液质分析条件的优化策略课件(-42张).ppt
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- 分析 条件 优化 策略 课件 42
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1、液质分析条件的优化策略(简化板)液相色谱与液质联用仪使用的要点液相色谱与液质联用仪使用的要点 质量校正的正确质量校正的正确 对于相关分析要有合适的支持软件(对于相关分析要有合适的支持软件(Maxnet,TargeLyness)合适的液相色谱平台合适的液相色谱平台 合适的质谱接口方式合适的质谱接口方式 液相色谱分析中合适的色谱柱的选用液相色谱分析中合适的色谱柱的选用 质谱检测模式的选择质谱检测模式的选择 必要的后液流补充必要的后液流补充质量校正的正确(质量校正的正确(Myoglobin校正)校正)质量校正的正确(质量校正的正确(Myoglobin校正)校正)质量校正的正确(质量校正的正确(CsI
2、校正)的肽测定校正)的肽测定质量校正的正确(质量校正的正确(CsI校正)的蛋白测定校正)的蛋白测定质量校正的关键点 针对不同的分析采用不同的校正,一般蛋白质采用Myoglobin,对于小分子分析建议采用CsI校正。对于采用Myoglobin校正的建议采用高次方的校正曲线(3-4);对CsI校正的建议采用低次方的校正曲线(1-2)合适的液相色谱平台合适的液相色谱平台 能提供一个连续、稳定的液流环境能提供一个连续、稳定的液流环境 真空脱气设备真空脱气设备 系统的死体积尽可能小,减少管路的长度系统的死体积尽可能小,减少管路的长度 输液泵的设计能适用于微径柱的要求输液泵的设计能适用于微径柱的要求 二极
3、管阵列检测器的池体积与质谱仪匹配二极管阵列检测器的池体积与质谱仪匹配 必要的液相色谱辅助配件必要的液相色谱辅助配件 必要的液相色谱与质谱仪的软件操作平台必要的液相色谱与质谱仪的软件操作平台合适的液相色谱柱合适的液相色谱柱 柱内径:2.1mm 柱长度:根据分析的目的选择50mm或150mm 柱填料选用新型的填料:Symmetry,Discovery,Vydac,Zorbax,Xterra,Intersil,Diamonsil等LC/MS Flow Injection Analysis of Peptides and Proteins by Reversed-Phase HPLC1.0%HOAcm
4、inAbundance10.0012.0014.0016.002.004.006.008.00500001000001500002000002500000.2%TFA2.004.006.008.0010.0012.0014.0016.0050000100000150000200000250000minAbundance Reverse-Phase LC/MS Solvents ACN,MeOH,H2O,Isopropanol Normal-Phase LC/MS Solvents(for APCI-MS)Hexane,Methylene Chloride,Acetone,Ethanol Com
5、patible LC/MS Buffers and Modifiers:Formic acid,acetic acid,ammonium acetate,ammonium formate,ammonium hydroxide,trifluoroacetic acid TFA concentration should be 0.1%v/v Keep volatile buffer concentrations 20 mM to minimize ESI ion suppression Avoid Non-volatile Buffers Alkali-metal phosphates,borat
6、es,etc.Suitable Solvents for LC/MS Volatile buffer minimize instrument downtime Buffer concentration:High ion suppression decreases ESI sensitivity Low system adequately buffered?pH range permitted by stationary phase Methanol or acetonitrile Start with acetonitrile 01111Change Retention to Improve
7、Resolution Select Solvents/Modifiers that are MS CompatibleUseful pH Ranges for Volatile BuffersBuffers normally used in LC/MS:01094BufferpKapH rangeFormate3.82.8 4.8Acetate4.83.8 5.89.28.2 10.2Triethylamine11.010 12 Diethylamine10.59.5 11.5?Ammonia76 8Buffer Concentrations/Additive amounts:10 to 50
8、 mM formic,acetic acids 0.01-1%v/v trifluoroacetic acid 0.1%v/v alkylamine type bases 0.1%v/vEffect of Buffer on Analyte ResponsePhosphate buffers suppress the MS response of caffeine at all pHs and also the MS response of Oxazepam at pH 8.Volatile buffers(formate,acetate,ammonia)generally provide g
