1Z105
Based on 1 Customer Validation
1Z105 is an orally active TLR4/MD2 agonist, immunostimulant and vaccine adjuvant. 1Z105 activates NF-κB via the MyD88/TRIF pathway in a CD14-independent manner, with EC50 values of 0.63 µM and 0.77 µM for inducing IL-6 and IL-12 in mBMDCs, respectively. 1Z105 promotes dendritic cell maturation, antigen uptake and cross-presentation; when used alone, it induces Th2-IgG1, while combined with the TLR7 agonist 1V270, it synergistically induces balanced Th1/Th2 responses and provides low-reactogenic protection against homologous, heterologous and heterosubtypic influenza. 1Z105 prevents LPS (HY-D1056A1)- and galactosamine-induced liver injury as well as autoantibody-driven arthritis in mice. 1Z105 can be used in studies related to influenza virus infection, inflammation, and LPS/galactosamine-induced liver injury.
Nur für Forschungszwecke. Wir verkaufen nicht an Patienten.
- Reinheit : 99.83%
- CAS. Nr.: 1438280-73-9
- Formel: C25H26N4O2S
- Molecular Weight:446.56
-
Speicherung:Powder -20°C, 3 years ; In solvent -80°C, 6 months , -20°C, 1 month
Biologische Aktivität
Beschreibung
|
MD2 |
TLR4 |
IL-8 0.63 μM (EC50) |
IL-6 0.77 μM (EC50) |
Cellular Effect
|
Cell Line
|
Type | Value | Description | References |
|---|---|---|---|---|
| HEK293 | EC50 |
8.26 μM
Compound: 1
|
Agonist activity at human TLR4 expressed in HEK293 blue cells assessed as induction of NF-kappaB activation-mediated SEAP production after 20 to 24 hrs by colorimetric assay
Agonist activity at human TLR4 expressed in HEK293 blue cells assessed as induction of NF-kappaB activation-mediated SEAP production after 20 to 24 hrs by colorimetric assay
|
[PMID: 29049886] |
In Vitro
1Z105 (1-10 µM; 20 h) stimulates NF-κB activation in HEK-Blue™ mTLR4 cells, with an EC50 of 7.49 µM[1].
1Z105 (1-10 µM; 20 h) stimulates NF-κB activation in HEK-Blue™ hTLR4 cells, with an EC50 of 1445 µM[1].
1Z105 (2-10 μM; overnight) enhances the expression of co-stimulatory molecules CD40 and CD86 in bone marrow-derived dendritic cells from wild-type C57BL/6 mice in a TLR4-dependent manner[2].
1Z105 (20-24 h) activates the NF-κB signaling pathway in murine TLR4 HEK Blue™ cells[3].
1Z105 (5 µM; overnight) induces IL-8 secretion in human peripheral blood mononuclear cells, with a level lower than that of 2B182C[1].
1Z105 (5 µM) stimulates murine bone marrow-derived dendritic cells to secrete IL-12 and IL-6, with EC50 values of 0.77 µM and 0.63 µM, respectively[1].
1Z105 (10 μM; 18 h) activates human monocyte-derived dendritic cells in vitro, inducing them to release proinflammatory cytokines including IL-1β, IL-6, IL-8, IL-12p70 and TNF-α[2].
1Z105 (1 µM; 20 h) induces the expression of CD40 and CD86 in mouse bone marrow-derived dendritic cells, but their expression levels are lower than those of 2B182C[1].
1Z105 (2 μM; overnight) enhances antigen cross-presentation from bone marrow-derived dendritic cells of wild-type C57BL/6 mice to OT-1 CD8+ T cells in vitro[2].
1Z105 (18 h) potently induces IL-6 (EC50 = 0.27 μM) and type I interferons (EC50 = 1.9 μM) in mouse bone marrow-derived dendritic cells[3].
