<?xml version="1.0" encoding="UTF-8"?><xml><records><record><source-app name="Biblio" version="7.x">Drupal-Biblio</source-app><ref-type>17</ref-type><contributors><authors><author><style face="normal" font="default" size="100%">Enkhtuul Bayarsaikhan</style></author><author><style face="normal" font="default" size="100%">Turtushikh Damba</style></author><author><style face="normal" font="default" size="100%">Buyanjargal Erdenebat</style></author><author><style face="normal" font="default" size="100%">Norovnyam Ryenchinbyambaa</style></author><author><style face="normal" font="default" size="100%">Otgonsuren Daramzav</style></author><author><style face="normal" font="default" size="100%">Khuvitavilan Battulga</style></author><author><style face="normal" font="default" size="100%">Munkhzul Boldbaatar</style></author><author><style face="normal" font="default" size="100%">Myagmarsuren Badamtsetseg</style></author><author><style face="normal" font="default" size="100%">Enkhjargal Dorjval</style></author><author><style face="normal" font="default" size="100%">Davaadagva Damdinjav</style></author><author><style face="normal" font="default" size="100%">Otgonbaatar Urjin</style></author><author><style face="normal" font="default" size="100%">Maria Halabalaki</style></author><author><style face="normal" font="default" size="100%">Wirginia Kukula-Koch</style></author><author><style face="normal" font="default" size="100%">Daariimaa Khurelbat</style></author></authors></contributors><titles><title><style face="normal" font="default" size="100%">Medicinal Application of the Iceland Poppy (Papaver nudicaule L.) in Traditional Mongolian Medicine</style></title><secondary-title><style face="normal" font="default" size="100%">Pharmacognosy Journal</style></secondary-title></titles><keywords><keyword><style  face="normal" font="default" size="100%">Alkaloids</style></keyword><keyword><style  face="normal" font="default" size="100%">Medicinal plant</style></keyword><keyword><style  face="normal" font="default" size="100%">Nudicaulins</style></keyword><keyword><style  face="normal" font="default" size="100%">Papaver nudicaule L.</style></keyword><keyword><style  face="normal" font="default" size="100%">Protopine</style></keyword><keyword><style  face="normal" font="default" size="100%">Traditional Mongolian medicine</style></keyword></keywords><dates><year><style  face="normal" font="default" size="100%">2025</style></year><pub-dates><date><style  face="normal" font="default" size="100%">January 2025</style></date></pub-dates></dates><volume><style face="normal" font="default" size="100%">17</style></volume><pages><style face="normal" font="default" size="100%">71-76</style></pages><language><style face="normal" font="default" size="100%">eng</style></language><abstract><style face="normal" font="default" size="100%">&lt;p class=&quot;rtejustify&quot;&gt;In recent years, there has been a considerable focus on the utilization of natural medicinal substances, including plant-based medicines and formulations. While traditional medicine has been utilizing various medicinal plants to treat a wide range of diseases, there are still many medicinal plants and substances that have not been thoroughly studied at the scientific level. One such plant is the Iceland poppy (&lt;em&gt;Papaver nudicaule L.&lt;/em&gt;) from the Papaveraceae family. Globally, the Papaveraceae family comprises 44 genera and 760 species of which 32 species, representing 7 genera, are identified within Mongolia. The Iceland poppy (&lt;em&gt;Papaver nudicaule L.