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Year Number of Results
1829 1
1841 1
1842 1
1845 6
1847 3
1848 1
1849 1
1852 1
1857 2
1858 1
1859 2
1860 1
1861 2
1862 4
1863 5
1864 13
1865 3
1866 3
1867 1
1868 3
1869 1
1870 1
1871 1
1872 2
1873 2
1874 1
1875 1
1876 2
1877 1
1879 4
1880 3
1881 3
1882 1
1883 2
1884 3
1885 4
1886 2
1887 5
1888 4
1890 5
1892 2
1893 3
1894 1
1895 2
1896 2
1897 2
1899 1
1900 1
1902 1
1905 1
1906 2
1907 4
1909 1
1912 2
1913 2
1914 7
1915 8
1916 6
1917 6
1918 2
1919 4
1921 3
1922 5
1923 3
1924 2
1925 2
1926 5
1927 9
1928 7
1929 4
1930 11
1931 6
1932 6
1933 6
1934 7
1935 8
1936 9
1937 8
1938 11
1939 12
1940 12
1941 8
1942 5
1943 7
1944 2
1945 17
1946 44
1947 62
1948 61
1949 60
1950 123
1951 150
1952 173
1953 136
1954 147
1955 135
1956 148
1957 139
1958 141
1959 69
1960 67
1961 41
1962 57
1963 228
1964 235
1965 221
1966 348
1967 298
1968 300
1969 334
1970 328
1971 362
1972 299
1973 323
1974 310
1975 498
1976 536
1977 560
1978 509
1979 540
1980 578
1981 598
1982 669
1983 733
1984 791
1985 823
1986 891
1987 948
1988 1071
1989 1264
1990 1167
1991 1346
1992 1186
1993 1253
1994 1228
1995 1414
1996 1480
1997 2384
1998 1616
1999 1714
2000 2023
2001 2531
2002 2721
2003 2771
2004 2791
2005 2831
2006 3195
2007 3594
2008 4033
2009 4290
2010 4619
2011 4912
2012 5403
2013 7058
2014 10147
2015 11957
2016 12940
2017 13444
2018 14617
2019 16368
2020 19195
2021 21475
2022 20621
2023 20649
2024 23389
2025 24625
2026 277

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262,642 results

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First-In-Human Results on the Biodistribution, Pharmacokinetics, and Dosimetry of [(177)Lu]Lu-DOTA.SA.FAPi and [(177)Lu]Lu-DOTAGA.(SA.FAPi)(2).
Ballal S, Yadav MP, Moon ES, Kramer VS, Roesch F, Kumari S, Bal C. Ballal S, et al. Pharmaceuticals (Basel). 2021 Nov 24;14(12):1212. doi: 10.3390/ph14121212. Pharmaceuticals (Basel). 2021. PMID: 34959613 Free PMC article.
(SA.FAPi)(2) had significantly longer median whole-body Te compared to that of [(177)Lu]Lu-DOTA.SA.FAPi [46.2 h (IQR: 38.5-70.1) vs. 23.1 h (IQR: 17.8-31.5); p-0.0167]. ...(SA.FAPi)(2) compared to [(177)Lu]Lu-DOTA.SA.FAPi. [(177)Lu]Lu-DOTAGA.(SA
(SA.FAPi)(2) had significantly longer median whole-body Te compared to that of [(177)Lu]Lu-DOTA.SA.FAPi [46.2 h (IQR: 38.5-70. …
Salicylic Acid: Biosynthesis and Signaling.
Peng Y, Yang J, Li X, Zhang Y. Peng Y, et al. Annu Rev Plant Biol. 2021 Jun 17;72:761-791. doi: 10.1146/annurev-arplant-081320-092855. Epub 2021 Mar 23. Annu Rev Plant Biol. 2021. PMID: 33756096 Review.
We highlight recent breakthroughs that substantially advanced our understanding of how SA is biosynthesized from isochorismate, how it is perceived, and how SA receptors regulate different aspects of plant immunity. Some key questions in SA biosynthesis and s …
We highlight recent breakthroughs that substantially advanced our understanding of how SA is biosynthesized from isochorismate, how i …
Stories of Salicylic Acid: A Plant Defense Hormone.
Ding P, Ding Y. Ding P, et al. Trends Plant Sci. 2020 Jun;25(6):549-565. doi: 10.1016/j.tplants.2020.01.004. Epub 2020 Feb 12. Trends Plant Sci. 2020. PMID: 32407695 Review.
Salicylic acid (SA) is a key plant hormone required for establishing resistance to many pathogens. SA biosynthesis involves two main metabolic pathways with multiple steps: the isochorismate and the phenylalanine ammonia-lyase pathways. Transcriptional regulations o …
Salicylic acid (SA) is a key plant hormone required for establishing resistance to many pathogens. SA biosynthesis involves tw …
SA supplementation during lactation promotes learning and memory by reducing H3K27me3 levels.
