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Nosiheptide

Katalog-Nr.GC38117 Copy One-Click Copy Product Info

A thiopeptide antibiotic

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Nosiheptide Chemische Struktur

Cas No.: 56377-79-8

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10mM (in 1mL DMSO)
122,00 $
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1mg
27,00 $
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5mg
60,00 $
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10mg
90,00 $
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25mg
150,00 $
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50mg
224,00 $
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100mg
336,00 $
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Sample solution is provided at 25 µL, 10mM.



Description of Nosiheptide

Nosiheptide (Multhiomycin), a thiopeptide antibiotic produced by Streptomyces actuosus, inhibits bacterial protein synthesis and bears a unique indole side ring system and regiospecific hydroxyl groups on the characteristic macrocyclic core. Nosiheptide has been widely used as a feed additive for animal growth[1][2].

Nosiheptide exhibits extremely potent activity against all contemporary Staphylococcus aureus strains tested including multiple drug-resistant clinical isolates, with MIC values ≤ 0.25 mg/L. Nosiheptide is also highly active against Enterococcus spp and the contemporary hypervirulent BI strain of Clostridium difficile but is inactive against most Gram-negative strains tested. Time-kill analysis reveals Nosiheptide to be rapidly bactericidal against Staphylococcus aureus in a concentration- and time-dependent manner, with a nearly 2-log kill noted at 6 hours at 10X MIC. Furthermore, Nosiheptide is found to be non-cytotoxic against mammalian cells at >> 100X MIC, and its anti-Staphylococcus aureus activity is not inhibited by 20% human serum. Notably, Nosiheptide exhibits a significantly prolonged post-antibiotic effect against both healthcare- and community-associated Staphylococcus aureus compared to vancomycin[1].

Nosiheptide (20 mg/kg; intraperitoneal injection; injected at 1 and 8 h post-infection; female CD1 mice) provids significant protection against mortality. Ten out of 10 of the Nosiheptide-treated mice remains alive on day 3, while 6/10 of the controls died on day 1[1]. Animal Model: Eight week old female CD1 mice injected with HA-Staphylococcus aureus strain Sanger 252[1]

[1]. Haste NM, et al. Activity of the thiopeptide antibiotic nosiheptide against contemporary strains of methicillin-resistant Staphylococcus aureus. J Antibiot (Tokyo). 2012 Dec;65(12):593-8. [2]. Yu Y, et al. Nosiheptide biosynthesis featuring a unique indole side ring formation on the characteristic thiopeptide framework. ACS Chem Biol. 2009 Oct 16;4(10):855-64.

Chemical Properties of Nosiheptide

Cas No. 56377-79-8 SDF
Canonical SMILES OC1=C(C2=NC(C(NC(C(N)=O)=C)=O)=CS2)N=C(C3=CSC(C4NC(C5=CSC(C(CC(C(OCC6=C7C(C)=C(NC7=CC=C6)C(SC4)=O)=O)O)NC(C8=CSC(/C(NC(C(C(O)C)NC(C9=CSC%10=N9)=O)=O)=C\C)=N8)=O)=N5)=O)=N3)C%10=C1
Formula C51H43N13O12S6 M.Wt 1222.36
Löslichkeit DMSO: 125 mg/mL (102.26 mM) Storage Store at -20°C
General tips Please select the appropriate solvent to prepare the stock solution according to the solubility of the product in different solvents; once the solution is prepared, please store it in separate packages to avoid product failure caused by repeated freezing and thawing.Storage method and period of the stock solution: When stored at -80°C, please use it within 6 months; when stored at -20°C, please use it within 1 month.
To increase solubility, heat the tube to 37°C and then oscillate in an ultrasonic bath for some time.
Shipping Condition Evaluation sample solution: shipped with blue ice. All other sizes available: with RT, or with Blue Ice upon request.

Complete Stock Solution Preparation Table of Nosiheptide

Prepare stock solution
1 mg 5 mg 10 mg
1 mM 818.1 μL 4.0904 mL 8.1809 mL
5 mM 163.6 μL 818.1 μL 1.6362 mL
10 mM 81.8 μL 409 μL 818.1 μL
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Method for preparing DMSO master liquid: mg drug pre-dissolved in μL DMSO ( Master liquid concentration mg/mL, Please contact us first if the concentration exceeds the DMSO solubility of the batch of drug. )

Method for preparing in vivo formulation: Take μL DMSO master liquid, next addμL PEG300, mix and clarify, next addμL Tween 80, mix and clarify, next add μL saline, mix and clarify.

Method for preparing in vivo formulation: Take μL DMSO master liquid, next add μL Corn oil, mix and clarify.

Note: 1. Please make sure the liquid is clear before adding the next solvent.
2. Be sure to add the solvent(s) in order. You must ensure that the solution obtained, in the previous addition, is a clear solution before proceeding to add the next solvent. Physical methods such as vortex, ultrasound or hot water bath can be used to aid dissolving.
3. All of the above co-solvents are available for purchase on the GlpBio website.

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Average Rating: 5 ★★★★★ (Based on Reviews and 25 reference(s) in Google Scholar.)

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