| Literature DB >> 24046811 |
Ravi K Khajuria1, Neha Sharma, Jawahar L Koul, Mahendra K Verma.
Abstract
Studies on piperine ((M 1 )) and its synthetic analogues (M 2-18 ) by positive electrospray ionisation mass spectrometry were carried out in the flow injection mode of analysis in methanol. The MS experiments on these compounds at concentration 5 ng/μL or above yielded dimeric ionic species [2 M + Na](+) which revealed that piperine and its analogues exhibit clustering of ions when the solutions of these compounds at concentrations 5 ng/μL or above were allowed to move through the electrospray interface of the mass spectrometer. The same clustering of the ions was not observed when the solutions of the same compounds at concentrations below 5 ng/μL were used for similar studies. The formation of the clusters was further confirmed by tandem mass spectrometry (MS/MS) studies wherein the fragmentation of dimeric ionic species [2 M + Na](+) led to the formation of sodium adducted monomeric ionic species [M + Na](+). The MS measurements of these compounds by Atmospheric Pressure Chemical Ionisation (APCI) were on expected lines as there was no clustering of the ions in case of APCI-MS measurements.Entities:
Keywords: Bioavailability; Electrospray ionisation; Piper nigrum; Piperine and its analogues; Preformed ions; Product ions
Year: 2013 PMID: 24046811 PMCID: PMC3773103 DOI: 10.1186/2193-1801-2-427
Source DB: PubMed Journal: Springerplus ISSN: 2193-1801
Details of molecular ion peaks and the product ions obtained during MS/MS (MS2) measurements of piperine (M) and its analogues (M)
| Compound number (n) | Structure of the compound | Molecular ions (m/z) in the ESI-MS | MS/MS spectra at m/z (2 Mn + Na)+ |
|---|---|---|---|
| 286[Mn + H]+, 308[ Mn + Na]+ and 593[2 Mn + Na]+ | 308[Mn + Na]+ | ||
| 290[Mn + H]+, 312[2Mn + Na]+ and 601[2 Mn + Na]+ | 312[Mn + Na]+ | ||
| 272[Mn + H]+, 294[Mn + Na]+ and 565 [2 Mn + Na]+ | 294[Mn+ Na]+ | ||
| 248[Mn + H]+, 270[Mn + Na]+ , 517 [2 Mn + Na]+ | 270[Mn + Na]+ | ||
| 288[Mn + H]+, 310[Mn + Na]+ , 597 [2 Mn + Na]+ | 310[Mn + Na]+ | ||
| 272[Mn + H]+, 294[Mn + Na]+ , 565 [2 Mn + Na]+ | 294[Mn + Na]+ | ||
| 300[Mn + H]+, 322[Mn + Na]+ , 621 [2 Mn + Na]+ | 322[Mn + Na]+ | ||
| 286[Mn + H]+,308[Mn + Na] + , 593 [2 Mn + Na]+ | 308[Mn + Na]+ | ||
| 292[Mn + H]+, 314[Mn + Na]+ , 605[2 Mn + Na]+ | 314[Mn + Na]+ | ||
| 260[Mn + H]+, 282[Mn + Na]+ , 541 [2 Mn + Na]+ | 282[Mn + Na]+ | ||
| 274[Mn + H]+, 296[Mn + Na]+ , 569 [2 Mn + Na]+ | 296[Mn + Na]+ | ||
