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Journal articles on the topic 'Securidaca'

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1

Kporvie, Atsu Kodjo George. "Pharmacological Potential of Securidaca longipedunculata: A Comprehensive Review of Traditional and Scientific Insights." Asian Plant Research Journal 12, no. 6 (2024): 115–32. https://doi.org/10.9734/aprj/2024/v12i6287.

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Introduction: Securidaca longipedunculata is a plant that has been used for medicinal purposes throughout the world for thousands of years. Aims: Update and discuss the chemistry, traditional and biological activities of Securidaca longipeduncula based on surveys and literature. This could motivate researchers to manufacture pharmaceutical products from Securidaca longipedunculata and to think of other more targeted research on the plant. Study Design: This is a review based on data collection method. Methodology: Investigations and Electronic database engines such as PubMed, Scopus, Google Sc
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2

Azadbakht, Mohammad, Ahmadi Seyyedeh Atiyeh, and Nematollah Ahangar. "Antidiabetic Activity of Aqueous Seed Extract of Securigera securidaca in Streptozotocin Induced Diabetic Rats." Journal of Advances in Medical and Biomedical Research 27, no. 123 (2019): 16–22. https://doi.org/10.30699/jambs.27.123.16.

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<strong>Background &amp; Objective:</strong>&nbsp;<em>Securigera securidaca&nbsp;</em>is a medicinal plant used in Persian folk medicine to decrease blood sugar. Nevertheless, there is some controversy about its effects. The current study investigated the hypoglycemic activity of the aqueous seed extract of&nbsp;<em>S. securidaca</em>. <strong>Materials &amp; Methods:</strong>&nbsp;Sixty mature male Charles-River rats were categorized and divided randomly into 10 groups with two timeframes (7 and 14 days). To induce diabetes, rats were injected intraperitoneally with 7 mg/0.5 mL streptozotocin
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3

Abdelbagi, Mohamed E. M., Ghassab M. Al-Mazaideh, Adil Elhag Ahmed, et al. "Drug Formulation of Securigera securidaca Seed Extracts." Processes 11, no. 7 (2023): 1955. http://dx.doi.org/10.3390/pr11071955.

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S. securidaca seeds are reported to treat a variety of diseases; they contain multiple antidiabetic constituents and are widely used as anti-hyperglycemic, antibacterial, as well as anti-hyperlipidemic agents. The present work aimed to propose tablet formulations containing extracts of S. securidaca seeds in an attempt to obtain antibacterial and anti-hyperglycemic formulations with a more efficient oral hypoglycemic impact, limited side effects, and higher patient compliance for the first time, resulting in multiple benefits. Tablet formulations were created by encapsulating granules from S.
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4

Datagni, G'massampou, Aklesso Pouwelong Mouzou, Kossi Metowogo, Yaovi-Gameli Afanyibo, Adodo Sadji, and Kwashie Eklu-Gadegbeku. "In vitro anti-inflammatory and antimicrobial activity of Securidaca longepedunculata and Annona senegalensis hydro-alcoholic extract." Journal of Drug Delivery and Therapeutics 11, no. 5-S (2021): 63–70. http://dx.doi.org/10.22270/jddt.v11i5-s.5090.

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Annona senegalensis and Securidaca longepedunculata are two plants traditionnaly used in inflammation and wounds infection treatment after snakebites.&#x0D; This study aims to investigate the in vitro anti-inflammatory and antimicrobial activities of the hydroalcoholic extracts of Annona senegalensis and Securidaca longepedunculata.&#x0D; Antimicrobial activity of the two plant extracts was examined against five bacterial strains with the well diffusion method and the inhibition zones diameters (IZD), minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) were dete
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5

Ghorbani, Ahmad, Reyhaneh Moradi Marjaneh, Ziba Rajaei, and Mousa-Al-Reza Hadjzadeh. "Effects of Securigera securidaca Extract on Lipolysis and Adipogenesis in Diabetic Rats." Cholesterol 2014 (August 3, 2014): 1–5. http://dx.doi.org/10.1155/2014/582106.

