X-ray and UV radiation damage of dsDNA/protein complexes

Artykuł - publikacja recenzowana


Tytuł
X-ray and UV radiation damage of dsDNA/protein complexes
Odpowiedzialność
Paweł Wityk, Dorota Kostrzewa-Nowak, Beata Krawczyk, Michał Michalik, Robert Nowak
Twórcy
Sumy twórców
5 autorów
Punktacja publikacji
Osoba Dysc. Pc k m P U Pu Opis
0000-0001-7025-3087 3.3 140 2 5 140,00 0,5000 70,0000 Art.
0000-0003-3037-644X 3.3 140 2 5 140,00 0,5000 70,0000 Art.
Gł. język publikacji
Angielski (English)
Data publikacji
2021
Objętość
1,97 (arkuszy wydawniczych), 13 (stron).
Identyfikator DOI
10.3390/molecules26113132
Adres URL
https://www.mdpi.com/1420-3049/26/11/3132/pdf
Adres URL
https://www.mdpi.com/1420-3049/26/11 2021-06-09
Uwaga ogólna
Received: 27 April 2021 ; Accepted: 21 May 2021 ; Published: 24 May 2021.
Uwaga ogólna
This article belongs to the Special Issue Cutting-Edge Physical Chemistry Research in Europe.
Uwaga ogólna
This article is an open access article distributed under the terms andconditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Finansowanie
The Polish Ministry of Science and Higher Education, 0138/DIA/2014/43
Finansowanie
The financial support of Polish Ministry of Science and Higher Education (MNiSW) via Funds for Science and Polish Technology Program supported the LC-MS system for the Nucleic Acid Laboratory at the Department of Chemistry University of Gdansk 775/FNiTP/127/2013
Cechy publikacji
  • Oryginalny artykuł naukowy
  • OpenAccess
Dane OpenAccess
CC_BY - Licencja,
FINAL_PUBLISHED - Wersja tekstu,
OTHER - Sposób publikacji,
AT_PUBLICATION - Moment udostępnienia,
2021-05-24 - Data udostępnienia
Słowa kluczowe
Czasopismo
Molecules
( ISSN 1420-3049 )
Kraj wydania: Szwajcaria (Schweiz)
Zeszyt: vol. 26 iss. 11
Nr: 3132
Pobierz opis jako:
BibTeX, RIS
Data zgłoszenia do bazy Publi
2021-06-07
PBN
Wyświetl
WorkId
27155

Abstrakt

en

Radiation and photodynamic therapies are used for cancer treatment by targeting DNA. However, efficiency is limited due to physico-chemical processes and the insensitivity of native nucleobases to damage. Thus, incorporation of radio- and photosensitizers into these therapies should increase both efficacy and the yield of DNA damage. To date, studies of sensitization processes have been performed on simple model systems, e.g., buffered solutions of dsDNA or sensitizers alone. To fully understand the sensitization processes and to be able to develop new efficient sensitizers in the future, well established model systems are necessary. In the cell environment, DNA tightly interacts with proteins and incorporating this interaction is necessary to fully understand the DNA sensitization process. In this work, we used dsDNA/protein complexes labeled with photo- and radiosensitizers and investigated degradation pathways using LC-MS and HPLC after X-ray or UV radiation.

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