M/Z: 405.9819


Hit 3 annotations:  Diclazuril_[M]+; Althiazide_[M+Na]+; Diclazuril_[M]+


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 14 Reference Ions Near m/z 405.9819
NovoCell ID m/z Mass Window Metabolite Ranking Anatomy Context
MSI_000045885 Reliable 405.9845 405.9845 ~ 405.9845
MzDiff: none
Diclazuril (BioDeep_00000178226)
Formula: C17H9Cl3N4O2 (405.9791)
8.64 (100%) Mus musculus
[UBERON:0002107] liver
MSI_000040618 Unreliable 405.9772 405.9771 ~ 405.9776
MzDiff: 2.3 ppm
Diclazuril (BioDeep_00000271488)
Formula: C17H9Cl3N4O2 (405.9791)
3.47 (100%) Posidonia oceanica
[PO:0006036] root epidermis
MSI_000001172 Unavailable 405.9819 405.9819 ~ 405.9819
MzDiff: none
Diclazuril (BioDeep_00000178226)
Formula: C17H9Cl3N4O2 (405.9791)
-0.46 (100%) Mus musculus
[UBERON:0001224] renal pelvis
MSI_000001715 Unavailable 405.9819 405.9819 ~ 405.9819
MzDiff: none
Diclazuril (BioDeep_00000178226)
Formula: C17H9Cl3N4O2 (405.9791)
-0.53 (100%) Mus musculus
[UBERON:0001225] cortex of kidney
MSI_000002181 Unavailable 405.9819 405.9819 ~ 405.9819
MzDiff: none
Diclazuril (BioDeep_00000178226)
Formula: C17H9Cl3N4O2 (405.9791)
-0.53 (100%) Mus musculus
[UBERON:0001293] outer medulla of kidney
MSI_000002820 Unavailable 405.9885 405.9885 ~ 405.9885
MzDiff: none
Strongarm (BioDeep_00000003978)
Formula: C13H10Cl2FN5O3S (404.9865)
-0.45 (100%) Rattus norvegicus
[UBERON:0001950] neocortex
MSI_000003383 Unavailable 405.9885 405.9885 ~ 405.9885
MzDiff: none
Strongarm (BioDeep_00000003978)
Formula: C13H10Cl2FN5O3S (404.9865)
-0.33 (100%) Rattus norvegicus
[UBERON:0002037] cerebellum
MSI_000005031 Unavailable 405.9885 405.9885 ~ 405.9885
MzDiff: none
Strongarm (BioDeep_00000003978)
Formula: C13H10Cl2FN5O3S (404.9865)
-0.42 (100%) Rattus norvegicus
[UBERON:0002298] brainstem
MSI_000005413 Unreliable 405.9885 405.9885 ~ 405.9885
MzDiff: none
Strongarm (BioDeep_00000003978)
Formula: C13H10Cl2FN5O3S (404.9865)
2.44 (100%) Rattus norvegicus
[UBERON:0002435] striatum
MSI_000013428 Unreliable 405.9773 405.9773 ~ 405.9773
MzDiff: none
Althiazide (BioDeep_00000175939)
Formula: C11H14ClN3O4S3 (382.9835)
1.17 (100%) Plant
[PO:0005417] phloem
MSI_000018916 Unreliable 405.9773 405.9773 ~ 405.9773
MzDiff: none
Althiazide (BioDeep_00000175939)
Formula: C11H14ClN3O4S3 (382.9835)
0.64 (100%) Plant
[PO:0020124] root stele
MSI_000019589 Unreliable 405.9773 405.9773 ~ 405.9773
MzDiff: none
Althiazide (BioDeep_00000175939)
Formula: C11H14ClN3O4S3 (382.9835)
0.22 (100%) Plant
[PO:0025197] stele
MSI_000032889 Unreliable 405.9769 405.9769 ~ 405.9769
MzDiff: none
Diclazuril (BioDeep_00000271488)
Formula: C17H9Cl3N4O2 (405.9791)
0.01 (100%) Posidonia oceanica
[PO:0005020] vascular bundle
MSI_000033993 Unreliable 405.9769 405.9769 ~ 405.9769
MzDiff: none
Diclazuril (BioDeep_00000271488)
Formula: C17H9Cl3N4O2 (405.9791)
0.12 (100%) Posidonia oceanica
[PO:0005352] xylem

Found 5 Sample Hits
Metabolite Species Sample
Diclazuril

Formula: C17H9Cl3N4O2 (405.9791)
Adducts: [M]+ (Ppm: 8.2)
Mus musculus (Kidney)
FULL_MS_centriod_CHCA_20210819
Resolution: 17μm, 638x437

Description

AP-MALDI instrument demo test, mass spectrum scan in centroid mode.

Althiazide

Formula: C11H14ClN3O4S3 (382.9835)
Adducts: [M+Na]+ (Ppm: 11.3)
Plant (Root)
MPIMM_035_QE_P_PO_6pm
Resolution: 30μm, 165x170

Description

Diclazuril

Formula: C17H9Cl3N4O2 (405.9791)
Adducts: [M]+ (Ppm: 2.4)
Posidonia oceanica (root)
MS1_20180404_PO_1200
Resolution: 17μm, 193x208

Description

Althiazide

Formula: C11H14ClN3O4S3 (382.9835)
Adducts: [M+Na]+ (Ppm: 1.5)
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.

Diclazuril

Formula: C17H9Cl3N4O2 (405.9791)
Adducts: [M]+ (Ppm: 14.6)
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.