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Diabetes mellitus is associated with dysregulation of adipose tissue metabolism and increased level of serum lipids. In our previous work we found that Securigera securidaca decreases cholesterol level in blood of diabetic rats. The present study was carried out to further investigate the effects of this plant on lipid metabolism, lipolysis, and adipogenesis, in diabetic rats. Female Wistar rats were rendered diabetic by intraperitoneal injection of streptozotocin. Retroperitoneal adipose tissue was removed from diabetic animals after seven days of streptozotocin injection. Effect of hydroalco
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6

Nnamani, N. D., E. Iginomwahia, and O. A. Adedokun. "Physicochemical and Lipid Peroxidation Evaluation of Fabricated Extract from <i>Securidaca longipedunculata</i> Root Bark." Nigerian Journal of Pharmaceutical Research 20, no. 2 (2025): 159–66. https://doi.org/10.4314/njpr.v20i2.5.

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Background: Modification of some crude extracts have improved the stability, functional properties and process ability of their bioactive. Objective: To fabricate bioactive from Securidaca longipedunculata root bark and compare its activities with the crude extract. Methods: Modified extract was fabricated from Securidaca longipedunculata root bark using microencapsulation and freeze-drying technique, and evaluated. Results: Fourier Transform Infrared Spectroscopy evaluation showed similar leading peaks in the crude and fabricated extracts, indicating absence of chemical alteration from modifi
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7

Hamburger, M., M. Gupta, and K. Hostettmann. "Flavonol glycosides from Securidaca diversifolia." Phytochemistry 24, no. 11 (1985): 2689–92. http://dx.doi.org/10.1016/s0031-9422(00)80695-0.

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8

Ajali, U., and B. K. C. Chukwurah. "Antimicrobial activity of Securidaca longipedunculata." Phytomedicine 11, no. 7-8 (2004): 701–3. http://dx.doi.org/10.1016/j.phymed.2003.07.002.

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9

Komissarenko, A. N., and V. N. Kovalev. "Hydroxycoumarins and flavones ofSecurigera securidaca." Chemistry of Natural Compounds 23, no. 2 (1987): 252. http://dx.doi.org/10.1007/bf00598775.

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10

Timité, Gaoussou, Anne-Claire Mitaine-Offer, Tomofumi Miyamoto, et al. "Presenegenin Glycosides from Securidaca welwitschii." Helvetica Chimica Acta 93, no. 11 (2010): 2237–44. http://dx.doi.org/10.1002/hlca.201000073.

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11

Aderbauer, Birgit, and Matthias Melzig. "Securidaca longepedunculata Fres., der Wilde Veilchenbaum." Zeitschrift für Phytotherapie 28, no. 2 (2007): 97–102. http://dx.doi.org/10.1055/s-2007-981628.

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12

Yang, Xue-Dong, Ning An, Li-Zhen Xu, and Shi-Lin Yang. "New xanthone glycosides from Securidaca inappendiculata." Journal of Asian Natural Products Research 4, no. 2 (2002): 141–45. http://dx.doi.org/10.1080/10286020290027434.

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13

Wedajo, Feyisa, Abera Gure, Melkau Meshesha, et al. "Cytotoxic compounds from the root bark of Securidac alongipedunculata." Bulletin of the Chemical Society of Ethiopia 36, no. 2 (2022): 417–22. http://dx.doi.org/10.4314/bcse.v36i2.14.

