e-ISSN: 2322-0139 p-ISSN: 2322-0120
Articles published in Research & Reviews: Journal of Pharmacology and Toxicological Studies have been cited by esteemed scholars and scientists all around the world. Research & Reviews: Journal of Pharmacology and Toxicological Studies has got h-index 10, which means every article in Research & Reviews: Journal of Pharmacology and Toxicological Studies has got 10 average citations.
Following are the list of articles that have cited the articles published in Research & Reviews: Journal of Pharmacology and Toxicological Studies.
2024 | 2023 | 2022 | 2021 | 2020 | 2019 | 2018 | 2017 | 2016 | 2015 | 2014 | 2013 | |
---|---|---|---|---|---|---|---|---|---|---|---|---|
Total published articles |
26 | 36 | 31 | 29 | 8 | 2 | 8 | 7 | 73 | 38 | 32 | 11 |
Research, Review articles and Editorials |
0 | 0 | 9 | 8 | 0 | 1 | 7 | 7 | 88 | 34 | 32 | 11 |
Research communications, Review communications, Editorial communications, Case reports and Commentary |
20 | 36 | 22 | 21 | 3 | 1 | 1 | 0 | 0 | 0 | 0 | 0 |
Conference proceedings |
0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 |
Citations received as per Google Scholar, other indexing platforms and portals |
20 | 34 | 40 | 34 | 47 | 56 | 42 | 28 | 36 | 41 | 12 | 1 |
Journal total citations count | 353 |
Journal impact factor | 2.16 |
Journal 5 years impact factor | 3.91 |
Journal cite score | 3.87 |
Journal h-index | 10 |
Journal h-index since 2019 | 8 |
Journal Impact Factor 2020 formula |
IF= Citations(y)/{Publications(y-1)+ Publications(y-2)} Y= Year |
Journal 5-year Impact Factor 2020 formula |
Citations(2018 + 2019 + 2020 + 2021 + 2022)/ {Published articles(2018 + 2019 + 2020 + 2021 + 2022)} |
Journal citescore |
Citescorey = Citationsy + Citationsy-1 + Citationsy-2 + Citations y-3 / Published articlesy + Published articlesy-1 + Published articlesy-2 + Published articles y-3 |
Narayanan, j. and marimuthu alias antonysamy, j., 2017. larvicidal potential of cyathea species against culex quinquefasciatus. pharmaceutical and biomedical research, 3(1), pp.48-51.
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Narayanan, j. and marimuthu alias antonysamy, j., 2017. larvicidal potential of cyathea species against culex quinquefasciatus. pharmaceutical and biomedical research, 3(1), pp.48-51.
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Nath, k., talukdar, a.d., bhattacharya, m.k., bhowmik, d., chetri, s., choudhury, d., mitra, a. and choudhury, n.a., 2019. cyathea gigantea (cyatheaceae) as an antimicrobial agent against multidrug resistant organisms. bmc complementary and alternative medicine, 19(1), pp.1-8.
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Suresh, j., pradheesh, g., alexramani, v. and ig hong, s., 2018. phytochemical screening, characterization and antimicrobial, anticancer activity of biosynthesized zinc oxide nanoparticles using cyathea nilgiriensis holttum plant extract. journal of bionanoscience, 12(1), pp.37-48.
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Vetter, j., 2018. secondary metabolites of ferns. in current advances in fern research (pp. 305-327). springer, cham.
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Alias antonysamy, m.j., santhanam, a., thangaiah, s. and narayanan, j., 2018. green synthesis of silver nanoparticles using cyathea nilgirensis holttum and their cytotoxic and phytotoxic potentials. particulate science and technology, 36(5), pp.578-582.
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Sawarkar, a., sharma, r.k., gautam, v., shramankar, k. and dinodia, n., 2019. pharmacovigilance: present status and future perspectives. the pharma innovation journal, 8(8), pp.84-92.
