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PMID: 7651750 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Cultured skin fibroblasts derived from patients with mucolipidosis 4 are auto-fluorescent.

Pediatric research ·Vol. 37 ·No. 6 ·1995-06-00 ·Pages 687-92

Goldin E, Blanchette-Mackie EJ, Dwyer NK, Pentchev PG, Brady RO

Abstract

Mucolipidosis 4 (ML4) is an autosomal recessive disorder with both lipid and mucopolysaccharide storage. The disease is characterized by severe visual impairment and psychomotor retardation. In our effort to find a phenotypic marker for ML4 fibroblasts, living cells were stained with fluorescent compounds. The staining pattern in cells was complicated by autofluorescence. A careful study revealed that auto-fluorescence by itself was a sufficient marker for viable ML4 fibroblasts. ML4 cells in cultures obtained from four unrelated patients contain auto-fluorescent material. Auto-fluorescence was noted over a wide range of excitation wavelengths from approximately 365 to approximately 546 nm. The most intense fluorescence was observed in the lower wave-length range. Cultured fibroblasts from normal individuals or obligate ML4 heterozygotes did not fluoresce under adequately controlled culture conditions. High passage number of inadequate feeding caused a small proportion of fibroblasts obtained from normal individuals to auto-fluoresce. The auto-fluorescent material co-localized with phase-dense inclusion bodies, shown to be lysosomes by staining with LAMP-ab. These findings imply that fluorescence may relate to the specific compound(s) stored in the lysosomes. In a comparative study, neuronal ceroid lipofuscinosis fibroblasts were also fluorescent. Fibroblasts from other diseases such as Gaucher disease and glycogenosis type 2 did not show any fluorescence. These findings are currently used in our functional cloning strategy for determining the gene involved in ML4.

MeSH Terms
Biomarkers/chemistry Cells, Cultured Fibroblasts/chemistry,pathology Fluorescence Humans Microscopy, Fluorescence Mucolipidoses/genetics,pathology Mutation Skin/chemistry,pathology
Chemicals
Biomarkers
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Goldin E
Developmental and Metabolic Neurology Branch, National Institute of Neurologic Disorders and Stroke, National Institutes of Health, Bethesda, MD 20892, USA.
Blanchette-Mackie E J
Dwyer N K
Pentchev P G
Brady R O
Article Info
Journal
Pediatric research
Abbr.
Pediatr Res
ISSN
0031-3998
Published
1995-06-00
Pages
687-92
Language
English
Region
United States
NLM ID
0100714
Subset
IM
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