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1

Chakraborty, Kamaruzzman, Shyamali Roy, and D. P. Chakraborty. "Mupamine from Glycosmis pentaphylla." Phytochemistry 28, no. 2 (1989): 677–78. http://dx.doi.org/10.1016/0031-9422(89)80089-5.

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2

SOMA, MAHFUZA AFROZ, MOHAMMAD FIROZ KHAN, FAIZA TAHIA, MD ABDULLAH AL-MANSUR, MOHAMMAD SHARIFUR RAHMAN, and MOHAMMAD ABDUR RASHID. "Cyclooxygenase-2 Inhibitory Compounds from the Leaves of Glycosmis pentaphylla (Retz.) A. DC.: Chemical and in silico Studies." Asian Journal of Chemistry 31, no. 6 (2019): 1260–64. http://dx.doi.org/10.14233/ajchem.2019.21913.

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Glycosmis pentaphylla is traditionally used for treating many diseases in Bangladesh. Anti-inflammatory and analgesic effects of Glycosmis pentaphylla have been reported prominently but no bioactive element has been identified so far. In order to explore its analgesic and antiinflammatory compound(s), phytochemical analysis was conducted. Nine compounds were isolated from the methanol extract of leaves of Glycosmis pentaphylla whose structures were solved as arborinine (1), vanillic acid (2), 3-hydroxy-4-methoxybenzoic acid (3), benzoic acid (4), p-hydroxybenzoic acid (5), stigmasterol (6), β-
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3

Hieu, Le Trung, Mai Van Bay, Nguyen Thi Hoa, Adam Mechler, and Quan V. Vo. "The radical scavenging activity of glycozolidol in physiological environments: a quantum chemical study." RSC Advances 12, no. 50 (2022): 32693–99. http://dx.doi.org/10.1039/d2ra05907j.

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4

Tian, Er-Li, Yuan-Yuan Cui, Guang-Zhong Yang, Zhi-Nan Mei, and Yu Chen. "Phenolic glycosides from Glycosmis pentaphylla." Journal of Asian Natural Products Research 16, no. 12 (2014): 1119–25. http://dx.doi.org/10.1080/10286020.2014.951924.

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5

Quader, M. A., M. T. H. Nutan, and M. A. Rashid. "Antitumor alkaloid from Glycosmis pentaphylla." Fitoterapia 70, no. 3 (1999): 305–7. http://dx.doi.org/10.1016/s0367-326x(99)00028-3.

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6

Chakraborty, A., B. K. Chowdhury, S. S. Jash, G. K. Biswas, S. K. Bhattacharyya, and P. Bhattacharyya. "Carbazole alkaloids from Glycosmis pentaphylla." Phytochemistry 31, no. 7 (1992): 2503–5. http://dx.doi.org/10.1016/0031-9422(92)83310-u.

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7

Aswathy, U. V., S. Abhirami, S. R. Flanet Raj, and G. Prasad. "Tissue Repairing Activity of Glycosmis pentaphylla Leaf Extract on Oreochromis mossambicus Against Arsenic Induced Toxicity." Nature Environment and Pollution Technology 21, no. 1 (2022): 209–15. http://dx.doi.org/10.46488/nept.2022.v21i01.023.

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Acute toxicity of arsenic to Tilapia (Oreochromis mossambicus) and tissue repairing activity of Glycosmis pentaphylla leaf extract and its histological impacts on gill, liver, and kidney tissues were evaluated. Fish were divided into six groups viz. control, group 1, group 2, group 3, group 4, and group 5. 4.87 ppm of NaAsO2 was administrated in group 1, group 3, and group 5. In group 3, after arsenic exposure, 2.5 g of leaf extract of Glycosmis pentaphylla per kg of fish food was added. In group 5, 5g of G. pentaphylla leaf extract per kg of fish food was added. In group 2, 2.5 g of leaf extr
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8

Ahmed, Iftekhar, Ridwan Islam, Md Al Amin Sikder, Mohammad Rashedul Haque, Md Abdullah Al Mansur, and Mohammad A. Rashid. "Alkaloid, Sterol and Triterpenoids from Glycosmis pentaphylla (Retz.) DC." Dhaka University Journal of Pharmaceutical Sciences 13, no. 2 (2015): 115–18. http://dx.doi.org/10.3329/dujps.v13i2.21887.

