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

Year Number of Results
1948 2
1951 1
1952 1
1954 4
1955 4
1956 12
1957 2
1958 2
1959 1
1960 1
1962 2
1963 3
1964 4
1965 5
1966 7
1967 5
1968 9
1969 8
1970 11
1971 1
1972 4
1973 2
1974 2
1975 2
1976 1
1978 3
1979 2
1980 2
1981 3
1982 1
1985 1
1986 1
1987 3
1988 2
1989 2
1991 2
1992 7
1993 7
1994 10
1995 10
1996 16
1997 18
1998 12
1999 17
2000 40
2001 40
2002 51
2003 54
2004 61
2005 73
2006 80
2007 92
2008 78
2009 97
2010 132
2011 109
2012 111
2013 130
2014 309
2015 503
2016 668
2017 753
2018 840
2019 936
2020 992
2021 1215
2022 1111
2023 1112
2024 418

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9,054 results

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Page 1
IL-33-induced metabolic reprogramming controls the differentiation of alternatively activated macrophages and the resolution of inflammation.
Faas M, Ipseiz N, Ackermann J, Culemann S, Grüneboom A, Schröder F, Rothe T, Scholtysek C, Eberhardt M, Böttcher M, Kirchner P, Stoll C, Ekici A, Fuchs M, Kunz M, Weigmann B, Wirtz S, Lang R, Hofmann J, Vera J, Voehringer D, Michelucci A, Mougiakakos D, Uderhardt S, Schett G, Krönke G. Faas M, et al. Immunity. 2021 Nov 9;54(11):2531-2546.e5. doi: 10.1016/j.immuni.2021.09.010. Epub 2021 Oct 12. Immunity. 2021. PMID: 34644537 Free article.
PU.1 controls fibroblast polarization and tissue fibrosis.
Wohlfahrt T, Rauber S, Uebe S, Luber M, Soare A, Ekici A, Weber S, Matei AE, Chen CW, Maier C, Karouzakis E, Kiener HP, Pachera E, Dees C, Beyer C, Daniel C, Gelse K, Kremer AE, Naschberger E, Stürzl M, Butter F, Sticherling M, Finotto S, Kreuter A, Kaplan MH, Jüngel A, Gay S, Nutt SL, Boykin DW, Poon GMK, Distler O, Schett G, Distler JHW, Ramming A. Wohlfahrt T, et al. Nature. 2019 Feb;566(7744):344-349. doi: 10.1038/s41586-019-0896-x. Epub 2019 Jan 30. Nature. 2019. PMID: 30700907 Free PMC article.
Locally renewing resident synovial macrophages provide a protective barrier for the joint.
Culemann S, Grüneboom A, Nicolás-Ávila JÁ, Weidner D, Lämmle KF, Rothe T, Quintana JA, Kirchner P, Krljanac B, Eberhardt M, Ferrazzi F, Kretzschmar E, Schicht M, Fischer K, Gelse K, Faas M, Pfeifle R, Ackermann JA, Pachowsky M, Renner N, Simon D, Haseloff RF, Ekici AB, Bäuerle T, Blasig IE, Vera J, Voehringer D, Kleyer A, Paulsen F, Schett G, Hidalgo A, Krönke G. Culemann S, et al. Nature. 2019 Aug;572(7771):670-675. doi: 10.1038/s41586-019-1471-1. Epub 2019 Aug 7. Nature. 2019. PMID: 31391580 Free PMC article.
Solvent-free synthesis of FAU zeolite from coal fly ash.
Liu P, Wu Q, Yan K, Wang L, Xiao FS. Liu P, et al. Dalton Trans. 2022 Dec 20;52(1):24-28. doi: 10.1039/d2dt03196e. Dalton Trans. 2022. PMID: 36477190
FAU zeolite is successfully synthesized from coal fly ash (CFA) as the sole silicon and aluminum sources under solvent-free conditions. ...
FAU zeolite is successfully synthesized from coal fly ash (CFA) as the sole silicon and aluminum sources under solvent-free condition
Evaluation of FAU-type Zeolite Membrane Stability in Transesterification Reaction Conditions.