1Z105 (0.63 μM; pre-treatment) desensitized mouse bone marrow-derived macrophages to subsequent LPS-induced IL-6 secretion[3].
1Z105 (2.5 μM; overnight pre-treatment) attenuated IL-6 secretion by mouse bone marrow-derived dendritic cells induced by various MyD88-dependent TLR ligands[3].
1Z105 (10 μM; 24 h) exhibits no cytotoxicity in HepG2 cells[3].
1Z105 (10 μM) exhibits only extremely low cytotoxicity in mouse bone marrow-derived dendritic cells[3].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only. Further protocols information, click here.
-
Cell Line:Mouse BMDCs cells
-
Concentration:5 µM
-
Incubation Time:overnight
-
Result:It induced human peripheral blood mononuclear cells to secrete IL-8, and the IL-8 level was lower than that induced by 2B182C.
-
Cell Line:wild-type C57BL/6 mouse bone marrow-derived dendritic cells (mBMDCs), CFSE-labeled OT-1 CD8+ T cells
-
Concentration:2 μM
-
Incubation Time:overnight (mBMDCs); 3 days (co-culture with T cells)
-
Result:Induced proliferation of OT-1 CD8+ T cells, indicating efficient processing of extracellular OVA via the MHC class I pathway, with activity similar to the positive control MPLA.
-
Cell Line:HepG2 human hepatocellular carcinoma cells
-
Concentration:10 μM
-
Incubation Time:24 h
-
Result:Maintained cell viability at 99% compared to vehicle control, indicating no cytotoxicity at this concentration.
Parmacokinetics
| Species | Dose | Route | Bioavailability | Tmax |
|---|---|---|---|---|
| Mice[4] | 1 μmol | p.o. | 11 % | 60 min |
In Vivo
1Z105 (89.4 μg/dose; intramuscular injection; single administration on day 0), when used as an adjuvant in combination with rPR/8 HA, induces rapid, Th2-biased protective immunity against lethal homologous influenza A virus challenge in BALB/c mice, while exhibiting antigen-sparing activity[2].
1Z105 (89.4 μg/dose; intramuscular injection; single administration on day 0), when used as an adjuvant for rCal/09 HA, induces protective immunity against lethal pandemic H1N1 influenza virus challenge in BALB/c mice[2].
1Z105 (89.4 μg/dose; intramuscular injection; single administration on day 0), when used as an adjuvant in combination with rVN/04 HA, induces protective immunity against lethal avian H5N1 influenza virus challenge in BALB/c mice[2].
1Z105 (89.4 μg/dose; intramuscular injection; single administration on day 0), when used as an adjuvant in combination with rPR/8 HA, induces long-lasting protective immunity against lethal homologous influenza A virus challenge in BALB/c mice[2].
1Z105 (89.4 μg/dose; intramuscular injection; single administration on day 0) acts as an adjuvant to enhance the immunogenicity of Fluzone and reduce the morbidity of BALB/c mice after challenge with heterologous influenza B virus[2].
1Z105 (89.4 μg per dose; intramuscular injection; administered in three sequential immunizations) acts as an adjuvant combined with sequential cHA immunization to induce cross-subtype antibody responses targeting the conserved stem region of influenza virus HA in BALB/c mice[2].
1Z105 (200 nM; intramuscular injection; day 0 and day 21), acting as an adjuvant, synergizes with the TLR7 ligand 1V270 against inactivated influenza A virus to enhance antigen-specific IgG2a responses in BALB/c mice[1].
1Z105 (89.4 μg/dose; intramuscular injection; days 0 and 14) acts as an adjuvant for OVA and induces a robust Th2-associated IgG1 antibody response in C57BL/6 mice[2].
1Z105 (89.4 μg/dose; intramuscular injection; single administration), when administered without co-administration of antigens, induced only mild local and systemic pro-inflammatory responses in BALB/c mice[2].