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ABSTRACT. Chromatographic separation of the ethyl acetate extract of the root bark of Securidaca longipedunculata led to the isolation of one new xanthone derivative (1) along with nine known compounds (2-10). The structure of the isolated compounds were identified by NMR, mass spectrometric analyses, and comparison with the reported literature data. The isolates were evaluated for their cytotoxic activity with compounds 5 (IC50 = 0.38 µM) and 6 (IC50 = 52 µM) showed significant inhibitory activities against the human cervical cancer KB-3-1 cell line. Compound 5 displayed superior activity, wh
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14

Coetzee, Hester, and P. J. Robbertse. "Pollen and tapetal development in Securidaca longepedunculata." South African Journal of Botany 51, no. 2 (1985): 111–24. http://dx.doi.org/10.1016/s0254-6299(16)31683-0.

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15

Yang, Xue-Dong, Li-Zhen Xu, and Shi-Lin Yang. "Xanthones from the stems of Securidaca inappendiculata." Phytochemistry 58, no. 8 (2001): 1245–49. http://dx.doi.org/10.1016/s0031-9422(01)00356-9.

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16

Tofighi, Zahra, Parina Asgharian, Saied Goodarzi, Abbas Hadjiakhoondi, Seyed Nasser Ostad, and Narguess Yassa. "Potent cytotoxic flavonoids from Iranian Securigera securidaca." Medicinal Chemistry Research 23, no. 4 (2013): 1718–24. http://dx.doi.org/10.1007/s00044-013-0773-3.

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17

Zhou, Bin, Yan Wu, Lishe Gan, Seema Dalal, Maria B. Cassera, and Jianmin Yue. "Structurally Interesting Diarymethane Derivatives from Securidaca inappendiculata." Chinese Journal of Chemistry 38, no. 8 (2020): 812–16. http://dx.doi.org/10.1002/cjoc.202000094.

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18

Costa, Christiane Silva Da, Ana Cristina Andrade De Aguiar-Dias, and André Olmos Simões. "Securidaca marajoara (Polygalaceae), a new species from the Brazilian Amazon." Phytotaxa 137, no. 1 (2013): 53–56. https://doi.org/10.11646/phytotaxa.137.1.6.

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Costa, Christiane Silva Da, Aguiar-Dias, Ana Cristina Andrade De, Simões, André Olmos (2013): Securidaca marajoara (Polygalaceae), a new species from the Brazilian Amazon. Phytotaxa 137 (1): 53-56, DOI: 10.11646/phytotaxa.137.1.6, URL: http://dx.doi.org/10.11646/phytotaxa.137.1.6
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19

Silva da Costa, Christiane, Ana Cristina Andrade de Aguiar-Dias, and André Olmos Simões. "Securidaca marajoara (Polygalaceae), a new species from the Brazilian Amazon." Phytotaxa 137, no. 1 (2013): 53. http://dx.doi.org/10.11646/phytotaxa.137.1.6.

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A new species of the Polygalaceae from the Brazilian eastern Amazon, Securidaca marajoara, is described and illustrated herein. The species is morphologically similar to S. bialata but distinct on the large, conspicuous bracts persistent at flower anthesis, long inflorescences, ovate to elliptic leaves and short internodes.
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20

Olajide, Olumayokun A., F. F. Ajayi, A. I. Ekhelar, S. O. Awe, J. M. Makinde, and A. R. A. Alada. "Gastrointestinal Tract Effects of Securidaca longepedunculata Root Extract." Pharmaceutical Biology 37, no. 2 (1999): 134–37. http://dx.doi.org/10.1076/phbi.37.2.134.6078.

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21

Dibwe, Dya Fita, Suresh Awale, Shigetoshi Kadota, Hiroyuki Morita, and Yasuhiro Tezuka. "Two New Diphenylmethyl-substituted Xanthones from Securidaca longepedunculata." Natural Product Communications 9, no. 5 (2014): 1934578X1400900. http://dx.doi.org/10.1177/1934578x1400900517.

