在BioDeep NovoCell知识数据库中,参考离子总共被划分为4个级别。
  • Confirmed: 这个参考离子已经通过手动审计得到确认和验证。
  • Reliable: 这个参考离子可能在特定的解剖组织环境中高度保守。
  • Unreliable: 这个参考离子具有较高的排名价值,但缺乏可重复性。
  • Unavailable: 由于排名价值低且缺乏可重复性,这个参考离子不应用于注释。

Found 13 Reference Ions Near m/z 836.6697
NovoCell ID m/z Mass Window Metabolite Ranking Anatomy Context
MSI_000006197 Reliable 836.6723 836.672 ~ 836.6726
MzDiff: 2.5 ppm
Isofucosterol 3-O-[6-O-(9,12-Octadecadienoyl)-b-D-glucopyranoside] (BioDeep_00000021651)
Formula: C53H88O7 (836.653)
12.55 (65%) Rattus norvegicus
[UBERON:0004358] caput epididymis
MSI_000021451 Unreliable 836.6705 836.6705 ~ 836.6705
MzDiff: none
Erythrosine (BioDeep_00000033647)
Formula: C20H8I4O5 (835.6551)
0.91 (100%) Mus musculus
[UBERON:0001499] muscle of arm
MSI_000027537 Unreliable 836.6725 836.672 ~ 836.673
MzDiff: 4.0 ppm
Erythrosine (BioDeep_00000033647)
Formula: C20H8I4O5 (835.6551)
3.1 (50%) Mus musculus
[UBERON:0002048] lung
MSI_000061786 Unavailable 836.6617 836.6617 ~ 836.6617
MzDiff: none
Erythrosine (BioDeep_00000033647)
Formula: C20H8I4O5 (835.6551)
-0.95 (100%) Mus musculus
[UBERON:0000956] cerebral cortex
MSI_000061799 Unavailable 836.6718 836.6718 ~ 836.6718
MzDiff: none
Isofucosterol 3-O-[6-O-(9,12-Octadecadienoyl)-b-D-glucopyranoside] (BioDeep_00000021651)
Formula: C53H88O7 (836.653)
-0.85 (100%) Mus musculus
[UBERON:0000956] cerebral cortex
MSI_000029078 Unreliable 836.6697 836.6697 ~ 836.6697
MzDiff: none
PC(16:0/20:3(5Z,8Z,11Z)-O(14R,15S)) (BioDeep_00000210887)
Formula: C44H80NO9P (797.557)
2.13 (100%) Macropus giganteus
[UBERON:0002336] corpus callosum
MSI_000029083 Unreliable 836.6755 836.6755 ~ 836.6755
MzDiff: none
Erythrosine (BioDeep_00000033647)
Formula: C20H8I4O5 (835.6551)
2.1 (100%) Macropus giganteus
[UBERON:0002336] corpus callosum
MSI_000058989 Unavailable 836.6699 836.6699 ~ 836.6699
MzDiff: none
Isofucosterol 3-O-[6-O-(9,12-Octadecadienoyl)-b-D-glucopyranoside] (BioDeep_00000021651)
Formula: C53H88O7 (836.653)
-0.6 (100%) Mus musculus
[UBERON:0001950] neocortex
MSI_000059379 Unreliable 836.6699 836.6699 ~ 836.6699
MzDiff: none
Isofucosterol 3-O-[6-O-(9,12-Octadecadienoyl)-b-D-glucopyranoside] (BioDeep_00000021651)
Formula: C53H88O7 (836.653)
1.15 (100%) Mus musculus
[UBERON:0002298] brainstem
MSI_000060908 Unreliable 836.6703 836.6703 ~ 836.6703
MzDiff: none
Erythrosine (BioDeep_00000033647)
Formula: C20H8I4O5 (835.6551)
2.26 (100%) Mus musculus
[UBERON:0002421] hippocampal formation
MSI_000062514 Unavailable 836.6723 836.6723 ~ 836.6723
MzDiff: none
Isofucosterol 3-O-[6-O-(9,12-Octadecadienoyl)-b-D-glucopyranoside] (BioDeep_00000021651)
Formula: C53H88O7 (836.653)
-0.41 (100%) Mus musculus
[UBERON:0001950] neocortex
MSI_000062557 Unreliable 836.6718 836.6718 ~ 836.6718
MzDiff: none
Isofucosterol 3-O-[6-O-(9,12-Octadecadienoyl)-b-D-glucopyranoside] (BioDeep_00000021651)
Formula: C53H88O7 (836.653)
2.04 (100%) Mus musculus
[UBERON:0002421] hippocampal formation
MSI_000062582 Unreliable 836.6617 836.6617 ~ 836.6617
MzDiff: none
Erythrosine (BioDeep_00000033647)
Formula: C20H8I4O5 (835.6551)
2.02 (100%) Mus musculus
[UBERON:0002421] hippocampal formation

