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1

Liviya Gaikwad and Aparna Saraf. "Integrated Morphological and Phytochemical Analysis of Mesua ferrea L. and Calophyllum inophyllum L.: Implications for Authenticity in Herbal Practices." International Journal of Scientific Research in Science, Engineering and Technology 12, no. 3 (2025): 1341–55. https://doi.org/10.32628/ijsrset2512179.

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This study evaluates the suitability of Calophyllum inophyllum L. buds as a substitute for Mesua ferrea L. stamens (Nagkesar), a valued botanical in Indian traditional medicine. Economic pressures and regional availability often lead to unverified substitutions, raising concerns about therapeutic consistency. To address this, both samples were subjected to comprehensive analyses using Field Emission Gun Scanning Electron Microscopy (FEGSEM), Fourier Transform Infrared Spectroscopy (FTIR), Gas Chromatography–Mass Spectrometry (GC–MS), High-Performance Liquid Chromatography (HPLC), and High-Reso
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2

Chukaew, Arnon, Saowanit Saithong, Sasitorn Chusri, et al. "Cytotoxic xanthones from the roots of Mesua ferrea L." Phytochemistry 157 (January 31, 2019): 64–70. https://doi.org/10.1016/j.phytochem.2018.10.008.

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Chukaew, Arnon, Saithong, Saowanit, Chusri, Sasitorn, Limsuwan, Surasak, Watanapokasin, Ramida, Voravuthikunchai, Supayang P., Chakthong, Suda (2019): Cytotoxic xanthones from the roots of Mesua ferrea L. Phytochemistry 157: 64-70, DOI: 10.1016/j.phytochem.2018.10.008, URL: http://dx.doi.org/10.1016/j.phytochem.2018.10.008
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3

Gupta, Amit, and Sushama R. Chaphalkar. "Immunopharmacological activity of flavonoids isolated from Mesua ferrea, Ficus benghalensis and Jasminum auriculatum." Current Life Sciences 2, no. 2 (2016): 49–54. https://doi.org/10.5281/zenodo.51791.

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The objective of our present study is to investigate the immunosuppressive activity of variable doses of crude flavonoids (6.25-100 mg/ml; 50 &micro;l) extracted from the leaves of <em>Mesua ferrea, Ficus benghalensis</em> and <em>Jasminum auriculatum</em> on human whole blood using specific antigen (i.e. hepatitis B vaccine containing surface antigen, 20 &micro;g/ml; 10 &micro;l) is to estimate its blood counts, CD14 monocyte marker and observed its cytotoxicity. The results showed that the crude flavonoids extracted from these three medicinal plants showed maximum inhibition of blood counts,
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4

Nakyai, Wongnapa, Wachirachai Pabuprapap, Wichuda Sroimee, Vachiraporn Ajavakom, Boon-ek Yingyongnarongkul, and Apichart Suksamrarn. "Anti-Acne Vulgaris Potential of the Ethanolic Extract of Mesua ferrea L. Flowers." Cosmetics 8, no. 4 (2021): 107. http://dx.doi.org/10.3390/cosmetics8040107.

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Acne vulgaris is a common chronic inflammatory skin disease. In the present study, we reported the anti-acne vulgaris effect of the Mesua ferrea (M. ferrea) flower extract. The extract was evaluated for three anti-acne-causing bacteria properties including Cutibacterium acnes (C. acnes), Staphylococcus epidermidis (S. epidermidis) and Staphylococcus aureus (S. aureus). The results indicated that the M. ferrea flower extract could be considered as the bactericidal agent against S. epidermidis and S. aureus with MIC values of 0.78 and 6.25 mg mL−1 and MBC values of 1.56 and 12.50 mg mL−1 and the
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5

Konyanee, Atthaphon, Prapaporn Chaniad, Arisara Phuwajaroanpong, et al. "Exploring the potential antimalarial properties, safety profile, and phytochemical composition of Mesua ferrea Linn." PLOS ONE 19, no. 12 (2024): e0312047. https://doi.org/10.1371/journal.pone.0312047.