1Z105 (0.5 μM per mouse) protects over 80% of mice from lethal LPS/D-galactosamine-induced liver injury and reduces associated TNF release; no mouse mortality is observed when it is administered in combination with D-galactosamine[3].
1Z105 (1-5 μM; p.o.) inhibits LPS-induced TNF release in mice, and does not induce significant proinflammatory cytokines at effective doses[3].
1Z105 (5 μM; oral administration; once every other day) significantly alleviates paw swelling and joint tissue damage in a mouse model of autoantibody-induced arthritis[3].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
-
Animal Model:BALB/c wild-type mice (6-8-week-old, female)[1]
-
Dosage:89.4 μg/dose
-
Administration:i.m.; single dose
-
Result:Enhanced the seroresponse to all three Fluzone® viral components (A/Brisbane/59/2007 (H1N1), A/Uruguay/716/2007 (H3N2), and B/Brisbane/60/2008 (Victoria lineage)) as measured by ELISA, alongside 1V270, their combination, and AddaVax.\nInduced minimal cellular infiltration (mononuclear and a few polynuclear cells) at the injection site, with significantly lower local expression of proinflammatory cytokines IL-6, KC, and MCP-1, and lower systemic circulating levels of IL-6 and KC compared to AddaVax.
This minimal local and systemic inflammation was shared with 1V270 and their combination.
-
Animal Model:BALB/c (female, 6-8 weeks old, immunized with inactivated influenza A virus)[1]
-
Dosage:40 nM/injection; 200 nM/injection
-
Administration:i.m.; days 0 and 21
-
Result:Induced anti-HA IgG1, anti-NA IgG1, anti-HA IgG2a, and anti-NA IgG2a responses at 40 nmol/injection.
Induced elevated anti-HA IgG1 and anti-NA IgG1 responses, along with anti-HA IgG2a and anti-NA IgG2a responses at 200 nmol/injection.
-
Animal Model:BALB/c (female, 6-8 weeks old, immunized with inactivated influenza A virus combined with TLR7 ligand 1V270)[1]
-
Dosage:200 nM/injection
-
Administration:i.m.; days 0 and 21
-
Result:Induced anti-HA IgG1 and anti-NA IgG1 levels equivalent to those induced by 1V270 alone.
Induced anti-HA IgG2a and anti-NA IgG2a levels that were lower than those induced by 1V270 combined with 2B182C but higher than those induced by 1V270 alone.
-
Animal Model:C57BL/6 wild-type mice (7- to 9-week-old)[1]
-
Dosage:89.4 μg/dose
-
Administration:i.m.; on days 0 and 14
-
Result:Induced significantly higher antigen-specific IgG1 serum antibody titers than OVA alone, with a Th2-skewed immune profile (low IgG2a/IgG1 ratio).
Induced minimal OVA-specific IFN-γ release by restimulated splenocytes and low frequencies of IFN-γ-releasing T cells specific for OVA class I and class II peptides.
-
Animal Model:BALB/c mice (6- to 8-week-old, female)[2]
-
Dosage:89.4 μg/dose; 89.4 μg/dose (0.2 μg rPR/8 HA co-administration)
-
Administration:i.m.; single dose on day 0
-
Result:Induced rapid seroconversion to rPR/8 HA, with detectable antigen-specific total IgG, IgG1, and IgG2a serum antibody titers as early as 7 days post-immunization, and maintained robust titers through day 21.
Demonstrated a Th2-skewed immune profile (low IgG2a/IgG1 ratio).
Significantly reduced weight loss and provided 100% survival following lethal PR/8 virus challenge.
Minimized morbidity and mortality compared to the no-adjuvant control group receiving 5 μg rPR/8 HA, showing antigen-sparing properties.
-
Animal Model:BALB/c mice (6- to 8-week-old, female)[2]
-
Dosage:89.4 μg/dose
-
Administration:i.m.; single dose on day 0
-
Result:Enhanced antigen-specific IgG serum antibody titers compared to unadjuvanted rCal/09 HA.