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Two new diphenylmethyl-substituted xanthones, named muchimangins K (1) and L (2), have been isolated from the roots of Securidaca longepedunculata (Polygalaceae) collected in the Democratic Republic of Congo. Their structures were established by analyses of the spectral data, including 2D NMR spectra, to be l,3,6,8-tetrahydroxy-2,5-dimethoxy-4-[l-(2,4,5-trimethoxyphenyl)-1-phenylmethyl]xanthone (1) and l,3,6-trihydroxy-4,7-dimethoxy-2-[l-(2,4,5-trimethoxyphenyl)-1-phenylmethyl]xanthone (2).
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22

Johnson, C. T. "Taxonomy of the African species of Securidaca (Polygalaceae)." South African Journal of Botany 53, no. 1 (1987): 5–11. http://dx.doi.org/10.1016/s0254-6299(16)31465-x.

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23

Kang, W. Y., and X. J. Xu. "Structure of a new xanthone from Securidaca inappendiculata." Chemistry of Natural Compounds 44, no. 4 (2008): 432–34. http://dx.doi.org/10.1007/s10600-008-9089-9.

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24

Meli Lannang, A., D. Lontsi, F. N. Ngounou, et al. "Securidacaxanthone A, a heptaoxygenated xanthone from Securidaca longepedunculata." Fitoterapia 77, no. 3 (2006): 199–202. http://dx.doi.org/10.1016/j.fitote.2006.01.006.

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25

Khomari, Fatemeh, Bahar Kiani, Shahin Alizadeh-Fanalou, et al. "Effectiveness of Hydroalcoholic Seed Extract of Securigera securidaca on Pancreatic Local Renin-Angiotensin System and Its Alternative Pathway in Streptozotocin-Induced Diabetic Animal Model." Oxidative Medicine and Cellular Longevity 2023 (January 7, 2023): 1–14. http://dx.doi.org/10.1155/2023/7285036.

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Background. Available data suggest inhibition of the pancreatic local-renin-angiotensin system (RAS) reduces tissue complications of diabetes. The purpose of the present study was to investigate the effect of hydroalcoholic seed extract of Securigera securidaca (S. securidaca) (HESS) on the pancreatic local-RAS and its alternative pathway. Methods. Three doses of HESS were orally administered to three groups of diabetic male Wistar rats, and the results were compared with both diabetic and healthy control groups. After 35 days of treatment, the groups were assessed for the levels of pancreatic
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26

Musa, D. Danladi, A. Adamu Aliero, and A. Muhammad Gumi. "DETERMINATION OF MEDIAN LETHAL DOSE (LD50) OF BITIS ARIETANS VENOM AND ANTILETHALITY OF ADANSONIA DIGITATA AND SECURIDACA LONGEPEDUNCULATA LEAVES EXTRACTS." FUDMA JOURNAL OF SCIENCES 9 (May 21, 2025): 332–35. https://doi.org/10.33003/fjs-2025-09(ahbsi)-3607.

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Traditional medicine had become the oldest form of health care system in many countries of the world including Nigeria. The present study aimed at documenting ethnomedicinal plants for the treatment of snakebites in Katsina State, Nigeria. The target group of the population includes herbalists and snakebite victims; ethnobotanical information was obtained through an oral interview using a semi-structured questionnaire. A total of 300 respondents were interviewed in this study. The respondents exposed the use of 25 medicinal plants for the treatment of snakebites in the study area. The most com
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27

Pastore, José Floriano Barêa, and João Barros da Silveira. "Flora das cangas da Serra dos Carajás, Pará, Brasil: Polygalaceae." Rodriguésia 67, no. 5spe (2016): 1451–58. http://dx.doi.org/10.1590/2175-7860201667547.

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Resumo Apresenta-se um estudo florístico das espécies de Polygalaceae ocorrentes nas cangas da Serra dos Carajás (Pará). São apresentadas descrições, chaves taxonômicas, ilustrações e comentários taxonômicos dos táxons. Neste estudo foram encontradas seis espécies distribuídas em quatro gêneros: Bredemeyera divaricata, B. floribunda, Caamembeca spectabilis, Polygala adenophora, Securidaca diversifolia e S. rivinifolia, nenhuma delas endêmica da região ou do estado do Pará.
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28

Zhang, Li-jie, Xue-dong Yang, Li-zhen Xu, and Shi-lin Yang. "Three New Xanthones from the Roots of Securidaca inappendiculata." HETEROCYCLES 65, no. 7 (2005): 1685. http://dx.doi.org/10.3987/com-05-10392.