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The increased resistance of Plasmodium falciparum to artemisinin and its partner drugs poses a serious challenge to global malaria control and elimination programs. This study aimed to investigate the therapeutic potential of Mesua ferrea Linn., a medicinal plant, as a source for novel antimalarial compounds. In this study, we conducted in vitro assays to evaluate the antimalarial activity and cytotoxicity of crude extracts derived from M. ferrea L. leaves and branches. Subsequently, the most promising extracts were subjected to assessments of their antimalarial efficacy and acute oral toxicit
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6

Chukaew, Arnon, Saowanit Saithong, Sasitorn Chusri, et al. "Cytotoxic xanthones from the roots of Mesua ferrea L." Phytochemistry 157 (January 2019): 64–70. http://dx.doi.org/10.1016/j.phytochem.2018.10.008.

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7

Rahayu, Enni Suwarsi, Erni Suharini, Siti Fathonah, and Aisirotul Maisah. "Traditional Knowledge of Banyumas Community about Mesua ferrea as the Identity Plant." Biosaintifika: Journal of Biology & Biology Education 12, no. 1 (2020): 97–103. http://dx.doi.org/10.15294/biosaintifika.v12i1.23834.

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The population of Mesua ferrea L. in Banyumas Regency, Central of Java Province is very low. There are some factors affecting the quantity of plant population, particularly traditional knowledge of local community about the plant. The aim of this study was to describe the knowledge of Banyumas community about the existence, economic value, usefulness, and propagation technique of M. ferrea. The study was done by field survey on a total of 146 residents from 10 districts which were determined by proportionally stratified random sampling. Data obtained from questionnaires and interviews were ana
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8

Jeon, Kyong-Mi, and Yong-Hwa Choi. "Antifungal Activity Substances from Mesua ferrea L. Fruit Against Colletotrichum fructicola." Korean Journal of Pesticide Science 27, no. 3 (2023): 202–9. http://dx.doi.org/10.7585/kjps.2023.27.3.202.

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9

Dutta, Suvangshu, Niranjan Karak, and Tirthankar Jana. "Evaluation of Mesua ferrea L. seed oil modified polyurethane paints." Progress in Organic Coatings 65, no. 1 (2009): 131–35. http://dx.doi.org/10.1016/j.porgcoat.2008.10.008.

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10

Kuerban, Mubareke, Fangyuan Ma, Lianlian Shan, Yali Wang, and Gang Zhou. "Comparative discriminant analysis of Mesua ferrea L. and its adulterants." Heliyon 10, no. 7 (2024): e28459. http://dx.doi.org/10.1016/j.heliyon.2024.e28459.

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11

Liviya, Gaikwad* Aparna Saraf. "Rapid Screening of Adulterants of Mesua ferrea L. by FTIR and GC-MS Techniques." International Journal of Pharmaceutical Sciences 3, no. 5 (2025): 1159–69. https://doi.org/10.5281/zenodo.15357052.

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Nagkesar, derived from the stamens of <em>Mesua ferrea</em> L., is frequently substituted with unripe fruits of <em>Cinnamomum tamala </em>T. Nees&nbsp;&amp; Eberm. and fruits of <em>Dillenia pentagyna</em> Roxb. both knowingly and unknowingly in the Indian markets. The goal is to establish a reliable method for distinguishing between the genuine plant and its substitutes by leveraging the unique spectral characteristics revealed by FTIR and GC-MS analyses. Powdered plant samples underwent Fourier transform infrared (FTIR) spectrum analysis using the Bruker, Germany Vertex 80 FTIR System with
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12

Thomas, Jacob, R. Rajvikraman, and Abdul Hussain. "Vegetative propagation studies in Mesua ferrea L., an important tree of medicinal and decorative use." Journal of Non-Timber Forest Products 8, no. 3/4 (2001): 204–6. http://dx.doi.org/10.54207/bsmps2000-2001-2b0jo7.

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Rooting trials conducted with stem cuttings of Mesua ferrea L., an important medicinal tree gave encouraging results after pre-treatment with auxins such as IAA, IBA and NAA. Among these IBA 100 ppm was proved to be the best, comparatively. Plants raised vegetatively showed remarkably better initial growth than the ones raised from seeds.
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13

Lestari, Dewi Ayu. "Storage Techniques of Recalcitrant Seeds: Mesua ferrea L. and Swinglea glutinosa (Blanco) Merr." Jurnal Perbenihan Tanaman Hutan 7, no. 1 (2019): 31–44. http://dx.doi.org/10.20886/bptpth.2019.7.1.31-44.

