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Structured Review

BASF itraconazole (itr
Molecular structure of drugs: ( a ) acetaminophen, ( b ) <t>itraconazole,</t> ( c ) griseofulvine and polymers, ( d ) basic butylated methacrylate copolymer, ( e ) Soluplus ® , and ( f ) vinylpyrrolidone/vinyl acetate copolymer.
Itraconazole (Itr, supplied by BASF, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/itraconazole (itr/product/BASF
Average 90 stars, based on 1 article reviews
itraconazole (itr - by Bioz Stars, 2026-02
90/100 stars

Images

1) Product Images from "Composition Dependency of the Flory–Huggins Interaction Parameter in Drug–Polymer Phase Behavior"

Article Title: Composition Dependency of the Flory–Huggins Interaction Parameter in Drug–Polymer Phase Behavior

Journal: Pharmaceutics

doi: 10.3390/pharmaceutics15122650

Molecular structure of drugs: ( a ) acetaminophen, ( b ) itraconazole, ( c ) griseofulvine and polymers, ( d ) basic butylated methacrylate copolymer, ( e ) Soluplus ® , and ( f ) vinylpyrrolidone/vinyl acetate copolymer.
Figure Legend Snippet: Molecular structure of drugs: ( a ) acetaminophen, ( b ) itraconazole, ( c ) griseofulvine and polymers, ( d ) basic butylated methacrylate copolymer, ( e ) Soluplus ® , and ( f ) vinylpyrrolidone/vinyl acetate copolymer.

Techniques Used:

Flory–Huggins interaction parameter depending on the drug volume fraction of solid dispersions containing the drugs acetaminophen ( top ), itraconazole ( middle ), griseofulvine ( bottom ), and the polymers basic butylated methacrylate copolymer ( left ), Soluplus ® ( middle ), and polyvinylpyrrolidone/vinyl acetate copolymer ( right ).
Figure Legend Snippet: Flory–Huggins interaction parameter depending on the drug volume fraction of solid dispersions containing the drugs acetaminophen ( top ), itraconazole ( middle ), griseofulvine ( bottom ), and the polymers basic butylated methacrylate copolymer ( left ), Soluplus ® ( middle ), and polyvinylpyrrolidone/vinyl acetate copolymer ( right ).

Techniques Used:

Phase behavior of solid dispersions containing the drugs acetaminophen ( top ), itraconazole ( middle ), griseofulvine ( bottom ), and the polymers basic butylated methacrylate copolymer ( left ), Soluplus ® ( middle ), and vinylpyrrolidone/vinyl acetate copolymer ( right ). The literature data from Wolbert et al. are taken from their Supplementary Materials.
Figure Legend Snippet: Phase behavior of solid dispersions containing the drugs acetaminophen ( top ), itraconazole ( middle ), griseofulvine ( bottom ), and the polymers basic butylated methacrylate copolymer ( left ), Soluplus ® ( middle ), and vinylpyrrolidone/vinyl acetate copolymer ( right ). The literature data from Wolbert et al. are taken from their Supplementary Materials.

Techniques Used:



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Galleria mellonella survival curves following infection with Cryptococcus neoformans . Untreated group, uninfected larvae; Saline group, larvae injected with saline; yeast group, larvae infected with C. neoformans without any treatment; POS, C. neoformans -infected larvae treated with posaconazole (POS) alone; POS+PP, C. neoformans -infected larvae treated with POS combined with pyrvinium pamoate (PP); <t>ITR,</t> C. neoformans -infected larvae treated with <t>itraconazole</t> alone; ITR+PP, C. neoformans -infected larvae treated with ITR combined with PP; VOR, C. neoformans -infected larvae treated with voriconazole alone; VOR+PP, C. neoformans -infected larvae treated with VOR combined with PP; FLU, C. neoformans -infected larvae treated with fluconazole alone; FLU+PP, C. neoformans -infected larvae treated with FLU combined with PP; AmB, C. neoformans -infected larvae treated with amphotericin B alone; AmB+PP, C. neoformans -infected larvae treated with AmB combined with PP; PP, C. neoformans -infected larvae treated with PP alone (* p < 0.05. **** p < 0.0001).
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Image Search Results


Molecular structure of drugs: ( a ) acetaminophen, ( b ) itraconazole, ( c ) griseofulvine and polymers, ( d ) basic butylated methacrylate copolymer, ( e ) Soluplus ® , and ( f ) vinylpyrrolidone/vinyl acetate copolymer.

Journal: Pharmaceutics

Article Title: Composition Dependency of the Flory–Huggins Interaction Parameter in Drug–Polymer Phase Behavior

doi: 10.3390/pharmaceutics15122650

Figure Lengend Snippet: Molecular structure of drugs: ( a ) acetaminophen, ( b ) itraconazole, ( c ) griseofulvine and polymers, ( d ) basic butylated methacrylate copolymer, ( e ) Soluplus ® , and ( f ) vinylpyrrolidone/vinyl acetate copolymer.

Article Snippet: The drugs acetaminophen (ACE) (Caelo, Caesar & Loretz GmbH, Hilden, Germany), itraconazole (ITR) (BASF SE, Ludwigshafen, Germany) and griseofulvin (GRI) (Hawkins, Roseville, MN, USA) cover a broad spectrum of molecular weight ( ).

