<?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%">Dian Ardiana</style></author><author><style face="normal" font="default" size="100%">Lestari Dewi</style></author><author><style face="normal" font="default" size="100%">Renata Prameswari</style></author></authors></contributors><titles><title><style face="normal" font="default" size="100%">In Silico Study of Naringenin as Melanogenesis Inducer in Vitiligo</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%">Mangrove</style></keyword><keyword><style  face="normal" font="default" size="100%">Naringenin</style></keyword><keyword><style  face="normal" font="default" size="100%">Rhizophora mucronata</style></keyword><keyword><style  face="normal" font="default" size="100%">Vitiligo</style></keyword><keyword><style  face="normal" font="default" size="100%">WNT</style></keyword></keywords><dates><year><style  face="normal" font="default" size="100%">2022</style></year><pub-dates><date><style  face="normal" font="default" size="100%">December 2022</style></date></pub-dates></dates><volume><style face="normal" font="default" size="100%">14</style></volume><pages><style face="normal" font="default" size="100%">847-857</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;Vitiligo is a pigmentation disorder characterized by loss of skin color (depigmentation) due to melanocyte dysfunction and loss. Melanocytes produce melanin pigment through a melanogenesis process. Melanocyte survival and melanogenesis process are influenced by Microphthalmia Associated- Transcription Factor (MITF) and several proteins, including WNT, β-catenin, tyrosinase, Tyrosinase- Related Protein-1 (TRP1), and Tyrosinase-Related Protein-2 (TRP2). The current therapy for vitiligo is still unsatisfactory. Naringenin is one of Rhizophora mucronata compound, one type of mangrove plant often found in the eastern coastal area of Surabaya City. Objective: To investigate the naringenin’s potency in melanogenesis and to predict the pharmacokinetics or toxicity of naringenin by in silico study. &lt;strong&gt;Methods:&lt;/strong&gt; This is a computational study using a molecular docking method to observe the interaction of naringenin with WNT, β-catenin, MITF, tyrosinase, TRP-1, and TRP-2 proteins. Pharmacokinetic or toxicity prediction of naringenin using the pkCSM method. Psoralen was used as a control.&lt;strong&gt; Results&lt;/strong&gt;: Naringenin binds to all these proteins in the same region as psoralen, indicating that naringenin can stimulate melanogenesis. Naringenin has lower binding energy than psoralen on all proteins (except β-catenin), indicating that naringenin's interaction with these proteins is stronger than psoralen. Pharmacokinetic and toxicity predictions show that naringenin has good absorption or permeation, is not mutagenic, is not hepatotoxic, and does not cause skin sensitization. &lt;strong&gt;Conclusion: &lt;/strong&gt;This computational study concludes that naringenin has melanogenesis inducer potency and good pharmacokinetics.&lt;/p&gt;
</style></abstract><issue><style face="normal" font="default" size="100%">6</style></issue><work-type><style face="normal" font="default" size="100%">Research Article </style></work-type><section><style face="normal" font="default" size="100%">847</style></section><auth-address><style face="normal" font="default" size="100%">&lt;p class=&quot;rtejustify&quot;&gt;&lt;strong&gt;Dian Ardiana&lt;sup&gt;1,*&lt;/sup&gt;, Lestari Dewi&lt;sup&gt;2&lt;/sup&gt;, Renata Prameswari&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 Dermatology and Venereology, Faculty of Medicine, Hang Tuah University, Surabaya, INDONESIA.&lt;/p&gt;

