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Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres Appendix

Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

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Page 1: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Chiralm selective chromatography

D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001.Z Juvancz, G. Seres Appendix

Page 2: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Definition of chirality

• Chiral molecules are asymmetric.

• Enantiomers or optical isomers are mirror image of each others, but they are not same.

• Diastereomeric molecules are not

• mirror images, but they have same constitutions.

Central chirality with for different substituents.

Page 3: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Enantiomers

Kajtár M., Változatok négy elemre, Gondolat, 1984.

DNS molecules

Page 4: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Application of chiral selective analysis

Checking the chiral selective synthesis:Pharmaceutical, pesticide industry

Metabolite research: (pl. Warfarin, Ibuprofen, pheromonos)

Adulteration, bacterial infectiouns: ( pl. wine, essential oils)

Racemisation: (pl. heat treatment, age determination)

Page 5: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Different effects of enantiomeric pharmaceuticals

Page 6: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Share of enantiomeric pure pharmceuticals

Page 7: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Different odor of enatiomers

Page 8: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Three point interaction is necessary for the chiral recognation I.

V.R. Meyer, M. Rais,Chirality1 (1989) 167.

Page 9: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Two point interactions are not enough II.

V.R. Meyer, M. Rais, Chirality 1 (1989) 167.

Page 10: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Certain rigidity is necessary for chiral recognition

V.R. Meyer, M. Rais,Chirality1 (1989) 167.

Page 11: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Interaction points can be surface or axis

π acid - π base, and h_bridge are the key interactions.

Page 12: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Working theory of chiral stationer phase, (CSP)

C. Welch et al., Review of Stereochemistry

Page 13: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Working theory of chiral mobile phase addtitive (CMA)

C. Welch et al., Review of Stereochemistry

Page 14: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

General rules of chiral selective chromatography

• Rigid structure offers high selectivity.• Flexible structure offer broad selectivity range.• Most of the separation bases on three point

interaction.• Functional groups close to asymmetric center

improves the resolution.• Repulsion interactions have a big role.• Low analysis temperature improves the separations.

Page 15: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Temeperature dependence of chiral chromatography

ln α = S+- (S0sm)/R - H+- (H0

sm)/RT +- : difference between the two isomers (+and -)

sm: difference between two phases (stationary and mobile).

Generally the low analysis temperature improve the separation.

Using high efficiency stationary phase, 0,1kJ/mol (α: 1,01) energy difference is enough between the enantiomers for Rs 1.5 resolution value.

Page 16: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Importance of minor first elution order

Page 17: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Most frequently used CSP are cyclodextrin based molecules

.

Page 18: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Shape of derivatized a CD

The direction and length of bonds are differents..

Page 19: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Reason of good chiral recognation properties of cyclodextrins

• There are several chiral center in a CD

• The surrounding of chiral centers are of uniform in a glucose unit.

• The shape of glucose units are different

• Substituted derivates are bunch of isomers

• The chiral recognition depends on the type of substituents

• The selectivity can depend on the ionized state

• Cyclodextrins have flexible structure (induce fit)

Page 20: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Cyclodextrins can separate even the functionless hydrocarbons enantiomers

Page 21: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Selecticvity vs. Concetration of chiral selector

The acharial silicone matrix offers a good efficiency.

Page 22: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Selecticvity vs. Concetration of chiral selector

Page 23: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Low analysis temperature results in high selectivity

Page 24: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Cyclic derivatives give high selectivity

Page 25: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Separation of enetiomers of essential aminoacids with Chirasil-Val

Orginal CSP ImprovedCSP

Page 26: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Chiral selective HPLC

Page 27: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Most frequently used CSps in

Page 28: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Key interaction of polysaccharide CSps

H-bridge ands π- π interactions

Page 29: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Selectivity depend on the substitution of cellulose

Page 30: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Cyclodextrin CSp in HPLC

Page 31: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Cyclodextris as CMAs (

Page 32: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Methylated cyclodexrin CMAs

Page 33: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Pirkle type CSP

Page 34: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Separation with π base CSP

Page 35: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Vancomycin, antibiotic CSP

Page 36: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Separation with Vancomycin CSP

Page 37: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Chiral separation in CE

Neutral selector can not separate neutral molecules.The oppositely charged selector and sample offer high resolution.Separation has maximum value in the function of the selector concentration.

Page 38: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Separation vs. concentration of selector

Page 39: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

High selectivity with oppositelly charged sample and selector

Page 40: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Used chiral selectors in CE

Page 41: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Separations of pyretroic acids

Page 42: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Chiral separation with β-HDMACD

0,5 mMol concentration of selectror is enough for baseline separation.

Page 43: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Chiral selective separation of

γ-PhoCD reversed migration orders TRIMEB

Page 44: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Dual CD seletor system

min2 4 6 8 10 12 14

mAU

-20

-10

0

10

20

30

min2 4 6 8 10 12 14

mAU

-20

-10

0

10

20

30

min2 4 6 8 10 12 14

mAU

-20

-10

0

10

20

30

min 5 10 15 20 25

mAU

-10 -5 0 5

10 15 20

50 mM acetic acid / TRIS; pH 5.0

+ 1 mM MACD50 mM acetic acid / TRIS; pH 5.0

50 mM acetic acid / TRIS; pH 5.0

+ 10 mM PMMACD

50 mM acetic acid / TRIS; pH 5.0 + 1 mM MACD + 10 mM PMMACD

Kass : 100 – 370 M-1

Kass : 1.3 – 70 M-1

mecoprop, 2,4-DP, 3ClPPA

Fenoprop

4MePPA

PPA

R. Iványi et al.

Page 45: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

The selectivity of ionizable CDs depend on their ionized states

Page 46: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Partially filling technique

No EOF (acrylamide coated column).The sample and selector migrate in opposite directions.The selector nigrates away, when the sample reaches the detector windows.

Page 47: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Vancomicine selector

Page 48: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Chiral selector with chiral MKEC agent

Page 49: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Chips chiral separation

Designed for Martian space rockett

EKC

Page 50: Chiralm selective chromatography D. Kozma ed. Handbook of Optical Resolutions via Diastereomeric Salt Formation. CRC Handbooks, 2001. Z Juvancz, G. Seres

Chiral CEC

Monolit CSP selector