Javascript must be enabled to continue!
Genetic ablation of Saposin‐D in Krabbe disease eliminates psychosine accumulation but does not significantly improve demyelination
View through CrossRef
Abstract
Krabbe disease is an inherited demyelinating disease caused by a genetic deficiency of the lysosomal enzyme galactosylceramide (GalCer) β‐galactosidase (GALC). The
Twitcher
(Twi) mouse is a naturally occurring, genetically and enzymatically authentic mouse model that mimics infantile‐onset Krabbe disease. The major substrate for GALC is the myelin lipid GalCer. However, the pathogenesis of Krabbe disease has long been explained by the accumulation of psychosine, a lyso‐derivative of GalCer. Two metabolic pathways have been proposed for the accumulation of psychosine: a synthetic pathway in which galactose is transferred to sphingosine and a degradation pathway in which GalCer is deacylated by acid ceramidase (ACDase). Saposin‐D (Sap‐D) is essential for the degradation of ceramide by ACDase in lysosome. In this study, we generated Twi mice with a Sap‐D deficiency (Twi/Sap‐D KO), which are genetically deficient in both GALC and Sap‐D and found that very little psychosine accumulated in the CNS or PNS of the mouse. As expected, demyelination with the infiltration of multinucleated macrophages (globoid cells) characteristic of Krabbe disease was milder in Twi/Sap‐D KO mice than in Twi mice both in the CNS and PNS during the early disease stage. However, at the later disease stage, qualitatively and quantitatively comparable demyelination occurred in Twi/Sap‐D KO mice, particularly in the PNS, and the lifespans of Twi/Sap‐D KO mice were even shorter than that of Twi mice. Bone marrow‐derived macrophages from both Twi and Twi/Sap‐D KO mice produced significant amounts of TNF‐α upon exposure to GalCer and were transformed into globoid cells. These results indicate that psychosine in Krabbe disease is mainly produced via the deacylation of GalCer by ACDase. The demyelination observed in Twi/Sap‐D KO mice may be mediated by a psychosine‐independent, Sap‐D‐dependent mechanism. GalCer‐induced activation of Sap‐D‐deficient macrophages/microglia may play an important role in the neuroinflammation and demyelination in Twi/Sap‐D KO mice.
image
Title: Genetic ablation of
Saposin‐D
in Krabbe disease eliminates psychosine accumulation but does not significantly improve demyelination
Description:
Abstract
Krabbe disease is an inherited demyelinating disease caused by a genetic deficiency of the lysosomal enzyme galactosylceramide (GalCer) β‐galactosidase (GALC).
The
Twitcher
(Twi) mouse is a naturally occurring, genetically and enzymatically authentic mouse model that mimics infantile‐onset Krabbe disease.
The major substrate for GALC is the myelin lipid GalCer.
However, the pathogenesis of Krabbe disease has long been explained by the accumulation of psychosine, a lyso‐derivative of GalCer.
Two metabolic pathways have been proposed for the accumulation of psychosine: a synthetic pathway in which galactose is transferred to sphingosine and a degradation pathway in which GalCer is deacylated by acid ceramidase (ACDase).
Saposin‐D (Sap‐D) is essential for the degradation of ceramide by ACDase in lysosome.
In this study, we generated Twi mice with a Sap‐D deficiency (Twi/Sap‐D KO), which are genetically deficient in both GALC and Sap‐D and found that very little psychosine accumulated in the CNS or PNS of the mouse.
As expected, demyelination with the infiltration of multinucleated macrophages (globoid cells) characteristic of Krabbe disease was milder in Twi/Sap‐D KO mice than in Twi mice both in the CNS and PNS during the early disease stage.
However, at the later disease stage, qualitatively and quantitatively comparable demyelination occurred in Twi/Sap‐D KO mice, particularly in the PNS, and the lifespans of Twi/Sap‐D KO mice were even shorter than that of Twi mice.
Bone marrow‐derived macrophages from both Twi and Twi/Sap‐D KO mice produced significant amounts of TNF‐α upon exposure to GalCer and were transformed into globoid cells.
These results indicate that psychosine in Krabbe disease is mainly produced via the deacylation of GalCer by ACDase.
The demyelination observed in Twi/Sap‐D KO mice may be mediated by a psychosine‐independent, Sap‐D‐dependent mechanism.
GalCer‐induced activation of Sap‐D‐deficient macrophages/microglia may play an important role in the neuroinflammation and demyelination in Twi/Sap‐D KO mice.
image.
Related Results
Microwave Ablation with or Without Chemotherapy in Management of Non-Small Cell Lung Cancer: A Systematic Review
Microwave Ablation with or Without Chemotherapy in Management of Non-Small Cell Lung Cancer: A Systematic Review
Abstract
Introduction
Microwave ablation (MWA) has emerged as a minimally invasive treatment for patients with inoperable non-small cell lung cancer (NSCLC). However, whether it i...
Revisiting magnetic resonance imaging pattern of Krabbe disease – Lessons from an Indian cohort
Revisiting magnetic resonance imaging pattern of Krabbe disease – Lessons from an Indian cohort
Context: Krabbe disease shows considerable heterogeneity in clinical features and disease progression. Imaging phenotypes are equally heterogeneous but show distinct age-based patt...
Ablation Performance of C/SiC-ZrC Composites
Ablation Performance of C/SiC-ZrC Composites
Abstract
To reveal the ablation performance of C/SiC-ZrC composites under different ablation methods, C/SiC-ZrC composites were prepared by chemical vapor deposition and pr...
Steam ablation needles based on porous radiation clusters
Steam ablation needles based on porous radiation clusters
Steam thermal ablation (STA) is an emerging minimally invasive treatment technique that utilizes the energy of high-temperature steam to treat diseased tissues. Compared to traditi...
The advantage of mini electrode-equipped catheter for the radiofrequency ablation of paroxysmal supraventricular tachycardia
The advantage of mini electrode-equipped catheter for the radiofrequency ablation of paroxysmal supraventricular tachycardia
Introduction:
Novel ablation catheters equipped with
mini-electrodes (ME) offer high resolution mapping for target tissue.
This study aimed to evaluate the mappin...
Entirely anatomical high-power ablation for refractory left ventricular summit arrhythmias
Entirely anatomical high-power ablation for refractory left ventricular summit arrhythmias
Abstract
Introduction
Ventricular arrhythmias (VA) originating from the left ventricular summit (LVS) can be difficult to...
Impact of Catheter Ablation on Ventricular Tachycardia Recurrence in Patients with Chagas Cardiomyopathy Following implantable cardioverter-defibrillator Implantation: A Competing Risks Analysis
Impact of Catheter Ablation on Ventricular Tachycardia Recurrence in Patients with Chagas Cardiomyopathy Following implantable cardioverter-defibrillator Implantation: A Competing Risks Analysis
ABSTRACT
Background
Chagas cardiomyopathy (ChC) is a highly arrhythmogenic condition with frequent implantable cardioverter-def...
Theoretical and experimental investigation of femtosecond laser processing fused silica
Theoretical and experimental investigation of femtosecond laser processing fused silica
By tracking the spatiotemporal distribution of the free electron density/temperature and laser intensity, the ablation threshold, depth and crater shape of fused silica for femtose...

