Nitric oxide-elicited resistance to anti-glioblastoma photodynamic therapy

2020
journal article
review article
10
dc.abstract.enGlioblastoma multiforme is a highly aggressive primary brain malignancy that resists most conventional chemo- and radiotherapeutic interventions. Nitric oxide (NO), a short lived free radical molecule produced by inducible NO synthase (iNOS) in glioblastomas and other tumors, is known to play a key role in tumor persistence, progression, and chemo/radiotherapy resistance. Site-specific and minimally invasive photodynamic therapy (PDT), based on oxidative damage resulting from non-ionizing photoactivation of a sensitizing agent, is highly effective against glioblastoma, but resistance also exists in this case. Studies in the authors’ laboratory have shown that much of the latter is mediated by iNOS/NO. For example, when glioblastoma U87 or U251 cells sensitized in mitochondria with 5-aminolevulinic acid -induced protoporphyrin IX were exposed to a moderate dose of visible light, the observed apoptosis was strongly enhanced by an iNOS activity inhibitor or NO scavenger, indicating that iNOS/NO had increased cell resistance to photokilling. Moreover, cells that survived the photochallenge proliferated, migrated, and invaded more aggressively than controls, and these responses were also driven predominantly by iNOS/NO. Photostress-upregulated iNOS rather than basal enzyme was found to be responsible for all the negative effects described. Recognition of NO-mediated hyper-resistance/hyper-aggression in PDT-stressed glioblastoma has stimulated interest in how these responses can be prevented or at least minimized by pharmacologic adjuvants such as inhibitors of iNOS activity or transcription. Recent developments along these lines and their clinical potential for improving anti-glioblastoma PDT are discussed.pl
dc.affiliationWydział Biochemii, Biofizyki i Biotechnologii : Zakład Biofizykipl
dc.contributor.authorGirotti, Albert W.pl
dc.contributor.authorFahey, Jonathan M.pl
dc.contributor.authorMora de Korytowo-Korytowski, Witold - 129162 pl
dc.date.accessioned2021-11-02T11:48:20Z
dc.date.available2021-11-02T11:48:20Z
dc.date.issued2020pl
dc.date.openaccess0
dc.description.accesstimew momencie opublikowania
dc.description.additionalWitold Mora de Korytowo-Korytowski podpisany: Witold Korytowski. Bibliogr. s. 412-414pl
dc.description.physical401-414pl
dc.description.publication1,27pl
dc.description.versionostateczna wersja wydawcy
dc.description.volume3pl
dc.identifier.doi10.20517/cdr.2020.25pl
dc.identifier.eissn2578-532Xpl
dc.identifier.urihttps://ruj.uj.edu.pl/xmlui/handle/item/282528
dc.languageengpl
dc.language.containerengpl
dc.rightsUdzielam licencji. Uznanie autorstwa 4.0 Międzynarodowa*
dc.rights.licenceCC-BY
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/legalcode.pl*
dc.share.typeotwarte czasopismo
dc.subject.englioblastomapl
dc.subject.enphotodynamic therapypl
dc.subject.ennitric oxidepl
dc.subject.eninducible nitric oxide synthasepl
dc.subject.ennitric oxide-mediated photodynamic therapy resistancepl
dc.subject.enanti-nitric oxide adjuvantspl
dc.subtypeReviewArticlepl
dc.titleNitric oxide-elicited resistance to anti-glioblastoma photodynamic therapypl
dc.title.journalCancer Drug Resistancepl
dc.typeJournalArticlepl
dspace.entity.typePublication
dc.abstract.enpl
Glioblastoma multiforme is a highly aggressive primary brain malignancy that resists most conventional chemo- and radiotherapeutic interventions. Nitric oxide (NO), a short lived free radical molecule produced by inducible NO synthase (iNOS) in glioblastomas and other tumors, is known to play a key role in tumor persistence, progression, and chemo/radiotherapy resistance. Site-specific and minimally invasive photodynamic therapy (PDT), based on oxidative damage resulting from non-ionizing photoactivation of a sensitizing agent, is highly effective against glioblastoma, but resistance also exists in this case. Studies in the authors’ laboratory have shown that much of the latter is mediated by iNOS/NO. For example, when glioblastoma U87 or U251 cells sensitized in mitochondria with 5-aminolevulinic acid -induced protoporphyrin IX were exposed to a moderate dose of visible light, the observed apoptosis was strongly enhanced by an iNOS activity inhibitor or NO scavenger, indicating that iNOS/NO had increased cell resistance to photokilling. Moreover, cells that survived the photochallenge proliferated, migrated, and invaded more aggressively than controls, and these responses were also driven predominantly by iNOS/NO. Photostress-upregulated iNOS rather than basal enzyme was found to be responsible for all the negative effects described. Recognition of NO-mediated hyper-resistance/hyper-aggression in PDT-stressed glioblastoma has stimulated interest in how these responses can be prevented or at least minimized by pharmacologic adjuvants such as inhibitors of iNOS activity or transcription. Recent developments along these lines and their clinical potential for improving anti-glioblastoma PDT are discussed.
dc.affiliationpl
Wydział Biochemii, Biofizyki i Biotechnologii : Zakład Biofizyki
dc.contributor.authorpl
Girotti, Albert W.
dc.contributor.authorpl
Fahey, Jonathan M.
dc.contributor.authorpl
Mora de Korytowo-Korytowski, Witold - 129162
dc.date.accessioned
2021-11-02T11:48:20Z
dc.date.available
2021-11-02T11:48:20Z
dc.date.issuedpl
2020
dc.date.openaccess
0
dc.description.accesstime
w momencie opublikowania
dc.description.additionalpl
Witold Mora de Korytowo-Korytowski podpisany: Witold Korytowski. Bibliogr. s. 412-414
dc.description.physicalpl
401-414
dc.description.publicationpl
1,27
dc.description.version
ostateczna wersja wydawcy
dc.description.volumepl
3
dc.identifier.doipl
10.20517/cdr.2020.25
dc.identifier.eissnpl
2578-532X
dc.identifier.uri
https://ruj.uj.edu.pl/xmlui/handle/item/282528
dc.languagepl
eng
dc.language.containerpl
eng
dc.rights*
Udzielam licencji. Uznanie autorstwa 4.0 Międzynarodowa
dc.rights.licence
CC-BY
dc.rights.uri*
http://creativecommons.org/licenses/by/4.0/legalcode.pl
dc.share.type
otwarte czasopismo
dc.subject.enpl
glioblastoma
dc.subject.enpl
photodynamic therapy
dc.subject.enpl
nitric oxide
dc.subject.enpl
inducible nitric oxide synthase
dc.subject.enpl
nitric oxide-mediated photodynamic therapy resistance
dc.subject.enpl
anti-nitric oxide adjuvants
dc.subtypepl
ReviewArticle
dc.titlepl
Nitric oxide-elicited resistance to anti-glioblastoma photodynamic therapy
dc.title.journalpl
Cancer Drug Resistance
dc.typepl
JournalArticle
dspace.entity.type
Publication
Affiliations

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