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Biomedical subjects

D Ishikawa

Publications and source records attributed to D Ishikawa.

35 records · Page 2Linked to original sources

Direct mass spectrometric analysis of glycosphingolipid transferred to a polyvinylidene difluoride membrane by thin-layer chromatography blotting.

A simple, rapid method for the analysis of glycosphingolipid that combines "thin-layer chromatography (TLC) blotting" and mass spectrometry is reported. Glycosphingolipids developed by TLC were transferred to a polyvinylidene difluoride membrane by TLC blotting, after which the glycosphingolipid band on the membrane was excised and placed on a mass spectrometer probe tip, and a few microliters of triethanolamine was added as the matrix. The sample was analyzed by secondary ion mass spectrometry. About 1 microgram of glycosphingolipid subjected to TLC can be analyzed. The major advantage of this method is that glycosphingolipid can be analyzed structurally without purification by repeated column chromatography.

Animals↗

Blotting of glycolipids and phospholipids from a high-performance thin-layer chromatogram to a polyvinylidene difluoride membrane.

A simple method of blotting glycosphingolipids from a high-performance thin-layer chromatography (HPTLC) plate to a polyvinylidene difluoride (PVDF) membrane is described. The developed HPTLC plate is dipped in a solvent mixture (isopropanol/0.2% CaCl2/methanol, 40/20/7 by volume) for blotting, after which first a PVDF membrane and then a glass microfiber filter is placed on the plate. The assemblage then is pressed for 30 s with heating. Most of the glycosphingolipids that are separated on the HPTLC plate can be blotted quantitatively and detected with the reagents used on the plate. Detection of the glycosphingolipids on the membrane was confirmed to be more sensitive than that on the HPTLC plate by both chemical visualization and immunological staining. The glycosphingolipids blotted on the membrane could be reextracted. Blotting of phospholipids can be done by the same method. The results suggest that this method can be used in the purification and characterization of glycosphingolipids and in the detection of proteins which recognize glycosphingolipids and phospholipids.

Animals↗

A simple and quantitative purification of glycosphingolipids and phospholipids by thin-layer chromatography blotting.

A new and simple method for purifying glycosphingolipids and phospholipids by using "TLC blotting" was established. Glycosphingolipids separated by two-dimensional thin-layer chromatography (TLC) were made visible with primuline reagent, and then bands were marked with a drawing colored pencil. The glycosphingolipids that separated on the HPTLC plate were transferred by TLC blotting to a polyvinylidene difluoride membrane together with the color marks. The marked areas were excised after which their glycosphingolipids were extracted and monitored by TLC. By this method, 20 glycosphingolipids showing homogeneous bands on a HPTLC plate were isolated from the neutral glycosphingolipid fraction of human meconium. Moreover, 10 kinds of acidic glycosphingolipids were purified as homogeneous bands from the bovine acidic glycosphingolipid fraction. The yields of glycosphingolipids (13 different ones) ranged from 68 to 92%, the mean value being 82.3%. The glycosphingolipids were confirmed to be purified as intact forms by mass spectrometric analysis and chromatographic mobilities on a HPTLC plate. The same procedure could also be used to purify phospholipids.

Animals↗