Study of antifungal agent caspofungin adsorption to laboratory materials

•Adsorption of caspofungin on plastic materials, questions results obtained in vitro.•The caspofungin adsorption occurs on various materials such as plastic and glassware.•Effect of container, pH and organic solvent was studied on caspofungin adsorption.•The use of acidic pH avoids adsorption of cas...

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Published in:Journal of chromatography. B, Analytical technologies in the biomedical and life sciences Vol. 1188; p. 123060
Main Authors: Uribe, B., Yaldebere, A., González, O., Guruceaga, X., Ramirez-Garcia, A., Rementeria, A., Ba, B.B., Gaudin, K., Alonso, R.M.
Format: Journal Article
Language:English
Published: Netherlands Elsevier B.V 01-01-2022
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Abstract •Adsorption of caspofungin on plastic materials, questions results obtained in vitro.•The caspofungin adsorption occurs on various materials such as plastic and glassware.•Effect of container, pH and organic solvent was studied on caspofungin adsorption.•The use of acidic pH avoids adsorption of caspofungin on glassware material.•Addition of organic solvent avoids adsorption of caspofungin on glassware material. Treatment of invasive fungal infections with Caspofungin is used as the first-line antifungal agents. The minimum inhibitory concentration value is a test which indicates the degree of sensitivity of a strain regarding a drug. However, no value of minimum inhibitory concentration for caspofungin is available because very variable value is obtained. In this work, we study the link with the adsorption phenomenon of CSF previously described in literature and the lack of minimum inhibitory concentration value. A systematic study of the impact of different parameters on CSF adsorption is reported. The effect of the nature of container material, the aqueous solution pH and the organic solvent proportion was studied. In addition, the possibility of using a coating agent to minimize the adsorption was assayed and evaluated. Results obtained showed the importance of the material used during the manipulation of CSF. The use of acidic pH aqueous solution or the addition of acetonitrile or methanol proportions (50 % and 70 %, respectively) were found efficient to avoid adsorption of CSF on glassware material, which is the relevant strategy for analytical samples of caspofungin. The treatment of HPLC glass vials and 96-well plates with N-(2-aminoethyl)-3-aminopropyltrimethoxysilane reduced the adsorption. The significant adsorption observed in this work especially with plastic materials, questions the results obtained before in different assays and explained the absence of MIC value.
AbstractList •Adsorption of caspofungin on plastic materials, questions results obtained in vitro.•The caspofungin adsorption occurs on various materials such as plastic and glassware.•Effect of container, pH and organic solvent was studied on caspofungin adsorption.•The use of acidic pH avoids adsorption of caspofungin on glassware material.•Addition of organic solvent avoids adsorption of caspofungin on glassware material. Treatment of invasive fungal infections with Caspofungin is used as the first-line antifungal agents. The minimum inhibitory concentration value is a test which indicates the degree of sensitivity of a strain regarding a drug. However, no value of minimum inhibitory concentration for caspofungin is available because very variable value is obtained. In this work, we study the link with the adsorption phenomenon of CSF previously described in literature and the lack of minimum inhibitory concentration value. A systematic study of the impact of different parameters on CSF adsorption is reported. The effect of the nature of container material, the aqueous solution pH and the organic solvent proportion was studied. In addition, the possibility of using a coating agent to minimize the adsorption was assayed and evaluated. Results obtained showed the importance of the material used during the manipulation of CSF. The use of acidic pH aqueous solution or the addition of acetonitrile or methanol proportions (50 % and 70 %, respectively) were found efficient to avoid adsorption of CSF on glassware material, which is the relevant strategy for analytical samples of caspofungin. The treatment of HPLC glass vials and 96-well plates with N-(2-aminoethyl)-3-aminopropyltrimethoxysilane reduced the adsorption. The significant adsorption observed in this work especially with plastic materials, questions the results obtained before in different assays and explained the absence of MIC value.
Treatment of invasive fungal infections with Caspofungin is used as the first-line antifungal agents. The minimum inhibitory concentration value is a test which indicates the degree of sensitivity of a strain regarding a drug. However, no value of minimum inhibitory concentration for caspofungin is available because very variable value is obtained. In this work, we study the link with the adsorption phenomenon of CSF previously described in literature and the lack of minimum inhibitory concentration value. A systematic study of the impact of different parameters on CSF adsorption is reported. The effect of the nature of container material, the aqueous solution pH and the organic solvent proportion was studied. In addition, the possibility of using a coating agent to minimize the adsorption was assayed and evaluated. Results obtained showed the importance of the material used during the manipulation of CSF. The use of acidic pH aqueous solution or the addition of acetonitrile or methanol proportions (50 % and 70 %, respectively) were found efficient to avoid adsorption of CSF on glassware material, which is the relevant strategy for analytical samples of caspofungin. The treatment of HPLC glass vials and 96-well plates with N-(2-aminoethyl)-3-aminopropyltrimethoxysilane reduced the adsorption. The significant adsorption observed in this work especially with plastic materials, questions the results obtained before in different assays and explained the absence of MIC value.
ArticleNumber 123060
Author Yaldebere, A.
Gaudin, K.
Ramirez-Garcia, A.
Uribe, B.
Rementeria, A.
Alonso, R.M.
Guruceaga, X.
Ba, B.B.
González, O.
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Keywords Antifungal
Adsorption
MIC
HPLC
Caspofungin
Materials
Language English
License This is an open access article under the CC BY-NC-ND license.
Copyright © 2021 The Authors. Published by Elsevier B.V. All rights reserved.
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Snippet •Adsorption of caspofungin on plastic materials, questions results obtained in vitro.•The caspofungin adsorption occurs on various materials such as plastic...
Treatment of invasive fungal infections with Caspofungin is used as the first-line antifungal agents. The minimum inhibitory concentration value is a test...
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SubjectTerms Adsorption
Antifungal
Antifungal Agents - analysis
Antifungal Agents - chemistry
Antifungal Agents - metabolism
Caspofungin
Caspofungin - analysis
Caspofungin - chemistry
Caspofungin - metabolism
Chromatography, High Pressure Liquid - instrumentation
Glass - chemistry
HPLC
Materials
MIC
Microbial Sensitivity Tests
Plastics - chemistry
Plastics - metabolism
Title Study of antifungal agent caspofungin adsorption to laboratory materials
URI https://dx.doi.org/10.1016/j.jchromb.2021.123060
https://www.ncbi.nlm.nih.gov/pubmed/34847516
https://search.proquest.com/docview/2605227357
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