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Four compounds were isolated from the methanol extract of leaves of Glycosmis pentaphylla. The structures of the isolated compounds were solved as epi-oleanolic acid (1), ?-amyrin (2), spinasterol (3) and arborinine (4) by extensive spectroscopic studies, including high field NMR analyses as well as co-TLC with authentic samples. This appeares to be the first report of their occurrence from Glycosmis species. DOI: http://dx.doi.org/10.3329/dujps.v13i2.21887 Dhaka Univ. J. Pharm. Sci. 13(2): 115-118, 2014 (December)
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9

Chen, Yu, Chu Tang, Yi Wu, et al. "Glycosmisines A and B: isolation of two new carbazole–indole-type dimeric alkaloids from Glycosmis pentaphylla and an evaluation of their antiproliferative activities." Organic & Biomolecular Chemistry 13, no. 24 (2015): 6773–81. http://dx.doi.org/10.1039/c5ob00695c.

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Two unique carbazole–indole-type dimeric alkaloids, glycosmisines A (1) and B (2), have been isolated from the stems of Glycosmis pentaphylla and their structures are elucidated by 1D and 2D NMR analyses).
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10

Bhattacharyya, P., and B. K. Chowdhury. "Glycolone, a quinolone alkaloid from Glycosmis pentaphylla." Phytochemistry 24, no. 3 (1985): 634–35. http://dx.doi.org/10.1016/s0031-9422(00)80795-5.

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11

Bhattacharyya, P., B. K. Chowdhury, A. Mustapha, and M. Garba. "Carbazole and 3-methylcarbazole from Glycosmis pentaphylla." Phytochemistry 26, no. 7 (1987): 2138–39. http://dx.doi.org/10.1016/s0031-9422(00)81785-9.

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12

Yang, Guang-Zhong, Yi Wu, and Yu Chen. "Alkaloids from the Stems of Glycosmis pentaphylla." Helvetica Chimica Acta 95, no. 8 (2012): 1449–54. http://dx.doi.org/10.1002/hlca.201200027.

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13

Haque, Md Enamul, Md Sohel Rana, and Md Hassan Kawser. "Exploration of Antidiarrheal, Analgesic and Anti-hyperglycemic Potentials of Glycosmis Pentaphylla (Retz.) DC." Bangladesh Pharmaceutical Journal 28, no. 1 (2025): 44–48. https://doi.org/10.3329/bpj.v28i1.79449.

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Glycosmis pentaphylla (Retz.) DC., commonly known as "orangeberry" or "Ashsheora," is a medicinal plant from the Rutaceae family (Khare et al., 2007). It is widely used in traditional medicine for treating fever, respiratory disorders, skin diseases and inflammation. Phytochemical studies reveal that it contains alkaloids, flavonoids and coumarins with significant antimicrobial, antioxidant and hepatoprotective activities (Samy et al., 2008). The antidiarrheal, analgesic and anti-hyperglycemic properties of Glycosmis pentaphylla (Retz) DC were assessed in this investigation. Methanolic bark ex
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14

Chokchaisiri, Suwadee, Nuttapon Apiratikul, and Thitima Rukachaisirikul. "A new ent-abietane lactone from Glycosmis pentaphylla." Natural Product Research 34, no. 21 (2020): 3019–26. http://dx.doi.org/10.1080/14786419.2018.1540477.

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15

Bhattacharyya, P., P. K. Chakrabartty, and B. K. Chowdhury. "Glycozolidol, an antibacterial carbazole alkaloid from Glycosmis pentaphylla." Phytochemistry 24, no. 4 (1985): 882–83. http://dx.doi.org/10.1016/s0031-9422(00)84922-5.

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16

Bhattacharyya, P., and B. K. Chowdhury. "Glycozolidal, a New Carbazole Alkaloid from Glycosmis pentaphylla." Journal of Natural Products 48, no. 3 (1985): 465–66. http://dx.doi.org/10.1021/np50039a017.