9、ood responses.01121Mobile phase:A-10mM buffer pH 6.0;B methanolGradient:5%to 75%in 4 min0.E+005.E+071.E+082.E+082.E+083.E+083.E+08Formate pH2.5PhosphatepH 2.5Acetate pH6.0PhosphatepH 6.0AmmoniapH 8.0PhosphatepH 8.0Buffer typeIntensity(peak area)ProcainamideCaffeinePropranololNortriptylineOxazepamMob
10、ile Phase pH effect on ESIColumn:HyPURITY C18 5m,50 x2.1mmAqueous mobile phases:0.1%Formic acidpH 3,Ammonium formate 20 mMpH 5,Ammonium acetate 20 mMpH 8.2,Ammonium acetate 20 mMpH 9,Ammonium acetate 20 mMAqueous/methanol(50:50)Flow rate:0.2 ml/minTemperature:25CDetection:+ESI,450C,4.5kV,20V-ESI,450
11、C,3.5kV,20VScan:120 480uAnalytes:NortriptylinePropranololTetracyclineCaffeineParacetamolTryptophanSalicylic acidNicotinic acid01113Effect of Mobile Phase pH on+ESI Response01115Variation of peak area with pH in positive ESI0.E+002.E+064.E+066.E+068.E+061.E+071.E+071.E+07NortriptylinePropranololTetra
12、cyclineCaffeineTryptophanParacetamolNicotinic acidSalicylic acidCompoundPeak area0.1%formicpH 3pH 5pH 8pH 9 Effect of Mobile Phase pH on-ESI Response01116Variation of peak area with pH in negative ESI0.E+005.E+041.E+052.E+052.E+053.E+053.E+054.E+054.E+055.E+055.E+05NortriptylinePropranololTetracycli
13、neCaffeineTryptophanParacetamolNicotinicacidSalicylicacidCompoundArea0.1%formicpH 3pH 5pH 8pH 9 Solvent System50/50 MeOH/H2O50/50 ACN/H2O100%H2O100%MeOH100%ACN50/50 MeOH/H2O 1%Acetic50/50 MeOH/H2O 0.1%Formic50/50 ACN/H2O 1%Acetic50/50 ACN/H2O 0.1%Formic50/50 MeOH/H2O 5mM NH4OAc50/50 MeOH/H2O 10mM NH
14、4OAc50/50 MeOH/H2O 0.1%TFA50/50 MeOH/H2O 0.05%TFA50/50 MeOH/H2O 0.02%TFA50/50 ACN/H2O 0.1%TFA50/50 ACN/H2O 0.05%TFA50/50 ACN/H2O 0.02%TFA50/50 MeOH/H2O 0.1%NH4OH50/50 ACN/H2O 0.1%NH4OH0100000200000300000400000500000600000Ion Signal,Counts M+H+Solution Chemistry Effects on Positive Ion ESI-MS of Leu-
15、Enkephalin3x106min0102030405060LC/MS Sensitivity vs.Mobile Phase ModifierGluC Digest of BS5%Acetic0.001%TFA0.005%TFA0.01%TFAZorbax 300SB-C3(2.1 x 150 mm)HP1100 MSD Reversed-phase HPLC/MS analysis of a GluC digest of BSA was used as a model to test the recovery and peakshape of peptides using varying
16、 concentrations of TFA or 5%acetic acid as a mobile-phase additive in combination with the Zorbax 300SB-C3.Digestion of BSA was carried out 37C overnight,using GluC in a 1:20 ratio with BSA(by weight).The final mixture contained 1M urea and 25mM sodium phosphate.A significant increase in sensitivity
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