Drug Information
Drug General Information | Top | |||
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Drug ID |
D02YIZ
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Former ID |
DAP000111
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Drug Name |
Erythromycin
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Synonyms |
Abboticin; Abomacetin; Acneryne; Acnesol; Aknemycin; Aknin; AustriaS; Benzamycin; Derimer; Deripil; Dotycin; Dumotrycin; ERY; ERYC; Emgel; Emuvin; Emycin; Endoeritrin; Erecin; Erisone; Eritomicina; Eritrocina; Eritromicina; Ermycin; Eros; Eryacne; Eryacnen; Erycen; Erycette; Erycin; Erycinum; Eryderm; Erydermer; Erygel; Eryhexal; Erymax; Erymed; Erysafe; Erytab; Erythro; Erythroderm; Erythrogran; Erythroguent; Erythromid; Erythromycine; Erythromycinum; Erytop; Erytrociclin; Ilocaps; Iloticina; Ilotycin; Inderm; IndermRetcin; Latotryd; Lederpax; Mephamycin; Mercina; Oftamolets; Paediathrocin; Pantoderm; Pantodrin; Pantomicina; Pharyngocin; Primacine; Propiocine; Proterytrin; Retcin; Robimycin; Romycin; Sansac; Staticin; Stiemicyn; Stiemycin; Tiloryth; Tiprocin; Torlamicina; Wemid; Akne Cordes Losung; Aknederm Ery Gel; Benzamycin Pak; ERYTHROMYCIN STEARATE; Eryc Sprinkles; Erythromycin A; Erythromycin Lactate; Erythromycin Ointment; Erythromycin base; Erythromycin intravenous; Erythromycin sodium lauryl sulfate; Inderm Gel; Oftalmolosa Cusi Eritromicina; Skid Gel E; Theramycin Z; Udima Ery Gel; E0751; Eryc 125; Erythromast 36; Ak-Mycin; Akne-Mycin; Del-Mycin; E-Base; E-Glades; E-Mycin; E-Solve 2; ERYC (base); Emu-V; Emu-Ve; Erimycin-T; Eritromicina [INN-Spanish]; Ery-B; Ery-Diolan; Ery-Sol; Ery-Tab; Ery-maxin; Eryc (TN); Eryc-125; Eryc-250; Erygel (TN); Erythra-Derm; Erythro-Statin; Erythro-Teva; Erythromycin & VRC3375; Erythromycine [INN-French]; Erythromycinum [INN-Latin]; Ilosone (TN); Ilosone (estolate); Ilotycin T.S; Kesso-Mycin; N-Methylerythromycin A; PCE Dispertab (base); Pce (TN); R-P Mycin; Sans-acne; Staticin (TN); T-Stat; Taimoxin-F; A/T/S; Akne-mycin (TN); C-Solve-2; E-Base (base); E-Mycin (base); Ery-Tab (base); Erythromycin [INN:BAN:JAN]; Ilotycin T.S.; T-stat (TN); E-mycin, Erycin, Robimysin; Erythromycin (JP15/USP/INN); Erythromycin, compd. with monododecyl sulfate, sodium salt; Sulfuric acid, monododecyl ester, sodium salt, compd. with erythromycin; Adecane-2,10-dione (non-preferred name); Erythromycin A, T-Stat, Pantomicina, HSDB 3074, Erytab, DRG-0279; Ery
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Drug Type |
Small molecular drug
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Indication | Bacterial infection [ICD-11: 1A00-1C4Z; ICD-10: A00-B99] | Approved | [1], [2] | |
Therapeutic Class |
Antibiotics
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Company |
Eli Lilly
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Structure |
Download2D MOL |
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Formula |
C37H67NO13
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Canonical SMILES |
CCC1C(C(C(C(=O)C(CC(C(C(C(C(C(=O)O1)C)OC2CC(C(C(O2)C)O)(C)OC)C)OC3C(C(CC(O3)C)N(C)C)O)(C)O)C)C)O)(C)O
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InChI |
1S/C37H67NO13/c1-14-25-37(10,45)30(41)20(4)27(39)18(2)16-35(8,44)32(51-34-28(40)24(38(11)12)15-19(3)47-34)21(5)29(22(6)33(43)49-25)50-26-17-36(9,46-13)31(42)23(7)48-26/h18-26,28-32,34,40-42,44-45H,14-17H2,1-13H3/t18-,19-,20+,21+,22-,23+,24+,25-,26+,28-,29+,30-,31+,32-,34+,35-,36-,37-/m1/s1
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InChIKey |
ULGZDMOVFRHVEP-RWJQBGPGSA-N
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CAS Number |
CAS 114-07-8
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PubChem Compound ID | ||||
PubChem Substance ID |
5020, 602912, 823926, 855292, 7847208, 7887354, 7979183, 8149330, 8159405, 10321305, 11335469, 11335572, 11335877, 11360708, 11360811, 11361116, 11362969, 11363553, 11365531, 11366115, 11368093, 11368677, 11374314, 11376255, 11376839, 11461680, 11461783, 11462088, 11484514, 11484962, 11488575, 11489079, 11492353, 11493929, 11494473, 12012581, 14720219, 14840178, 14864494, 25622201, 26611731, 26681121, 29280771, 46508487, 47365088, 47365089, 47662182, 47810649, 47885308, 47959639
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ChEBI ID |
CHEBI:42355
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ADReCS Drug ID | BADD_D00804 ; BADD_D00807 | |||
SuperDrug ATC ID |
D10AF02; J01FA01; S01AA17
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SuperDrug CAS ID |
cas=000114078
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Interaction between the Drug and Microbe | Top | |||