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17

Chandran, M. Vishnu, S. Gopakumar, and Anoopa Mathews. "Comparative phytosociological assessment of three terrestrial ecosystems of Wayanad Wildlife Sanctuary, Kerala, India." Journal of Threatened Taxa 12, no. 5 (2020): 15631–45. http://dx.doi.org/10.11609/jott.4754.12.5.15631-15645.

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Phytosociological studies were conducted in three vegetation types in the WS II area of Wayanad Wildlife Sanctuary. In each vegetation type, 85 quadrats (10 x 10 m) were laid to quantify the vegetation. Natural forest showed comparatively higher species richness than plantation and vayal (swamps/low lying grassland). In natural forest 96 plant species were present while it was 70 and 66 respectively in plantation and vayal. Fabaceae was the dominant family in all the three vegetation types. The natural forest was dominated by Chromolaena odorata, followed by Lantana camara, Mimosa pudica, Term
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18

Hosagoudar, V. B., and Jacob Thomas. "Interesting foliicolous fungi from Southern Western Ghats of Kerala, India." Journal of Applied and Natural Science 2, no. 1 (2010): 102–5. http://dx.doi.org/10.31018/jans.v2i1.106.

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An account of five foliicolous fungal taxa are dealt herein. Of these, Asterina glycosmidigena, A. gymnemae, Irenopsis pavoniae, Phyllachora gymnemae infected the leaves of Glycosmis pentaphylla, Gymnema sysvestre and Pavonia sp., respectively, are described as new species while, Meliola pseudarthriae var. indica is described as a new variety on Pseudarthria viscida. The detailed description of these taxa is supplemented with line drawings and photo plate.
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19

Zhang, Qiu-Bo, Gang Ding, Tao Zhang, et al. "New furanopyridine alkaloids from the leaves of Glycosmis pentaphylla." Phytochemistry Letters 18 (December 2016): 51–54. http://dx.doi.org/10.1016/j.phytol.2016.08.015.

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20

WANG, J., Y. DI, X. YANG, S. LI, Y. WANG, and X. HAO. "Hydroquinone diglycoside acyl esters from the stems of Glycosmis pentaphylla." Phytochemistry 67, no. 5 (2006): 486–91. http://dx.doi.org/10.1016/j.phytochem.2005.11.025.

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21

Nair, Sreela S., Rubila S, Prakash P, Balaprakash V, and Thangave K. "ZnO Nanoparticles Synthesized Using Glycosmis pentaphylla: A Green Approach to Antimicrobial Activity." Cuestiones de Fisioterapia 53, no. 03 (2024): 3591–613. https://doi.org/10.48047/c5t9c135.

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ZnO nanoparticles derived from Glycosmis pentaphylla have been utilized for antimicrobial purposesfor a long time. These nanoparticles have garnered significant interest, as the demand fornanotechnology continues to grow due to their diverse applications. The co-precipitation method,using varying ratios of 20 ml, 40 ml, and 60 ml of plant extract, is preferred for synthesizing ZnOnanoparticles because of its high efficiency, low production cost, and environmental sustainability.The synthesized nanoparticles are aimed at targeting pathogenic microorganisms, including bacteriasuch as E. coli and
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22

Das, Moon Moon, and Dibakar Chandra Deka. "Evaluation of Anticancer and Antimicrobial Activity of Arborinine from Glycosmis pentaphylla." Journal of Biologically Active Products from Nature 7, no. 2 (2017): 131–39. http://dx.doi.org/10.1080/22311866.2017.1329666.

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23

Choi, Yun-Hyeok, Changon Seo, Wonsik Jeong, et al. "Glycopentanolones A-D, four new geranylated quinolone alkaloids from Glycosmis pentaphylla." Bioorganic Chemistry 87 (June 2019): 714–19. http://dx.doi.org/10.1016/j.bioorg.2019.03.069.

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24

Nguyen, Minh Tuyet Thi, I.-Chi Hsu, Hui-Kang Liu, et al. "Components with Anti-Diabetic Activity Isolated from the Leaves and Twigs of Glycosmis pentaphylla Collected in Vietnam." Pharmaceuticals 15, no. 12 (2022): 1543. http://dx.doi.org/10.3390/ph15121543.

