24
Views
24
CrossRef citations to date
0
Altmetric
Research Article

Inclusion Complexation of 4-Biphenylacetic Acid with β-Cyclodextrin

, , , , , & show all
Pages 395-413 | Published online: 20 Oct 2008

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

David Diaz, Ma. Josefa Bernad Bemad, Jesús Gracia Mora & Carolina Marta Escobar Llanos. (1998) Complexation and Solubility Behavior of Albendazole with Some Cyclodextrins. Pharmaceutical Development and Technology 3:3, pages 395-403.
Read now
M. D. Dhanaraju, K. Senthil Kumaran, T. Baskaran & M. Sree Rama Moorthy. (1998) Enhancement of Bioavailability of Griseofulvin by Its Complexation with β-Cyclodextrin. Drug Development and Industrial Pharmacy 24:6, pages 583-587.
Read now
Giovanni Filippo Palmieri, Depalmo Galli-Angeli, Gaetana Giovannucci & Sante Martelli. (1997) Inclusion of Methoxybutropate in β-and Hydroxypropyl β-Cyclodextrins: Comparison of Preparation Methods. Drug Development and Industrial Pharmacy 23:1, pages 27-37.
Read now
C. A. Ventura, G. Puglisi, G. Giammona & F. A. Bottino. (1994) Comparative study on Inclusion compounds of 4-Biphenylacetic acid with β-Cyclodextrin, Hydroxypropylated-β-Cyclodextrins, and methylated-β-Cyclodextrins. Drug Development and Industrial Pharmacy 20:14, pages 2245-2265.
Read now
N. M. Sanghavi, K. B. Choudhari, R. S. Matharu & Latha Viswanathan. (1993) Inclusion Complexation of Lorazepam with β — Cyclodextrin. Drug Development and Industrial Pharmacy 19:6, pages 701-712.
Read now

Articles from other publishers (19)

Eric W. Ziegler, Alan B. Brown, Nasri Nesnas, Christopher D. Chouinard, Anil K. Mehta & Andrew G. Palmer. (2020) β‐Cyclodextrin Encapsulation of Synthetic AHLs: Drug Delivery Implications and Quorum‐Quenching Exploits. ChemBioChem 22:7, pages 1292-1301.
Crossref
Meiling Liu, Jianhui Deng, Cailang Lai, Qiong Chen, Qiangqing Zhao, Youyu Zhang, Haitao Li & Shouzhuo Yao. (2012) Synthesis, characterization of conjugated oligo-phenylene-ethynylenes and their supramolecular interaction with β-cyclodextrin for salicylaldehyde detection. Talanta 100, pages 229-238.
Crossref
G Puglisi, C A Ventura, A Spadaro, G Campana & S Spampinato. (1995) Differential Effects of Modified β-Cyclodextrins on Pharmacological Activity and Bioavailability of 4-Biphenylacetic Acid in Rats after Oral Administration. Journal of Pharmacy and Pharmacology 47:2, pages 120-123.
Crossref
G Puglisi, N A Santagati, C A Ventura, R Pignatello, A M Panico & S Spampinato. (1991) Enhancement of 4-biphenylacetic acid bioavailability in rats by its β-cyclodextrin complex after oral administration. Journal of Pharmacy and Pharmacology 43:6, pages 430-432.
Crossref
Samuel Yalkowshy, Yan He & Parijat Jain. 2010. Handbook of Aqueous Solubility Data, Second Edition. Handbook of Aqueous Solubility Data, Second Edition 1367 1440 .
Wei-Qin (Tony) Tong & Hong Wen. 2008. Water-Insoluble Drug Formulation, Second Edition. Water-Insoluble Drug Formulation, Second Edition 133 159 .
I. V. Muthu Vijayan Enoch & M. Swaminathan. (2006) Stoichiometrically Different Inclusion Complexes of 2-Aminofluorene and 2-Amino-9-Hydroxyfluorene in β-Cyclodextrin: A Spectrofluorimetric Study. Journal of Fluorescence 16:5, pages 697-704.
Crossref
Yongqiang Li, Nicolas Taulier, Andrew M. Rauth & Xiao Yu Wu. (2006) Screening of Lipid Carriers and Characterization of Drug-Polymer-Lipid Interactions for the Rational Design of Polymer-Lipid Hybrid Nanoparticles (PLN). Pharmaceutical Research 23:8, pages 1877-1887.
Crossref
Guomei Zhang, Shaomin Shuang, Chuan Dong, Diansheng Liu & Martin M.F. Choi. (2004) Investigation on DNA assembly to neutral red-cyclodextrin complex by molecular spectroscopy. Journal of Photochemistry and Photobiology B: Biology 74:2-3, pages 127-134.
Crossref
Guomei Zhang, Shaomin Shuang, Chuan Dong & Jinghao Pan. (2003) Study on the interaction of methylene blue with cyclodextrin derivatives by absorption and fluorescence spectroscopy. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 59:13, pages 2935-2941.
Crossref
Ferdinando Giordano, Csaba Novak & José Ramón Moyano. (2001) Thermal analysis of cyclodextrins and their inclusion compounds. Thermochimica Acta 380:2, pages 123-151.
Crossref
Gul Majid Khan .Farmanull Wazir .Jia-bi Zhu .. (2001) Ibuprofen-cyclodextrin Inclusion Complexes: Evaluation of Different Complexation Methods. Journal of Medical Sciences(Faisalabad) 1:4, pages 193-199.
Crossref
Zhuobin Yuan, Min Zhu & Shubo Han. (1999) Supramolecular inclusion complex formation and application of β-cyclodextrin with heteroanthracene ring cationic dyes. Analytica Chimica Acta 389:1-3, pages 291-298.
Crossref
Brenda McCormack & Gregory Gregoriadis. (1998) Drugs-in-cyclodextrins-in-liposomes: an approach to controlling the fate of water insoluble drugs in vivo. International Journal of Pharmaceutics 162:1-2, pages 59-69.
Crossref
Brenda McCormack & Gregory Gregoriadis. (1996) Comparative studies of the fate of free and liposome-entrapped hydroxypropyl-β-cyclodextrin/drug complexes after intravenous injection into rats: implications in drug delivery. Biochimica et Biophysica Acta (BBA) - General Subjects 1291:3, pages 237-244.
Crossref
Brenda McCormack & Gregory Gregoriadis. (1994) Drugs-in-cyclodextrins-in liposomes: a novel concept in drug delivery. International Journal of Pharmaceutics 112:3, pages 249-258.
Crossref
Francesco Castelli, Giovanni Puglisi, Gaetano Giammona & Cinzia Anna Ventura. (1992) Effect of the complexation of some nonsteroidal anti-inflammatory drugs with β-cyclodextrin on the interaction with phosphatidylcholine liposomes. International Journal of Pharmaceutics 88:1-3, pages 1-8.
Crossref
V. Turco Liveri, G. Cavallaro, G. Giammona, G. Pitarresi, G. Puglisi & C. Ventura. (1992) Calorimetric investigation of the complex formation between surfactants and α-, β- and γ-cyclodextrins. Thermochimica Acta 199, pages 125-132.
Crossref
Francesco Castelli, Gaetano Giammona, Giovanni Puglisi, Bianca Carlisi & Salvatore Gurrieri. (1990) Interaction of macromolecular pro-drugs with lipid model membrane: calorimetric study of 4-biphenylacetic acid linked to α,β-poly(N-hydroxyethyl)-dl-aspartamide interacting with phosphatidylcholine vesicles. International Journal of Pharmaceutics 59:1, pages 19-25.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.