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Mitaine-Offer, Anne-Claire, Nicolas Pénez, Tomofumi Miyamoto, et al. "Acylated triterpene saponins from the roots of Securidaca longepedunculata." Phytochemistry 71, no. 1 (2010): 90–94. http://dx.doi.org/10.1016/j.phytochem.2009.09.022.

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30

Zuo, Jian, Kun-jun Mao, Fei Yuan, Xiang Li, and Jian-wei Chen. "Xanthones with anti-tumor activity isolated from Securidaca inappendiculata." Medicinal Chemistry Research 23, no. 11 (2014): 4865–71. http://dx.doi.org/10.1007/s00044-014-1051-8.

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31

Tofighi, Zahra, Fahimeh Moradi-Afrapoli, Samad Nejad Ebrahimi, et al. "Securigenin glycosides as hypoglycemic principles of Securigera securidaca seeds." Journal of Natural Medicines 71, no. 1 (2016): 272–80. http://dx.doi.org/10.1007/s11418-016-1060-7.

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32

De Tommasi, Nunziatina, Sonia Piacente, Francesco De Simone, and Cosimo Pizza. "New Sucrose Derivatives from the Bark of Securidaca longipedunculata." Journal of Natural Products 56, no. 1 (1993): 134–37. http://dx.doi.org/10.1021/np50091a020.

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33

Ji, Junyang, Qiwen Wang, Maolin Wang, Jianwei Chen, and Xiang Li. "Chemical constituents from the stems of Securidaca inappendiculata Hassk." Fitoterapia 137 (September 2019): 104271. http://dx.doi.org/10.1016/j.fitote.2019.104271.

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34

Dibwe, Dya Fita, Suresh Awale, Shigetoshi Kadota, Hiroyuki Morita, and Yasuhiro Tezuka. "Heptaoxygenated xanthones as anti-austerity agents from Securidaca longepedunculata." Bioorganic & Medicinal Chemistry 21, no. 24 (2013): 7663–68. http://dx.doi.org/10.1016/j.bmc.2013.10.027.

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35

Karama, Issa, Vincent Ouedraogo, Ablassé Rouamba, Moussa Compaoré, and Martin Kiendrebeogo. "Total triterpene content, antioxidant activity and acute toxicity study of Securidaca longepedunculara Fresen." Journal of Drug Delivery and Therapeutics 12, no. 2 (2022): 63–67. http://dx.doi.org/10.22270/jddt.v12i2.5378.

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Plants are widely used in developing countries for traditional medicine. Knowledge of biological activities and phytochemistry is necessary for the safe use of these plants in traditional medicine. Securidaca longepedunculata is a medicinal plant whose roots are widely used in the treatment of several diseases. In this study the content of total triterpenes in leaf and root bark was assessed. The antioxidant activity by the ABTS method was evaluated as well as the effect of the extracts on lipid peroxidation of mice liver cell membranes. Acute toxicity was evaluated at the dose of 2000 mg / mL
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36

Ndamitso, M. M, Mohammed, et al. "Phytochemical and antibacterial activity of Securidaca longepedunculata on selected pathogens." African Journal of Microbiology Research 7, no. 50 (2013): 5652–56. http://dx.doi.org/10.5897/ajmr2013.5354.

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37

Dibwe, Dya Fita, Suresh Awale, Shigetoshi Kadota, and Yasuhiro Tezuka. "Muchimangins A–D: novel diphenylmethyl-substituted xanthones from Securidaca longepedunculata." Tetrahedron Letters 53, no. 46 (2012): 6186–90. http://dx.doi.org/10.1016/j.tetlet.2012.08.115.