Huang C, Ai S, Wang M, Li C, Wang K, Nie M, Zhang H, Gu X, Wang HL. Huang C, et al. J Adv Res. 2025 May 7:S2090-1232(25)00290-5. doi: 10.1016/j.jare.2025.04.047. Online ahead of print. J Adv Res. 2025. PMID: 40345645 Free article.
INTRODUCTION: Sialic acid (SA) is an essential nutrient for brain development and cognition. Infants lack the capacity to synthesize sufficient SA independently, requiring reliance on maternal or exogenous sources. For early nutritional supplementation, elucidating …
INTRODUCTION: Sialic acid (SA) is an essential nutrient for brain development and cognition. Infants lack the capacity to synthesize …
Opposite Roles of Salicylic Acid Receptors NPR1 and NPR3/NPR4 in Transcriptional Regulation of Plant Immunity.
Ding Y, Sun T, Ao K, Peng Y, Zhang Y, Li X, Zhang Y. Ding Y, et al. Cell. 2018 May 31;173(6):1454-1467.e15. doi: 10.1016/j.cell.2018.03.044. Epub 2018 Apr 12. Cell. 2018. PMID: 29656896 Free article.
Salicylic acid (SA) is a plant defense hormone required for immunity. Arabidopsis NPR1 and NPR3/NPR4 were previously shown to bind SA and all three proteins were proposed as SA receptors. ...In contrast, the equivalent mutation in NPR1 abolishes its ability t …
Salicylic acid (SA) is a plant defense hormone required for immunity. Arabidopsis NPR1 and NPR3/NPR4 were previously shown to bind …
[Sideroblastic anemia].
Fujiwara T. Fujiwara T. Rinsho Ketsueki. 2019;60(5):408-416. doi: 10.11406/rinketsu.60.408. Rinsho Ketsueki. 2019. PMID: 31168006 Review. Japanese.
In addition, SA can occur after exposure to certain drugs or alcohol and because of copper deficiency (secondary SA). Of note, SA also correlates with myelodysplastic syndrome (idiopathic SA). Recent progress in the genome analysis technology has enabl …
In addition, SA can occur after exposure to certain drugs or alcohol and because of copper deficiency (secondary SA). Of note, …
How does SA signaling link the Flg22 responses?
Yi SY, Kwon SY. Yi SY, et al. Plant Signal Behav. 2014;9(11):e972806. doi: 10.4161/15592316.2014.972806. Plant Signal Behav. 2014. PMID: 25482762 Free PMC article.
Salicylic acid (SA) has a central role in activating plant resistance to pathogens. SA levels increase in plant tissue following pathogen infection and exogenous SA enhances resistance to a broad range of pathogens. To study the relevance of the SA sig …
Salicylic acid (SA) has a central role in activating plant resistance to pathogens. SA levels increase in plant tissue followi …
A positive feedback regulatory loop, SA-AtNAP-SAG202/SARD1-ICS1-SA, in SA biosynthesis involved in leaf senescence but not defense response.
Wang Y, Liu B, Hu Y, Gan SS. Wang Y, et al. Mol Hortic. 2022 Jun 17;2(1):15. doi: 10.1186/s43897-022-00036-x. Mol Hortic. 2022. PMID: 37789442 Free PMC article.
It is imperative to understand upstream factors that regulate genes of SA biosynthesis. SAG202/SARD1 is a key regulator for isochorismate synthase 1 (ICS1) induction and SA biosynthesis in defense responses. ...Furthermore, SA positively feedback regulates At …
It is imperative to understand upstream factors that regulate genes of SA biosynthesis. SAG202/SARD1 is a key regulator for isochoris …
Teaching self-acupuncture survey report.
Davy C, Hughes J. Davy C, et al. Acupunct Med. 2022 Aug;40(4):333-338. doi: 10.1177/09645284211056658. Epub 2021 Dec 10. Acupunct Med. 2022. PMID: 34892982
BACKGROUND: People have been teaching self-acupuncture (SA) in the United Kingdom since 1977. More recently, a small body of research has been conducted on SA. ...Nineteen percent of participants had taught SA. The most common symptoms for which acupuncturist …
BACKGROUND: People have been teaching self-acupuncture (SA) in the United Kingdom since 1977. More recently, a small body of research …
The interplay between MAMP and SA signaling.
Tsuda K, Glazebrook J, Katagiri F. Tsuda K, et al. Plant Signal Behav. 2008 Jun;3(6):359-61. doi: 10.4161/psb.3.6.5702. Plant Signal Behav. 2008. PMID: 19513222 Free PMC article.
Recently, we reported that treatment with flg22 triggered SA accumulation in Arabidopsis leaves. Disruptions of SA signaling components strongly affected MAMP-triggered gene expression responses. Flg22-triggered resistance to Pseudomonas syringae pv. tomato DC3000 ( …
Recently, we reported that treatment with flg22 triggered SA accumulation in Arabidopsis leaves. Disruptions of SA signaling c …
262,642 results
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