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14

Susikumar, Sundharamoorthy, Sundharamoorthy Gokulakannan, Thatipelli Sujith, et al. "Histomorphology and HPTLC key identifying features of Sirunagapoo/Nagakesar (Mesua ferrea L. flower)." Journal of Research in Siddha Medicine 8, no. 1 (2025): 14–24. https://doi.org/10.4103/jrsm.jrsm_5_25.

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Abstract Background: The Sirunagapoo/Nagakesar (Mesua ferrea L.) is a popular and well-known ASU medicinal plant part derived from the stamen of flowers. Different herbal markets of the country and online suppliers trade Mammea suriga (Buch.-Ham. ex Roxb.) Kosterm. and Calophyllum inophyllum L. flowers in the name of Sirunagapoo/Nagakesar. In Tamil Nadu, a mix of immature fruits of different Cinnamomum species is traded under the name of Sirunagapoo. As per Siddha Formulary of India, Cinnamomum wightii Meissn. is of official source of Sirunagapoo; in Chennai markets, M. ferrea is also sold und
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15

Chutia, Rahul Singh, Rupam Kataki, and Thallada Bhaskar. "Thermogravimetric and decomposition kinetic studies of Mesua ferrea L. deoiled cake." Bioresource Technology 139 (July 2013): 66–72. http://dx.doi.org/10.1016/j.biortech.2013.03.191.

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16

Laksmi Dewi and Made Agus Gelgel Wirasuta. "Studi Literatur Aktivitas Antiinflamasi sebagai Penyembuh Luka Tumbuhan Obat Terpilih Berdasarkan Ramuan Usada Tiwas Panggung." Prosiding Workshop dan Seminar Nasional Farmasi 1 (January 16, 2023): 36–49. http://dx.doi.org/10.24843/wsnf.2022.v01.i01.p04.

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Usada Tiwas Panggung merupakan usada yang akhir pengobatannya diberikan mantra sepuluh aksara suci. Dalam Usada Tiwas Panggung, pengobatan luka borok dapat diobati dengan menggunakan tanaman Mesua ferrea, Areca catechu, Terminalia bellirica, dan Cocos nucifera. Riview artikel ini bertujuan untuk mengetahui efek antiinflamasi dan penyembuh luka berdasarkan efek empiris mengobati luka borok pada Usada Tiwas Panggung dengan melakukan studi literatur berbagai hasil penelitian yang telah di publikasikan secara online menggunakan search engine seperti Google Schoolar, Science Direct, Elsevier, dan P
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17

Rasol, Nurulfazlina Edayah, Humera Naz, Khalijah Awang, Mohamad Jemain Mohamad Ridhwan, Yap Ken Choy, and Nor Hadiani Ismail. "Isomeric Polycyclic Polyprenylated Acylphloroglucinols from the Bark of Mesua ferrea (Clusiaceae)." Natural Product Communications 12, no. 8 (2017): 1934578X1701200. http://dx.doi.org/10.1177/1934578x1701200834.

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Five new isomeric polycyclic polyprenylated acylphloroglucinols (PPAPs) named mesuaferroic acid A, B, C, E and F (1–5) were isolated from ethyl acetate extract of Mesua ferrea L. (Clusiaceae). The isomeric compounds were obtained after extensive chromatographic procedures mainly using preparative HPLC. Structures were established after detailed spectroscopic analysis mostly by 2D NMR techniques. Compounds 4 and 5 exhibited good α-glucosidase inhibitory activity with IC50 values of 0.43 and 0.60 mM, respectively, comparing to the positive control, 1-deoxynojirimycin (IC50 0.63 mM).
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18

Zhang, Xiaochun, Rongrong Gao, Yan Liu, et al. "Anti-virulence activities of biflavonoids from Mesua ferrea L. flower." Drug Discoveries & Therapeutics 13, no. 4 (2019): 222–27. http://dx.doi.org/10.5582/ddt.2019.01053.

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19

Suhesti, Tuti Sri, M. Mudrik H. Rohman, and Sunarto Sunarto. "Formulation of Gel Hand Sanitizer of Nagasari Leaf Extract (Mesua ferrea L.)." Indonesian Journal of Pharmaceutical Science and Technology 1 (January 5, 2022): 31. http://dx.doi.org/10.24198/ijpst.v1i1.36465.

