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Journal Flyer
Journal of Bioequivalence & Bioavailability

Articles published in Journal of Bioequivalence & Bioavailability have been cited by esteemed scholars and scientists all around the world. Journal of Bioequivalence & Bioavailability has got h-index 26, which means every article in Journal of Bioequivalence & Bioavailability has got 26 average citations.

Following are the list of articles that have cited the articles published in Journal of Bioequivalence & Bioavailability.

  2022 2021 2020 2019 2018

Year wise published articles

60 61 19 6 27

Year wise citations received

394 412 405 380 363
Journal total citations count 4363
Journal Impact Factor 6.89
Journal 5 years Impact Factor 11.60
Journal CiteScore 14.43
Journal h-index 26
Important citations

Renati D, Vinay CV (2014) Role of Novel Hole Technology in Fast Dissolving Tablets. J Mol Pharm Org Process Res.

Damodar R, Movva B, Mallikarjun PN, Pasumarthy C, Kona N, Varsha PV (2014) Formulation and evaluation of fast dissolving tablets of diclofenac sodium by novel hole technology. J Mol Pharm Org Process Res 2:2-6.

Parthasarathi D, Gajendra C, Dattatreya A, Venkatesh YS (2011) Analysis of pharmacokinetic & pharmacodynamic models in oral and transdermal dosage forms. J Bioequiv Availab 3:268-276.

Patnaik S, Aditha SK, Rattan T, Kamisetti V (2015) Aceclofenac-Soluplus® nanocomposites for increased bioavailability. Soft Nanosci Lett 5:13.

Shakeel F, Ramadan W, Shafiq S (2009) Solubility and dissolution improvement of aceclofenac using different nanocarriers. J Bioequiv Availab 1:39-43.

Shakeel F, Shafiq S, Haq N, Alanazi FK, Alsarra IA (2012) Nanoemulsions as potential vehicles for transdermal and dermal delivery of hydrophobic compounds: an overview. Expert Opinion Drug Deliv 9:953-974.

Maali A, Mosavian MH (2013) Preparation and application of nanoemulsions in the last decade (2000–2010). J Dispers Sci Technol 34:92-105.

Zhang G, Li Q, Gao W, Liu S, Wu R, Shen Z, et al. (2018) Copper chloride dose-dependently alters spatial learning and memory, and glutamate levels, in the hippocampus of rats. Mol Med Rep 17:4074-4082.

Subasree S (2014) Prevalence of Thyroid Disroders in India: An Overview. Res J Pharm Technol 7:1165.

Srilatha B, Bindu AH, Soumya D (2011) Epidemiology and treatment for thyroid cancer. J Cancer Sci Ther 3.

Jorna R (2013) Disturbance of Transcription Factor Dynamics in Mammalian Cells: Knock-In, Knock-Down, Knock-Out or Anchor-Away.

McGinty S, McKee S, McCormick WRM, Christopher (2013) Modeling arterial wall drug concentrations following the insertion of a drug-eluting stent. SIAM J Appl Mathe 73:2004-2028.

Chawla V (2017) In Vitro Diabetic-Hypertensive Cellular-Response Evaluation Model for In-Stent Restenosis.

Si Y, Chu H, Zhu W, Xiao T, Shen X, Fu Y, et al. (2018) Concentration‑dependent effects of rapamycin on proliferation, migration and apoptosis of endothelial cells in human venous malformation. Exp Ther Med 16:4595-601.

Kim Y, Park JK, Seo JH, Ryu HS, Lim KS, Jeong MH, et al. (2018) A rapamycin derivative, biolimus, preferentially activates autophagy in vascular smooth muscle cells. Sci Rep 8:16551.

Mohanty AK, Mohanta GP (2014) Biodegradable Amphiphilic Diblock Copolymer as Drug Carriers. J Pharma Sci Pharmacol 1:40-53.

Saha R, Mandal PK (2017) Effects of interstrut distance on the transport of drug and its retention in the arterial tissue. Int J Appl Comput Math 3:2039-54.

Mackay A, Peddi S, Pan X (2018) Intracellular delivery of Rapamycin from FKBP elastin-like polypeptides is consistent with macropinocytosis. Front Pharmacol 9:1184.

Zhao J, Mo Z, Guo F, Shi D, Han QQ, Liu Q (2018) Drug loaded nanoparticle coating on totally bioresorbable PLLA stents to prevent in‐stent restenosis. J  Biomed Mater Res Part B: Appl Biomater 106:88-95.

Ma Q, Nie X, Yu M, Wang Z, Yang S, Jia D, et al. (2012) Rapamycin regulates the expression and activity of krüppel-like transcription factor 2 in human umbilical vein endothelial cells. PloS one 7:e43315.