Found 18 Sample Hits
Metabolite Species Sample
PC(16:0/20:3(5Z,8Z,11Z)-O(14R,15S))

Formula: C44H80NO9P (797.557)
Adducts: [M+K]+ (Ppm: 18.1)
Homo sapiens (Liver)
20171107_FIT4_DHBpos_p70_s50
Resolution: 50μm, 70x70

Description

Isofucosterol 3-O-[6-O-(9,12-Octadecadienoyl)-b-D-glucopyranoside]

Formula: C53H88O7 (836.653)
Adducts: [M-H2O+NH4]+ (Ppm: 4.9)
Rattus norvegicus (Epididymis)
epik_dhb_head_ito08_48
Resolution: 17μm, 294x107

Description

Isofucosterol 3-O-[6-O-(9,12-Octadecadienoyl)-b-D-glucopyranoside]

Formula: C53H88O7 (836.653)
Adducts: [M-H2O+NH4]+ (Ppm: 4.8)
Rattus norvegicus (Epididymis)
epik_dhb_head_ito01_03
Resolution: 17μm, 159x110

Description

Erythrosine

Formula: C20H8I4O5 (835.6551)
Adducts: [M+H]+ (Ppm: 5.2)
Mus musculus (Lung)
image1
Resolution: 40μm, 187x165

Description

Fig. 2 MALDI-MSI data from the same mouse lung tissue analyzed in Fig. 1. A: Optical image of the post-MSI, H&E-stained tissue section. B–D, F–G: Ion images of (B) m/z 796.6855 ([U13C-DPPC+Na]+), (C) m/z 756.5514 ([PC32:0+Na]+), (D) m/z 765.6079 ([D9-PC32:0+Na]+), (F) m/z 754.5359 ([PC32:1+Na]+), and (G) m/z 763.5923 ([D9-PC32:1+Na]+). E, H: Ratio images of (E) [D9-PC32:0+Na]+:[PC32:0+Na]+ and (H) [D9-PC32:1+Na]+:[PC32:1+Na]+. Part-per-million (ppm) mass errors are indicated in parentheses. All images were visualized using total-ion-current normalization and using hotspot removal (high quantile = 99%). DPPC = PC16:0/16:0. U13C-DPPC, universally 13C-labeled dipalmitoyl PC; PC, phosphatidylcholine; MSI, mass spectrometry imaging; H&E, hematoxylin and eosin. Fig 1-3, Fig S1-S3, S5

Erythrosine

Formula: C20H8I4O5 (835.6551)
Adducts: [M+H]+ (Ppm: 9.7)
Mus musculus (Left upper arm)
357_l_total ion count
Resolution: 50μm, 97x131

Description

Diseased

Erythrosine

Formula: C20H8I4O5 (835.6551)
Adducts: [M+H]+ (Ppm: 6.7)
Mus musculus (Lung)
image3
Resolution: 40μm, 146x190

Description

Fig. 4 MALDI-MSI data of mouse lung tissue after administration with D9-choline and U13C-DPPC–containing Poractant alfa surfactant (labels administered 12 h prior to tissue collection). Ion images of (A) m/z 796.6856 ([U13C-DPPC+Na]+), (B) m/z 756.5154 [PC32:0+Na]+), and (C) m/z 765.6079 ([D9-PC32:0+Na]+). D: Overlay image of [U13C-PC32:0+Na]+ (red) and [D9-PC32:0+Na]+ (green). Part-per-million (ppm) mass errors are indicated in parentheses. All images were visualized using total-ion-current normalization and using hotspot removal (high quantile = 99%). DPPC = PC16:0/16:0. MSI, mass spectrometry imaging; PC, phosphatidylcholine; U13C-DPPC, universally 13C-labeled dipalmitoyl PC.

