Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Autophagy modulation altered differentiation capacity of CD146+ cells toward endothelial cells, pericytes, and cardiomyocytes

View through CrossRef
Abstract Background: To date, many attempts are employed to increase the regenerative potential of stem cells. In this study, we evaluated the hypothesis whether an autophagy modulation could induce/reduce CD146+ cells differentiation into mature pericyte, endothelial and cardiomyocyte lineage. Methods In this study, CD146+ cells were enriched from human bone marrow aspirates and trans-differentiated into mature EC, PC and CM after exposure to autophagy stimulator (50 µM Met)/inhibitor (15 µM HCQ). The protein levels of autophagy proteins were monitored by western blotting. NO content was measured using the Griess assay. Using real-time PCR assay and western blotting, we monitored the lineage protein and gene levels. The fatty acid change was determined by gas chromatography. Pro-inflammatory cytokine and angiocrine factors were measured by ELISA. The exosome secretion capacity was assessed by AChE activity and real-time PCR assay. Result Data revealed the modulation of autophagy factors, Beclin-1, P62 and LC3 II/I ratio in differentiating CD146+ cells after exposure to Met and HCQ (p<0.05). The inhibition of autophagy increased released NO content and decreased intracellular NO content compared to the Met-treated cells (p<0.05). Real-time PCR analysis showed that the treatment of CD146+ cells with autophagy modulators altered the expression of VE-cadherin, cTnI and α-SMA. Our data demonstrated that the stimulation of autophagy signaling in CD146+ cells with Met increased the expression of VE-cadherin, α-SMA, and cTnI compared to HCQ-treated cells (p<0.05) while western blotting revealed the protein synthesis of all lineage-specific proteins in under the stimulation and inhibition of autophagy. Fatty acid profile analysis revealed the increase of unsaturated fatty acids after exposure to HCQ (p<0.05). None statistically significant differences were found in the levels of Tie-1, Tie-2, VEGFR-1 and VEGFR-2 after autophagy modulation. The treatment of cells with HCQ increased the levels of TNF-α and IL-6 compared to the Met-treated cells. Data revealed the increase of exosome biogenesis and secretion to the supernatant in cells treated with HCQ compared to the Met groups (p<0.05).ConclusionsIn summary, autophagy modulation could be altered differentiation potency of CD146+ cells and could be novel and applicable cardiac cell therapy in the cardiac regeneration field.
Title: Autophagy modulation altered differentiation capacity of CD146+ cells toward endothelial cells, pericytes, and cardiomyocytes
Description:
Abstract Background: To date, many attempts are employed to increase the regenerative potential of stem cells.
In this study, we evaluated the hypothesis whether an autophagy modulation could induce/reduce CD146+ cells differentiation into mature pericyte, endothelial and cardiomyocyte lineage.
Methods In this study, CD146+ cells were enriched from human bone marrow aspirates and trans-differentiated into mature EC, PC and CM after exposure to autophagy stimulator (50 µM Met)/inhibitor (15 µM HCQ).
The protein levels of autophagy proteins were monitored by western blotting.
NO content was measured using the Griess assay.
Using real-time PCR assay and western blotting, we monitored the lineage protein and gene levels.
The fatty acid change was determined by gas chromatography.
Pro-inflammatory cytokine and angiocrine factors were measured by ELISA.
The exosome secretion capacity was assessed by AChE activity and real-time PCR assay.
Result Data revealed the modulation of autophagy factors, Beclin-1, P62 and LC3 II/I ratio in differentiating CD146+ cells after exposure to Met and HCQ (p<0.
05).
The inhibition of autophagy increased released NO content and decreased intracellular NO content compared to the Met-treated cells (p<0.
05).
Real-time PCR analysis showed that the treatment of CD146+ cells with autophagy modulators altered the expression of VE-cadherin, cTnI and α-SMA.
Our data demonstrated that the stimulation of autophagy signaling in CD146+ cells with Met increased the expression of VE-cadherin, α-SMA, and cTnI compared to HCQ-treated cells (p<0.
05) while western blotting revealed the protein synthesis of all lineage-specific proteins in under the stimulation and inhibition of autophagy.
Fatty acid profile analysis revealed the increase of unsaturated fatty acids after exposure to HCQ (p<0.
05).
None statistically significant differences were found in the levels of Tie-1, Tie-2, VEGFR-1 and VEGFR-2 after autophagy modulation.
The treatment of cells with HCQ increased the levels of TNF-α and IL-6 compared to the Met-treated cells.
Data revealed the increase of exosome biogenesis and secretion to the supernatant in cells treated with HCQ compared to the Met groups (p<0.
05).
ConclusionsIn summary, autophagy modulation could be altered differentiation potency of CD146+ cells and could be novel and applicable cardiac cell therapy in the cardiac regeneration field.

Related Results

Pericytes: Cell Biology and Pathology
Pericytes: Cell Biology and Pathology
Pericytes are perivascular cells with multifunctional activities which are now being elucidated. The functional interaction of pericytes with endothelial cells (EC) is now being es...
Abstract 1455: In vitro blood brain barrier model for evaluation of brain metastasis
Abstract 1455: In vitro blood brain barrier model for evaluation of brain metastasis
Abstract Introduction: Brain metastasis significantly reduces the patient's quality of life and survival, but there are only a few choices of treatment for brain met...
Abstract 1674: Inhibition of GSK3 reduces p70S6K activity and promotes autophagy independently of the JNK-cJun pathway.
Abstract 1674: Inhibition of GSK3 reduces p70S6K activity and promotes autophagy independently of the JNK-cJun pathway.
Abstract Considering that a tumor promoting role for GSK3 has been suggested in pancreatic cancer (PC) cells and that GSK3 inhibitors are currently under clinical tr...
Endothelial C-Type Natriuretic Peptide Acts on Pericytes to Regulate Microcirculatory Flow and Blood Pressure
Endothelial C-Type Natriuretic Peptide Acts on Pericytes to Regulate Microcirculatory Flow and Blood Pressure
Background: Peripheral vascular resistance has a major impact on arterial blood pressure levels. Endothelial C-type natriuretic peptide (CNP) participates in the local ...
Data from Autophagy Supports Breast Cancer Stem Cell Maintenance by Regulating IL6 Secretion
Data from Autophagy Supports Breast Cancer Stem Cell Maintenance by Regulating IL6 Secretion
<div>Abstract<p>Autophagy is a mechanism by which cells degrade cellular material to provide nutrients and energy for survival during stress. The autophagy is thought t...
Data from Autophagy Supports Breast Cancer Stem Cell Maintenance by Regulating IL6 Secretion
Data from Autophagy Supports Breast Cancer Stem Cell Maintenance by Regulating IL6 Secretion
<div>Abstract<p>Autophagy is a mechanism by which cells degrade cellular material to provide nutrients and energy for survival during stress. The autophagy is thought t...

Back to Top