| Literature DB >> 23409064 |
Dan Yan1, Jiao Y Luo, Yu M Han, Cheng Peng, Xiao P Dong, Shi L Chen, Li G Sun, Xiao H Xiao.
Abstract
BACKGROUND: Animal horns (AHs) have been applied to traditional medicine for more than thousands of years, of which clinical effects have been confirmed by the history. But now parts of AHs have been listed in the items of wildlife conservation, which limits the use for traditional medicine. The contradiction between the development of traditional medicine and the protection of wild resources has already become the common concern of zoophilists, traditional medical professionals, economists, sociologists. We believe that to strengthen the identification for threatened animals, to prevent the circulation of them, and to seek fertile animals of corresponding bioactivities as substitutes are effective strategies to solve this problem. METHODOLOGY/PRINCIPALEntities:
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Year: 2013 PMID: 23409064 PMCID: PMC3568084 DOI: 10.1371/journal.pone.0055854
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Figure 1The strategy for threatened animals VS fertile animals used in traditional medicine.
Figure 2Analysis of the cytochrome c oxidase I (COI) DNA sequences.
(A) Neighbor-joining tree with bootstrap analysis based on the kimura-2-parameter distances obtained for COI DNA sequences from 47 individual animal horns (Table 1); (B) Relative distribution of inter-specific and intra-specific variation.
The studied species, including scientific names, common names, family, sampling locations, and status in CITES legislation.
| Scientific names | Common names | Family | Sampling locations | CITES legislation |
|
| Red Deer | Cervidae | Jilin China | Appendix I |
|
| Sika Deer | Cervidae | Jilin China | NL |
|
| Père David's Deer | Cervidae | Beijing China | NL |
|
| Saiga Antelope | Bovidae | Gansu China | Appendix II |
|
| Mongolian Gazelle | Bovidae | Jilin China | NL |
|
| Domestic Goat | Bovidae | Sichuan China | NL |
|
| Domestic Sheep | Bovidae | Sichuan China | NL |
|
| Domestic Yak | Bovidae | Tibet China | NL |
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| Domestic Cattle | Bovidae | Hena China | NL |
|
| Asian Water Buffalo | Bovidae | Shandong China | NL |
: Referenced in Chinese Pharmacopeias or Japanese Pharmacopeias.
#, △, ★: The corresponding powder samples of animal horns are confusing in the market.
NL: not listed.
Figure 3HFP-t curves in the presence of different animal horn products.
The concentrations of the animal horn samples all were 25 mg/ml. 1- Red Deer. 2- Sika Deer. 3- Père David's Deer. 4- blank. 5- Asian Water Buffalo. 6- Domestic Cattle. 7- Domestic Yak. 8- Domestic Goat. 9- Domestic Sheep. 10- Mongolian Gazelle. 11- Saiga Antelope.
Figure 4HFP-t curve similarities in the presence of different animal horn products compared with control.
1- Red Deer. 2- Sika Deer. 3- Père David's Deer. 4- Asian Water Buffalo. 5- Domestic Cattle. 6- Domestic Yak. 7- Domestic Goat. 8- Domestic Sheep. 9- Mongolian Gazelle. 10- Saiga Antelope.
Quantitative thermokinetic parameters for Escherichia coli growth at 37 ○C in the presence of different animal horn samples (25 mg/ml, n = 3).
| Samples |
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| blank | 0.0137 | 0.762 | 246.8 | 4.56 | 0.00112 | 1.498 | 908.7 | 48.75 |
| Red Deer | 0.0152 | 0.825 | 212.1 | 5.95 | 0.00365 | 1.921 | 745.9 | 55.65 |
| Sika Deer | 0.0161 | 0.821 | 209.2 | 6.08 | 0.00376 | 1.975 | 732.1 | 58.02 |
| Père David's Deer | 0.0159 | 0.833 | 222.9 | 6.23 | 0.00275 | 1.723 | 803.1 | 53.87 |
| Saiga Antelope | 0.0082 | 0.443 | 304.5 | 7.04 | 0.00190 | 1.225 | 1566.2 | 41.35 |
| Mongolian Gazelle | 0.0092 | 0.514 | 278.6 | 6.78 | 0.00142 | 1.274 | 1504.3 | 44.25 |
| Domestic Goat | 0.0112 | 0.671 | 235.1 | 7.12 | 0.00189 | 1.285 | 1322.3 | 46.92 |
| Domestic Sheep | 0.0105 | 0.492 | 249.2 | 6.62 | 0.00122 | 1.286 | 1369.4 | 46.15 |
| Domestic Yak | 0.0119 | 0.729 | 223.5 | 6.87 | 0.00085 | 1.298 | 1290.5 | 47.95 |
| Domestic Cattle | 0.0161 | 0.846 | 225.7 | 6.18 | 0.00191 | 1.522 | 959.4 | 50.23 |
| Asian Water Buffalo | 0.0152 | 0.771 | 281.7 | 6.88 | 0.00095 | 1.374 | 972.5 | 49.84 |