Techniques:

Flory–Huggins interaction parameter depending on the drug volume fraction of solid dispersions containing the drugs acetaminophen ( top ), itraconazole ( middle ), griseofulvine ( bottom ), and the polymers basic butylated methacrylate copolymer ( left ), Soluplus ® ( middle ), and polyvinylpyrrolidone/vinyl acetate copolymer ( right ).

Journal: Pharmaceutics

Article Title: Composition Dependency of the Flory–Huggins Interaction Parameter in Drug–Polymer Phase Behavior

doi: 10.3390/pharmaceutics15122650

Figure Lengend Snippet: Flory–Huggins interaction parameter depending on the drug volume fraction of solid dispersions containing the drugs acetaminophen ( top ), itraconazole ( middle ), griseofulvine ( bottom ), and the polymers basic butylated methacrylate copolymer ( left ), Soluplus ® ( middle ), and polyvinylpyrrolidone/vinyl acetate copolymer ( right ).

Article Snippet: The drugs acetaminophen (ACE) (Caelo, Caesar & Loretz GmbH, Hilden, Germany), itraconazole (ITR) (BASF SE, Ludwigshafen, Germany) and griseofulvin (GRI) (Hawkins, Roseville, MN, USA) cover a broad spectrum of molecular weight ( ).

Techniques:

Phase behavior of solid dispersions containing the drugs acetaminophen ( top ), itraconazole ( middle ), griseofulvine ( bottom ), and the polymers basic butylated methacrylate copolymer ( left ), Soluplus ® ( middle ), and vinylpyrrolidone/vinyl acetate copolymer ( right ). The literature data from Wolbert et al. are taken from their Supplementary Materials.

Journal: Pharmaceutics

Article Title: Composition Dependency of the Flory–Huggins Interaction Parameter in Drug–Polymer Phase Behavior

doi: 10.3390/pharmaceutics15122650

Figure Lengend Snippet: Phase behavior of solid dispersions containing the drugs acetaminophen ( top ), itraconazole ( middle ), griseofulvine ( bottom ), and the polymers basic butylated methacrylate copolymer ( left ), Soluplus ® ( middle ), and vinylpyrrolidone/vinyl acetate copolymer ( right ). The literature data from Wolbert et al. are taken from their Supplementary Materials.

Article Snippet: The drugs acetaminophen (ACE) (Caelo, Caesar & Loretz GmbH, Hilden, Germany), itraconazole (ITR) (BASF SE, Ludwigshafen, Germany) and griseofulvin (GRI) (Hawkins, Roseville, MN, USA) cover a broad spectrum of molecular weight ( ).

Techniques:

Galleria mellonella survival curves following infection with Cryptococcus neoformans . Untreated group, uninfected larvae; Saline group, larvae injected with saline; yeast group, larvae infected with C. neoformans without any treatment; POS, C. neoformans -infected larvae treated with posaconazole (POS) alone; POS+PP, C. neoformans -infected larvae treated with POS combined with pyrvinium pamoate (PP); ITR, C. neoformans -infected larvae treated with itraconazole alone; ITR+PP, C. neoformans -infected larvae treated with ITR combined with PP; VOR, C. neoformans -infected larvae treated with voriconazole alone; VOR+PP, C. neoformans -infected larvae treated with VOR combined with PP; FLU, C. neoformans -infected larvae treated with fluconazole alone; FLU+PP, C. neoformans -infected larvae treated with FLU combined with PP; AmB, C. neoformans -infected larvae treated with amphotericin B alone; AmB+PP, C. neoformans -infected larvae treated with AmB combined with PP; PP, C. neoformans -infected larvae treated with PP alone (* p < 0.05. **** p < 0.0001).

Journal: Frontiers in Cellular and Infection Microbiology

Article Title: Synergistic effect of pyrvinium pamoate and posaconazole against Cryptococcus neoformans in vitro and in vivo

doi: 10.3389/fcimb.2022.1074903

Figure Lengend Snippet: Galleria mellonella survival curves following infection with Cryptococcus neoformans . Untreated group, uninfected larvae; Saline group, larvae injected with saline; yeast group, larvae infected with C. neoformans without any treatment; POS, C. neoformans -infected larvae treated with posaconazole (POS) alone; POS+PP, C. neoformans -infected larvae treated with POS combined with pyrvinium pamoate (PP); ITR, C. neoformans -infected larvae treated with itraconazole alone; ITR+PP, C. neoformans -infected larvae treated with ITR combined with PP; VOR, C. neoformans -infected larvae treated with voriconazole alone; VOR+PP, C. neoformans -infected larvae treated with VOR combined with PP; FLU, C. neoformans -infected larvae treated with fluconazole alone; FLU+PP, C. neoformans -infected larvae treated with FLU combined with PP; AmB, C. neoformans -infected larvae treated with amphotericin B alone; AmB+PP, C. neoformans -infected larvae treated with AmB combined with PP; PP, C. neoformans -infected larvae treated with PP alone (* p < 0.05. **** p < 0.0001).

Article Snippet: All drugs, including itraconazole (ITR) (Lot No. s2476), voriconazole (VOR) (Lot No. s1442), posaconazole (POS) (Lot No., s1257), FLU (Lot No. s1331), PP (lot No.5816), and AmB (lot No.1636) were both purchased as powders from Selleck.cn, were dissolved in dimethyl sulfoxide or water (FLU) to a concentration of 6400ug/ml and stored at – 20°C.

Techniques: Infection, Saline, Injection