Fig. 4. Polyacetylenes from plants of other families.Published as part of Xie, Qi & Wang, Changhong, 2022, Polyacetylenes in herbal medicine: A comprehensive review of its occurrence, pharmacology, toxicology, and pharmacokinetics (2014-2021), pp. 1-20 in Phytochemistry (113288) 201 on page 10, DOI: 10.1016/j.phytochem.2022.113288, http://zenodo.org/record/823520
Fig. 2. Key HMBC and COSY correlations of compounds 1–8.Published as part of Lee, Seung Hyun, Kim, J...
Fig. 7. Predictable biosynthesis pathway for some polyacetylenes and acetylenes from S. altissima.Pu...
Fig. 4. Key 1H–1H COSY (bold dark lines), HMBC (red arrows), and NOESY (blue arrows) correlations of...
Fig. 4. (continued).Published as part of Xie, Qi & Wang, Changhong, 2022, Polyacetylenes in herbal m...
Fig. 3. Polyacetylenes from plants of the family of Asteraceae.Published as part of Xie, Qi & Wang, ...
Fig. 1. Polyacetylenes from plants of the family of Apiaceae.Published as part of Xie, Qi & Wang, Ch...
Fig. 2. Polyacetylenes from plants of the family of Araliaceae.Published as part of Xie, Qi & Wang, ...
Xie, Qi, Wang, Changhong (2022): Polyacetylenes in herbal medicine: A comprehensive review of its oc...
Fig. 5. Schematic representation of the possible mechanism of antitumor activity of polyacetylenes. ...
Fig. 6. Schematic representation of the possible mechanism of immunoregulation activity of polyacety...
Fig. 7. Schematic representation of the possible mechanism of neuroprotective and anti-depression ac...
Fig. 8. Schematic representation of the possible mechanism of anti-obesity and anti-hyperglycemia ac...
In terrestrial medicinal plants, polyacetylenoids have been isolated from almost 110 species belongi...
Fig. 1. Chemical structures of compounds 1–8 and 1a.Published as part of Li, Xin-Rui, Liu, Juan, Pen...
Lee, Seung Hyun, Kim, Jun Gu, Le, Thi Phuong Linh, Han, Jae Sang, Cho, Yong Beom, Lee, Mi Kyeong, Le...
Fig. 2. Key HMBC and COSY correlations of compounds 1–8.Published as part of Lee, Seung Hyun, Kim, J...
Fig. 7. Predictable biosynthesis pathway for some polyacetylenes and acetylenes from S. altissima.Pu...
Fig. 4. Key 1H–1H COSY (bold dark lines), HMBC (red arrows), and NOESY (blue arrows) correlations of...
Fig. 4. (continued).Published as part of Xie, Qi & Wang, Changhong, 2022, Polyacetylenes in herbal m...
Fig. 3. Polyacetylenes from plants of the family of Asteraceae.Published as part of Xie, Qi & Wang, ...
Fig. 1. Polyacetylenes from plants of the family of Apiaceae.Published as part of Xie, Qi & Wang, Ch...
Fig. 2. Polyacetylenes from plants of the family of Araliaceae.Published as part of Xie, Qi & Wang, ...
Xie, Qi, Wang, Changhong (2022): Polyacetylenes in herbal medicine: A comprehensive review of its oc...
Fig. 5. Schematic representation of the possible mechanism of antitumor activity of polyacetylenes. ...
Fig. 6. Schematic representation of the possible mechanism of immunoregulation activity of polyacety...
Fig. 7. Schematic representation of the possible mechanism of neuroprotective and anti-depression ac...
Fig. 8. Schematic representation of the possible mechanism of anti-obesity and anti-hyperglycemia ac...
In terrestrial medicinal plants, polyacetylenoids have been isolated from almost 110 species belongi...
Fig. 1. Chemical structures of compounds 1–8 and 1a.Published as part of Li, Xin-Rui, Liu, Juan, Pen...
Lee, Seung Hyun, Kim, Jun Gu, Le, Thi Phuong Linh, Han, Jae Sang, Cho, Yong Beom, Lee, Mi Kyeong, Le...
Fig. 2. Key HMBC and COSY correlations of compounds 1–8.Published as part of Lee, Seung Hyun, Kim, J...
Fig. 7. Predictable biosynthesis pathway for some polyacetylenes and acetylenes from S. altissima.Pu...
Fig. 4. Key 1H–1H COSY (bold dark lines), HMBC (red arrows), and NOESY (blue arrows) correlations of...