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Reference: CW0.75
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After you have finished staining and clearing your tissues, you can use ClearWells to mount your tissue for imaging. ClearWells come in three different thicknesses and naturally adhere to glass microscope slides....
Reference: CW1.75
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After you have finished staining and clearing your tissues, you can use ClearWells to mount your tissue for imaging. ClearWells come in three different thicknesses and naturally adhere to glass microscope slides....
Reference: CW3.5
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After you have finished staining and clearing your tissues, you can use ClearWells to mount your tissue for imaging. ClearWells come in three different thicknesses and naturally adhere to glass microscope slides....
Reference: CW7
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After you have finished staining and clearing your tissues, you can use ClearWells to mount your tissue for imaging. ClearWells come in three different thicknesses and naturally adhere to glass microscope slides....
Reference: BSLM-2
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Our 3D printed mouse brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These mouse brain slicers are 3D printed out of PLA and...
Reference: BSLM-1
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Our 3D printed mouse brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These mouse brain slicers are 3D printed out of PLA and...
Reference: BSLC-1
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Our 3D printed mouse brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These mouse brain slicers are 3D printed out of PLA and...
Reference: BSLS-1
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Our 3D printed mouse brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These mouse brain slicers are 3D printed out of PLA and...
Reference: BSRC-1
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRS-1
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRC-2
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRS-2
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRLS-1
€0.00 (tax incl.)
Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRLC-2
€0.00 (tax incl.)
Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRLC-1
€0.00 (tax incl.)
Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRLS-2
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRLD-1
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRLD-2
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRH-1
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRH-2
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSGC-2
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Our 3D printed gerbil brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These gerbil brain slicers are 3D printed out of PLA...
Reference: BSGS-2
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Our 3D printed gerbil brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These gerbil brain slicers are 3D printed out of PLA...
Reference: BSGPC-2
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Our 3D printed guinea pig brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These guinea pig brain slicers are 3D printed out...
Reference: BSGPS-2
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Our 3D printed guinea pig brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These guinea pig brain slicers are 3D printed out...
Reference: BSFC-2
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Our 3D printed ferret brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These ferret brain slicers are 3D printed out of PLA...
Reference: BSFS-2
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Our 3D printed ferret brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These ferret brain slicers are 3D printed out of PLA...
Reference: BSRBC-2
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Our 3D printed rabbit brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rabbit brain slicers are 3D printed out of PLA...
Reference: BSRBS-2
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Our 3D printed rabbit brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rabbit brain slicers are 3D printed out of PLA...
Reference: BSPC-2
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Our 3D printed piglet brain slicer allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. This piglet brain slicer is 3D printed out of PLA and...
Reference: TS-10-2
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Our 3D printed tissue slicers allows you to easily cut a tissue into smaller pieces for easier imaging with objectives that have a limited working distance. These tissue slicers are 3D printed out of PLA and can be...
Reference: TS-15-2
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Our 3D printed tissue slicers allows you to easily cut a tissue into smaller pieces for easier imaging with objectives that have a limited working distance. These tissue slicers are 3D printed out of PLA and can be...
Reference: TS-20-2
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Our 3D printed tissue slicers allows you to easily cut a tissue into smaller pieces for easier imaging with objectives that have a limited working distance. These tissue slicers are 3D printed out of PLA and can be...
Reference: TS-25-2
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Our 3D printed tissue slicers allows you to easily cut a tissue into smaller pieces for easier imaging with objectives that have a limited working distance. These tissue slicers are 3D printed out of PLA and can be...
Reference: TS-6R-2
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Our 3D printed tissue slicers allows you to easily cut a tissue into smaller pieces for easier imaging with objectives that have a limited working distance. These tissue slicers are 3D printed out of PLA and can be...
Reference: TS-4S-1
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Our 3D printed tissue slicers allows you to easily cut a tissue into smaller pieces for easier imaging with objectives that have a limited working distance. These tissue slicers are 3D printed out of PLA and can be...
Reference: TS-6S-1
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Our 3D printed tissue slicers allows you to easily cut a tissue into smaller pieces for easier imaging with objectives that have a limited working distance. These tissue slicers are 3D printed out of PLA and can be...
Reference: BSRPC-1
€0.00 (tax incl.)
Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRPS-1
€0.00 (tax incl.)
Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: PCR00105
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Vazyme 0.5 ml PCR tubes, also known as Qubit Assay Tubes, are disposable molecular laboratory consumables for nucleic acid and protein quantification experiments, and are suitable for mainstream Qubit fluorometers....
Reference: PCR09601SS
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Vazyme 96-well PCR plate is a disposable molecular experimental consumable designed for qPCR assays, which can be adapted to a variety of qPCR instruments such as Thermo, Bio-rad, Roche. The 96-well PCR plate was...