Restricted weight loss and provided 100% survival following lethal challenge with the homologous pandemic H1N1 virus.\nEnhanced antigen-specific IgG serum antibody titers compared to unadjuvanted rVN/04 HA.
Significantly minimized weight loss and provided 100% survival following lethal H5N1 virus challenge.\nInduced a robust, sustained antigen-specific IgG serum antibody response that persisted for at least 18 weeks post-immunization, with detectable hemagglutination-inhibiting (HAI) titers by 6 weeks post-immunization.
Significantly reduced weight loss and provided 100% survival following lethal PR/8 virus challenge 18 weeks post-immunization.
-
Animal Model:BALB/c mice (6- to 8-week-old, female)[2]
-
Dosage:89.4 μg/dose
-
Administration:i.m.; single dose on day 0
-
Result:Enhanced antigen-specific IgG serum antibody titers to all three Fluzone components (A/Brisbane/59/2007 H1N1, A/Uruguay/716/2007 H3N2, B/Brisbane/60/2008).
Reduced weight loss on days 7 and 8 post-challenge with heterologous influenza B virus.
-
Animal Model:BALB/c mice (6- to 8-week-old, female)[2]
-
Dosage:89.4 μg/dose
-
Administration:i.m.; three total doses at sequential immunizations
-
Result:Induced significantly higher serum IgG titers reactive to heterosubtypic VN/04 H5 HA compared to the no-adjuvant control, with a Th2-skewed immune profile (low IgG2a/IgG1 ratio).
-
Animal Model:BALB/c mice (6- to 8-week-old, female)[2]
-
Dosage:89.4 μg/dose
-
Administration:i.m.; single dose
-
Result:Induced minimal cellular infiltration (few mononuclear and polynuclear cells) at the injection site.
Induced local proinflammatory cytokine (IL-6, KC, MCP-1) expression and systemic circulating cytokine (IL-6, KC) levels comparable to vehicle control and markedly lower than AddaVax-treated mice.
-
Animal Model:C57BL/6 wild-type mice (7 to 9 weeks old)[3]
-
Dosage:1 μM 5 μM
-
Administration:p.o.
-
Result:Significantly reduced serum TNF release after LPS challenge at 5 μmol dose.
Resulted in very low or undetectable levels of serum TNF, IL-6, or IP-10 at doses needed to suppress LPS stimulation via i.p. or p.o. administration.
-
Animal Model:C57BL/6 wild-type mice (7 to 9 weeks old)[3]
-
Dosage:5 μM
-
Administration:p.o.; every other day
-
Result:Significantly reduced paw swelling.
Decreased histological inflammation, bone erosion, and cartilage damage.
Chemical Information
-
CAS. Nr. 1438280-73-9
-
Appearance Solid
-
Molecular Weight 446.56
-
Formel C25H26N4O2S
-
Color White to off-white
-
SMILES
O=C1C2=C(C3=C(N2C)C=CC=C3)N=C(N1C4=CC=CC=C4)SCC(NC5CCCCC5)=O
-
Versand
Room temperature in continental US; may vary elsewhere.
-
Speicherung
Powder -20°C 3 years In solvent -80°C 6 months -20°C 1 month
Protokoll
-
Collagen-Induced Arthritis
Collagen-induced arthritis (CIA) is an autoimmune murine model of rheumatoid arthritis in which immunization with type II collagen (CII) emulsified in an adjuvant induces a T cell- and autoantibody-driven inflammatory arthritis characterized by synovial hyperplasia, immune cell infiltration, and joint destruction. The model typically relies on genetically susceptible mouse strains (e. g. , DBA/1) and reproduces key features of human rheumatoid arthritis, including anti-collagen immune responses and progressive joint inflammation. Disease onset generally occurs within ~3-4 weeks after immunization, depending on antigen/adjuvant combinations and protocol variation. The immunopathology is driven by adaptive immune activation against CII, leading to systemic and local joint inflammation mediated by pro-inflammatory cytokines and effector immune cells, making CIA a standard preclinical platform for evaluating immunomodulatory and anti-arthritic interventions.