| 292[Mn + H]+, 314[Mn + Na]+ , 605 [2 M + Na]+ | 314[Mn + Na]+ | ||
| 302[Mn + H]+, 324[Mn + Na]+ , 625 [2 Mn + Na]+ | 324[Mn + Na]+ | ||
| 278[Mn + H]+, 300[Mn + Na]+ , 577[2 Mn+ Na]+ | 300[Mn + Na]+ | ||
| 306[Mn + H]+ , 328[Mn + Na]+ , 633[2 Mn + Na]+ | 328[Mn + Na]+ | ||
| 276[Mn + H]+, 298[Mn + Na]+ , 573[2 Mn + Na]+ | 298[M + Na]+ | ||
| 272[Mn + H]+, 294[Mn + Na]+ , 565 [2 M + Na]+ | 294[Mn + Na]+ | ||
| 332[Mn + H]+, 354[Mn + Na]+, 685[2 Mn + Na]+ | 354[Mn + Na]+ |
Molecular ion peaks obtained from infusion experiments of mixtures of synthetic analogues of piperine (M) and Piperine (M) and the product ions obtained during the MS/MS (MS) measurements of the cross dimeric ionic peaks
| Mixture of 1 with | Molecular ion (m/z) peaks formed from the mixtures of Piperine (M1) with its synthetic analogues(M2-18) | Precursor ion (m/z) selected for MS2 studies | Product ions(m/z) formed from the fragmentation of the parent ions |
|---|---|---|---|
| [2Mn + Na]+ n =1,2,38 | |||
| 593 [2 M1 + Na]+, 601[2 M2+ Na]+ , 597[M1 + M2 + Na]+ | 597 | 312, 308. | |
| 593 [2 M1 + Na]+, 565[2 M 3+ Na]+ , 579[M1 + M3 + Na]+ | 579 | 294, 308 | |
| 593 [2 M 1 + Na]+, 517[2 M 4+ Na]+ , 555[M1 + M4 + Na]+ | 555 | 270, 308 | |
| 593 2[M 1 + Na]+, 597[2 M 5+ Na]+ , 595[M1+ M5 + Na]+ | 595 | 310, 308 | |
| 593 [2 M 1 + Na]+, 565[2 M6+ Na]+ , 579[M1 + M6 + Na]+ | 579 | 294, 308 | |
| 593 [2 M 1 + Na]+, 621[2 M 7 + Na]+ , 607[M1 + M7 + Na]+ | 607 | 322, 308 | |
| 593 [2 M 1 + Na]+ or [2 M8 + Na]+ | 593 | 308 | |
| 593 [2 M 1 + Na]+, 605[2 M 9+ Na]+ , 599[M1 + M9 + Na]+ | 599 | 314,, 308 | |
| 593 [2 M 1 + Na]+, 541[2 M 10+ Na]+ , 567[M1+ M10 + Na]+ | 567 | 282, 308 | |
| 593 [2 M1 + Na]+, 569[2 M 11+ Na]+ , 581[M1 + M11 + Na]+ | 581 | 296, 308 | |
| 593 [2 M 1 + Na]+, 605[2 M12 + Na]+ , 599[M1 + M12 + Na]+ | 599 | 314, 308 | |
| 593 [2 M 1 + Na]+, 625[2 M 13+ Na]+ , 609[M1 + M 13 + Na]+ | 609 | 324, 308 | |
| 593 [2 M1 + Na]+, 577[2 M14+ Na]+ , 585[M1 + M14 + Na]+ | 585 | 300, 308 | |
| 593 [2 M1 + Na]+, 633[2 M15+ Na]+ , 613[M1+ M15 + Na]+ | 613 | 328, 308 | |
| 593 [2 M1 + Na]+, 573[2 M16+ Na]+ , 583[M1 + M16 + Na]+ | 583 | 298, 308 | |
| 593 [2 M1 + Na]+, 565[2 M17+ Na]+ , 579[M1+ M17 + Na]+ | 579 | 294, 308 | |
| 593 [2 M 1 + Na]+, 685[2 M 18+ Na]+ , 639[M1 + M18 + Na]+ | 639 | 354, 308 |
Figure 1TIC of ESI-MS of Piperine(M).
Figure 2TIC of ESI-MS of Mixture of Mand M.
Figure 3TIC of ESI-MS of Mixture of Mand M.
Figure 4TIC of ESI-MS/MS of Mixture of Mand M.