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Results by year

Table representation of search results timeline featuring number of search results per year.

Year Number of Results
1928 1
1943 1
1966 1
1968 2
1969 1
1970 2
1971 2
1973 2
1974 1
1975 2
1978 1
1981 1
1983 2
1984 3
1985 3
1986 5
1987 1
1988 4
1989 2
1990 1
1991 3
1992 6
1993 6
1994 4
1995 4
1996 9
1997 7
1998 7
1999 3
2000 8
2001 7
2002 9
2003 8
2004 5
2005 9
2006 9
2007 9
2008 10
2009 16
2010 11
2011 18
2012 17
2013 15
2014 30
2015 42
2016 47
2017 53
2018 66
2019 80
2020 89
2021 96
2022 85
2023 97
2024 24

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Search Results

862 results

Results by year

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Page 1
Fifteen-Year Outcomes after Monitoring, Surgery, or Radiotherapy for Prostate Cancer.
Hamdy FC, Donovan JL, Lane JA, Metcalfe C, Davis M, Turner EL, Martin RM, Young GJ, Walsh EI, Bryant RJ, Bollina P, Doble A, Doherty A, Gillatt D, Gnanapragasam V, Hughes O, Kockelbergh R, Kynaston H, Paul A, Paez E, Powell P, Rosario DJ, Rowe E, Mason M, Catto JWF, Peters TJ, Oxley J, Williams NJ, Staffurth J, Neal DE; ProtecT Study Group. Hamdy FC, et al. N Engl J Med. 2023 Apr 27;388(17):1547-1558. doi: 10.1056/NEJMoa2214122. Epub 2023 Mar 11. N Engl J Med. 2023. PMID: 36912538 Clinical Trial.
G-quadruplexes associated with R-loops promote CTCF binding.
Wulfridge P, Yan Q, Rell N, Doherty J, Jacobson S, Offley S, Deliard S, Feng K, Phillips-Cremins JE, Gardini A, Sarma K. Wulfridge P, et al. Mol Cell. 2023 Sep 7;83(17):3064-3079.e5. doi: 10.1016/j.molcel.2023.07.009. Epub 2023 Aug 7. Mol Cell. 2023. PMID: 37552993
R-loops and G4s co-localize with CTCF at many genomic regions in mouse embryonic stem cells and promote CTCF binding to its cognate DNA motif in vitro. R-loop attenuation reduces CTCF binding in vivo. Deletion of a specific G4-forming motif in a gene reduces CTCF bi
R-loops and G4s co-localize with CTCF at many genomic regions in mouse embryonic stem cells and promote CTCF binding to its cognate D
The origins of SARS-CoV-2: A critical review.
Holmes EC, Goldstein SA, Rasmussen AL, Robertson DL, Crits-Christoph A, Wertheim JO, Anthony SJ, Barclay WS, Boni MF, Doherty PC, Farrar J, Geoghegan JL, Jiang X, Leibowitz JL, Neil SJD, Skern T, Weiss SR, Worobey M, Andersen KG, Garry RF, Rambaut A. Holmes EC, et al. Cell. 2021 Sep 16;184(19):4848-4856. doi: 10.1016/j.cell.2021.08.017. Epub 2021 Aug 19. Cell. 2021. PMID: 34480864 Free PMC article. Review.
BET inhibition blocks inflammation-induced cardiac dysfunction and SARS-CoV-2 infection.
Mills RJ, Humphrey SJ, Fortuna PRJ, Lor M, Foster SR, Quaife-Ryan GA, Johnston RL, Dumenil T, Bishop C, Rudraraju R, Rawle DJ, Le T, Zhao W, Lee L, Mackenzie-Kludas C, Mehdiabadi NR, Halliday C, Gilham D, Fu L, Nicholls SJ, Johansson J, Sweeney M, Wong NCW, Kulikowski E, Sokolowski KA, Tse BWC, Devilée L, Voges HK, Reynolds LT, Krumeich S, Mathieson E, Abu-Bonsrah D, Karavendzas K, Griffen B, Titmarsh D, Elliott DA, McMahon J, Suhrbier A, Subbarao K, Porrello ER, Smyth MJ, Engwerda CR, MacDonald KPA, Bald T, James DE, Hudson JE. Mills RJ, et al. Cell. 2021 Apr 15;184(8):2167-2182.e22. doi: 10.1016/j.cell.2021.03.026. Epub 2021 Mar 16. Cell. 2021. PMID: 33811809 Free PMC article.