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A phytochemical investigation of the leaves and twigs of Glycosmis pentaphylla (Rutaceae), collected in Vietnam, yielded three new compounds named glyfuran (1), glyphyllamide (2), and glyphyllazole (3), along with twenty-five known compounds (4–28). The structures of isolates were determined by IR, MS, NMR, and UV data analyses. In the anti-diabetic activity screening, (+)-isoaltholacton (4), glycoborinine (17), 2′,4′-dihydroxy-4,6′-dimethoxychalcone (24), and flavokawain A (25) simultaneously exhibited inhibition of dipeptidyl peptidase-4 (DPP4) and stimulation of the glucagon-like peptide-1
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25

YACHYA, ARIF, Amin Nurokhman, and Hamidi. "IDENTIFICATION OF FAMILI RUTACEAE IN THE SRIWIJAYA BOTANICAL GARDENS, OGAN ILIR DISTRICTS, SOUTH SUMATERA PROVINCE." STIGMA: Jurnal Matematika dan Ilmu Pengetahuan Alam Unipa 16, no. 2 (2023): 49–54. http://dx.doi.org/10.36456/stigma.16.2.8131.49-54.

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Famili Rutaceae merupakan tanaman jeruk-jerukan yang tersebar diseluruh Indonesia. Tanaman ini memiliki kaya vitamin c, folat dan serat. Selama ini, anggota Rutaceae masih belum teridentifikasi dengan baik, khususnya di kebun Raya Sriwijaya. Penelitan ini bertujuan untuk mengetahui berbagai jenis tanaman famili Rutaceae yang berada di kebun Raya Sriwijaya. Penelitian ini merupakan penelitian deskriptif kualitatif. Pengambilan data dilakukan dengan melakukan penjelajahan dan penyusuran lokasi di Kebun Raya Sriwijaya. Hasil penelitian menunjukkan terdapat lima species famili Rutaceae, yaitu jeru
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26

Md Taib, Nurhaya, Norazian Mohd Hassan, Laina Zarisa Mohd Kamal, and May Khin Soe. "BIOAUTOGRAPHY, COMBINATION EFFECTS AND PHOTO-ACTIVATED ENZYMATIC RESTRICTION INHIBITORY ACTIVITY OF ANTIMICROBIAL ALKALOIDS FROM GLYCOSMIS." Malaysian Journal of Science 41, no. 3 (2022): 1–9. http://dx.doi.org/10.22452/mjs.vol41no3.1.

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Glycosmis pentaphylla (Retz.) DC., locally known as nerapan, has long been used in Asian countries as a traditional remedy for ailments attributed to microbial infections. This study aims to isolate antimicrobial alkaloids from G. pentaphylla, to determine their combination effects with selected antimicrobial agents and to screen for their photoactivated enzymatic restriction inhibitory activity. Bioautography-guided isolation of antimicrobial alkaloids was performed by using column chromatography with Staphylococcus aureus, Escherichia coli, and Candida albicans as the indicator microbes. The
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27

Richardson, Matthew L., Catherine J. Westbrook, David G. Hall, Ed Stover, Yong Ping Duan, and Richard F. Lee. "Abundance of Citrus Leafminer Larvae on Citrus and Citrus-related Germplasm." HortScience 46, no. 9 (2011): 1260–64. http://dx.doi.org/10.21273/hortsci.46.9.1260.

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The citrus leafminer, Phyllocnistis citrella Stainton (Lepidoptera: Gracillariidae), is a key pest in most citrus-growing regions worldwide. Adult citrus leafminers oviposit primarily on young elongating flush of Citrus as well as other Rutaceae and some ornamental plants. Larvae feed on the epidermal cell layer of developing leaves and injury to leaves provides a pathway for infection by the bacterium Xanthomonas citri subsp. citri (Hasse), the causal agent of Asiatic citrus canker. In this study, we quantified abundance of citrus leafminer larvae on progeny of 87 seed parent genotypes of Cit
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28

Khatun, Most Chand Sultana, M. Ripon Mia, M. Ashraf Ali, M. Moshiur Rahman, Khadiza Begum, and Kohinur Begum. "Antidiabetic and Analgesic Effects of Glycosmis pentaphylla (Retz.) in Swiss Albino Mice." Ibrahim Medical College Journal 6, no. 1 (2013): 21–26. http://dx.doi.org/10.3329/imcj.v6i1.14721.