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Nagasari (Mesua ferrea L.) is one of the biodiversity to be developed as an antiseptic preparation. These plants are known to contain flavonoid compounds, tannins, and terpenoids that act as antibacterial. Hand sanitizer gel preparations can increase the effectiveness of topically. The physical properties of a good gel depend on a gelling agent, one of which is HPMC. The purpose of this study was to determine the effect of variations in HPMC levels on physical properties and antibacterial activity. Gels were prepared with various HPMC levels of 1%, 2%, and 3%. The gel was tested for physical p
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20

Dutta, S., and N. Karak. "Blends of Mesua ferrea L. seed oil based polyurethane with epoxy resin." Pigment & Resin Technology 36, no. 2 (2007): 74–82. http://dx.doi.org/10.1108/03699420710733501.

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21

Das, Gautam, and Niranjan Karak. "Mesua ferrea L. seed oil based amido-amine modified nanoclay/epoxy nanocomposites." Journal of Applied Polymer Science 124, no. 3 (2011): 2403–14. http://dx.doi.org/10.1002/app.35304.

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22

Suhesti, Tuti Sri, Eka Prasasti, and Nisa Arifa Aldi. "Nanoemulsion Formulation and Antibacterial Activity of Nagasari (Mesua ferrea L.) Leaf Extract." Jurnal Sains Farmasi & Klinis 12, no. 1 (2025): 41–49. https://doi.org/10.25077/jsfk.12.1.41-49.2025.

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Nagasari (Mesua ferrea L.) has antibacterial activity. Its active compounds are difficult to absorb. Nanoemulsions can enhance the absorption and solubility of these compounds. This study aims to determine the physical stability of a Nagasari extract nanoemulsion, as evaluated by its antibacterial activity. The nanoemulsion was prepared using VCO (1%) as the oil phase, Tween 80 (16%) as the surfactant, and PEG 400 as the cosurfactant, with variations of 1% (FI), 3% (FII), and 5% (FIII). The nanoemulsions were evaluated for their physical properties, solubility, organoleptic properties, pH, emu
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23

Konwar, Uday, Niranjan Karak, and Manabendra Mandal. "Mesua ferrea L. seed oil based highly thermostable and biodegradable polyester/clay nanocomposites." Polymer Degradation and Stability 94, no. 12 (2009): 2221–30. http://dx.doi.org/10.1016/j.polymdegradstab.2009.09.001.

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24

Das, Gautam, and Niranjan Karak. "Epoxidized Mesua ferrea L. seed oil-plasticized thermostable PVC and PVC-clay nanocomposites." Journal of Vinyl and Additive Technology 18, no. 3 (2012): 168–77. http://dx.doi.org/10.1002/vnl.20297.

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25

Suhesti, Tuti Sri, and Annisa Muslimah. "Nanoemulsion of Nagasari (Mesua ferrea L.) Leaf and Its Activity Against Staphylococus aureus." Indonesian Journal of Pharmaceutical Science and Technology 12, no. 2 (2025): 137–43. https://doi.org/10.24198/ijpst.v12i2.49866.

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Nagasari leaves (Mesua ferrea L.) contain special chemicals to fight S. aureus. Nanoparticle technology can improve the solubility, stability, and bioavailability of the phytochemicals found in herbal medicines. The nanoemulsion produces small particle sizes. It has a large surface area. This research aims to determine the physical stability of Nagasari leaf ethanol extract nanoemulsion (EDN) with variations of Virgin Coconut Oil (VCO) as the oil phase during storage and its activity. Nanoemulsions were produced using 1%, 2%, and 3% VCO concentrations. The physical properties and stability of
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26

Zhang, Dongdong, Karuppusamy Arunachalam, Yuehu Wang, et al. "Evaluation on Antidiabetic Properties of Medicinal Plants from Myanmar." Scientific World Journal 2021 (August 26, 2021): 1–10. http://dx.doi.org/10.1155/2021/1424675.

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Objectives. To explore the effective and safe medicines for treating diabetes. Methods. Hydroalcoholic extracts of 130 medicinal plants belonging to 66 families were evaluated using porcine pancreatic lipase (PPL) inhibition and glucose uptake methods together with a literature review. Results. The extracts of 22 species showed the PPL inhibition activity; 18 extracts of 15 species stimulated glucose uptake in 3T3-L1 adipocytes. Among them, Mansonia gagei J.R. Drumm., Mesua ferrea L., and Centella asiatica (L.) Urb. exhibited both activities. The extracts of Caladium lindenii (André) Madison r
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Müller‐Stoll, Wolfgang R., and Erika Mädel‐Angeliewa. "Ein neues Guttiferen‐Holz aus dem Tertiär von Java, Calophylloxylon intermedium sp. nov." Feddes Repertorium 97, no. 5-6 (1986): 225–33. http://dx.doi.org/10.1002/j.1522-239x.1986.tb00295.x.

