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Analytical Characterization of Methyl-?-Cyclodextrin for Pharmacological Activity to Reduce Lysosomal Cholesterol Accumulation in Niemann-Pick Disease Type C1 Cells.


ABSTRACT: Methyl-?-cyclodextrin (M?CD) reduces lysosomal cholesterol accumulation in Niemann-Pick disease type C1 (NPC1) patient fibroblasts. However, the pharmacological activity of M?CD reported by different laboratories varies. To determine the potential causes of this variation, we analyzed the mass spectrum characteristics, pharmacological activity of three preparations of M?CDs, and the protein expression profiles of NPC1 patient fibroblasts after treatment with different sources of M?CDs. Our data revealed varied mass spectrum profiles and pharmacological activities on the reduction of lysosomal cholesterol accumulation in NPC1 fibroblasts for these three preparations of M?CDs obtained from different batches and different sources. Furthermore, a proteomic analysis showed the differences of these three M?CD preparations on amelioration of dysregulated protein expression levels in NPC1 cells. The results demonstrate the importance of prescreening of different cyclodextrin preparations before use as a therapeutic agent. A combination of mass spectrum analysis, measurement of pharmacological activity, and proteomic profiling provides an effective analytical procedure for characterization of cyclodextrins for therapeutic applications.

SUBMITTER: Li R 

PROVIDER: S-EPMC5510037 | biostudies-literature | 2017 May/Jun

REPOSITORIES: biostudies-literature

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Analytical Characterization of Methyl-β-Cyclodextrin for Pharmacological Activity to Reduce Lysosomal Cholesterol Accumulation in Niemann-Pick Disease Type C1 Cells.

Li Rong R   Hao Jon J   Fujiwara Hideji H   Xu Miao M   Yang Shu S   Dai Sheng S   Long Yan Y   Swaroop Manju M   Li Changhui C   Vu Mylinh M   Marugan Juan J JJ   Ory Daniel S DS   Zheng Wei W  

Assay and drug development technologies 20170501 4


Methyl-β-cyclodextrin (MβCD) reduces lysosomal cholesterol accumulation in Niemann-Pick disease type C1 (NPC1) patient fibroblasts. However, the pharmacological activity of MβCD reported by different laboratories varies. To determine the potential causes of this variation, we analyzed the mass spectrum characteristics, pharmacological activity of three preparations of MβCDs, and the protein expression profiles of NPC1 patient fibroblasts after treatment with different sources of MβCDs. Our data  ...[more]

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