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Background and purposes: Glycosmis pentaphylla (Retz.) Correa, a medicinal plant is popularly used as herbal remedy for various ailments in Bangladesh. It was also reported that GP has both anti-hyperglycemic and analgesic effects and being widely used to reduce blood glucose and to alleviate pain for many years in this region though published literatures are scarce. The present study was designed to evaluate whether ethanolic extract of Glycosmis pentaphylla (GP) have antihyperglycemic and analgesic effects. A total of 60 Swiss Albino male mice of nine weeks (weight, 20-25g) were used for inv
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29

Sripisut, Tawanun, Thunwadee Ritthiwigrom, Trinop Promgool, et al. "Glycopentaphyllone: The first isolation of hydroperoxyquinolone from the fruits of Glycosmis pentaphylla." Phytochemistry Letters 5, no. 2 (2012): 379–81. http://dx.doi.org/10.1016/j.phytol.2012.03.007.

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30

Van, Hong Thien, Dang Gia Man Nguyen, Nguyen Tuong An Quynh, and Van Son Le. "Antibacterial activities of ethanolic extract of four species of Rutaceae family." Plant Science Today 7, no. 3 (2020): 463–68. http://dx.doi.org/10.14719/pst.2020.7.3.784.

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In this study, the antibacterial activity of ethanolic extract from the leaves of four Rutaceae species, including Acronychia pedunculata, Clausena excavata, Glycosmis pentaphylla and Luvunga scandens, were performed using the agar disk diffusion method for the first time. The ethanolic extracts from the leaves of A. pedunculata and G. pentaphylla were able to resist against all six bacterial strains with zones of inhibition for Bacillus cereus (17.3±2.1 mm, 20.8±1.0 mm) Staphylococcus aureus (8.5±0.5 mm, 17.6±0.3 mm) Escherichia coli (16.7±2.1 mm, 15.3±1.2 mm), Pseudomonas aeruginosa (11.7±0.
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31

Muthukrishnan, Jayarama, Karlheinz Seifert, Klaus H. Hoffmann, and Matthias W. Lorenz. "Inhibition of juvenile hormone biosynthesis in Gryllus bimaculatus by Glycosmis pentaphylla leaf compounds." Phytochemistry 50, no. 2 (1999): 249–54. http://dx.doi.org/10.1016/s0031-9422(98)00537-8.

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32

Ramkumar, Govindaraju, Sengodan Karthi, Ranganathan Muthusamy, et al. "Mosquitocidal Effect of Glycosmis pentaphylla Leaf Extracts against Three Mosquito Species (Diptera: Culicidae)." PLOS ONE 11, no. 7 (2016): e0158088. http://dx.doi.org/10.1371/journal.pone.0158088.

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33

K, Jenil Prabha, and Asir Selin Kumar R. "ASSESSMENT OF ECOLOGICAL STATUS OF ECONOMICALLY IMPORTANT PLANTS IN UDHAYAGIRI HILLS, NAGARCOIL." Kongunadu Research Journal 2, no. 2 (2015): 40–54. http://dx.doi.org/10.26524/krj94.

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The present ecological investigation was carried out in the understorey of tropical moist deciduous forest of Udhayagiri fort hills, Kanyakumari, Tamil Nadu. A total number of 171 species were documented in the understory of the study area and among them 163 species were recognized as economically important.The secured value of ecological attribute, importance value index (IVI) indicates that the species like Tephrosia purpurea, Clerodendron infortunatum Acalypa indica, Aerva lanata, Asystasia gangetica, Belpharis maderaptensis, Cleome viscosa, Dodonia viscose, Glycosmis pentaphylla, Leucas as
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34

Swapan Kumar, Chowdhury, roy Nayan, and mukherjee Indrani. "Antimicrobial activity of silver nanoparticles synthesized from fruit epicarp of Glycosmis pentaphylla(Funded Work)." International Journal of pharma and Bio Sciences 12, no. 4 (2021): 35–46. http://dx.doi.org/10.22376/ijpbs.2021.12.4.b35-46.

