwe Wenzel1, Sabine Kuntz, Hannelore Daniel
1Department of Food and Nutrition, Molecular Nutrition Unit, Hochfeldweg 2, d-85350 Freising-Weihenstephan, Germany. uwenzel@wzw.tum.de
Abstract:
The efficacy of antineoplastic compounds can depend heavily on the genetic background of the cells exposed to the drugs. This becomes evident by the fact that HT-29 human colon cancer cells but not primary murine nontransformed colonocytes are efficiently submitted to apoptosis by the flavonoid flavone. By determining caspase-3 activation, plasma membrane disintegration, and nuclear fragmentation, we show here that flavone also does not promote apoptosis in preneoplastic NCOL-1 colonocytes derived from a nontransformed human biopsy specimen. In clear contrast, the antitumor drug camptothecin potently induces apoptosis in NCOL-1 cells associated with a specific down-regulation of the antiapoptotic factor bcl-XL at the mRNA and protein levels and with the activation of the mitochondrial apoptosis pathway. Confocal microscopy revealed an increased production of superoxide anion radicals in the mitochondria of NCOL-1 cells that preceded the apoptotic events. However, in the case of flavone, the mitochondrial oxygen radicals were effectively scavenged by physiological concentrations of nitric oxide (NO), whereas in the case of camptothecin, the available nitric oxide was rapidly scavenged by the production of large quantities of cytosolic superoxide anions. Increasing the levels of nitric oxide inside NCOL-1 cells by sodium nitroprusside prevented the apoptosis induction by camptothecin. Reducing the levels of nitric oxide by using the NO synthase inhibitor, Nomega-nitro-l-arginine methyl ester in NCOL-1 cells or using HT-29 cells that intrinsically have low NO levels enabled flavone to trigger the apoptosis pathway. In conclusion, our studies demonstrate that the intracellular levels of nitric oxide significantly change the apoptotic response to antineoplastic agents in colonic cells.
Insights
Nitric oxide (NO) levels critically influence how colon cells respond to cancer drugs. Low NO enables flavone to induce apoptosis, while high NO protects cells from camptothecin, highlighting NO
Area of Science:
- Cell Biology
- Cancer Research
- Pharmacology
Background:
- Antineoplastic drug efficacy varies with cellular genetic makeup.
- Flavonoid flavone induces apoptosis in HT-29 colon cancer cells but not in normal colonocytes.
Purpose of the Study:
- Investigate flavone and camptothecin's apoptosis-inducing effects on preneoplastic NCOL-1 colonocytes.
- Determine the role of nitric oxide (NO) in mediating cellular responses to these antineoplastic agents.
Main Methods:
- Assessed apoptosis markers: caspase-3 activation, plasma membrane disintegration, nuclear fragmentation.
- Measured bcl-XL expression (mRNA and protein) and mitochondrial superoxide anion radical production.
- Manipulated intracellular NO levels using sodium nitroprusside and Nomega-nitro-l-arginine methyl ester.
Main Results:
- Flavone did not induce apoptosis in NCOL-1 cells; camptothecin did, downregulating bcl-XL and activating mitochondrial pathways.
- Mitochondrial superoxide production preceded apoptosis in camptothecin-treated cells.
- NO scavenged flavone-induced radicals but was depleted by camptothecin-induced superoxide.
- Elevating NO blocked camptothecin-induced apoptosis; lowering NO enabled flavone-induced apoptosis.
Conclusions:
- Intracellular nitric oxide levels significantly modulate the apoptotic response of colonic cells to antineoplastic agents.
- NO's dual role in apoptosis depends on the specific drug and cellular context.