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38

Ji, Junyang, Qiwen Wang, Maolin Wang, Jianwei Chen, and Xiang Li. "New lignan glycosides from the stems of Securidaca inappendiculata Hassk." Phytochemistry Letters 31 (June 2019): 58–62. http://dx.doi.org/10.1016/j.phytol.2019.03.011.

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39

Meyer, J. J. Marion, N. C. Rakuambo, and A. A. Hussein. "Novel xanthones from Securidaca longepedunculata with activity against erectile dysfunction." Journal of Ethnopharmacology 119, no. 3 (2008): 599–603. http://dx.doi.org/10.1016/j.jep.2008.06.018.

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40

Rakuambo, N. C., J. J. M. Meyer, and A. Hussein. "Xanthone isolated from Securidaca longependunculata with activity against erectile dysfunction." Fitoterapia 75, no. 5 (2004): 497–99. http://dx.doi.org/10.1016/j.fitote.2004.03.010.

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41

Wendyam, Fabrice NIKIEMA, KOÏTA Kadidia, Pawindé ZIDA Elisabeth, and Blaise KABORE Koudougou. "In vitro Management of Bipolaris oryzae the Causal Pathogen of Brown Spot of Rice by Plant Extracts." International Journal of Sciences Volume 7, no. 2017-12 (2018): 42–47. https://doi.org/10.5281/zenodo.3350160.

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The antifungal potential of aqueous roots extracts of Securidaca longepedonculata and essential oil from leaves and flowering buds of Lippia multiflora against Bipolaris oryzae, causal agent of brown spot of rice was evaluated. Conidia of B. oryzae (Breda de Haan) Shoem, isolated on naturally infected leaves of the variety FKR19. The efficacy of the extracts to inhibit fungal growth was tested using well diffusion method onto PDA (Potato Dextrose Agar) growth medium in Petri plates. Results were record from the 5rd day until complete growth in control plates. The fresh root extracts of Securid
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42

Dembele, Daouda Lassine, Aimé Ainin Somboro, Sékou Doumbia, Mamadou Lamine Diarra, Mahamane Haïdara, and Sanogo Rokia. "Etude pharmacognosique des feuilles, écorces de racines, écorces de tronc et de la racine entière de <i>Securidaca longipeduncultata</i> Fresen (Polygalaceae), récoltées au Mali." International Journal of Biological and Chemical Sciences 17, no. 4 (2023): 1701–16. http://dx.doi.org/10.4314/ijbcs.v17i4.32.

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Au Mali, les racines de Securidaca longipedunculata sont fortement utilisées et les peuplements de l’espèce se font de plus en plus rares. Ce travail visait à effectuer une étude comparative des paramètres pharmacognosiques des feuilles, écorces de tronc, écorces de racine et de la racine entière. Les échantillons ont été analysés pour déterminer les caractéristiques botaniques et physicochimiques. Des extraits aqueux et organiques ont été préparés pour caractériser les principaux constituants bioactifs par des techniques colorimétriques et chromatographiques. Les composés majoritaires ont été
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43

Hassan, Lawal G., Kabiru J. Umar, Amina J. Yusuf, Ephraim Okolo, and Umar A. Umar. "Characterization and Evaluation of Antimicrobial Activity of Sorbitan Isolated from the Leaves of <i>Securidaca longipedunculata</i> (Fresen)." Caliphate Journal of Science and Technology 6, no. 1 (2024): 54–60. http://dx.doi.org/10.4314/cajost.v6i1.7.