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35

Nian, Hefeng, Hui Xiong, Fangfang Zhong, et al. "Anti-inflammatory and antiproliferative prenylated sulphur-containing amides from the leaves of Glycosmis pentaphylla." Fitoterapia 146 (October 2020): 104693. http://dx.doi.org/10.1016/j.fitote.2020.104693.

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36

Chakraborty, M. "Identification of Naturally Occurring Carbazole Alkaloids Isolated from <i>Murraya koenigii</i> and <i>Glycosmis pentaphylla</i> by the Preparation of HPLC Fingerprint." Journal of Scientific Research 14, no. 1 (2022): 289–300. http://dx.doi.org/10.3329/jsr.v14i1.53526.

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The plants Murraya koenigii and Glycosmis pentaphylla are rich sources of different carbazole alkaloids. A number of monomeric carbazole alkaloids with C13, C18, and C23 carbon frames and a good number of dimeric carbazole alkaloids were isolated from these two plants. Scientists are still working on these two plants in search of more and more novel compounds. Many of these alkaloids have potential biological activities. Scientists have determined the structures of these compounds by detailed analysis of spectral data like UV, IR, Mass,1H NMR, and 13C NMR (1D and 2D). These procedures require
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37

Khandokar, Labony, Md Sazzadul Bari, Veronique Seidel, and Md Areeful Haque. "Ethnomedicinal uses, phytochemistry, pharmacological activities and toxicological profile of Glycosmis pentaphylla (Retz.) DC.: A review." Journal of Ethnopharmacology 278 (October 2021): 114313. http://dx.doi.org/10.1016/j.jep.2021.114313.

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38

Mathew, Deepu, OP Brinda, MR Shylaja, PSangeetha Davis, KAnita Cherian, and PA Valsala. "Isovaleric acid and avicequinone-C are Chikungunya virus resistance principles in Glycosmis pentaphylla (Retz.) Correa." Journal of Vector Borne Diseases 56, no. 2 (2019): 111. http://dx.doi.org/10.4103/0972-9062.263719.

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39

ITO, Chihiro, Yuichi KONDO, K. Sundar RAO, Harukuni TOKUDA, Hoyoku NISHINO, and Hiroshi FURUKAWA. "Chemical Constituents of Glycosmis pentaphylla. Isolation of A Novel Naphthoquinone and A New Acridone Alkaloid." CHEMICAL & PHARMACEUTICAL BULLETIN 47, no. 11 (1999): 1579–81. http://dx.doi.org/10.1248/cpb.47.1579.

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40

Sreejith, P. S., and V. V. Asha. "Glycopentalone, a novel compound from Glycosmis pentaphylla (Retz.) Correa with potent anti-hepatocellular carcinoma activity." Journal of Ethnopharmacology 172 (August 2015): 38–43. http://dx.doi.org/10.1016/j.jep.2015.05.051.

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41

N.Lal Mahammed, N. Lal Mahammed, G. Jyothi G.Jyothi, and P. Inamul Hasan. "Antidiabetic and Antihyperlipidamic Activity of the Ethanolic leaf Extract of Glycosmis pentaphylla against Alloxan Induced Diabetes in Albino Rats." International Journal of Scientific Research 2, no. 7 (2012): 429–32. http://dx.doi.org/10.15373/22778179/july2013/145.

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42

McCollum, Greg, Kim Bowman, and Tim Gottwald. "(262) Screening Citrus Germplasm for Resistance to Xanthomonas axonopodis pv. Citri." HortScience 41, no. 4 (2006): 1048E—1049. http://dx.doi.org/10.21273/hortsci.41.4.1048e.