-
Research Protocol for Infectious Diseases
Infectious-disease experiments test how pathogens interact with host barriers, innate immune receptors, inflammatory signaling, pathogen replication, and tissue injury; pattern-recognition receptors such as TLRs, RIG-I-like receptors, NOD-like receptors, and inflammasomes detect microbial molecules and activate NF-κB, interferon, and cytokine responses. The central hypothesis is that infection severity reflects the balance between pathogen burden and host response: protective inflammation restricts pathogen growth, whereas excessive or mislocalized inflammation contributes to tissue damage and disease phenotype. Unresolved questions include which host pathways are protective versus pathogenic, why some infection models fail to translate to human disease, and which combined readouts best predict clinically relevant infection outcomes.
-
Naïve CD4+ T-cell subset differentiation/polarization
Naïve CD4+ T-cell subset differentiation/polarization is an in vitro assay in which purified naïve CD4+ T cells are activated through TCR and CD28 costimulation and cultured with defined cytokines and neutralizing antibodies to generate Th0, Th1, Th2, Th17, or induced Treg-like populations. Differentiation is detected by subset-associated cytokines and transcription factors: IFN-γ/T-bet for Th1, IL-4/GATA3 for Th2, IL-17A/RORγt for Th17, and Foxp3 for induced Treg cells. The assay readout is usually generated by intracellular cytokine staining after restimulation, transcription-factor staining by flow cytometry, ELISA of secreted cytokines, or gene-expression analysis. The result reflects cytokine-directed lineage commitment or polarization rather than antigen-specific immune protection by itself.
-
Research Protocol for Inflammation-related Diseases
The NLRP3 inflammasome is a cytosolic innate immune signaling platform that integrates priming signals and danger-signal activation to promote caspase-1 activation, maturation of IL-1β and IL-18, and gasdermin D-mediated pyroptotic cell death. The core experimental logic is to determine whether inflammatory disease phenotypes are driven by increased NLRP3 expression, ASC-containing inflammasome assembly, caspase-1 cleavage, GSDMD cleavage, and extracellular release of IL-1β/IL-18 rather than by nonspecific cell injury alone. The pathway is strongly linked to inflammation-related disease phenotypes because monosodium urate crystals activate NALP3/NLRP3 inflammasome signaling in gout-like crystal inflammation, cholesterol crystals activate NLRP3 inflammasomes in atherogenesis models, and DSS-induced intestinal inflammation has been reported to involve NLRP3 inflammasome activity. However, experimental colitis studies also show context-dependent protective effects of NLRP3 inflammasome co
Reinheit & Dokumentation
-
Data Sheet (309 KB)
-
SDS (252 KB)
- English - EN (252 KB)
- Français - FR (252 KB)
- Deutsch - DE (252 KB)
- Norwegian - NO (252 KB)
- Español - ES (252 KB)
- Swedish - SV (252 KB)
- Italian - IT (252 KB)
- Korean - KR (252 KB)
- Portuguese - PT (252 KB)
-
Handling Instructions (2659 KB)
Verweise
[2]. Goff PH, et al. Synthetic Toll-like receptor 4 (TLR4) and TLR7 ligands as influenza virus vaccine adjuvants induce rapid, sustained, and broadly protective responses. Journal of virology. 2015 Mar;89(6):3221-35. [Content Brief]
[3]. Hayashi T, et al. Novel synthetic toll-like receptor 4/MD2 ligands attenuate sterile inflammation. The Journal of pharmacology and experimental therapeutics. 2014 Aug;350(2):330-40. [Content Brief]
Calculators
Konzentration (Stammlösung) × Volumen (Stammlösung) = Konzentration (Ziellösung) × Volumen (Ziellösung)