Fig. 1. Positive- and negative-ion mass chromatograms and extracted wavelength chromatogram (300 ± 40 nm) of A. sylvestris raw extract (A).Published as part of Or, Dejan, ci, c, Bere, Sanja, zni, Du, Skori, san, c & Mimica-Dukic, Neda, 2021, Comprehensive study of Anthriscus sylvestris lignans, pp. 1-22 in Phytochemistry (112958) 192 on page 2, DOI: 10.1016/j.phytochem.2021.112958, http://zenodo.org/record/825813
Fig. 1. LC–MS base peak ion (BPI) chromatograms of 15 Alnus extracts. Gaps between chromatogram were...
Fig. 1. LC-MS profile (Base Peak chromatogram) in negative ion mode of S. sicula MeOH extract.Publis...
Fig. 1. (a) Total ion chromatogram of G44 mushroom extract in ESI negative mode (b) Extracted ion ch...
Fig. 4. Comparison of positive-ionization MS2 spectra of class representatives at V = 10 V.Published...
Fig. 3. Comparison of UV spectra of class representatives.Published as part of Or, Dejan, ci, c, Ber...
Or, Dejan, ci, c, Bere, Sanja, zni, Du, Skori, san, c, Mimica-Dukic, Neda (2021): Comprehensive stud...
Fig. 6. Saturated dibenzylbutyrolactones fragmentation (based on Eklund et al., 2008; Schmidt et al....
Fig. 5. Unsaturated dibenzylbutyrolactones and aryltetralins fragmentation (based on Schmidt et al.,...
Fig. 8. 7-hydroxy and 7-acyloxyaryltetralin fragmentation (based on Chen et al., 1985; Vasilev et al...
Fig. 7. Proposed 8-hydroxydibenzylbutyrolactones fragmentation (based on Crotti et al., 2004; Schmid...
The aryltetralin lignan deoxypodophyllotoxin is much more widespread in the plant kingdom than podop...
Fig. 2. Structures of the identified compounds. For the compounds 5–7 and 36, only the relative conf...
A new GC-MS method for monitoring lignans was developed to study the variation in plants and elucida...
In the roots of Anthriscus sylvestris 12 different lignans were detected. Arctigenin, dimethylmatair...
In a previous study we have shown that different populations of Anthriscus sylvestris (L.) Hoffm. (A...
Fig. 1. LC–MS base peak ion (BPI) chromatograms of 15 Alnus extracts. Gaps between chromatogram were...
Fig. 1. LC-MS profile (Base Peak chromatogram) in negative ion mode of S. sicula MeOH extract.Publis...
Fig. 1. (a) Total ion chromatogram of G44 mushroom extract in ESI negative mode (b) Extracted ion ch...
Fig. 4. Comparison of positive-ionization MS2 spectra of class representatives at V = 10 V.Published...
Fig. 3. Comparison of UV spectra of class representatives.Published as part of Or, Dejan, ci, c, Ber...
Or, Dejan, ci, c, Bere, Sanja, zni, Du, Skori, san, c, Mimica-Dukic, Neda (2021): Comprehensive stud...
Fig. 6. Saturated dibenzylbutyrolactones fragmentation (based on Eklund et al., 2008; Schmidt et al....
Fig. 5. Unsaturated dibenzylbutyrolactones and aryltetralins fragmentation (based on Schmidt et al.,...
Fig. 8. 7-hydroxy and 7-acyloxyaryltetralin fragmentation (based on Chen et al., 1985; Vasilev et al...
Fig. 7. Proposed 8-hydroxydibenzylbutyrolactones fragmentation (based on Crotti et al., 2004; Schmid...
The aryltetralin lignan deoxypodophyllotoxin is much more widespread in the plant kingdom than podop...
Fig. 2. Structures of the identified compounds. For the compounds 5–7 and 36, only the relative conf...
A new GC-MS method for monitoring lignans was developed to study the variation in plants and elucida...
In the roots of Anthriscus sylvestris 12 different lignans were detected. Arctigenin, dimethylmatair...
In a previous study we have shown that different populations of Anthriscus sylvestris (L.) Hoffm. (A...
Fig. 1. LC–MS base peak ion (BPI) chromatograms of 15 Alnus extracts. Gaps between chromatogram were...
Fig. 1. LC-MS profile (Base Peak chromatogram) in negative ion mode of S. sicula MeOH extract.Publis...
Fig. 1. (a) Total ion chromatogram of G44 mushroom extract in ESI negative mode (b) Extracted ion ch...