&lt;p class=&quot;rtejustify&quot;&gt;&lt;sup&gt;2&lt;/sup&gt;Department of Pharmacology, Faculty of Medicine, Hang Tuah University, Surabaya, INDONESIA&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%">Muhaimin Muhaimin</style></author><author><style face="normal" font="default" size="100%">Madyawati Latief</style></author><author><style face="normal" font="default" size="100%">Riski Dwimalida Putri</style></author><author><style face="normal" font="default" size="100%">Anis Yohana Chaerunisaa</style></author><author><style face="normal" font="default" size="100%">Andreas Yoga Aditama</style></author><author><style face="normal" font="default" size="100%">Normalita Eka Pravitasari</style></author><author><style face="normal" font="default" size="100%">Josephine Elizabeth Siregar</style></author></authors></contributors><titles><title><style face="normal" font="default" size="100%">Antiplasmodial Activity of Methanolic Leaf Extract of Mangrove Plants against Plasmodium berghei</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%">Antimalaria</style></keyword><keyword><style  face="normal" font="default" size="100%">Ex vivo</style></keyword><keyword><style  face="normal" font="default" size="100%">Mangrove</style></keyword><keyword><style  face="normal" font="default" size="100%">Plasmodium berghei</style></keyword><keyword><style  face="normal" font="default" size="100%">Sonneratia alba</style></keyword></keywords><dates><year><style  face="normal" font="default" size="100%">2019</style></year><pub-dates><date><style  face="normal" font="default" size="100%">September 2019</style></date></pub-dates></dates><volume><style face="normal" font="default" size="100%">11</style></volume><pages><style face="normal" font="default" size="100%">929-935</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; A mosquito-borne disease infected by &lt;em&gt;Plasmodium&lt;/em&gt; is named as Malaria. Some drugs subjected to be active againts protozoans has developed resistance. It is very urgent to find alternative sources of new antimalarial agent. The main aim of this research was to study the activity of methanolic extracts of the leaf from mangrove plants on &lt;em&gt;Plasmodium berghei&lt;/em&gt; by using &lt;em&gt;ex vivo&lt;/em&gt; model. &lt;strong&gt;Method:&lt;/strong&gt; Screening of antiplasmodial activity from methanolic leaf extracts of &lt;em&gt;Sonneratia alba&lt;/em&gt;, &lt;em&gt;Acanthus ilicifolius&lt;/em&gt; and &lt;em&gt;Sonneratia caseolaris&lt;/em&gt; against &lt;em&gt;Plasmodium berghei &lt;/em&gt;was carried out in this study. Antiplasmodial study was subjected &lt;em&gt;ex vivo&lt;/em&gt; against &lt;em&gt;P. berghei &lt;/em&gt;strain ANKA infected into Balb-C mice. Calculation of the percentage of parasitemia after 24 h observed in the model and a decrease in parasitemia level and inhibitory propagation were defined as the results. Results: Potential antiplasmodial activity shown by a decrease in parasitemia level and high inhibitory percentage was revealed by &lt;em&gt;S. alba&lt;/em&gt; leaf methanolic extract at concentrations of 300, 100, 30, 10 and 3 μg/mL which provide the inhibition percentage of 95.5; 92,9; 78.7; 42.7 and 18.8%, respectively. Antiplasmodial activity can also be identified by the life cycle inhibition of &lt;em&gt;plasmodium&lt;/em&gt;. Methanolic leaf extract of &lt;em&gt;S. alba&lt;/em&gt; showed inhibition activity in the development of ring stage at minimum extract concentration of 300 μg/mL. At lower concentrations, trophozoites and schizones persisted with defects in morphological conditions. Moreover, Antiplasmodial activity of methanolic extracts of S. alba leaf was better than methanol extracts of &lt;em&gt;A. Ilicifolius&lt;/em&gt; and &lt;em&gt;S. caseolaris&lt;/em&gt; leaf. &lt;strong&gt;Conclusion: &lt;/strong&gt;The results of this study indicated that among the mangrove plants have been studied, &lt;em&gt;S. alba&lt;/em&gt; mangrove exhibited the highest antisplasmodial activity which moreover assumed as a potential source for natural antimalarial drug candidate.&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%">Original Article</style></work-type><section><style face="normal" font="default" size="100%">929</style></section><auth-address><style face="normal" font="default" size="100%">&lt;p class=&quot;rtejustify&quot;&gt;&lt;strong&gt;Muhaimin Muhaimin&lt;sup&gt;1,2,&lt;/sup&gt;*, Madyawati Latief&lt;sup&gt;2&lt;/sup&gt;, Riski Dwimalida Putri&lt;sup&gt;2&lt;/sup&gt;, Anis Yohana Chaerunisaa&lt;sup&gt;3&lt;/sup&gt;, Andreas Yoga Aditama&lt;sup&gt;4&lt;/sup&gt;, Normalita Eka Pravitasari&lt;sup&gt;4&lt;/sup&gt;, Josephine Elizabeth Siregar&lt;sup&gt;4&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 Chemistry Education, Faculty of Education, University of Jambi, Jambi, 36361 INDONESIA.&lt;/p&gt;

&lt;p class=&quot;rtejustify&quot;&gt;&lt;sup&gt;2&lt;/sup&gt;Department of Chemistry, Faculty of Science and Technology, University of Jambi, Jambi, 36361, INDONESIA.&lt;/p&gt;

&lt;p class=&quot;rtejustify&quot;&gt;&lt;sup&gt;3&lt;/sup&gt;Faculty of Pharmacy, Padjadjaran University, Jatinangor, 45363, INDONESIA.&lt;/p&gt;

&lt;p class=&quot;rtejustify&quot;&gt;&lt;sup&gt;4&lt;/sup&gt;Mitochondria and Infectious Diseases Laboratory, Eijkman Institute for Molecular Biology, Jakarta, 10430, INDONESIA.&lt;/p&gt;
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