| Literature DB >> 25174934 |
Fan Yang, Erping Long, Juhua Wen, Lei Cao, Chengcheng Zhu, Huanxin Hu, Ying Ruan, Kamolnetr Okanurak, Huiling Hu, Xiaoxia Wei, Xiangyun Yang, Chaofan Wang, Limei Zhang, Xiaoying Wang, Pengyu Ji, Huanqin Zheng, Zhongdao Wu1, Zhiyue Lv.
Abstract
BACKGROUND: Schistosomiasis japonicum remains a considerable economic and public health concern in China, the Philippines and Indonesia. Currently available measures to control the unique intermediate host Oncomelania hupensis are frequently associated with severe side effects. Previous studies have demonstrated that linalool-rich extracts from various plants exhibited promising biological activities including cytotoxic, anti-microbial and anti-parasitic properties.Entities:
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Year: 2014 PMID: 25174934 PMCID: PMC4158126 DOI: 10.1186/1756-3305-7-407
Source DB: PubMed Journal: Parasit Vectors ISSN: 1756-3305 Impact factor: 3.876
Components in the leaf extract of with their molecular weight, molecular formula and relative content
| Peak no. | Component of volatile oil | Molecular weight | Molecular formula | Relative content (%) |
|---|---|---|---|---|
| 1 | Acetone | 58 | C3H6O | 0.359 |
| 2 | 2-pentene | 70 | C5H10 | 0.129 |
| 3 | 2,4-hexadiene | 82 | C6H10 | 0.038 |
| 4 | Cyclopentene,1-methy1- | 82 | C6H10 | 0.032 |
| 5 | 1-penten-3-ol,3-menthyl | 100 | C6H12O | 0.010 |
| 6 | 4-pentanedione | 100 | C5H8O2 | 0.045 |
| 7 | 3-penten-2-one,4-methyl | 98 | C6H10O | 0.152 |
| 8 | 3-hexen-1-ol | 100 | C6H12O | 0.089 |
| 9 | α-thujene | 136 | C10H16 | 0.214 |
| 10 | 4,4-dimethyl-2-pentynal | 100 | C7H10O | 0.015 |
| 11 | Camphene | 138 | C10H16 | 0.265 |
| 12 | 1,3,8-para-menthatriene | 134 | C10H14 | 0.099 |
| 13 | α-terpinene | 136 | C10H16 | 0.212 |
| 14 | p-cymene | 134 | C10H14 | 0.237 |
| 15 | dl-limonene | 136 | C10H16 | 0.281 |
| 16 | 1,8-cineole | 154 | C10H18O | 10.457 |
| 17 | Cis-ocimene | 136 | C10H16 | 0.318 |
| 18 | Trans-ocimene | 136 | C10H16 | 0.215 |
| 19 | γ-terpinene | 136 | C10H16 | 0.012 |
| 20 | Cis-linalooloxide | 170 | C10H18O2 | 0.115 |
| 21 | Trans-linalooloxide | 170 | C10H18O2 | 0.148 |
| 22 | Linalool | 154 | C10H18O | 43.732 |
| 23 | α-pinene | 136 | C10H16 | 1.111 |
| 24 | β-phellandrene | 136 | C10H16 | 2.231 |
| 25 | Alloocimene | 136 | C10H16 | 0.168 |
| 26 | 4-methyl-3-decen-2-ol | 170 | C11H22O | 0.162 |
| 27 | Camphora | 152 | C10H16O | 14.431 |
| 28 | Epoxylinalol | 170 | C10H18O2 | 0.802 |
| 29 | Borneol | 154 | C10H18O | 0.985 |
| 30 | linalool, Z-pyranic acid | 170 | C10H18O2 | 0.058 |
| 31 | 4-terpineol | 154 | C10H18O | 1.333 |
| 32 | 3-hexenyl butyrate | 170 | C10H18O2 | 0.183 |
| 33 | α-terpineol | 154 | C10H18O | 2.57 |
| 34 | Nerol | 154 | C10H18O | 0.474 |
| 35 | Trans-sabinene hydrate | 154 | C10H18O | 0.13 |
| 36 | Trans-geraniol | 154 | C10H18O | 0.77 |
| 36 | α-citral | 154 | C10H18O | 0.298 |
| 38 | Safrole | 162 | C10H10O2 | 7.079 |
| 39 | Trans-aryophyllene | 204 | C15H24 | 0.29 |
| 40 | α-umulene | 204 | C15H24 | 0.678 |
| 41 | Spathulenol | 220 | C15H24O | 1.814 |
| 42 | Cis-α-santalol | 220 | C15H24O | 0.597 |
| 43 | Nerolidol | 222 | C15H26O | 0.811 |
| 44 | Soeugenol | 164 | C10H12O2 | 0.579 |
Figure 1Molluscicidal activity of leaf extracts against in different time intervals and concentrations in the laboratory.
