Summary.
Pyrolysis combined with gas chromatography and mass spectrometry (Py-GC/MS) was applied for structural investigations of the human substantia nigra neuromelanin. Using synthetic neuromelanins, we have demonstrated that Py-GC/MS is suitable for identification and differentiation of both eumelanin (dopamine-derived) and pheomelanin (cysteinyldopamine-derived) component of the pigment. Structural information on melanin monomers was inferred from their pyrolytic markers. When the human neuromelanin was subjected to pyrolysis, none of the heterocyclic, sulfur-containing markers of pheomelanin component was detected among the thermal degradation products. We have concluded that nigral pigment isolated from normal brain tissue does not contain benzothiazine-type monomers, and that cysteinyldopamine-originated units may be incorporated into the polymer in uncyclized form. The most abundant pyrolysis product was identified as limonene, which indicates that nigral pigment is tightly associated with an isoprenoid-type compound. Pyrolysis in the presence of the methylating reagent allowed identification of high levels of saturated and monounsaturated straight-chain C14–C18 fatty acid species chemically bound to the pigment macromolecule.
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Dzierzega-Lecznar, A., Kurkiewicz, S., Stepien, K. et al. Structural investigations of neuromelanin by pyrolysis-gas chromatography/mass spectrometry. J Neural Transm 113, 729–734 (2006). https://doi.org/10.1007/s00702-005-0446-6
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DOI: https://doi.org/10.1007/s00702-005-0446-6