Ikeda A, Matsuura W, Abe C, Lundin SB, Hasegawa Y. Ikeda A, et al. Membranes (Basel). 2023 Jan 5;13(1):68. doi: 10.3390/membranes13010068. Membranes (Basel). 2023. PMID: 36676875 Free PMC article.
The effect of reaction components (methanol, 1-hexanol, methyl hexanoate, and hexyl hexanoate) on the FAU-type zeolite structure and the methanol permeation performance of the FAU-type zeolite membranes were evaluated to find the component causing the lower methanol …
The effect of reaction components (methanol, 1-hexanol, methyl hexanoate, and hexyl hexanoate) on the FAU-type zeolite structure and …
The complement system drives local inflammatory tissue priming by metabolic reprogramming of synovial fibroblasts.
Friščić J, Böttcher M, Reinwald C, Bruns H, Wirth B, Popp SJ, Walker KI, Ackermann JA, Chen X, Turner J, Zhu H, Seyler L, Euler M, Kirchner P, Krüger R, Ekici AB, Major T, Aust O, Weidner D, Fischer A, Andes FT, Stanojevic Z, Trajkovic V, Herrmann M, Korb-Pap A, Wank I, Hess A, Winter J, Wixler V, Distler J, Steiner G, Kiener HP, Frey B, Kling L, Raza K, Frey S, Kleyer A, Bäuerle T, Hughes TR, Grüneboom A, Steffen U, Krönke G, Croft AP, Filer A, Köhl J, Klein K, Buckley CD, Schett G, Mougiakakos D, Hoffmann MH. Friščić J, et al. Immunity. 2021 May 11;54(5):1002-1021.e10. doi: 10.1016/j.immuni.2021.03.003. Epub 2021 Mar 23. Immunity. 2021. PMID: 33761330 Free article.
High-Performance FAU Zeolite Membranes Derived from Nano-Seeds for Gas Separation.
Wang Q, Chen H, He F, Liu Q, Xu N, Fan L, Wang C, Zhang L, Zhou R. Wang Q, et al. Membranes (Basel). 2023 Oct 26;13(11):858. doi: 10.3390/membranes13110858. Membranes (Basel). 2023. PMID: 37999344 Free PMC article.
In this study, high-performance FAU (NaY type) zeolite membranes were successfully synthesized using small-sized seeds of 50 nm, and their gas separation performance was systematically evaluated. ...The most promising FAU membrane with a thickness of 2.7 m was synth …
In this study, high-performance FAU (NaY type) zeolite membranes were successfully synthesized using small-sized seeds of 50 nm, and …
N-glycosylation Regulates Intrinsic IFN-γ Resistance in Colorectal Cancer: Implications for Immunotherapy.
Krug J, Rodrian G, Petter K, Yang H, Khoziainova S, Guo W, Bénard A, Merkel S, Gellert S, Maschauer S, Spermann M, Waldner M, Bailey P, Pilarsky C, Liebl A, Tripal P, Christoph J, Naschberger E, Croner R, Schellerer VS, Becker C, Hartmann A, Tüting T, Prante O, Grützmann R, Grivennikov SI, Stürzl M, Britzen-Laurent N. Krug J, et al. Gastroenterology. 2023 Mar;164(3):392-406.e5. doi: 10.1053/j.gastro.2022.11.018. Epub 2022 Nov 17. Gastroenterology. 2023. PMID: 36402190 Free PMC article.
Textile Functionalization Using LTA and FAU Zeolitic Materials.
Murrieta-Rico FN, Yocupicio-Gaxiola RI, Antúnez-García J, Reyes-Serrato A, Sánchez P, Petranovskii V. Murrieta-Rico FN, et al. Polymers (Basel). 2022 Dec 26;15(1):99. doi: 10.3390/polym15010099. Polymers (Basel). 2022. PMID: 36616448 Free PMC article.
9,054 results