Figure 2Molluscicidal activity of linalool from leaf extracts against .
Molluscicidal activity of leaf extracts and linalool against after 96 h exposure (mg/L)
|
| Linalool | |
|---|---|---|
| LC50 (95% CL) | 0.63 (0.47-0.81) | 0.25 (0.19-0.32) |
| LC90 (95% CL) | 2.51 (1.81-4.18) | 1.00 (0.72-1.67) |
Figure 3Typical light micrograph of gills, salivary glands, stomach and hepatopancreas of treated for 1 h with 1.0 mg/L linalool (linalool-treated group) or without linalool (negative group).
Figure 4Representative Transmission electron micrograph of nuclei, rough endoplasmic reticulum and mitochondria in hepatopancreas of treated 1 h with 1.0 mg/L linalool (linalool-treated group) or without linalool (negative group).
Figure 5Numbers of liberated cercariae from exposed to different compounds were counts (A) and the time for the cercariae liberates were recorded (B) to evaluate the effect of linalool on cercariae shedding from the snails.
Figure 6Cercaricidal activity of linalool against .
Cercaricidal activity of 6 h exposure to linalool (mg/L)
| Linalool | |
|---|---|
| LC50 (95% CL) | 0.07 (0.06-0.08) |
| LC90 (95% CL) | 0.25 (0.19-0.35) |
Figure 7Morphological changes of cercariae with exposure to linalool were observed under the light microscope (upper row, ×5; middle row, ×40; lower row, ×100).
Figure 8Recovery of schistosomula from mouse skin challenged with untreated or linalool-pretreated cercariae.
Figure 9Morphological changes of tegument of cercariae exposed to linalool were observed under the fluorescence microscope (×40). A1 and B1 are phase-contrast fields of the fluorescent fields A2 and B2, respectively.
Treatment and protection
| Groups | Female | Male | Total | Reduction | Egg number/g liver | Reduction | Egg number/g liver | Egg number/g intestine | Reduction | Egg number/g intestine |
|---|---|---|---|---|---|---|---|---|---|---|
| Worms | Worms | Worms | (%) | (×105) | (%) | /female worm (×104) | (×105) | (%) | /female worm (×104) | |
| Control | 11.50 ± 1.93 | 11.50 ± 1.60 | 23.25 ± 3.24 | 4.73 ± 1.02 | 4.14 ± 0.81 | 5.71 ± 0.98 | 5.01 ± 0.82 | |||
| 0.1 mg/l linalool | 8.38 ± 1.92 | 8.5 ± 1.69 | 16.88 ± 3.48 | 27.42** | 3.54 ± 0.90 | 25.03* | 4.25 ± 0.62 | 4.37 ± 0.60 | 23.36** | 5.39 ± 0.97 |
| 1.0 mg/l linalool | 4.50 ± 1.60 | 4.63 ± 1.41 | 9.13 ± 3.00 | 60.75*** | 1.98 ± 0.66 | 58.12*** | 4.50 ± 0.91 | 2.00 ± 0.76 | 64.90*** | 4.47 ± 0.75 |
Burdens and reduction rates of worm, hepatic egg, and intestine egg were calculated as described in Section "Methods" *P < 0.05, **P < 0.01 and ***P < 0.001, calculated by Student’s t-test.
Figure 10Photomicrographs (×40) of liver pathology of the mice 45 days after challenge infection. A1 and A2: mice were challenged with linalool-pretreated cercariae; B1 and B2: mice were infected with untreated cercariae; C1 and C2: normal mice without challenge infection.