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<title><![CDATA[ -->Next Issue Table of Contents]]></title>
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<title><![CDATA[Epitope finding in 2019 novel coronavirus (2019-nCoV): The first world report]]></title>
<link><![CDATA[http://journals.hainmc.edu.cn/apjtm/article/abstract/apjtm20200301]]></link>
<description><![CDATA[]]></description>
<pubDate>2020/2/3 0:00:00</pubDate>
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<author><![CDATA[Beuy Joob and Viroj Wiwanitkit]]></author>
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<title><![CDATA[Imported cases of 2019-novel coronavirus (2019-nCoV) infections in Thailand: Mathematical modelling of the outbreak]]></title>
<link><![CDATA[http://journals.hainmc.edu.cn/apjtm/article/abstract/apjtm20200302]]></link>
<description><![CDATA[]]></description>
<pubDate>2020/2/3 0:00:00</pubDate>
<category><![CDATA[]]></category>
<author><![CDATA[Pathum Sookaromdee and Viroj Wiwanitkit]]></author>
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<title><![CDATA[Laser irradiation effects and its possible mechanisms of action on spermatozoafunctions in domestic animals]]></title>
<link><![CDATA[http://journals.hainmc.edu.cn/apjtm/article/abstract/20170301]]></link>
<description><![CDATA[This article presents a review pertains the laser irradiation effects and its possible mechanisms of action on spermatozoa functions in domestic animals. To improve artificial insemination, laser is sensitive and cost effective technique, when compared to other conventional methods. Laser may have both positive and negative effects on spermatozoa functions. Since the effects of light are mediated by reactive oxygen species, and the levels of these reactive oxygen species following irradiating spermatozoa with laser may be responsible for determining the effects of laser on sperm. Dose of laser may be regarded as of great significance and this dosage of laser may be responsible for determining its effects on spermatozoa. Optimum dosage of laser for improving seminal attributes may vary among various species and this need to be standardized in each of them. The beneficial effects include improving sperm livability, acrosomal integrity, hypo-osmotic swelling response, mitochondrial function and computer-aided sperm analysis parameters. The increase in cytochrome c oxidase activity, ATP levels and mitochondrial membrane potential, in laser irradiated cells may be responsible for enhanced sperm quality parameters. Improving fertility with laser irradiated spermatozoa has been reported in few species like boar and need to be elaborated in other species. In conclusion laser may be regarded as an easy, cheap and time saving technology for improving artificial insemination; in addition, laser may have various potential applications in the field of reproductive biotechnology as well as in livestock farms and veterinary polyclinics.]]></description>
<pubDate>2019/8/6 0:00:00</pubDate>
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<author><![CDATA[Lone SA, Mohanty TK, Kumaresan A and Bhakat M]]></author>
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<title><![CDATA[<i>Pouteria campechiana</i> leaf extract and its bioactive compound myricitrin are mosquitocidal against <i>Aedes aegypti</i> and <i>Culex quinquefasciatus</i>]]></title>
<link><![CDATA[http://journals.hainmc.edu.cn/apjtm/article/abstract/201907005]]></link>
<description><![CDATA[<b><b>Objective</b>:</b> To test the mosquitocidal potential of leaf extracts of <i>Pouteria campechiana</i> prepared with different solvents and elucidate the structure of an isolated mosquitocidal compound. <b><b>Methods</b>:</b> The leaf extracts of <i>Pouteria campechiana</i> prepared with three solvents (petroleum benzene, ethyl acetate and acetone) and potential bioactive fractions were tested against various stages of <i>Aedes aegypti</i> and <i>Culex quinquefasciatus</i> by using the WHO protocols, and the chemical profile and its functional groups were identified by GC-MS and Fourier transmission- infrared spectroscopy (FT-IR). The structure of bioactive compound was characterized by nuclear magnetic resonance (NMR) spectral technique. <b><b>Results</b>:</b> The preliminary phytochemical results revealed the presence of alkaloids, amino acids, flavonoids, quinones, saponins, steroids, tannins, and terpenoids in the acetone extract. A significant toxic potential was observed in the acetone extract against both <i>Aedes aegypti</i> and <i>Culex quinquefasciatus</i> mosquitoes. The acetone extract exhibits remarkable larvicidal (LC<sub>50</sub>: 12.232 μg/mL and LC<sub>90</sub>: 63.970 μg/mL), pupicidal (LC<sub>50</sub>: 18.949 μg/mL and LC<sub>90</sub>: 167.669 μg/mL) and adulticidal (LC<sub>50</sub>: 20.689 μg/mL and LC<sub>90</sub>: 72.881 μg/mL) effects against <i>Aedes aegypti</i>. Furthermore, the same extract was subjected to isolation of bioactive compound by GC- MS and FT-IR analysis. GC-MS results showed the presence of 5 major compounds, and octacosane (18.440%) was detected as the predominant compound. The FT-IR result of acetone extract demonstrated the presence of various functional groups like alkanes/alkynes, ester, aromatic and amides. The NMR spectrum results of isolated compound were well matched to glycoside linked flavonoids. Based on the chromatography and spectral techniques the isolate molecule was identified as myricitrin by FT-IR and nuclear magnetic resonance spectral data. <b><b>Conclusion</b>:</b> The isolated compound myricitrin possesses a significant toxic effect in all stages of <i>Aedes aegypti</i> and <i>Culex quinquefasciatus</i> mosquito’s with lowest LC<sub>50</sub> and LC <sub>90</sub> values.]]></description>
<pubDate>2019/8/7 0:00:00</pubDate>
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<author><![CDATA[Raju Sangeetha, Tamilselvan Pratheeba, Chinnasamy Ragavendran and Devarajan Natarajan]]></author>
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