&lt;/em&gt;) is extensively distributed throughout Mongolia, with all parts of the plant, including its fruit and flowers. In addition, it has been traditionally employed in Mongolian medicine to treat a variety of ailments. However, systematic research on the practical applications and studies of the status of the local Iceland poppy in both modern and traditional Mongolian medicine remains poorly reported. Therefore, we aim to conduct a comprehensive and comparative study of the Iceland poppy (Papaver nudicaule L.) and its application in the Traditional Mongolian medicinal literature and internationally published studies. &lt;strong&gt;Materials and Methods:&lt;/strong&gt; In this study, data was collected from a comprehensive review of the international and Traditional Mongolian medicine literature to understand the medicinal application of the Iceland poppy. Additionally, current study results were analyzed to assess its practical applications and efficacy in modern medicinal contexts. &lt;strong&gt;Results:&lt;/strong&gt; &quot;In a variant of Mongolian medicinal prescriptions, the Iceland poppy (Papaver nudicaule L.) is combined with the herb “Govo jad-5” Mongolian traditional prescription for treating surgical wounds, torn blood vessels, and both old and new wounds. Furthermore, the book 'Methods and Prescriptions for Using Medicinal Plants in Traditional Mongolian Medicine reports that Iceland poppy is part of a mixture of four types of poppies used to treat conditions such as diarrhea, intestinal inflammation, and dysentery, by boiling and administering the concoction. A study by Otgonpurev Sukhbaatar et al., (2018) determined that the optimal conditions for callus and suspension biomass production of &lt;em&gt;Papaver nudicaule L.&lt;/em&gt; are 1 mg/L naphthalene acetic acid and 0.5 mg/L benzyl adenine in MS media. Additionally, Gerelt-Od Yadamsuren et al., reported that the alkaloids 8,14-dihydroamurin, 8,14-dihydroflavinantin, and flavinantin from Papaver nudicaule L. exhibit significant antiviral activity against human rhinovirus-14. &lt;strong&gt;Conclusion: &lt;/strong&gt;Iceland poppy (&lt;em&gt;Papaver nudicaule L.&lt;/em&gt;) has been used in traditional Mongolian medical practice for a long time. it has been historically widely used in Mongolian traditional medicine to treat wounds under the name of “wound healer”. As reported by the scientific literature, the primary uses of these plants include inhibiting acetylcholinesterase enzyme, anti-cancer effects, as well as antioxidant and anti-inflammatory properties. Furthermore, regarding its chemical composition, researchers have conducted studies that confirm the presence of alkaloids in this plant, specifically isoquinoline alkaloids. These compounds are known for their diverse biological activities and potential therapeutic effects, which may contribute to the plant's traditional medicinal uses. In summary, the Iceland poppy (&lt;em&gt;Papaver nudicaule L.&lt;/em&gt;) has been utilized in traditional medicine for treating a variety of illnesses; however, it suggests that more comprehensive research is necessary to scientifically substantiate these applications.&lt;/p&gt;
</style></abstract><issue><style face="normal" font="default" size="100%">1</style></issue><work-type><style face="normal" font="default" size="100%">Research Article</style></work-type><section><style face="normal" font="default" size="100%">71</style></section><auth-address><style face="normal" font="default" size="100%">&lt;p class=&quot;rtejustify&quot;&gt;&lt;strong&gt;Enkhtuul Bayarsaikhan&lt;sup&gt;1&lt;/sup&gt;, Turtushikh Damba&lt;sup&gt;1&lt;/sup&gt;, Buyanjargal Erdenebat&lt;sup&gt;1&lt;/sup&gt;, Norovnyam Ryenchinbyambaa&lt;sup&gt;1&lt;/sup&gt;, Otgonsuren Daramzav&lt;sup&gt;2&lt;/sup&gt;, Khuvitavilan Battulga&lt;sup&gt;1&lt;/sup&gt;, Munkhzul Boldbaatar&lt;sup&gt;1&lt;/sup&gt;, Myagmarsuren Badamtsetseg&lt;sup&gt;3&lt;/sup&gt;, Enkhjargal Dorjval&lt;sup&gt;1&lt;/sup&gt;, Davaadagva Damdinjav&lt;sup&gt;2&lt;/sup&gt;, Otgonbaatar Urjin&lt;sup&gt;1&lt;/sup&gt;, Maria Halabalaki&lt;sup&gt;5&lt;/sup&gt;, Wirginia Kukula-Koch&lt;sup&gt;4&lt;/sup&gt;, Daariimaa Khurelbat&lt;sup&gt;1,*&lt;/sup&gt;&lt;/strong&gt;&lt;/p&gt;

