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Birgitte Regenberg

Showing results (51-60 of 63) with videos related to

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Nucleic Acids Research|July 2, 2020
Replicative aging is associated with loss of genetic heterogeneity from extrachromosomal circular DNA in Saccharomyces cerevisiaeIñigo Prada-Luengo, Henrik D Møller, Rasmus A Henriksen, et al.
Cancer Medicine|August 21, 2023
Methods for the purification and detection of single nucleotide KRAS mutations on extrachromosomal circular DNA in human plasmaLasse Bøllehuus Hansen, Sandra Fugl Jakobsen, Egija Zole, et al.
Cells|August 11, 2023
Circular and Circulating DNA in Inflammatory Bowel Disease: From Pathogenesis to Potential Molecular TherapiesFederica Di Vincenzo, Ylenia Yadid, Valentina Petito, et al.
Proceedings of the National Academy of Sciences of the United States of America|April 2, 2026
Functional role of small extrachromosomal circular DNA in colorectal cancerJudith Mary Hariprakash, Egija Zole, Weijia Feng, et al.
Nature Communications|February 21, 2025
EccDNA atlas in male mice reveals features protecting genes against transcription-induced eccDNA formationXue Liang, Gerard Arrey, Yating Qin, et al.
Nature Communications|March 16, 2018
Circular DNA elements of chromosomal origin are common in healthy human somatic tissueHenrik Devitt Møller, Marghoob Mohiyuddin, Iñigo Prada-Luengo, et al.
Frontiers in Microbiology|August 10, 2019
RNAi as a Tool to Study Virulence in the Pathogenic Yeast <i>Candida glabrata</i>Olena P Ishchuk, Khadija Mohamed Ahmad, Katarina Koruza, et al.
Free Radical Biology & Medicine|January 11, 2026
MOTS-c improves intrinsic muscle mitochondrial bioenergetic health and efficiency in a PGC-1α/AMPK-dependent mannerAnders Gudiksen, Camilla Collin Hansen, Thibaux van der Stede, et al.
Nucleic Acids Research|December 15, 2018
CRISPR-C: circularization of genes and chromosome by CRISPR in human cellsHenrik Devitt Møller, Lin Lin, Xi Xiang, et al.
Cell Reports|December 11, 2025
Extrachromosomal circular miRNA-gene amplifications contribute to the renal cancer phenotypePeng Han, Wei Lv, Zhe Xu, et al.
Pageof 7

Showing results (51-60 of 63) with videos related to

Sort By:
Pageof 7
Nucleic Acids Research|July 2, 2020
Replicative aging is associated with loss of genetic heterogeneity from extrachromosomal circular DNA in Saccharomyces cerevisiaeIñigo Prada-Luengo, Henrik D Møller, Rasmus A Henriksen, et al.
Cancer Medicine|August 21, 2023
Methods for the purification and detection of single nucleotide KRAS mutations on extrachromosomal circular DNA in human plasmaLasse Bøllehuus Hansen, Sandra Fugl Jakobsen, Egija Zole, et al.
Cells|August 11, 2023
Circular and Circulating DNA in Inflammatory Bowel Disease: From Pathogenesis to Potential Molecular TherapiesFederica Di Vincenzo, Ylenia Yadid, Valentina Petito, et al.
Proceedings of the National Academy of Sciences of the United States of America|April 2, 2026
Functional role of small extrachromosomal circular DNA in colorectal cancerJudith Mary Hariprakash, Egija Zole, Weijia Feng, et al.
Nature Communications|February 21, 2025
EccDNA atlas in male mice reveals features protecting genes against transcription-induced eccDNA formationXue Liang, Gerard Arrey, Yating Qin, et al.
Nature Communications|March 16, 2018
Circular DNA elements of chromosomal origin are common in healthy human somatic tissueHenrik Devitt Møller, Marghoob Mohiyuddin, Iñigo Prada-Luengo, et al.
Frontiers in Microbiology|August 10, 2019
RNAi as a Tool to Study Virulence in the Pathogenic Yeast <i>Candida glabrata</i>Olena P Ishchuk, Khadija Mohamed Ahmad, Katarina Koruza, et al.
Free Radical Biology & Medicine|January 11, 2026
MOTS-c improves intrinsic muscle mitochondrial bioenergetic health and efficiency in a PGC-1α/AMPK-dependent mannerAnders Gudiksen, Camilla Collin Hansen, Thibaux van der Stede, et al.
Nucleic Acids Research|December 15, 2018
CRISPR-C: circularization of genes and chromosome by CRISPR in human cellsHenrik Devitt Møller, Lin Lin, Xi Xiang, et al.
Cell Reports|December 11, 2025
Extrachromosomal circular miRNA-gene amplifications contribute to the renal cancer phenotypePeng Han, Wei Lv, Zhe Xu, et al.
Pageof 7