Related Experiment Video
Updated: Jan 19, 2026
Cellular and Molecular Neuroscience Research
Published on: April 30, 2023
Current Challenges in Understanding the Cellular and Molecular Mechanisms in Niemann-Pick Disease Type C1
Anja U Bräuer1,2, Angela Kuhla3,4, Carsten Holzmann5,6
1Research Group Anatomy, School of Medicine and Health Sciences, Carl von Ossietzky University Oldenburg, D-26129 Oldenburg, Germany. anja.braeuer@uni-oldenburg.de.
Abstract:
Rare diseases are a heterogeneous group of very different clinical syndromes. Their most common causes are defects in the hereditary material, and they can therefore be passed on to descendants. Rare diseases become manifest in almost all organs and often have a systemic expressivity, i.e., they affect several organs simultaneously. An effective causal therapy is often not available and can only be developed when the underlying causes of the disease are understood. In this review, we focus on Niemann-Pick disease type C1 (NPC1), which is a rare lipid-storage disorder. Lipids, in particular phospholipids, are a major component of the cell membrane and play important roles in cellular functions, such as extracellular receptor signaling, intracellular second messengers and cellular pressure regulation. An excessive storage of fats, as seen in NPC1, can cause permanent damage to cells and tissues in the brain and peripheral nervous system, but also in other parts of the body. Here, we summarize the impact of NPC1 pathology on several organ systems, as revealed in experimental animal models and humans, and give an overview of current available treatment options.
Insights
Niemann-Pick disease type C1 (NPC1) is a rare genetic disorder causing harmful lipid accumulation. Understanding NPC1
Area of Science:
- Genetics and rare diseases
- Cellular biology and lipid metabolism
Background:
- Rare diseases, often genetic, affect multiple organs and lack effective therapies.
- Niemann-Pick disease type C1 (NPC1) is a rare lipid-storage disorder impacting cellular functions.
- Lipid accumulation in NPC1 causes cellular and tissue damage, particularly in the nervous system.
Purpose of the Study:
- To review the impact of Niemann-Pick disease type C1 (NPC1) pathology on various organ systems.
- To summarize current treatment options for NPC1.
Main Methods:
- Review of experimental animal models of NPC1.
- Analysis of human clinical data for NPC1 patients.
Main Results:
- NPC1 pathology affects multiple organ systems, including the brain and peripheral nervous system.
- Excessive lipid storage leads to permanent cellular and tissue damage.
Conclusions:
- Understanding the underlying causes of NPC1 is crucial for developing effective therapies.
- Current treatment strategies for NPC1 are being explored based on disease mechanisms.
Related Concept Videos
An Introduction to Cellular and Molecular Neuroscience
This video introduction to the fascinating world of cellular and molecular neuroscience begins with a timeline of landmark studies, from the...
15:48ALS - Motor Neuron Disease: Mechanism and Development of New Therapies
09:13Understanding the Development of Compensatory Pathways in a Mutant Malaria Parasite Harbouring Hypomorphic Allele of Plant-Like Kinases
10:22Use of the TetON System to Study Molecular Mechanisms of Zebrafish Regeneration
08:23Using Human Intestinal Organoids to Understand the Small Intestine Epithelium at the Single Cell Transcriptional Level
Understanding the Self

