1 |
lysophosphatidic acid receptor 1
(41 times)
|
Biochemistry (7 times)
|
LPA (12 times) IPF (4 times) tMCAO (3 times)
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2006 The role of LPA1 in formation of synapses among cultured hippocampal neurons.
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2 |
LPA receptor 1
(13 times)
|
Biochemistry (5 times)
|
LPA (13 times) ATX (2 times) FAK (2 times)
|
2010 No Mutations of Lysophosphatidic Acid Receptor Genes in Lung Adenocarcinomas Induced by N-Nitrosobis(2-hydroxypropyl)amine in Rats.
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3 |
Loose Plant Architecture1
(5 times)
|
Physiology (1 time)
|
PIN1a (2 times) ShB (2 times) BiFC (1 time)
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2012 Loose Plant Architecture1, an INDETERMINATE DOMAIN protein involved in shoot gravitropism, regulates plant architecture in rice.
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4 |
lysophosphatidic acid-1
(3 times)
|
Neurology (1 time)
|
C6 cells (1 time) CPT/C (1 time) ERK (1 time)
|
2013 Involvement of LPA1 receptor signaling in cerebral ischemia-induced neuropathic pain.
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5 |
LPA receptor subtype 1
(2 times)
|
Molecular Biology (1 time)
|
LPA (2 times) ATX (1 time) HCC (1 time)
|
2010 Lysophosphatidic acid augments human hepatocellular carcinoma cell invasion through LPA1 receptor and MMP-9 expression.
|
6 |
LPA responsive G protein-coupled receptors 1
(1 time)
|
Cardiology (1 time)
|
LPA (1 time) SMCs (1 time)
|
2008 Lysophosphatidic acid receptors 1 and 2 play roles in regulation of vascular injury responses but not blood pressure.
|
7 |
LPA, and LPA receptor 1
(1 time)
|
Cell Biology (1 time)
|
LPA (1 time) MM (1 time) MSCs (1 time)
|
2016 An Lysophosphatidic Acid Receptors 1 and 3 Axis Governs Cellular Senescence of Mesenchymal Stromal Cells and Promotes Growth and Vascularization of Multiple Myeloma.
|
8 |
lpa1-1 gene, two dominant markers each specific to wild type
(1 time)
|
Biotechnology (1 time)
|
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2020 Development and validation of breeder-friendly gene-based markers for lpa1-1 and lpa2-1 genes conferring low phytic acid in maize kernel.
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9 |
lysophosphatidate type 1
(1 time)
|
Biology (1 time)
|
LPA (1 time)
|
2014 Lysophosphatidate signaling stabilizes Nrf2 and increases the expression of genes involved in drug resistance and oxidative stress responses: implications for cancer treatment.
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