Klebsiella pneumoniae induces host metabolic stress that promotes tolerance to pulmonary infection.
Wong Fok Lung T, Charytonowicz D, Beaumont KG, Shah SS, Sridhar SH, Gorrie CL, Mu A, Hofstaedter CE, Varisco D, McConville TH, Drikic M, Fowler B, Urso A, Shi W, Fucich D, Annavajhala MK, Khan IN, Oussenko I, Francoeur N, Smith ML, Stockwell BR, Lewis IA, Hachani A, Upadhyay Baskota S, Uhlemann AC, Ahn D, Ernst RK, Howden BP, Sebra R, Prince A. Wong Fok Lung T, et al. Cell Metab. 2022 May 3;34(5):761-774.e9. doi: 10.1016/j.cmet.2022.03.009. Epub 2022 Apr 11. Cell Metab. 2022. PMID: 35413274 Free PMC article.
Proximity labeling identifies a repertoire of site-specific R-loop modulators.
Yan Q, Wulfridge P, Doherty J, Fernandez-Luna JL, Real PJ, Tang HY, Sarma K. Yan Q, et al. Nat Commun. 2022 Jan 10;13(1):53. doi: 10.1038/s41467-021-27722-6. Nat Commun. 2022. PMID: 35013239 Free PMC article.
Using a proximity-dependent labeling system, we identified distinct classes of proteins that regulate R-loops in vivo through different mechanisms. We show that ATRX suppresses R-loops by interacting with RNAs and preventing R-loop formation. ...Furthermore, …
Using a proximity-dependent labeling system, we identified distinct classes of proteins that regulate R-loops in vivo through differe …
Targeting butyrophilins for cancer immunotherapy.
Rigau M, Uldrich AP, Behren A. Rigau M, et al. Trends Immunol. 2021 Aug;42(8):670-680. doi: 10.1016/j.it.2021.06.002. Epub 2021 Jul 9. Trends Immunol. 2021. PMID: 34253468 Review.
New Technologies for Influenza Vaccines.
Rockman S, Laurie KL, Parkes S, Wheatley A, Barr IG. Rockman S, et al. Microorganisms. 2020 Nov 6;8(11):1745. doi: 10.3390/microorganisms8111745. Microorganisms. 2020. PMID: 33172191 Free PMC article. Review.
R-loop formation during S phase is restricted by PrimPol-mediated repriming.
Šviković S, Crisp A, Tan-Wong SM, Guilliam TA, Doherty AJ, Proudfoot NJ, Guilbaud G, Sale JE. Šviković S, et al. EMBO J. 2019 Feb 1;38(3):e99793. doi: 10.15252/embj.201899793. Epub 2018 Nov 26. EMBO J. 2019. PMID: 30478192 Free PMC article.
How R-loops stall replication and the mechanisms that restrain their formation during S phase are incompletely understood. ...Thus, R-loops promote the creation of replication blocks at susceptible structure-forming sequences, while PrimPol-dependent repriming limit …
How R-loops stall replication and the mechanisms that restrain their formation during S phase are incompletely understood. ...Thus, …
The GM-CSF/CCL17 pathway in obesity-associated osteoarthritic pain and disease in mice.
Shin H, Prasad V, Lupancu T, Malik S, Achuthan A, Biondo M, Kingwell BA, Thiem M, Gottschalk M, Weighardt H, Förster I, de Steiger R, Hamilton JA, Lee KM. Shin H, et al. Osteoarthritis Cartilage. 2023 Oct;31(10):1327-1341. doi: 10.1016/j.joca.2023.05.008. Epub 2023 May 22. Osteoarthritis Cartilage. 2023. PMID: 37225052
RESULTS: We present evidence that: i) GM-CSF, CCL17, and CCR4, but not CCL22, are required for the development of pain-like behavior and optimal disease in three experimental OA models, as well as for exacerbated OA development due to obesity, ii) obesity alone leads to spontaneo …
RESULTS: We present evidence that: i) GM-CSF, CCL17, and CCR4, but not CCL22, are required for the development of pain-like behavior and opt …
862 results