Reference: PCR09602SS
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Vazyme 96-well PCR plate is a disposable molecular experimental consumable designed for qPCR assays, which can be adapted to a variety of qPCR instruments such as Thermo, Bio-rad, Roche. The 96-well PCR plate was...
Reference: PCR09600SF
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Plate sealing film is a kind of disposable lab consumbles and specially designed for qPCR assays. It is used with 96-well plates (Vazyme #PCR09601SS/PCR09602SS) and 384 -well plates. Self-adhesive sealing film is...
Reference: PCR09600PF
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Plate sealing film is a kind of disposable lab consumbles and specially designed for qPCR assays. It is used with 96-well plates (Vazyme #PCR09601SS/PCR09602SS) and 384 -well plates. Pressure-activated sealing film is...
Reference: SM07-50
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5-Azacytidine acts as a demethylating agent by inhibiting DNA methyltransferase (DNMT), forming covalent adducts with cellular DNMT1 depleting enzyme activity. This small molecule enhances differentiation to...
Reference: SM07-200
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5-Azacytidine acts as a demethylating agent by inhibiting DNA methyltransferase (DNMT), forming covalent adducts with cellular DNMT1 depleting enzyme activity. This small molecule enhances differentiation to...
Reference: SM08-2
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A769662 inhibits 3T3-L1 adipocyte differentiation and may be used to treat obesity. It also inhibited the function of the 26S proteasome via an AMPK-independent mechanism.
Reference: SM08-10
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A769662 inhibits 3T3-L1 adipocyte differentiation and may be used to treat obesity. It also inhibited the function of the 26S proteasome via an AMPK-independent mechanism.
Reference: SM08-50
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A769662 inhibits 3T3-L1 adipocyte differentiation and may be used to treat obesity. It also inhibited the function of the 26S proteasome via an AMPK-independent mechanism.
Reference: SM08-200
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A769662 inhibits 3T3-L1 adipocyte differentiation and may be used to treat obesity. It also inhibited the function of the 26S proteasome via an AMPK-independent mechanism.
Reference: SM09-1
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ALK5 can replace Sox2 for generation of induced pluripotent stem cells (iPSC).
Reference: SM09-5
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ALK5 can replace Sox2 for generation of induced pluripotent stem cells (iPSC).
Reference: SM09-10
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ALK5 can replace Sox2 for generation of induced pluripotent stem cells (iPSC).
Reference: SM09-25
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ALK5 can replace Sox2 for generation of induced pluripotent stem cells (iPSC).
Reference: SM09-50
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ALK5 can replace Sox2 for generation of induced pluripotent stem cells (iPSC).
Reference: SM10-1
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BI-D1870 induces apoptosis, although preferentially, in a p21-deficient background. BI-D1870 also induces a strong transcription and p53-independent accumulation of p21 protein and protects cells from gamma...
Reference: SM10-5
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BI-D1870 induces apoptosis, although preferentially, in a p21-deficient background. BI-D1870 also induces a strong transcription and p53-independent accumulation of p21 protein and protects cells from gamma...
Reference: SM10-10
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BI-D1870 induces apoptosis, although preferentially, in a p21-deficient background. BI-D1870 also induces a strong transcription and p53-independent accumulation of p21 protein and protects cells from gamma...
Reference: SM11-2
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BIRB796 has been used as part of the naive human stem cell (NSHM) medium to create naive state human cells.
Reference: SM11-10
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BIRB796 has been used as part of the naive human stem cell (NSHM) medium to create naive state human cells.
Reference: SM11-25
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BIRB796 has been used as part of the naive human stem cell (NSHM) medium to create naive state human cells.
Reference: SM11-50
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BIRB796 has been used as part of the naive human stem cell (NSHM) medium to create naive state human cells.
Reference: SM11-100
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BIRB796 has been used as part of the naive human stem cell (NSHM) medium to create naive state human cells.
Reference: SM12-2
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BIX01294 modulates H3K9me2 levels in mammalian cells and potentiates induction of pluripotent stem cells from somatic cells in-vitro.
Reference: SM12-10
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BIX01294 modulates H3K9me2 levels in mammalian cells and potentiates induction of pluripotent stem cells from somatic cells in-vitro.
Reference: SM12-50
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BIX01294 modulates H3K9me2 levels in mammalian cells and potentiates induction of pluripotent stem cells from somatic cells in-vitro.
Reference: SM13-1
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CHIR99021 is widely used in definitive endoderm differentiation protocols.
Reference: SM13-5
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CHIR99021 is widely used in definitive endoderm differentiation protocols.
Reference: SM13-10
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CHIR99021 is widely used in definitive endoderm differentiation protocols.
Reference: SM13-50
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CHIR99021 is widely used in definitive endoderm differentiation protocols.
Reference: SM43-50
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Cyclosporin A inhibits phosphatase activity of calcineurin. This small molecule also inhibits formation and opening of the mitochondrial permeability transition pore (MPTP).