&lt;p class=&quot;rtejustify&quot;&gt;&lt;sup&gt;1&lt;/sup&gt;Department of Pharmaceutical Chemistry and Pharmacognosy, School of Pharmacy, Mongolian National University of Medical Sciences, Ulaanbaatar, MONGOLIA.&lt;/p&gt;

&lt;p class=&quot;rtejustify&quot;&gt;&lt;sup&gt;2&lt;/sup&gt;Department of Pharmaceutical Technology, School of Pharmacy, Mongolian National University of Medical Sciences, Ulaanbaatar, MONGOLIA.&lt;/p&gt;

&lt;p class=&quot;rtejustify&quot;&gt;&lt;sup&gt;3&lt;/sup&gt;Department of Clinical pharmacy and management, School of Pharmacy, Mongolian National University of Medical Sciences, Ulaanbaatar, MONGOLIA.&lt;/p&gt;

&lt;p class=&quot;rtejustify&quot;&gt;&lt;sup&gt;4&lt;/sup&gt;Department of Pharmacognosy with Medicinal Plants Garden, Medical University of Lublin, POLAND. 5Department of Pharmacy, National and Kapodistrian University of Athens, Greece&lt;/p&gt;
</style></auth-address></record><record><source-app name="Biblio" version="7.x">Drupal-Biblio</source-app><ref-type>17</ref-type><contributors><authors><author><style face="normal" font="default" size="100%">Bilguun Enkhbat</style></author><author><style face="normal" font="default" size="100%">Buyankhishig Dorjsuren</style></author><author><style face="normal" font="default" size="100%">Tserennadmid Erdenebaatar</style></author><author><style face="normal" font="default" size="100%">Myagmarsuren Badamtsetseg</style></author><author><style face="normal" font="default" size="100%">Zolbayar Baasanjav</style></author><author><style face="normal" font="default" size="100%">Enkhtuul Bayarsaikhan</style></author><author><style face="normal" font="default" size="100%">Shinezaya Dashbaljir</style></author><author><style face="normal" font="default" size="100%">Khatanbold Otgonbayar</style></author><author><style face="normal" font="default" size="100%">Buyanjargal Erdenebat</style></author><author><style face="normal" font="default" size="100%">Jambaninj Dambiinyam</style></author><author><style face="normal" font="default" size="100%">Otgonsuren Daramzav</style></author></authors></contributors><titles><title><style face="normal" font="default" size="100%">Technological Study on The Synthesis of Silver Nanoparticles Using Plant Extracts Via Biosynthesis Methods</style></title><secondary-title><style face="normal" font="default" size="100%">Pharmacognosy Journal</style></secondary-title></titles><keywords><keyword><style  face="normal" font="default" size="100%">Antimicrobial</style></keyword><keyword><style  face="normal" font="default" size="100%">Bio reducing</style></keyword><keyword><style  face="normal" font="default" size="100%">Eco-friendly</style></keyword><keyword><style  face="normal" font="default" size="100%">Mongolian plants</style></keyword></keywords><dates><year><style  face="normal" font="default" size="100%">2024</style></year><pub-dates><date><style  face="normal" font="default" size="100%">October 2024</style></date></pub-dates></dates><volume><style face="normal" font="default" size="100%">16</style></volume><pages><style face="normal" font="default" size="100%">1124-1130</style></pages><language><style face="normal" font="default" size="100%">eng</style></language><abstract><style face="normal" font="default" size="100%">&lt;p