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82 results for “Dandelion”
FIGURE 4 in Taraxacum mirabile, an enigmatic sexual halophilous endemic dandelion, represents a new section
FIGURE 4. Taraxacum mirabile. Somatic chromosomes (2n=16); each chromosome outlined (ISTE 116904).
FIGURE 21. T in A revision of Taraxacum sect. Atrata, a dandelion group centred in the Middle Asia, and the problem of Taraxacum brevirostre
FIGURE 21. T. atrochlorinum (PRA, no. det. 28199). Scale bar equals 3 cm.
FIGURE 14 in A revision of Taraxacum sect. Atrata, a dandelion group centred in the Middle Asia, and the problem of Taraxacum brevirostre
FIGURE 14. The distribution range of T. goloskokovii.
FIGURE 7 in A revision of Taraxacum sect. Atrata, a dandelion group centred in the Middle Asia, and the problem of Taraxacum brevirostre
FIGURE 7. The distribution range of T. pseudolilacinum.
FIGURE 2 in A revision of Taraxacum sect. Atrata, a dandelion group centred in the Middle Asia, and the problem of Taraxacum brevirostre
FIGURE 2. Protologue of T. glabrum var. lilacinum Krasn.
FIGURE 1 in A revision of Taraxacum sect. Atrata, a dandelion group centred in the Middle Asia, and the problem of Taraxacum brevirostre
FIGURE 1. Distribution range of Taraxacum sect. Atrata.
FIGURE 3 in A revision of Taraxacum sect. Atrata, a dandelion group centred in the Middle Asia, and the problem of Taraxacum brevirostre
FIGURE 3. Taraxacum sublilacinum from Dzhusaly-Kezen Pass. Note the colour variants.
FIGURE 15 in Taraxacum sect. Orientalia (Compositae-Crepidinae) and the West Himalayan dandelions: A new interpretation
FIGURE 15. Distribution of Taraxacum tricolor.
FIGURE 13 in Taraxacum sect. Orientalia (Compositae-Crepidinae) and the West Himalayan dandelions: A new interpretation
FIGURE 13. Distribution of Taraxacum melleum.
FIGURE 14 in Taraxacum sect. Orientalia (Compositae-Crepidinae) and the West Himalayan dandelions: A new interpretation
FIGURE 14. Taraxacum tricolor (PRA, no. det. 28142/5). Scale bar = 3 cm.
FIGURE 12 in Taraxacum sect. Orientalia (Compositae-Crepidinae) and the West Himalayan dandelions: A new interpretation
FIGURE 12. Distribution of Taraxacum baltistanicum.
FIGURE 6 in Taraxacum sect. Orientalia (Compositae-Crepidinae) and the West Himalayan dandelions: A new interpretation
FIGURE 6. Distribution of Taraxacum stenotegulatum.
FIGURE 11 in Taraxacum sect. Orientalia (Compositae-Crepidinae) and the West Himalayan dandelions: A new interpretation
FIGURE 11. Distribution of Taraxacum amblylepidocarpum.
FIGURE 8 in Taraxacum sect. Orientalia (Compositae-Crepidinae) and the West Himalayan dandelions: A new interpretation
FIGURE 8. Distribution of Taraxacum persquamulosum.
FIGURE 10 in Taraxacum sect. Orientalia (Compositae-Crepidinae) and the West Himalayan dandelions: A new interpretation
FIGURE 10. Distribution of Taraxacum tenuiculum.
FIGURE 9 in Taraxacum sect. Orientalia (Compositae-Crepidinae) and the West Himalayan dandelions: A new interpretation
FIGURE 9. Taraxacum tenuiculum (PRA, no. det. 28127). Scale bar = 3 cm.
Dandelion root extracts abolish MAPK pathways to ameliorate experimental mouse ulcerative colitis
<p>Abstract<br> Background. Dextran sodium sulfate (DSS)-triggered ulcerative colitis (UC) model in animals provides<br> a valuable platform to preclinically evaluate the outcome of drug candidates for UC. Dandelion root extracts<br> (DRE) have a particular therapeutic effect on UC. However, the protective mechanism of DRE against UC<br> remains unknown.<br> Objectives. To discover the targeting pathway involved in DRE-induced protection against UC.<br> Materials and methods. The UC model was developed in C57BL/6 mice by oral administration of DSS.<br> Following DSS exposure, sulfasalazine (SASP), low dose of DRE (DRE-L), moderate dose of DRE (DRE-M), high<br> dose of DRE (DRE-H), and DRE-H plus mitogen-activated protein kinases (MAPK) agonist (DRE-H+MA) were<br> administered to the mice. Colon Mucosal Damage Index (CMDI) and histopathological analysis were used<br> to evaluate the colonic mucosal damage. The cytokine levels were detected using commercial enzyme-linked<br> immunosorbent assay (ELISA) kits. The MAPK pathway activation was determined with western blotting.<br> Results. We found that DRE-H attenuated DSS-triggered colonic mucosal damage. The DSS-induced inflammatory responses and oxidative stress in the bloodstream and colon tissues were dramatically inhibited<br> by DRE-H administration. Also, this plant impaired DSS-provoked phosphorylation levels of extracellular<br> signal-regulated kinases (ERK), c-Jun N-terminal kinases (JNK), p38 mitogen-activated protein kinases<br> (p38), p65, and IκB. More importantly, MAPK agonist, BIM-23A760, removed the protective effect of DRE-H<br> on the bloodstream and colon tissues.<br> Conclusions. The DRE-H is capable of relieving DSS-induced UC, and its mechanism links to the MAPK<br> pathways.<br> </p>
Anti-obesity Effects of Dandelion (Taraxacum Officinale L.)
ClinicalTrials.gov study NCT06625736. IPD Sharing: UNDECIDED. Countries: 1. Publications: 0.
Dandelion Juice in the Treatment of Dyshidrotic Hand Eczema
ClinicalTrials.gov study NCT00442091. IPD Sharing: NO. Countries: 1. Publications: 0.
FIGURE 9 in Taraxacum mirabile, an enigmatic sexual halophilous endemic dandelion, represents a new section
FIGURE 9. Fine sculpture of achene surface of selected Taraxacum taxa other than T. mirabile, for comparison. A, Taraxacum (Atrata) chionomelas (PRA, cult. JŠ 3835). B, Taraxacum (Cucullata) cucullatum (PRA, cult. JŠ 6575). C, Taraxacum (Borysthenica) bachczisaraicum (PRA, cult. 318). D, Taraxacum (Piesis) besarabicum (PRA, cult. 308). Scale bars: A, 50 μm. B, 20 μm. C, 100 μm. D, 50 μm.
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