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The Abundace of Studied Microbe(s) Regulated by Drug | ||||
The Order in the Taxonomic Hierarchy of the following Microbe(s): Bacillales | ||||
Studied Microbe: Staphylococcus
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[3] | |||
Hierarchy | ||||
Abundance Change | Increase | |||
Experimental Species | Human | Experimental Sample | Faeces | |
Disease or Condition | Healthy | |||
Description | The abundance of Staphylococcus was increased by Erythromycin. | |||
The Order in the Taxonomic Hierarchy of the following Microbe(s): Bacteroidales | ||||
Studied Microbe: Bacteroides
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[3] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experimental Species | Human | Experimental Sample | Faeces | |
Disease or Condition | Healthy | |||
Description | The abundance of Bacteroides was decreased by Erythromycin. | |||
Studied Microbe: Bacteroides caccae
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Bacteroides caccae was decreased by Erythromycin (adjusted p-values: 5.04E-06). | |||
Studied Microbe: Bacteroides fragilis enterotoxigenic
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Bacteroides fragilis enterotoxigenic was decreased by Erythromycin (adjusted p-values: 5.91E-06). | |||
Studied Microbe: Bacteroides fragilis nontoxigenic
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Bacteroides fragilis nontoxigenic was decreased by Erythromycin (adjusted p-values: 6.02E-06). | |||
Studied Microbe: Bacteroides ovatus
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Bacteroides ovatus was decreased by Erythromycin (adjusted p-values: 5.04E-06). | |||
Studied Microbe: Bacteroides thetaiotaomicron
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Bacteroides thetaiotaomicron was decreased by Erythromycin (adjusted p-values: 9.80E-06). | |||
Studied Microbe: Bacteroides uniformis
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Bacteroides uniformis was decreased by Erythromycin (adjusted p-values: 6.45E-07). | |||
Studied Microbe: Bacteroides vulgatus
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Bacteroides vulgatus was decreased by Erythromycin (adjusted p-values: 1.95E-06). | |||
Studied Microbe: Bacteroides xylanisolvens
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Bacteroides xylanisolvens was decreased by Erythromycin (adjusted p-values: 1.06E-05). | |||
Studied Microbe: Odoribacter splanchnicus
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Odoribacter splanchnicus was decreased by Erythromycin (adjusted p-values: 5.04E-06). | |||
Studied Microbe: Parabacteroides distasonis
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Parabacteroides distasonis was decreased by Erythromycin (adjusted p-values: 7.65E-07). | |||
Studied Microbe: Parabacteroides merdae
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Parabacteroides merdae was decreased by Erythromycin (adjusted p-values: 4.93E-07). | |||
Studied Microbe: Prevotella copri
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Prevotella copri was decreased by Erythromycin (adjusted p-values: 3.56E-05). | |||
The Order in the Taxonomic Hierarchy of the following Microbe(s): Bifidobacteriales | ||||
Studied Microbe: Bifidobacterium
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[3] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experimental Species | Human | Experimental Sample | Faeces | |
Disease or Condition | Healthy | |||
Description | The abundance of Bifidobacterium was decreased by Erythromycin. | |||
Studied Microbe: Bifidobacterium adolescentis
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Bifidobacterium adolescentis was decreased by Erythromycin (adjusted p-values: 5.04E-06). | |||
Studied Microbe: Bifidobacterium longum
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Bifidobacterium longum was decreased by Erythromycin (adjusted p-values: 5.04E-06). | |||
The Order in the Taxonomic Hierarchy of the following Microbe(s): Coriobacteriales | ||||
Studied Microbe: Collinsella aerofaciens
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Collinsella aerofaciens was decreased by Erythromycin (adjusted p-values: 2.73E-07). | |||
The Order in the Taxonomic Hierarchy of the following Microbe(s): Eggerthellales | ||||
Studied Microbe: Eggerthella lenta
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Eggerthella lenta was decreased by Erythromycin (adjusted p-values: 5.50E-06). | |||
The Order in the Taxonomic Hierarchy of the following Microbe(s): Enterobacterales | ||||
Studied Microbe: Enterobacteriaceae