Erythrosine

Formula: C20H8I4O5 (835.6551)
Adducts: [M+H]+ (Ppm: 5.2)
Mus musculus (Lung)
image4
Resolution: 40μm, 162x156

Description

Fig 6c Fig. 6 MALDI-MSI of U13C-PC16:0/16:0 acyl chain remodeling. A: Averaged MALDI mass spectrum from lung tissue collected from mice euthanized 12 h after administration of D9-choline and U13C-DPPC–containing Poractant alfa surfactant. The ion at m/z 828.6321 is assigned as the [M+Na]+ ion of 13C24-PC16:0_20:4 formed by acyl remodeling of U13C-PC16:0/16:0. The “NL” value refers to the intensity of the base peak in the full range MS1 spectrum. B: MS/MS spectrum of precursor ions at m/z 828.5 ± 0.5 with fragment ions originating from [13C24-PC16:0_20:4+Na]+ annotated. Part-per-million (ppm) mass errors are provided in parentheses. C, D: MALDI-MSI data of [U13C-DPPC+Na]+ (blue), [PC36:4+Na]+ (green) and [13C24-PC16:0_20:4+Na]+ (red) in lung tissue collected from mice (C) 12 h and (D) 18 h after label administration. All images were visualized using total-ion-current normalization and hotspot removal (high quantile = 99%). MS/MS, tandem mass spectrometry; MSI, mass spectrometry imaging; PC, phosphatidylcholine; U13C-DPPC, universally 13C-labeled dipalmitoyl PC.

Erythrosine

Formula: C20H8I4O5 (835.6551)
Adducts: [M+H]+ (Ppm: 5.2)
Mus musculus (Lung)
image5
Resolution: 40μm, 163x183

Description

Supplementary Figure S8. MALDI-MSI data of mouse lung tissue administered with D9-choline and U 13C-DPPC–containing Poractant alfa surfactant (labels administered 18 h prior to sacrifice). Ion images of (a) m/z 796.6856 ([U13C-DPPC+Na]+), (b) m/z 756.5154 [PC32:0+Na]+ and (c) m/z 765.6079 ([D9-PC32:0+Na]+). (d) Overlay image of [U13C-DPPC+Na]+ (red) and [D9-PC32:0+Na]+ (green). Parts per million (ppm) mass errors are indicated in parentheses. All images were visualised using totalion-current normalisation and using hotspot removal (high quantile = 99%). DPPC = PC16:0/16:0.

m/z_836.672

Formula: - (n/a)
Adducts: (Ppm: 0)
Mus musculus (Lung)
image5
Resolution: 40μm, 163x183

Description

Supplementary Figure S8. MALDI-MSI data of mouse lung tissue administered with D9-choline and U 13C-DPPC–containing Poractant alfa surfactant (labels administered 18 h prior to sacrifice). Ion images of (a) m/z 796.6856 ([U13C-DPPC+Na]+), (b) m/z 756.5154 [PC32:0+Na]+ and (c) m/z 765.6079 ([D9-PC32:0+Na]+). (d) Overlay image of [U13C-DPPC+Na]+ (red) and [D9-PC32:0+Na]+ (green). Parts per million (ppm) mass errors are indicated in parentheses. All images were visualised using totalion-current normalisation and using hotspot removal (high quantile = 99%). DPPC = PC16:0/16:0.

Erythrosine

Formula: C20H8I4O5 (835.6551)
Adducts: [M+H]+ (Ppm: 12.7)
Mus musculus (Lung)
image2
Resolution: 40μm, 550x256

Description

Supplementary Figure S6. Ion distribution images for (a) [PC36:4+Na]+ (m/z 804.5514) and (b) [PC38:6+Na]+ (m/z 828.5515) obtained from mouse lung tissue collected 6 h after administration of D9- choline and U13C-DPPC–containing CHF5633. Parts-per-million (ppm) mass errors are indicated in parentheses. (c) Magnification of the boxed region in (a) with selected bronchiolar regions outlined in white boxes. (d) The corresponding H&E-stained tissue section with the same selected bronchiolar regions outlined in black boxes. These data demonstrate the co-localisation of the polyunsaturated lipids PC36:4 and PC38:6 with the bronchiolar regions of the lung. All MSI images were visualised using total ion current normalisation and hotspot removal (high quantile = 99%).

