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Is Sphingosine-1-Phosphate a Regulator of Tumor Vascular Functionality?
by
Ives, Annette
, Karam, Manale
, Auclair, Christian
in
Adenocarcinoma
/ Angiogenesis
/ Blood vessels
/ Cancer therapies
/ Cell growth
/ Chemotherapy
/ Drug delivery
/ Gemcitabine
/ Hypoxia
/ Kinases
/ Literature reviews
/ Mammals
/ Metastases
/ Metastasis
/ Oral administration
/ Oxygenation
/ Pancreas
/ Patients
/ Permeability
/ Phosphatase
/ Plasma
/ Plasma levels
/ Platelet-derived growth factor
/ Radiation therapy
/ Signal transduction
/ Smooth muscle
/ Solid tumors
/ Sphingosine 1-phosphate
2022
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Is Sphingosine-1-Phosphate a Regulator of Tumor Vascular Functionality?
by
Ives, Annette
, Karam, Manale
, Auclair, Christian
in
Adenocarcinoma
/ Angiogenesis
/ Blood vessels
/ Cancer therapies
/ Cell growth
/ Chemotherapy
/ Drug delivery
/ Gemcitabine
/ Hypoxia
/ Kinases
/ Literature reviews
/ Mammals
/ Metastases
/ Metastasis
/ Oral administration
/ Oxygenation
/ Pancreas
/ Patients
/ Permeability
/ Phosphatase
/ Plasma
/ Plasma levels
/ Platelet-derived growth factor
/ Radiation therapy
/ Signal transduction
/ Smooth muscle
/ Solid tumors
/ Sphingosine 1-phosphate
2022
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Do you wish to request the book?
Is Sphingosine-1-Phosphate a Regulator of Tumor Vascular Functionality?
by
Ives, Annette
, Karam, Manale
, Auclair, Christian
in
Adenocarcinoma
/ Angiogenesis
/ Blood vessels
/ Cancer therapies
/ Cell growth
/ Chemotherapy
/ Drug delivery
/ Gemcitabine
/ Hypoxia
/ Kinases
/ Literature reviews
/ Mammals
/ Metastases
/ Metastasis
/ Oral administration
/ Oxygenation
/ Pancreas
/ Patients
/ Permeability
/ Phosphatase
/ Plasma
/ Plasma levels
/ Platelet-derived growth factor
/ Radiation therapy
/ Signal transduction
/ Smooth muscle
/ Solid tumors
/ Sphingosine 1-phosphate
2022
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Is Sphingosine-1-Phosphate a Regulator of Tumor Vascular Functionality?
Journal Article
Is Sphingosine-1-Phosphate a Regulator of Tumor Vascular Functionality?
2022
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Overview
Increasing evidence indicates that tumor vasculature normalization could be an appropriate strategy to increase therapies’ efficacy in solid tumors by decreasing hypoxia and improving drug delivery. We searched for a novel approach that reduces hypoxia and enhances chemotherapy efficacy in pancreatic adenocarcinoma which is characterized by disrupted blood vasculature associated with poor patient survival. Clinical significance of plasma levels of the angiogenic lipid sphingosine-1-phosphate (S1P) was assessed at baseline in 175 patients. High plasma S1P concentration was found to be a favorable prognostic/predictive marker in advanced/metastatic pancreatic adenocarcinoma patients treated by gemcitabine alone but not in patients receiving a combination gemcitabine and PDGFR-inhibitor. In pancreatic adenocarcinoma PDX models, oral administration of an S1P lyase inhibitor (LX2931) significantly increased plasma S1P levels, decreased tumor expression of the hypoxia marker (CA IX), and enhanced chemotherapy efficacy when combined with gemcitabine treatment. The direct effect of S1P on tumor oxygenation was assessed by administration of S1P onto tumor-grafted CAM model and measuring intra-tumoral pO2 using a tissue oxygen monitor. S1P increased pO2 in a tumor-CAM model. Thus, increasing plasma S1P is a promising strategy to decrease tumor hypoxia and enhance therapy efficacy in solid tumors. S1P may act as a tumor vasculature normalizer.
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