Reference: SM43-1000
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Cyclosporin A inhibits phosphatase activity of calcineurin. This small molecule also inhibits formation and opening of the mitochondrial permeability transition pore (MPTP).
Reference: SM43-5000
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Cyclosporin A inhibits phosphatase activity of calcineurin. This small molecule also inhibits formation and opening of the mitochondrial permeability transition pore (MPTP).
Reference: SM44-2
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CYT387 inhibits the proliferation of parental Ba/F3 cells (Ba/F3-wt) stimulated by IL-3. Furthermore, CYT387 also causes the inhibition of cell proliferation in cell lines constitutively activated by JAK2 or MPL...
Reference: SM44-10
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CYT387 inhibits the proliferation of parental Ba/F3 cells (Ba/F3-wt) stimulated by IL-3. Furthermore, CYT387 also causes the inhibition of cell proliferation in cell lines constitutively activated by JAK2 or MPL...
Reference: SM44-50
€0.00 (tax incl.)
CYT387 inhibits the proliferation of parental Ba/F3 cells (Ba/F3-wt) stimulated by IL-3. Furthermore, CYT387 also causes the inhibition of cell proliferation in cell lines constitutively activated by JAK2 or MPL...
Reference: SM15-2
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DAPT causes neural cells to commit to neuronal differentiation.
Reference: SM15-10
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DAPT causes neural cells to commit to neuronal differentiation.
Reference: SM15-50
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DAPT causes neural cells to commit to neuronal differentiation.
Reference: SM45-20
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Dasatinib treatment inhibits SRC signaling, decreases growth, and induces cell cycle arrest and apoptosis in a subset of thyroid cancer stem cells.
Reference: SM45-100
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Dasatinib treatment inhibits SRC signaling, decreases growth, and induces cell cycle arrest and apoptosis in a subset of thyroid cancer stem cells.
Reference: SM45-500
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Dasatinib treatment inhibits SRC signaling, decreases growth, and induces cell cycle arrest and apoptosis in a subset of thyroid cancer stem cells.
Reference: SM45-1000
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Dasatinib treatment inhibits SRC signaling, decreases growth, and induces cell cycle arrest and apoptosis in a subset of thyroid cancer stem cells.
Reference: SM45-5000
€0.00 (tax incl.)
Dasatinib treatment inhibits SRC signaling, decreases growth, and induces cell cycle arrest and apoptosis in a subset of thyroid cancer stem cells.
Reference: SM46-5
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Experiments have shown that this compound induces changes in the differentiated state of cultured mouse embryo cells and additionally inhibits DNA methyltransferase. DNA methylation has been noted to be important in...
Reference: SM46-25
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Experiments have shown that this compound induces changes in the differentiated state of cultured mouse embryo cells and additionally inhibits DNA methyltransferase. DNA methylation has been noted to be important in...
Reference: SM46-50
€0.00 (tax incl.)
Experiments have shown that this compound induces changes in the differentiated state of cultured mouse embryo cells and additionally inhibits DNA methyltransferase. DNA methylation has been noted to be important in...
Reference: SM46-250
€0.00 (tax incl.)
Experiments have shown that this compound induces changes in the differentiated state of cultured mouse embryo cells and additionally inhibits DNA methyltransferase. DNA methylation has been noted to be important in...
Reference: SM46-1000
€0.00 (tax incl.)
Experiments have shown that this compound induces changes in the differentiated state of cultured mouse embryo cells and additionally inhibits DNA methyltransferase. DNA methylation has been noted to be important in...
Reference: SM47-25
€0.00 (tax incl.)
Dexamethasone inhibits induction of nitric oxide synthase. Dexamethasone reduces levels of activated NF-kappaB in immature dendritic cells (DCs) and inhibits differentiation into mature DCs. This biomolecule induces...
Reference: SM47-250
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Dexamethasone inhibits induction of nitric oxide synthase. Dexamethasone reduces levels of activated NF-kappaB in immature dendritic cells (DCs) and inhibits differentiation into mature DCs. This biomolecule induces...
Reference: SM47-500
€0.00 (tax incl.)
Dexamethasone inhibits induction of nitric oxide synthase. Dexamethasone reduces levels of activated NF-kappaB in immature dendritic cells (DCs) and inhibits differentiation into mature DCs. This biomolecule induces...
Reference: SM47-1000
€0.00 (tax incl.)
Dexamethasone inhibits induction of nitric oxide synthase. Dexamethasone reduces levels of activated NF-kappaB in immature dendritic cells (DCs) and inhibits differentiation into mature DCs. This biomolecule induces...
Reference: SM03-2
€0.00 (tax incl.)
Dorsomorphin promotes cardiomyogenesis in mouse embryonic stem cells (ESC) and induces autophagy in cancer cell lines via a mechanism independent of AMPK inhibition.

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