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ZusammenfassungAus dem Mio‐Pliozän von West‐Juva wird ein fossiles Cuttiferen‐Holz beschrieben, das dem rezenten Calophyllum spectabile Willd, nahesteht, aber auch zu Mesua ferrea L. gewisse Beziehungen hat : Calophylloxylon intermedium sp. nov. Die bisher beschriebenen fossilen Guttiferen‐Hölzer werden kritisch betrachtet; sie gehören zu den Gattungen Calophylloxylon Lakhantal &amp; Awasthi, Kayeoxylon Chowdhury &amp; Tandan, Mesuoxylon Lakhanpal &amp; Awasthi und Symphonioxylon Chiarugi (Syn. Guttiferoxylon Kräusel). Ihre Fundorte liegen innerhalb des Verbreitungsgebietes der rezenten Vergle
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Rajalakshmi, Perumal, Vellingiri Vadivel, Natesan Ravichandran, and Pemaiah Brindha. "Investigation on Pharmacognostic Parameters of Sirunagapoo (Mesua ferrea L): A Traditional Indian Herbal Drug." Pharmacognosy Journal 11, no. 2 (2019): 225–30. http://dx.doi.org/10.5530/pj.2019.11.35.

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Mithun, V., K. P. Babu, N. S. Pradeep, and P. N. Krishnan. "Phenology and seed development in Mesua ferrea L., a rare medicinal tropical tree species." Tropical Plant Research 7, no. 2 (2020): 406–14. http://dx.doi.org/10.22271/tpr.2020.v7.i2.048.

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Konwar, Uday, and Niranjan Karak. "Mesua ferrea L. Seed Oil Based Highly Branched Environment Friendly Polyester Resin/Clay Nanocomposites." Journal of Polymers and the Environment 19, no. 1 (2010): 90–99. http://dx.doi.org/10.1007/s10924-010-0242-8.

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Kalita, Hemjyoti, and Niranjan Karak. "Mesua ferrea L. seed oil-based hyperbranched shape memory polyurethanes: Effect of multifunctional component." Polymer Engineering & Science 52, no. 11 (2012): 2454–61. http://dx.doi.org/10.1002/pen.23200.

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Konwar, Uday, Gautam Das, and Niranjan Karak. "Mesua ferrea L. seed oil based highly branched polyester/epoxy blends and their nanocomposites." Journal of Applied Polymer Science 121, no. 2 (2011): 1076–85. http://dx.doi.org/10.1002/app.33743.

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Linggi, Nirigi, Ajay Bharti, and S. Sureshkumar Singh. "Sustainable Management Technique for Recalcitrant Leaf Litter of Mesua Ferrea L. in Avenue Plantations." Current World Environment 19, no. 1 (2024): 174–84. http://dx.doi.org/10.12944/cwe.19.1.16.

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Avenue plantation produces a significant amount of leaf litter throughout the year, and sustainable management is a primary concern in various establishments. Mesua ferrea L. (MF) is a widely grown avenue tree species that produces enormous amounts of leaf litter throughout the year. The litter remains undecomposed in natural conditions for a long time (2-3 years), requiring labour-intensive management. The rate of decomposition, nutrient dynamics and microbial species involved in the decomposition process has been studied by the modified litterbag method in natural conditions using intact and
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Ahmed, Reesha, Mohd Wasim Ahmed, Asma Sattar Khan, Pawan Kumar Sagar, and Shoeb Ahmed Ansari. "A concise review on pharmacological applications of potent Unani drug: Mesua ferrea L. (Nagkesar)." Journal of Pharmacognosy and Phytochemistry 13, no. 1 (2024): 412–16. http://dx.doi.org/10.22271/phyto.2024.v13.i1e.14860.

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Chahar, Kumar. "Mesua ferrea L.: A review of the medical evidence for its phytochemistry and pharmacological actions." African Journal of Pharmacy and Pharmacology 7, no. 6 (2013): 211–19. http://dx.doi.org/10.5897/ajpp12.895.

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Chahar, Manoj Kumar, D. S. Sanjaya Kumar, T. Lokesh, and K. P. Manohara. "In-vivo antioxidant and immunomodulatory activity of mesuol isolated from Mesua ferrea L. seed oil." International Immunopharmacology 13, no. 4 (2012): 386–91. http://dx.doi.org/10.1016/j.intimp.2012.05.006.