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Verma, n. and chouhan, u., 2019. admet prediction of dual pparα/γ agonists for identification of potential anti-diabetic agents. in machine intelligence and signal analysis (pp. 355-362). springer, singapore.
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Esteoulle, l., 2018. développement de conjugués peptidiques fluorocarbonés pour augmenter la stabilité plasmatique de peptides visant des récepteurs couplés aux protéines g (doctoral dissertation, strasbourg).
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Yegorova, a.v., maltsev, g.v., scrypynets, y.v., kashutskÃÆy, s.n. and antonovich, v.p., 2019. study of interaction of fabomotizole dihydrochloride with human serum albumin by fluorescent method. ÃâÃâÃÂýøú ÞôõÃÂÃÅúþóþ ýðÃâ ÃâþýðûÃÅýþóþ ÃÆýÃâòõÃâ¬ÃÂøÃâõÃâÃÆ. ÃÂ¥ÃâüÃâÃÂ, 24(2 (70)), pp.6-19.
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Yegorova, a., scrypynets, y., maltsev, g., leonenko, i., antonovich, v., kashutskÃÆy, s. and voitiuk, o., 2020. spectroscopic studies on the interaction between novel antiviral drug favipiravir and serum albumins. french-ukrainian journal of chemistry, 8(2), pp.93-103.
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Khalid, i.m., abu sharkh, s.e., samamarh, h., alfaqeeh, r., abuteir, m.m. and darwish, s.m., 2019. spectroscopic characterization of the interaction between dopamine and human serum albumin.
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Qashqoosh, m.t., alahdal, f.a., manea, y.k., zubair, s. and naqvi, s., 2021. influence of tween 80 surfactant on the binding of roxatidine acetate and roxatidine acetate–loaded chitosan nanoparticles to lysozyme.
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Lelis, c.a., 2019. intermolecular interactions between milk proteins and molecules of interest in the food area.
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Alsamamra, h., abuteir, m. and darwish, s., 2019, january. biophysical interaction of propylthiouracil with human and bovine serum albumins. bmc.
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Yegorova, a.v., maltsev, g.v., scrypynets, y.v. and antonovich, v.p., 2018. spectroscopic study of interaction of indomethacin and daclatasvir digidrochloride with human serum albumin. ÃâÃâÃÂýøú ÞôõÃÂÃÅúþóþ ýðÃâ ÃâþýðûÃÅýþóþ ÃÆýÃâòõÃâ¬ÃÂøÃâõÃâÃÆ. ÃÂ¥ÃâüÃâÃÂ, 23(1 (65)), pp.96-108.
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Yegorova, a.v., maltsev, g.v., scrypynets, y.v. and antonovich, v.p., 2018. spectroscopic study of interaction of indomethacin and daclatasvir digidrochloride with human serum albumin. ÃâÃâÃÂýøú ÞôõÃÂÃÅúþóþ ýðÃâ ÃâþýðûÃÅýþóþ ÃÆýÃâòõÃâ¬ÃÂøÃâõÃâÃÆ. ÃÂ¥ÃâüÃâÃÂ, 23(1 (65)), pp.96-108.
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Das, r.p., singh, b.g., kunwar, a. and priyadarsini, k.i., 2019. interaction of a model hydrophobic drug dimethylcurcumin with albumin nanoparticles. the protein journal, 38(6), pp.649-657.
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Da silva, c.f., ramos, l.c.b., rohrabaugh, t.n., vandevord, j.m., da silva, r.s., turro, c. and nikolaou, s., 2020. exploring the structure of a ruthenium acetate cluster for biological purposes. inorganic chemistry communications, 114, p.107810.
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Qashqoosh, m.t., alahdal, f.a., manea, y.k., zakariya, s.m. and naqvi, s., 2019. synthesis, characterization and spectroscopic studies of surfactant loaded antiulcer drug into chitosan nanoparticles for interaction with bovine serum albumin. chemical physics, 527, p.110462.
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