PC(16:0/20:3(5Z,8Z,11Z)-O(14R,15S))

Formula: C44H80NO9P (797.557)
Adducts: [M+K]+ (Ppm: 17.8)
Macropus giganteus (Brain)
170321_kangaroobrain-dan3-pos_maxof50.0_med1
Resolution: 50μm, 81x50

Description

Sample information Organism: Macropus giganteus (kangaroo) Organism part: Brain Condition: Wildtype Sample growth conditions: Wild

Erythrosine

Formula: C20H8I4O5 (835.6551)
Adducts: [M+H]+ (Ppm: 8.8)
Rattus norvegicus (Brain)
2018June2820180628_brain_POS_3s2_validated
Resolution: 17μm, 213x141

Description

All MSI experiments were performed on a hybrid linear ion trap 21 T FT-ICR mass spectrometer at the National High Magnetic Field Laboratory (NHMFL) at Florida State University (Tallahassee, FL). A Velos Pro linear ion trap (Thermo Scientific, San Jose, CA) was combined with NHMFL-designed external linear quadrupole ion trap, quadrupole ion transfer optics and a novel dynamically harmonized ICR cell, which is operated at 7.5 V trapping potential[1]. Briefly, the cell uses 120° cell segments for ion excitation and detection, for improved excitation electric field, detection sensitivity and reduced third harmonic signals[2][3]. The commercial ion source and stacked ring ion guide were replaced with an elevated-pressure MALDI ion source incorporating a dual-ion funnel interface (Spectroglyph LLC, Kennewick, WA) as has been described previously[4]. Voltages within the funnels were 625 kHz, 150 V peak-to-peak (first, high-pressure ion funnel) and 1.2 MHz, 90 V peak-to-peak (second, low-pressure ion funnel). An electric field gradient of ∼10 V/cm was maintained within the dual-funnel system, with a gradient of 100 V/cm between the sample and the funnel inlet. The system was equipped with a Q-switched, frequency-tripled Nd:YLF laser emitting 349 nm light (Explorer One, Spectra Physics, Mountain View, CA). The laser was operated at a repetition rate of 1 kHz and pulse energy of ∼1.2 μJ. Pressure within the ion source was set to 10 mbar in the first ion funnel and 2 mbar in the second ion funnel. MALDI stage motion was synchronized with ion accumulation using the Velos trigger signal indicating commencement of the ion trap injection event, as previously described[4]. The mass spectrometer was operated with an ion injection time of 250 ms and automatic gain control (AGC) was turned off. A transient duration of 3.1 s was used for ultrahigh mass resolving power analyses, resulting in a total time of 4s per pixel. Spectra were obtained in both positive and negative mode, at 100 μm spatial resolution. Total number of pixels per brain section were approximately 22 000 and 24 h of experimental time. A Predator data station was used for ion excitation and detection[5]. Refs: [1] Hendrickson CL, Quinn JP, Kaiser NK, Smith DF, Blakney GT, Chen T, Marshall AG, Weisbrod CR, Beu SC. 21 Tesla Fourier Transform Ion Cyclotron Resonance Mass Spectrometer: A National Resource for Ultrahigh Resolution Mass Analysis. J Am Soc Mass Spectrom. 2015 Sep;26(9):1626-32. doi:10.1007/s13361-015-1182-2. Epub 2015 Jun 20. PMID:26091892. [2] Hendrickson CL, Beu SC, Blakney GT, Kaiser NK, McIntosh DG, Quinn JP, Marshall AG. In Optimized cell geometry for Fourier transform ion cyclotron resonance mass spectrometry, Proceedings of the 57th ASMS Conference on Mass Spectrometry and Allied Topics, Philadelphia, PA, May 31 to June 4; Philadelphia, PA, 2009. [3] Chen T, Beu SC, Kaiser NK, Hendrickson CL. Note: Optimized circuit for excitation and detection with one pair of electrodes for improved Fourier transform ion cyclotron resonance mass spectrometry. Rev Sci Instrum. 2014 Jun;85(6):066107. doi:10.1063/1.4883179. PMID:24985871. [4] Belov ME, Ellis SR, Dilillo M, Paine MRL, Danielson WF, Anderson GA, de Graaf EL, Eijkel GB, Heeren RMA, McDonnell LA. Design and Performance of a Novel Interface for Combined Matrix-Assisted Laser Desorption Ionization at Elevated Pressure and Electrospray Ionization with Orbitrap Mass Spectrometry. Anal Chem. 2017 Jul 18;89(14):7493-7501. doi:10.1021/acs.analchem.7b01168. Epub 2017 Jun 28. PMID:28613836. [5] Blakney GT, Hendrickson CL, Marshall AG. Predator data station: A fast data acquisition system for advanced FT-ICR MS experiments. Int. J. Mass Spectrom. 2011;306 (2-3), 246- 252. doi:10.1016/j.ijms.2011.03.009.