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Bhatta, Lakshminarayana Kudinalli Gopalakrishna, Seetharamu Subramanyam, Madhusoodana D. Chengala, Umananda Manjunatha Bhatta, Narayan Pandit, and Krishna Venkatesh. "Investigation of CO 2 adsorption on carbon material derived from Mesua ferrea L. seed cake." Journal of Environmental Chemical Engineering 3, no. 4 (2015): 2957–65. http://dx.doi.org/10.1016/j.jece.2015.10.006.

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Hartanti, Dwi, Zainur Rahman Hakim, Anna Nurlativah, Arinda Nur Cahyani, Fadhilah Zahra Nadia, and Asmiyenti Djaliasrin Djalil. "Phytochemical analysis, FTIR fingerprint and bioactivity of crude extract and fractions of Mesua ferrea L." Research Journal of Life Science 6, no. 1 (2019): 54–65. http://dx.doi.org/10.21776/ub.rjls.2019.006.01.7.

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Plekratoke, Kusawadee, Pornthip Waiwut, Chavi Yenjai, et al. "Multi-Target Actions of Flavonoid Derivatives from Mesua ferrea Linn Flower against Alzheimer’s disease Pathogenesis." Biomedical Sciences and Clinical Medicine 62, no. 4 (2023): 169–80. http://dx.doi.org/10.12982/bscm.2023.17.

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OBJECTIVE Kaempferol-3-O-rhamnoside (compound 1) and quercetin- 3-O-rhamnoside (compound 2), two flavonoids isolated from Mesua ferrea L. flowers, were examined for their activities related Alzheimer’s disease (AD) pathogenesis including antioxidant, acetylcholinesterase (AChE) inhibition, anti-beta amyloid (Ab) aggregation and neuroprotection. METHODS The two flavonoids were isolated from M. ferrea L. flowers using the column chromatography technique. Both compounds were evaluated for their effects on AD pathogenesis, including antioxidant action by ABTS assay, AChE inhibition by Ellman’s met
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Ni Made Marisa Kumala Sari. "Review: Studi Kandungan Fitokimia dan Aktivitas Antibakteri Nagasari (Mesua ferrea) yang Berpotensi Digunakan sebagai Toner Wajah." Prosiding Workshop dan Seminar Nasional Farmasi 1 (January 16, 2023): 424–34. http://dx.doi.org/10.24843/wsnf.2022.v01.i01.p33.

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Pemanfaatan sumber daya lokal merupakan langkah yang tepat untuk dapat membantu kehidupan dibandingkan dengan obat dari bahan sintetik. Pemanfaatan sumber daya lokal yang dapat digunakan salah satunya adalah untuk produk kecantikan. Produk kecantikan yang dibuat dapat berupa produk untuk perawatan wajah antibakteri. Salah satu tanaman yang diduga memiliki potensi sebagai antibakteri adalah nagasari. Nagasari atau yang dikenal dengan nama latin Mesua ferrea L termasuk dalam famili Calophyllaceae, asli Sri Lanka dan juga tersebar luas di Utara wilayah timur india. Di negara-negara Asia dan secar
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Plekratoke, Kusawadee, Chantana Boonyarat, Orawan Monthakantirat, et al. "The Effect of Ethanol Extract from Mesua ferrea Linn Flower on Alzheimer’s Disease and Its Underlying Mechanism." Current Issues in Molecular Biology 45, no. 5 (2023): 4063–79. http://dx.doi.org/10.3390/cimb45050259.

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The effects of Mesua ferrea Linn flower (MFE) extract on the pathogenic cascade of Alzheimer’s disease (AD) were determined by an in vitro and cell culture model in the search for a potential candidate for the treatment of AD. The 2,2′-azino-bis-3-ethylbenzthiazoline-6-sulphonic acid (ABTS) and 1,1-diphenyl-2-picrylhydrazyl (DPPH) assay exhibited that the MFE extract had antioxidant activities. According to the Ellman and the thioflavin T method’s result, the extracts could inhibit acetylcholinesterase and β-amyloid (Aβ) aggregation. Studies on neuroprotection in cell culture found that the MF
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Chukaew, Arnon, Saowanit Saithong, Sasitorn Chusri, et al. "Corrigendum to “Cytotoxic xanthones from the roots of Mesua ferrea L.” [Phytochemistry 157 (2019) 64–70]." Phytochemistry 161 (May 2019): 172. http://dx.doi.org/10.1016/j.phytochem.2019.02.002.

