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Systemic administration of 2-hydroxypropyl-β-cyclodextrin to symptomatic Npc1-deficient mice slows cholesterol
Adam M Lopez1, Sandi J Terpack, Kenneth S Posey
1Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas, TX, USA.
Abstract:
In Niemann-Pick type C (NPC) disease, loss-of-function mutations in either NPC1 or NPC2 result in progressive accumulation of unesterified cholesterol (UC) and glycosphingolipids in all organs, leading to neurodegeneration, pulmonary dysfunction and sometimes liver failure. There is no cure for this disorder. Studies using primarily NPC mouse models have shown that systemic administration of 2-hydroxypropyl-β-cyclodextrin (2HPβCD), starting in early neonatal life, diminishes UC accumulation in most organs, slows disease progression and extends lifespan. The key question now is whether delaying the start of 2HPβCD treatment until early adulthood, when the amount of entrapped UC throughout the body is markedly elevated, has any of the benefits found when treatment begins at 7 days of age. In the present study, Npc1(-/-) and Npc1(+/+) mice were given saline or 2HPβCD subcutaneously at 49, 56, 63 and 70 days of age, with measurements of organ weights, liver function tests and tissue cholesterol levels performed at 77 days. In Npc1(-/-) mice, treatment with 2HPβCD from 49 days reduced whole-liver cholesterol content at 77 days from 33.0 ± 1.0 to 9.1 ± 0.5 mg/organ. Comparable improvements were seen in other organs, such as the spleen, and in the animal as a whole. There was a transient increase in biliary cholesterol concentration in Npc1(-/-) mice after 2HPβCD. Plasma alanine aminotransferase and aspartate aminotransferase activities in 77-day-old 2HPβCD-treated Npc1(-/-) mice were reduced compared with saline-treated controls. The lifespan of Npc1(-/-) mice given 2HPβCD marginally exceeded that of the saline-treated controls (99 ± 1.1 vs 94 ± 1.4 days, respectively; P < 0.05). Thus, 2HPβCD is effective in mobilizing entrapped cholesterol in late-stage NPC disease leading to improved liver function.
Insights
Late-stage Niemann-Pick type C (NPC) disease in mice shows benefits from 2-hydroxypropyl-β-cyclodextrin (2HPβCD) treatment. This cholesterol-mobilizing drug improved liver function and extended lifespan when administered in adulthood.
Area of Science:
- Biochemistry
- Genetics
- Pharmacology
Background:
- Niemann-Pick type C (NPC) disease is a fatal genetic disorder caused by mutations in NPC1 or NPC2 genes.
- This disease leads to the accumulation of unesterified cholesterol and glycosphingolipids, causing severe organ dysfunction and neurodegeneration.
- Current treatments are limited, and early-life administration of 2-hydroxypropyl-β-cyclodextrin (2HPβCD) has shown promise in animal models.
Purpose of the Study:
- To investigate the efficacy of delaying 2HPβCD treatment until early adulthood in Niemann-Pick type C mouse models.
- To determine if late-stage intervention can mitigate cholesterol accumulation and improve disease outcomes in NPC disease.
Main Methods:
- Npc1(-/-) and Npc1(+/+) mice received subcutaneous injections of saline or 2HPβCD at 49, 56, 63, and 70 days of age.
- Organ weights, liver function tests (ALT, AST), and tissue cholesterol levels were assessed at 77 days of age.
- Lifespan was monitored for both treatment and control groups.
Main Results:
- 2HPβCD treatment initiated at 49 days of age significantly reduced cholesterol content in the liver and spleen of Npc1(-/-) mice.
- A transient increase in biliary cholesterol concentration was observed post-treatment.
- Plasma ALT and AST levels were reduced in treated Npc1(-/-) mice, and their lifespan was marginally extended compared to controls.
Conclusions:
- 2HPβCD is effective in mobilizing entrapped cholesterol even when treatment is initiated in early adulthood for late-stage Niemann-Pick type C disease.
- Late-stage 2HPβCD intervention improves liver function and offers a modest survival benefit in NPC mouse models.
- These findings support the potential of 2HPβCD as a therapeutic agent for NPC disease, even with delayed treatment initiation.

