1 / 25

Titolo

Titolo. Sommario. Massa 1. Massa 2. Stato dell’arte. Sample. introduction. External. field. The Field-Flow Fractionation principle. Length. Flow. Thickness. Breadth. Detector. Thickness. Sample. Parabolic flow. HF FlFFF / perché?. A A B C D. The HF FlFFF channel. Flow.

Download Presentation

Titolo

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. Titolo

  2. Sommario

  3. Massa 1

  4. Massa 2

  5. Stato dell’arte

  6. Sample introduction External field The Field-Flow Fractionation principle Length Flow Thickness Breadth Detector Thickness Sample Parabolic flow

  7. HF FlFFF / perché? • A • A • B • C • D

  8. The HF FlFFF channel Flow Flow Field 1/8” PE fitting 1/8” PE Tee 1/8” Teflon tube cPVC / PSfHF membrane 24x0.08 ID cm 1/8” PEEK ferrule 1/8” PEEK ferrule

  9. < > v Modo normale in HF FlFFFMeccanismo di ritenzione Browniano z L rf Flusso l x U Campo

  10. Frazionamento di proteine in HF FlFFF Fase mobile: Ammonio acetato 50 mM ;pH7 Vin=0.70 ml/min ;Vrad=0.38 ml/min BSA 2% in FM ;mw 66 kDa Hrp 1% in FM ; mw40 kDa AP 1% in FM ; mw 160 kDa Fer 1% in FM ; mw 449 kDa

  11. Vin tR= — ln — Vout 8D Costruzione della retta di taratura lnD vs lnM rf2 kT D=A M-b D= 3d Y = A + B * X Parameter Value Error A -5.92967 0.30651 b -0.37513 0.02702

  12. NUOVO ASSETTO STRUMENTALE PER ACCOPPIAMENTOHF FFF ES/TOF/MS Hollow fiber M2 W POMPA II He M1 POMPA I Acquisizione ed elaborazione dati Rivelatore UV-VIS (DAD) o o o o o o Fase mobile Acquisizione ed elaborazione dati W ES/TOF/MS W

  13. +50 +45 +55 +40 +36 +60 66397.8 Peso Molecolare calcolato:66397.81±1.74 Peso Molecolare teorico: 66398.61 UV TIC BSA non denaturata

  14. Spettro HF-FFF-MS della Mioglobina A9 A8 A:17566.69±0.58 Da A7 A6 17566.70 Peso Molecolare Mioglobina:16951.51 Da Peso Molecolare Eme:615.35 Da

  15. A9 A8 A:17566.69±0.58 Da A7 A10 B11 B:16951.48±0.27 Da B10 B9 B8 B7 HF-FFF-MS UV UV LC-MS

  16. Confronto spettri ES/MS del complesso Mioglobina/Eme A9 +Na+ Introduzione Diretta +2Na+ +3Na+ A9 HF-FFF +CH3COO-

  17. UV TIC F 43243.0 D 42422.0 E 43165.0 C 42343.1 B 41600.4 A 41521.9 Spettro dell’HRP

  18. F 43244.1 E 43165.0 C 42343.1 D 42422.0 2 Ca 2+ 2 Ca 2+ 2 Ca 2+ Glicosilazione A 41521.5 B 41600.4 Glicosilazione

  19. Conclusioni e Prospettive

  20. Ringraziamenti

  21. Efficiency in HF FlFFF å = + + + + H H H H H H neq long poly inj i Focusing L0 Elution van Bruijnsvoort, M.; Kok, W.Th; Tijssen, R. Anal Chem 2001, 73, 4736

  22. +8 +7 +9 +10 +6 14304.9 Peso Molecolare misurato:14304.94±0.35 Da Peso Molecolare teorico: 14305.16 Da

  23. Spettro ES/MS del lisozima separato in FFF dalla BSA +8 Peso Molecolare misurato:14305.06±1.05 Da +7 +9 14305.1

  24. Liso+8 Liso+7 +35 +40 +30 +43 +27 66399.53 Peso Molecolare misurato:66399.53±4.38 Da Spettro ES/MS della BSA separata in FFF dal lisozima UV TIC

  25. 0.50 0.75 0.75 0.75 Pressure gauge 0.50 0.75 0.75 0.75 Pump 1 T-valve Injection port 2 2 1 1 Pump 2 3 3 0 0 The HF FlFFF instrumental scheme 4-way valve Metering valve Waste Mobile phase Pressure gauge UV-DAD Hollow fiber channel ESI/qTOF Metering valve Mobile phase Waste Splitting valve

More Related