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Dutta, N., N. Karak, and S. K. Dolui. "Stoving paint from Mesua ferrea L. seed oil based short oil polyester and MF resins blend." Progress in Organic Coatings 58, no. 1 (2007): 40–45. http://dx.doi.org/10.1016/j.porgcoat.2006.11.006.

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Das, Gautam, and Niranjan Karak. "Thermostable and flame retardant Mesua ferrea L. seed oil based non-halogenated epoxy resin/clay nanocomposites." Progress in Organic Coatings 69, no. 4 (2010): 495–503. http://dx.doi.org/10.1016/j.porgcoat.2010.09.004.

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45

Puspitarini, Putu Monik Ananta, Iman Surya Pratama, and Bambang Fajar Suryadi. "Efek Antidiare Ekstrak Air Bunga Nagasari (Mesua Ferrea L.) Terhadap Mencit BALB/c yang Diinduksi Minyak Jarak." JURNAL ILMU KEFARMASIAN INDONESIA 17, no. 1 (2019): 68. http://dx.doi.org/10.35814/jifi.v17i1.626.

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Nagasari (Mesua ferrea L.) secara empiris digunakan sebagai penanganan diare di Provinsi Nusa Tenggara Barat. Namun, keamanan dan kemanjuran dari ekstrak bunga nagasari belum divalidasi secara ilmiah dalam model hewan. Penelitian ini bertujuan untuk mengetahui efek antidiare ekstrak air bunga nagasari pada mencit BALB/c. Aktivitas antidiare bunga nagasari diteliti dengan menggunakan minyak jarak sebagai penginduksi diare yang meningkatkan indeks diare pada mencit. Pada pengujian diare menggunakan penginduksi minyak jarak, mencit menerima variasi konsentrasi ekstrak bunga nagasari (0,4% b/v; 0,
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CHAITHADA, Prakit, Juthamas SUPAPAN, Juthamas SUPAPAN, et al. "Total Flavonoids, Total Phenolic Content and Antioxidant Activity from Fruits, Leaves, Twigs and Flowers of Mesua ferrea L." Walailak Journal of Science and Technology (WJST) 15, no. 4 (2018): 295–304. http://dx.doi.org/10.48048/wjst.2018.3946.

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The objective of this study was to compare antioxidant activity from crudes of fruits, leaves, twigs and flowers of Mesua ferrea L. with hexane, dichloromethane and methanol by controlling time and temperature in the solvent extraction. All crude extracts were investigated for their antioxidant capacity in 1,1-diphenenyl-2-picryhydrazyl (DPPH) radical scavenging. The results indicated that the high polar solvent exhibited the highest DPPH radical scavenging activity. The methanol extracts of leaves show the highest activity with IC50 of 89.94±0.65 μg/mL. The flowers, twigs and fruits methanol
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ARORA, Poonam. "Mesua ferrea L. (Calophyllaceae) exerts therapeutic effects in allergic asthma by modulating cytokines production in asthmatic rats." TURKISH JOURNAL OF BOTANY 45, SI-2 (2021): 820–32. http://dx.doi.org/10.3906/bot-2111-22.

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Das, Gautam, and Niranjan Karak. "Epoxidized Mesua ferrea L. seed oil-based reactive diluent for BPA epoxy resin and their green nanocomposites." Progress in Organic Coatings 66, no. 1 (2009): 59–64. http://dx.doi.org/10.1016/j.porgcoat.2009.06.001.

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Konwar, Uday, Manabendra Mandal, and Niranjan Karak. "Mesua ferrea L. seed oil based acrylate-modified thermostable and biodegradable highly branched polyester resin/clay nanocomposites." Progress in Organic Coatings 72, no. 4 (2011): 676–85. http://dx.doi.org/10.1016/j.porgcoat.2011.07.010.

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Das, Reshmi, Rahul G. Shelke, Latha Rangan, and Sudip Mitra. "Estimation of nuclear genome size and characterization of Ty1-copia like LTR retrotransposon in Mesua ferrea L." Journal of Plant Biochemistry and Biotechnology 27, no. 4 (2018): 478–87. http://dx.doi.org/10.1007/s13562-018-0457-7.

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