Green chiral HPLC method on a polysaccharide column under hydro-organic conditions for the determination of Levobupivacaine, Ropivacaine, and their enantiomeric impurities

A novel, rapid, green, and enantioselective HPLC method was developed and validated using a polysaccharide-based chiral column for the individual determination of Levobupivacaine and S (–) Ropivacaine together with their respective chiral impurities (R (+) Bupivacaine and R (+) Ropivacaine). The separation was optimized on a Chiralpak AD column under hydro-organic conditions using an isocratic mobile phase of isopropanol and water (85:15, v/v) at flow rate 0.5 mL/min, with UV detection at 220 nm. The method was validated according to ICH guidelines and assessed for environmental impact using NEMI, Analytical Eco-Scale, GAPI, and AGREE tools. Baseline separation of each enantiomer pair was achieved within 8 min. Good linearity (R 2 > 0.999) was exhibited over 20–200 μg/mL for the S-enantiomers and 2 – 20 μg/mL for the R-enantiomers. Precision (RSD < 1.36%) and accuracy (recoveries 99.4–100.7%) were satisfactory. Detection and quantitation limits for the chiral impurities were < 0.7 μg/mL and < 2.1 μg/mL, respectively. Thermodynamic studies indicated an enthalpy-driven enantioseparation involving hydrogen bonding, π–π interactions, and steric hindrance. The greenness assessment confirmed a superior environmental profile compared to literature methods, with an Eco-Scale score of 92 and AGREE score of 0.70. To our knowledge, the developed method is the first application of hydro-organic conditions on a polysaccharide column for these local anesthetics, offering a rapid, selective, and sustainable alternative to traditional modes used in chiral LC methods. Its simplicity and robustness make it well suited for routine quality control applications.

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Journal
BMC Chemistry
Published
2026-09-25
DOI
https://doi.org/10.1186/s13065-026-01870-6
Primary Topic
Analytical Chemistry and Chromatography
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article
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Green chiral HPLC method on a polysaccharide column under hydro-organic conditions for the determination of Levobupivacaine, Ropivacaine, and their enantiomeric impurities

Nehal G. Sedki, Maha Ahmad Hegazy, Nahla N. Salama, Ahmed S. Fayed
BMC Chemistry
Analytical Chemistry and Chromatography
article

Green chiral HPLC method on a polysaccharide column under hydro-organic conditions for the determination of Levobupivacaine, Ropivacaine, and their enantiomeric impurities

Nehal G. Sedki, Maha Ahmad Hegazy, Nahla N. Salama, Ahmed S. Fayed
article en

Abstract

A novel, rapid, green, and enantioselective HPLC method was developed and validated using a polysaccharide-based chiral column for the individual determination of Levobupivacaine and S (–) Ropivacaine together with their respective chiral impurities (R (+) Bupivacaine and R (+) Ropivacaine). The separation was optimized on a Chiralpak AD column under hydro-organic conditions using an isocratic mobile phase of isopropanol and water (85:15, v/v) at flow rate 0.5 mL/min, with UV detection at 220 nm. The method was validated according to ICH guidelines and assessed for environmental impact using NEMI, Analytical Eco-Scale, GAPI, and AGREE tools. Baseline separation of each enantiomer pair was achieved within 8 min. Good linearity (R 2 > 0.999) was exhibited over 20–200 μg/mL for the S-enantiomers and 2 – 20 μg/mL for the R-enantiomers. Precision (RSD < 1.36%) and accuracy (recoveries 99.4–100.7%) were satisfactory. Detection and quantitation limits for the chiral impurities were < 0.7 μg/mL and < 2.1 μg/mL, respectively. Thermodynamic studies indicated an enthalpy-driven enantioseparation involving hydrogen bonding, π–π interactions, and steric hindrance. The greenness assessment confirmed a superior environmental profile compared to literature methods, with an Eco-Scale score of 92 and AGREE score of 0.70. To our knowledge, the developed method is the first application of hydro-organic conditions on a polysaccharide column for these local anesthetics, offering a rapid, selective, and sustainable alternative to traditional modes used in chiral LC methods. Its simplicity and robustness make it well suited for routine quality control applications.

BMC Chemistry
Cairo University (EG), Egyptian Government (EG)
Responsible consumption and production
Openalex Percentile: Top 23%
Analytical Chemistry and Chromatography
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Green chiral HPLC method on a polysaccharide column under hydro-organic conditions for the determination of Levobupivacaine, Ropivacaine, and their enantiomeric impurities — Nehal G. Sedki, Maha Ahmad Hegazy, et al. · BMC Chemistry (2026) | TGRS Research Map | TGRS