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[3] | |||
Hierarchy | ||||
Abundance Change | Increase | |||
Experimental Species | Human | Experimental Sample | Faeces | |
Disease or Condition | Healthy | |||
Description | The abundance of Enterobacteriaceae was increased by Erythromycin. | |||
Studied Microbe: Escherichia
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[3] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experimental Species | Human | Experimental Sample | Faeces | |
Disease or Condition | Healthy | |||
Description | The abundance of Escherichia was decreased by Erythromycin. | |||
The Order in the Taxonomic Hierarchy of the following Microbe(s): Erysipelotrichales | ||||
Studied Microbe: Erysipelatoclostridium ramosum
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Erysipelatoclostridium ramosum was decreased by Erythromycin (adjusted p-values: 8.73E-06). | |||
The Order in the Taxonomic Hierarchy of the following Microbe(s): Eubacteriales | ||||
Studied Microbe: Blautia obeum
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Blautia obeum was decreased by Erythromycin (adjusted p-values: 7.48E-07). | |||
Studied Microbe: Clostridium
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[3] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experimental Species | Human | Experimental Sample | Faeces | |
Disease or Condition | Healthy | |||
Description | The abundance of Clostridium was decreased by Erythromycin. | |||
Studied Microbe: Clostridium perfringens
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Clostridium perfringens was decreased by Erythromycin (adjusted p-values: 5.51E-07). | |||
Studied Microbe: Coprococcus comes
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Coprococcus comes was decreased by Erythromycin (adjusted p-values: 8.73E-06). | |||
Studied Microbe: Dorea formicigenerans
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Dorea formicigenerans was decreased by Erythromycin (adjusted p-values: 5.92E-06). | |||
Studied Microbe: Enterocloster bolteae
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Enterocloster bolteae was decreased by Erythromycin (adjusted p-values: 1.46E-05). | |||
Studied Microbe: Eubacterium
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[3] | |||
Hierarchy | ||||
Abundance Change | Increase | |||
Experimental Species | Human | Experimental Sample | Faeces | |
Disease or Condition | Healthy | |||
Description | The abundance of Eubacterium was increased by Erythromycin. | |||
Studied Microbe: Eubacterium eligens
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Eubacterium eligens was decreased by Erythromycin (adjusted p-values: 5.92E-06). | |||
Studied Microbe: Eubacterium rectale
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Eubacterium rectale was decreased by Erythromycin (adjusted p-values: 3.54E-04). | |||
Studied Microbe: Lacrimispora saccharolytica
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Lacrimispora saccharolytica was decreased by Erythromycin (adjusted p-values: 3.47E-07). | |||
Studied Microbe: Roseburia hominis
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Roseburia hominis was decreased by Erythromycin (adjusted p-values: 3.89E-05). | |||
Studied Microbe: Roseburia intestinalis
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Roseburia intestinalis was decreased by Erythromycin (adjusted p-values: 1.39E-04). | |||
Studied Microbe: Ruminococcus bromii
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Ruminococcus bromii was decreased by Erythromycin (adjusted p-values: 9.05E-06). | |||
Studied Microbe: Ruminococcus gnavus
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Ruminococcus gnavus was decreased by Erythromycin (adjusted p-values: 6.69E-05). | |||
Studied Microbe: Ruminococcus torques
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Ruminococcus torques was decreased by Erythromycin (adjusted p-values: 6.51E-07). | |||
The Order in the Taxonomic Hierarchy of the following Microbe(s): Lactobacillales | ||||
Studied Microbe: Enterococcus
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[3] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experimental Species | Human | Experimental Sample | Faeces | |
Disease or Condition | Healthy | |||
Description | The abundance of Enterococcus was decreased by Erythromycin. | |||
Studied Microbe: Lactobacillus
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[3] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experimental Species | Human | Experimental Sample | Faeces | |
Disease or Condition | Healthy | |||