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Securidaca longipedunculata is a shrub of the family Polygalaceae. It is a potent medicinal plant used in management of microbial infection others. The aim of this study is to characterize, and evaluate the antimicrobial activity of sorbitan isolated from the leaves of Securidaca Longipedunculata (Fresen). The methanol extract of S. longipedunculata was subjected to chromatographic purification, which led to isolation of compound identified as sorbitan by analysis of the 1D and 2D-NMR spectral data. The antimicrobial screening against bacterial pathogens (Methicillin-resistant staphylococcus a
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44

Lüdtke, Raquel, Tatiana Teixeira de Souza-Chies, and Silvia Teresinha Sfoggia Miotto. "O gênero Polygala L. (Polygalaceae) na região Sul do Brasil." Hoehnea 40, no. 1 (2013): 1–50. http://dx.doi.org/10.1590/s2236-89062013000100001.

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A família Polygalaceae está representada por cinco gêneros no Sul do Brasil: Acanthocladus, Bredemeyera, Monnina, Polygala e Securidaca. O gênero Polygala é o mais abundante da família Polygalaceae, com aproximadamente 725 espécies mundialmente distribuídas nos mais diversos ambientes. Na flora brasileira são conhecidos 140 táxons de Polygala. Foram reconhecidas 39 espécies de Polygala para a região Sul do Brasil, pertencentes aos subgêneros Hebeclada, Ligustrina e Polygala, sendo o último o que concentra o maior número de espécies, 31. São fornecidas descrições dos táxons, ilustrações, chaves
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45

O, Abonyi, Uzoegwu P.N, Ezugwu A. L, et al. "In Vitro Antioxidant Profile of Methanol Leaf Extract of Securidaca longepedunculata." IOSR Journal of Dental and Medical Sciences 13, no. 11 (2014): 75–81. http://dx.doi.org/10.9790/0853-131157581.

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46

Cláudio Minisso, Isac, Geraldo Alfredo Gueze, and Gisele Lopes de Oliveira. "APLICAÇÃO DE EXTRATOS DE SECURIDACA LONGEPEDUNCULATA EM EXPERIÊNCIAS ESCOLARES DE QUÍMICAS*." Revista Ciência Geográfica 26, no. 01 (2022): 544–54. http://dx.doi.org/10.18817/26755122.26.01.2022.2905.

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Os extratos vegetais vem sendo utilizados desde século XVII como materiais didáticos, especificamente como indicadores de substâncias químicas. Diante de situações de carência de materiais e reagentes, os professores são chamados a serem criativos, usando meios mais disponíveis no seu contexto. Este estudo foi desenvolvido com objetivo de avaliar o efeito dos extratos da casca de caule de Securidaca longepedunculata para a demonstração da influência dos fatores cinéticos na velocidade das reações químicas. A matéria vegetal foi seca e processada em pó. A pesquisa foi experimental com quatro en
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47

Agu M. O, Agu M. O. "Evaluation of Violet Plant (Securidaca longepedunculata) Roots as an Emulsifying Agent." IOSR Journal of Applied Chemistry 4, no. 4 (2013): 5–9. http://dx.doi.org/10.9790/5736-0440509.

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Dibwe, Dya Fita, Suresh Awale, Shigetoshi Kadota, Hiroyuki Morita, and Yasuhiro Tezuka. "Muchimangins E and F: novel diphenylmethyl-substituted xanthones from Securidaca longepedunculata." Tetrahedron Letters 55, no. 11 (2014): 1916–19. http://dx.doi.org/10.1016/j.tetlet.2014.01.149.

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Zha, Haiyan, Zhi Wang, Xuedong Yang, et al. "New acylated triterpene saponins from the roots of Securidaca inappendiculata Hassk." Phytochemistry Letters 13 (September 2015): 108–13. http://dx.doi.org/10.1016/j.phytol.2015.05.022.

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Yang, Can, Zhi Wang, Yan Qiu, Haiyan Zha, and Xuedong Yang. "New hemiterpene and furolactone-type lignan glycosides from Securidaca inappendiculata Hassk." Phytochemistry Letters 37 (June 2020): 42–46. http://dx.doi.org/10.1016/j.phytol.2020.04.001.

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