Erythrosine

Formula: C20H8I4O5 (835.6551)
Adducts: [M+H]+ (Ppm: 5.8)
Mus musculus (Liver)
Salmonella_final_pos_recal
Resolution: 17μm, 691x430

Description

A more complete and holistic view on host–microbe interactions is needed to understand the physiological and cellular barriers that affect the efficacy of drug treatments and allow the discovery and development of new therapeutics. Here, we developed a multimodal imaging approach combining histopathology with mass spectrometry imaging (MSI) and same section imaging mass cytometry (IMC) to study the effects of Salmonella Typhimurium infection in the liver of a mouse model using the S. Typhimurium strains SL3261 and SL1344. This approach enables correlation of tissue morphology and specific cell phenotypes with molecular images of tissue metabolism. IMC revealed a marked increase in immune cell markers and localization in immune aggregates in infected tissues. A correlative computational method (network analysis) was deployed to find metabolic features associated with infection and revealed metabolic clusters of acetyl carnitines, as well as phosphatidylcholine and phosphatidylethanolamine plasmalogen species, which could be associated with pro-inflammatory immune cell types. By developing an IMC marker for the detection of Salmonella LPS, we were further able to identify and characterize those cell types which contained S. Typhimurium. [dataset] Nicole Strittmatter. Holistic Characterization of a Salmonella Typhimurium Infection Model Using Integrated Molecular Imaging, metabolights_dataset, V1; 2022. https://www.ebi.ac.uk/metabolights/MTBLS2671.

Isofucosterol 3-O-[6-O-(9,12-Octadecadienoyl)-b-D-glucopyranoside]

Formula: C53H88O7 (836.653)
Adducts: [M-H2O+NH4]+ (Ppm: 7.6)
Mus musculus (brain)
Brain01_Bregma-3-88b_centroid
Resolution: 17μm, 265x320

Description

Isofucosterol 3-O-[6-O-(9,12-Octadecadienoyl)-b-D-glucopyranoside]

Formula: C53H88O7 (836.653)
Adducts: [M-H2O+NH4]+ (Ppm: 4.7)
Mus musculus (brain)
Brain01_Bregma1-42_02_centroid
Resolution: 17μm, 434x258

Description

Isofucosterol 3-O-[6-O-(9,12-Octadecadienoyl)-b-D-glucopyranoside]

Formula: C53H88O7 (836.653)
Adducts: [M-H2O+NH4]+ (Ppm: 5.3)
Mus musculus (brain)
Brain01_Bregma1-42_01_centroid
Resolution: 17μm, 447x118

Description

Erythrosine

Formula: C20H8I4O5 (835.6551)
Adducts: [M+H]+ (Ppm: 9.3)
Mus musculus (brain)
Brain02_Bregma-3-88
Resolution: 17μm, 288x282

Description

Erythrosine

Formula: C20H8I4O5 (835.6551)
Adducts: [M+H]+ (Ppm: 9.5)
Mus musculus (brain)
Brain02_Bregma-1-46
Resolution: 17μm, 294x399

Description