Description | The abundance of Lactobacillus was decreased by Erythromycin. | |||
Studied Microbe: Lactobacillus paracasei
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Lactobacillus paracasei was decreased by Erythromycin (adjusted p-values: 6.45E-07). | |||
Studied Microbe: Streptococcus
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[3] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experimental Species | Human | Experimental Sample | Faeces | |
Disease or Condition | Healthy | |||
Description | The abundance of Streptococcus was decreased by Erythromycin. | |||
Studied Microbe: Streptococcus parasanguinis
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Streptococcus parasanguinis was decreased by Erythromycin (adjusted p-values: 5.51E-07). | |||
Studied Microbe: Streptococcus salivarius
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Streptococcus salivarius was decreased by Erythromycin (adjusted p-values: 5.67E-07). | |||
The Order in the Taxonomic Hierarchy of the following Microbe(s): Mycobacteriales | ||||
Studied Microbe: Corynebacterium
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[3] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experimental Species | Human | Experimental Sample | Faeces | |
Disease or Condition | Healthy | |||
Description | The abundance of Corynebacterium was decreased by Erythromycin. | |||
The Order in the Taxonomic Hierarchy of the following Microbe(s): Veillonellales | ||||
Studied Microbe: Veillonella
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[3] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experimental Species | Human | Experimental Sample | Faeces | |
Disease or Condition | Healthy | |||
Description | The abundance of Veillonella was decreased by Erythromycin. | |||
Studied Microbe: Veillonella parvula
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Veillonella parvula was decreased by Erythromycin (adjusted p-values: 5.04E-06). | |||
The Order in the Taxonomic Hierarchy of the following Microbe(s): Verrucomicrobiales | ||||
Studied Microbe: Akkermansia muciniphila
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[4] | |||
Hierarchy | ||||
Abundance Change | Decrease | |||
Experiment Method | High-throughput screening | |||
Description | The abundance of Akkermansia muciniphila was decreased by Erythromycin (adjusted p-values: 2.37E-06). | |||
The Order in the Taxonomic Hierarchy of the following Microbe(s): Gut microbiota | ||||
Studied Microbe: Firmicutes/Bacteroidetes ratio
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[5] | |||
Hierarchy | ||||
Abundance Change | Increase | |||
Experimental Species | C57BL/6J mice | Experimental Sample | Cecal content | |
Disease or Condition | Healthy | |||
Description | The abundance of Firmicutes/Bacteroidetes ratio was increased by Combination of penicillin G and erythromycin. |
Drug Resistance Mutation (DRM) | Top | |||
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DRM | DRM Info |
Target and Pathway | Top | |||
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Target(s) | Bacterial 50S ribosomal RNA (Bact 50S rRNA) | Target Info | Binder | [6], [7], [8] |
References | Top | |||
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REF 1 | URL: http://www.guidetopharmacology.org Nucleic Acids Res. 2015 Oct 12. pii: gkv1037. The IUPHAR/BPS Guide to PHARMACOLOGY in 2016: towards curated quantitative interactions between 1300 protein targets and 6000 ligands. (Ligand id: 1456). | |||
REF 2 | How many modes of action should an antibiotic have Curr Opin Pharmacol. 2008 Oct;8(5):564-73. | |||
REF 3 | Comparative effects of clarithromycin and erythromycin on the normal intestinal microflora. Scand J Infect Dis. 1991;23(5):635-42. | |||
REF 4 | Extensive impact of non-antibiotic drugs on human gut bacteria. Nature. 2018 Mar 29;555(7698):623-628. | |||
REF 5 | From the Cover: Exposure to Oral Antibiotics Induces Gut Microbiota Dysbiosis Associated with Lipid Metabolism Dysfunction and Low-Grade Inflammation in Mice. Toxicol Sci. 2016 Nov;154(1):140-152. | |||
REF 6 | A synthetic alanyl-initiator tRNA with initiator tRNA properties as determined by fluorescence measurements: comparison to a synthetic alanyl-elongator tRNA. Nucleic Acids Res. 1991 Oct 25;19(20):5749-54. | |||
REF 7 | Inhibition of 50S ribosomal subunit assembly in Haemophilus influenzae cells by azithromycin and erythromycin. Curr Microbiol. 2002 Jun;44(6):418-24. | |||
REF 8 | Structural basis for the interaction of antibiotics with the peptidyl transferase centre in eubacteria. Nature. 2001 Oct 25;413(6858):814-21. |
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