Additional file 1: Positive mode Base Peak Ion (BPI) chromatogram of
Marula stem extract. ESI positive mode BPI chromatogram of Marula
stems extracted with ethanol.
Additional file 2: Negative mode BPI chromatogram of Marula stem
ethanol extract. Full chromatogram of the ESI negative mode BPI
chromatogram of Marula stems extracted with ethanol overlaid with the
solvent blank.
Additional file 3: MS/MS fragmentation pattern of quinic acid pure
standard overlaid with MS/MS fragmentation of peak 1. A comparison of
MS/MS fragmentation pattern of quinic acid pure standard and MS/MS
fragmentation pattern of peak 1 identified as quinic acid.
Additional file 4: Negative mode BPI chromatogram of quinic acid pure
standard overlaid with that of Marula stem ethanol extract. A comparison
of the retention time of quinic acid pure standard with that of peak 1
identified a quinic acid in Marula stem ethanol extract.
Additional file 5: MS/MS fragmentation pattern of catechin pure standard
overlaid with MS/MS fragmentation of peak 2. A comparison of the MS/MS
fragmentation pattern of catechin pure standard with the MS/MS fragmentation
pattern of peak 2 identified as catechin.
Additional file 6: Negative mode BPI chromatogram of catechin pure
standard overlaid with that of Marula stem ethanol extract. A comparison
of the retention time of catechin pure standard with that of peak 2
identified as catechin in Marula stem ethanol extract.
Additional file 7: MS/MS fragmentation pattern of epigallocatechin
gallate pure standard overlaid with MS/MS fragmentation of peak 4. A
comparison of MS/MS fragmentation pattern of epigallocatechin gallate
pure standard with that of peak 4 identified as epigallocatechin gallate in
Marula stem ethanol extract.
Additional file 8: Negative mode BPI chromatogram of epigallocatechin
gallate pure standard overlaid with that of Marula stem ethanol extract. A
comparison of the retention time of epigallocatechin gallate pure
standard with that of peak 4 identified as epigallocatechin gallate in
Marula stem ethanol extract.
Additional file 9: MS and MS/MS fragmentation pattern of peak 5. An
overlay of MS and MS/MS fragmentation pattern of peak 5 tentatively
identified as epicatechin-3-O-gallate-epicatechin.
Additional file 10: MS and MS MS fragmentation pattern of peak 6. An
overlay of MS and MS/MS fragmentation pattern of peak 6 tentatively
identified as procyanidin B2-3,3′ di-O-gallate.
Additional file 11: MS/MS fragmentation pattern of epicatechin gallate
pure standard overlaid with MS/MS fragmentation of peak 7. A comparison
of the MS/MS fragmentation pattern of epicatechin gallate pure standard to
that of peak 7 identified as epicatechin gallate in Marula stem ethanol
extract.
Additional file 12: Negative mode BPI chromatogram of epicatechin
gallate pure standard overlaid with that of Marula stem ethanol extract. A
comparison of the retention time of epicatechin gallate pure standard
with that of peak 7 identified as epicatechin gallate in Marula stem
ethanol extract.