| Literature DB >> 25317194 |
Majid Zandkarimi1, Alireza Shafaati2, Sayyed Mohsen Foroutan2, Charles A Lucy3.
Abstract
In chiral and non-chiral electrophoretic resolution of basic drugs, adsorption of analytes to negatively charged capillary wall could lead to poor repeatability of migration time and peak area. In addition, chiral resolutions of basic drugs are commonly performed in low pH buffers. Therefore, longer analysis time due to suppression of electroosmotic flow (EOF) is another dilemma. In this work the improvement effect of polybrene (PB), a cationic polymer, on chiral separation of a model basic drug, amlodipine (AML), was investigated. PB both as a semi-permanent coating agent and as an additive in the running buffer was utilized. Better results were obtained with PB as a buffer additive. Compare to untreated bare silica without using PB in running buffer, addition of 0.0005% PB buffer decreased analysis time downed to 3 folds; efficiency improved up to 5 folds; limit of detection (LOD) and limit of quantification (LOQ) downed to 8 folds and within-day migration time and peak area repeatabilities, in terms of relative standard deviations (RSD) downed to 5 and 20 folds, respectively.Entities:
Keywords: Amlodipine; Capillary coating; Capillary electrophoresis; Chiral separation; Polybrene
Year: 2012 PMID: 25317194 PMCID: PMC3876563
Source DB: PubMed Journal: Iran J Pharm Res ISSN: 1726-6882 Impact factor: 1.696
Figure 1AML structure , pka 8.6 (18).
Within-day repeatability in bare silica capillary
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| Within-day | 12.9 | 13.7 | 0.3×105 | 0.3×105 | 2.1 | 0.55 | 0.50 | 1.082 |
| repeatability a | (3.51)b | (3.93) | (38.1) | (44.5) | (17.0) | (21.60) | (19.99) | (5.71) |
Experimental conditions: as in Figure 2a.aWithin-day repeatability: results from 10 experiments performed on the same day for migration times (MT), theoretical number of plates(N), resolution (Rs) and peak areas (A) of R-AML (R) and S-AML (S).b In parentheses %RSD.
Figure. 2Chiral separation of AML in. a: bare silica. b:semi-permanent coated capillary and c: bare silica using PB 0.005% w/v as buffer additive. Experimental conditions: running buffer 50 mM sodium phosphate( pH 2.5) containin 10 mM HP-βCD; wavelength, 200 nm; running voltage +20 kV in (a) and -20 kV in (b &c)) ; sample, AML besylate 100 ppm, VER 20 ppm; other condition as detailed in experimental section
Figure 3The effect of hydrodynamic rinsing at 950 mbar on EOF of semi-permanent coated capillaries. a: rinsing with washing materials b: rinsing by 10 mM concentration of neutral cyclodextrins. Experimental conditions: running buffer, 50 mM sodium phosphate( pH 2.5) containing 10 mM HP-βCD; running voltage, -20 kV; 254 nm; neutral marker, 1 mM mesityl oxide. The coating procedure is as described in experimental section. After coating the capillaries were flushed with the desired washing materials and EOF was measured. Between runs capillaries rinsed 1 min with running buffer
Figure. 4Stability of PB coating layer as a function of the number of runs. Between runs different washing procedures was applied. Experimental conditions: running buffer 50 mM sodium phosphate (PH=2.5) containing 10 mM HP-βCD; Running voltage -20 kV; neutral marker1, mM mesityl oxide 245 nm; run time 7 min. The coating procedure is as described in experimental section. Between runs the capillaries were flushed with different washing procedures
Within -day and between-day repeatability in PB coated capillary
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| Within-day | 3.76 | 3.70 | 1.1×105 | 1.2×105 | 1.5 | 0.50 | 0.45 | 1.090 |
| Between-day | 3.95 | 3.87 | 1.1×105 | 1.2×105 | 1.6 | 0.49 | 0.45 | 1.089 |
Experimental conditions: as in Figure 2b.a and b as in Table 1.c Between-day repeatability: results from 6 experiments performed on 6 days
Figure 5Stability of the EOF in bare silica using PB as buffer additive.
Within -day and between-day repeatability in bare silica capillary using PB 0.0005%w/v as buffer additive.
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| Within-day | 4.15 | 4.07 | 1.6×105 | 1.6×105 | 2.0 | 0.44 | 0.44 | 1.007 |
| Between-day | 4.26 | 4.17 | 1.5×105 | 1.6×105 | 2.0 | 0.44 | 0.44 | 1.009 |