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Using synthetic DNA interstrand crosslinks to elucidate repair pathways and identify new therapeutic targets for cancer chemotherapy
by
Schärer, Orlando D
, Guainazzi, Angelo
in
Animals
/ Antineoplastic Agents - chemistry
/ Antineoplastic Agents - pharmacology
/ Antineoplastic drugs
/ Biochemistry
/ Biomedical and Life Sciences
/ Biomedicine
/ Biotechnology
/ Cancer
/ Cancer chemotherapy
/ Cell Biology
/ Cellular biology
/ Chemical synthesis
/ Chemotherapy
/ cisplatin
/ Covalent bonds
/ cross-linking reagents
/ Crosslinking
/ Cytotoxicity
/ Deoxyribonucleic acid
/ Development strategies
/ DNA
/ DNA biosynthesis
/ DNA polymerase
/ DNA repair
/ DNA Repair - drug effects
/ DNA replication
/ DNA-directed DNA polymerase
/ drug therapy
/ Humans
/ Intercalating Agents - chemistry
/ Intercalating Agents - pharmacology
/ Interstrand crosslinks
/ Lesions
/ Life Sciences
/ Molecular biology
/ Multi-Author Review
/ neoplasm cells
/ Neoplasms - drug therapy
/ Neoplasms - genetics
/ Nitrogen mustards
/ Therapeutic targets
/ Tumor cells
2010
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Using synthetic DNA interstrand crosslinks to elucidate repair pathways and identify new therapeutic targets for cancer chemotherapy
by
Schärer, Orlando D
, Guainazzi, Angelo
in
Animals
/ Antineoplastic Agents - chemistry
/ Antineoplastic Agents - pharmacology
/ Antineoplastic drugs
/ Biochemistry
/ Biomedical and Life Sciences
/ Biomedicine
/ Biotechnology
/ Cancer
/ Cancer chemotherapy
/ Cell Biology
/ Cellular biology
/ Chemical synthesis
/ Chemotherapy
/ cisplatin
/ Covalent bonds
/ cross-linking reagents
/ Crosslinking
/ Cytotoxicity
/ Deoxyribonucleic acid
/ Development strategies
/ DNA
/ DNA biosynthesis
/ DNA polymerase
/ DNA repair
/ DNA Repair - drug effects
/ DNA replication
/ DNA-directed DNA polymerase
/ drug therapy
/ Humans
/ Intercalating Agents - chemistry
/ Intercalating Agents - pharmacology
/ Interstrand crosslinks
/ Lesions
/ Life Sciences
/ Molecular biology
/ Multi-Author Review
/ neoplasm cells
/ Neoplasms - drug therapy
/ Neoplasms - genetics
/ Nitrogen mustards
/ Therapeutic targets
/ Tumor cells
2010
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Do you wish to request the book?
Using synthetic DNA interstrand crosslinks to elucidate repair pathways and identify new therapeutic targets for cancer chemotherapy
by
Schärer, Orlando D
, Guainazzi, Angelo
in
Animals
/ Antineoplastic Agents - chemistry
/ Antineoplastic Agents - pharmacology
/ Antineoplastic drugs
/ Biochemistry
/ Biomedical and Life Sciences
/ Biomedicine
/ Biotechnology
/ Cancer
/ Cancer chemotherapy
/ Cell Biology
/ Cellular biology
/ Chemical synthesis
/ Chemotherapy
/ cisplatin
/ Covalent bonds
/ cross-linking reagents
/ Crosslinking
/ Cytotoxicity
/ Deoxyribonucleic acid
/ Development strategies
/ DNA
/ DNA biosynthesis
/ DNA polymerase
/ DNA repair
/ DNA Repair - drug effects
/ DNA replication
/ DNA-directed DNA polymerase
/ drug therapy
/ Humans
/ Intercalating Agents - chemistry
/ Intercalating Agents - pharmacology
/ Interstrand crosslinks
/ Lesions
/ Life Sciences
/ Molecular biology
/ Multi-Author Review
/ neoplasm cells
/ Neoplasms - drug therapy
/ Neoplasms - genetics
/ Nitrogen mustards
/ Therapeutic targets
/ Tumor cells
2010
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Using synthetic DNA interstrand crosslinks to elucidate repair pathways and identify new therapeutic targets for cancer chemotherapy
Journal Article
Using synthetic DNA interstrand crosslinks to elucidate repair pathways and identify new therapeutic targets for cancer chemotherapy
2010
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Overview
Many cancer chemotherapeutic agents form DNA interstrand crosslinks (ICLs), extremely cytotoxic lesions that form covalent bonds between two opposing DNA strands, blocking DNA replication and transcription. However, cellular responses triggered by ICLs can cause resistance in tumor cells, limiting the efficacy of such treatment. Here we discuss recent advances in our understanding of the mechanisms of ICL repair that cause this resistance. The recent development of strategies for the synthesis of site-specific ICLs greatly contributed to these insights. Key features of repair are similar for all ICLs, but there is increasing evidence that the specifics of lesion recognition and synthesis past ICLs by DNA polymerases are dependent upon the structure of ICLs. These new insights provide a basis for the improvement of antitumor therapy by targeting DNA repair pathways that lead to resistance to treatment with crosslinking agents.
Publisher
Basel : SP Birkhäuser Verlag Basel,SP Birkhäuser Verlag Basel,Springer Nature B.V
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