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Fingerprint profiling of acid hydrolyzates of polysaccharides extracted from the fruiting bodies and spores of Lingzhi by high-performance thin-layer chromatography. | LitMetric

AI Article Synopsis

  • The study utilized modern extraction and high-performance thin-layer chromatography (HPTLC) to create carbohydrate profiles, or fingerprints, of different species of the medicinal mushroom Lingzhi.
  • The method involved acid hydrolysis of polysaccharides, allowing for the measurement of degradation products like mono- and oligosaccharides using HPTLC with special detection reagents.
  • Unique fingerprint patterns were identified in the monosaccharide profiles of two valuable Lingzhi species, Ganoderma applanatum and Ganoderma lucidum, showcasing the technique's potential for species differentiation.

Article Abstract

Modern extraction and planar chromatographic instrumentation were employed for the fingerprint profiling of carbohydrates from an important and popular medicinal mushroom commonly known as Lingzhi. For the first time, the feasibility of employing the high-performance thin-layer chromatography (HPTLC) peak profiles (fingerprints) of carbohydrates for the screening of various Lingzhi species/products was demonstrated. An analytical procedure was developed such that upon acid hydrolysis of the polysaccharides extracted from various Lingzhi samples, fingerprint profiles that reveal the relative amounts of the degradation products, such as mono- and oligosaccharides, can be obtained using HPTLC plates (Si 50000) for separation and 4-aminobenzoic acid as the post-chromatographic derivatization reagent for detection. Also, using automated multiple development (AMD), the acid hydrolyzates from Lingzhi, consisting of simple and more complex sugars, can be separated simultaneously with high degree of automation. An important finding was that unique fingerprint patterns were observed in the monosaccharide profiles between two highly valued Lingzhi species, Ganoderma applanatum and Ganoderma lucidum, under total or partial acid hydrolysis conditions. Additionally, the HPTLC fingerprint profiles of carbohydrates were obtained from the extracts of the spores and fruiting bodies of Lingzhi and compared.

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Source
http://dx.doi.org/10.1016/j.chroma.2003.07.015DOI Listing

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