class=&quot;rtejustify&quot;&gt;&lt;strong&gt;Introduction: &lt;/strong&gt;Silver nanoparticles are better than other metal nanoparticles in terms of antimicrobial activity and stability. Recently, the biosynthesis method has been widely used, known for being ecofriendly and having lower toxicity compared to other methods of obtaining metal nanoparticles. This method is characterized by the use of active pharmaceutical ingredients contained in medicinal plants as stabilizers or bio reducers to produce silver nanoparticles. &lt;strong&gt;Methods:&lt;/strong&gt; In this study, we synthesized silver nanoparticles using extracts from the upper parts of&lt;em&gt; Cacalia hastata&lt;/em&gt; L.,&lt;em&gt; Thymus gobicus &lt;/em&gt;Czern., and &lt;em&gt;Glycyrrhiza uralensis &lt;/em&gt;Fisch., which were collected from various provinces from Mongolia. These medicinal plants are used as bio reducing agents. We determined the most sensitive light absorption of each sample with purified silver nanoparticles using a UV-M51 ultraviolet spectrophotometer. Sizes and distributions were analyzed through Nanophox Particle Size Analysis, while morphological structure was examined using energy dispersive X-ray spectroscopy (EDX). The formations of nanoparticles were determined with instruments such as X-Ray Diffraction (XRD). &lt;strong&gt;Results: &lt;/strong&gt;The appropriate formation times for nanoparticles were 24 minutes with &lt;em&gt;Cacalia hastata&lt;/em&gt; L. extract and 16 minutes with &lt;em&gt;Thymus gobicus &lt;/em&gt;Czern. extract. XRD analysis revealed characteristic peaks at 38.15°, 44.3°, and 64.55°, indicating the formation of a crystalline structure and confirming the presence of silver nanoparticles. Conclusion: Furthermore, these nanoparticles exhibited antibacterial activity against both &lt;em&gt;S. aureus&lt;/em&gt; and &lt;em&gt;E. coli.&lt;/em&gt;&lt;/p&gt;
</style></abstract><issue><style face="normal" font="default" size="100%">5</style></issue><work-type><style face="normal" font="default" size="100%">Research Article</style></work-type><auth-address><style face="normal" font="default" size="100%">&lt;p class=&quot;rtejustify&quot;&gt;&lt;strong&gt;Bilguun Enkhbat&lt;sup&gt;1,2&lt;/sup&gt;, Buyankhishig Dorjsuren&lt;sup&gt;1&lt;/sup&gt;, Tserennadmid Erdenebaatar&lt;sup&gt;1&lt;/sup&gt;, Myagmarsuren Badamtsetseg&lt;sup&gt;1&lt;/sup&gt;, Zolbayar Baasanjav&lt;sup&gt;3&lt;/sup&gt;, Enkhtuul Bayarsaikhan&lt;sup&gt;1&lt;/sup&gt;, Shinezaya Dashbaljir&lt;sup&gt;1&lt;/sup&gt;, Khatanbold Otgonbayar&lt;sup&gt;1&lt;/sup&gt;, Buyanjargal Erdenebat&lt;sup&gt;1&lt;/sup&gt;, Jambaninj Dambiinyam&lt;sup&gt;1&lt;/sup&gt;, Otgonsuren Daramzav&lt;sup&gt;1&lt;/sup&gt;&lt;/strong&gt;&lt;/p&gt;

&lt;p class=&quot;rtejustify&quot;&gt;&lt;sup&gt;1&lt;/sup&gt;School of Pharmacy, Mongolian National University of Medical Sciences, Ulaanbaatar, MONGOLIA.&lt;/p&gt;

&lt;p class=&quot;rtejustify&quot;&gt;&lt;sup&gt;2&lt;/sup&gt;Department of Pharmacy, Intermed Hospital, Ulaanbaatar, MONGOLIA.&lt;/p&gt;

&lt;p class=&quot;rtejustify&quot;&gt;&lt;sup&gt;3&lt;/sup&gt;School of Medicine, Mongolian National University of Medical Sciences, Ulaanbaatar, MONGOLIA.&lt;/p&gt;
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