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Citrus bacterial canker [causal agent Xanthomonas axonopodis pv. citri (Xac)] is a serious threat to the citrus industry. Currently, there are no effective means to control citrus canker. Our objective was to determine the resistance of selected citrus species, citrus hybrids, and citrus relatives to Xac. Our first experiment focused on determining if differences in resistance exist among 20 C. reticulata genotypes and included three other citrus species and citrus relatives (Glycosmis pentaphylla and Clausena hardimandiana). Plants were inoculated with Xac strain A either by injection infiltr
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43

Dutta, Tanmoy, Swapan Kumar Chowdhury, Narendra Nath Ghosh, Asoke P. Chattopadhyay, Mahuya Das, and Vivekananda Mandal. "Green synthesis of antimicrobial silver nanoparticles using fruit extract of Glycosmis pentaphylla and its theoretical explanations." Journal of Molecular Structure 1247 (January 2022): 131361. http://dx.doi.org/10.1016/j.molstruc.2021.131361.

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44

Vijayakumar, S., C. Krishnakumar, P. Arulmozhi, S. Mahadevan, and N. Parameswari. "Biosynthesis, characterization and antimicrobial activities of zinc oxide nanoparticles from leaf extract of Glycosmis pentaphylla (Retz.) DC." Microbial Pathogenesis 116 (March 2018): 44–48. http://dx.doi.org/10.1016/j.micpath.2018.01.003.

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45

Shoja, M. H., Neetinkumar D. Reddy, Pawan G. Nayak, Subhankar Biswas, K. K. Srinivasan, and C. Mallikarjuna Rao. "In vitro mechanistic and in vivo anti-tumor studies of Glycosmis pentaphylla (Retz.) DC against breast cancer." Journal of Ethnopharmacology 186 (June 2016): 159–68. http://dx.doi.org/10.1016/j.jep.2016.04.002.

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Ito, Chihiro, Yuichi Kondo, K. Sundar Rao, Harukuni Tokuda, Hoyoku Nishino, and Hiroshi Furukawa. "ChemInform Abstract: Chemical Constituents of Glycosmis pentaphylla. Isolation of a Novel Naphthoquinone and a New Acridone Alkaloid." ChemInform 31, no. 16 (2010): no. http://dx.doi.org/10.1002/chin.200016226.

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Bowman, Kim D., Jeffrey P. Shapiro, and Stephen L. Lapointe. "Sources of Resistance to Diaprepes Weevil in Subfamily Aurantiodeae, Rutaceae." HortScience 36, no. 2 (2001): 332–36. http://dx.doi.org/10.21273/hortsci.36.2.332.

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Abstract:
Commercially used citrus rootstocks can all be seriously damaged by larvae of the sugar cane root weevil, Diaprepes abbreviatus (L.). Six greenhouse challenge experiments were used to compare the resistance of 24 selections of citrus rootstocks and related species to this weevil by measuring root damage, and larval growth and survival. The commercial rootstocks tested were found to be susceptible, while at least seven other species within the subfamily Aurantiodeae were observed to be significantly more resistant. The species Balsamocitrus dawei Stapf. was most resistant to weevil larvae, exhi
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Babu, Vinitha S., and P. M. Radhamany. "Phytochemical Composition and Evaluation of Anti-Inflammatory Activity in Glycosmis pentaphylla (Retz.)DC. - An Ethnobotanically Important Medicinal Plant." Advances in Zoology and Botany 8, no. 3 (2020): 109–15. http://dx.doi.org/10.13189/azb.2020.080305.

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Babu, Vinitha S., Anice Kurian M, and PM Radhamany. "Allelopathic Effects of Leaf Extracts of Glycosmis pentaphylla (Retz.) DC. on Triticum aestivum (L.) and Vigna radiata (L.) Wilczek." Advances in Zoology and Botany 8, no. 4 (2020): 369–73. http://dx.doi.org/10.13189/azb.2020.080409.

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Shoja, M. H., Neetinkumar D. Reddy, Pawan G. Nayak, K. K. Srinivasan, and C. Mallikarjuna Rao. "Glycosmis pentaphylla (Retz.) DC arrests cell cycle and induces apoptosis via caspase-3/7 activation in breast cancer cells." Journal of Ethnopharmacology 168 (June 2015): 50–60. http://dx.doi.org/10.1016/j.jep.2015.03.048.

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