Category: Reagents

Reference: SM32-10
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SB203580 inhibits the IL-2-induced proliferation of primary human T cells, murine CT6 T cells, or BAF F7 B cells with an IC50 of 3 - 5 μM. SB203580 suppresses the development of endometriosis by down-regulating...
Reference: SM32-50
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SB203580 inhibits the IL-2-induced proliferation of primary human T cells, murine CT6 T cells, or BAF F7 B cells with an IC50 of 3 - 5 μM. SB203580 suppresses the development of endometriosis by down-regulating...
Reference: SM32-100
€0.00 (tax incl.)
SB203580 inhibits the IL-2-induced proliferation of primary human T cells, murine CT6 T cells, or BAF F7 B cells with an IC50 of 3 - 5 μM. SB203580 suppresses the development of endometriosis by down-regulating...
Reference: SM90-2
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SB216763 protects both central and peripheral nervous system neurones in culture from death induced by reduced PI 3-kinase pathway activity. Treatment of primary neural progenitor cells with SB216763 resulted in an...
Reference: SM90-10
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SB216763 protects both central and peripheral nervous system neurones in culture from death induced by reduced PI 3-kinase pathway activity. Treatment of primary neural progenitor cells with SB216763 resulted in an...
Reference: SM90-25
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SB216763 protects both central and peripheral nervous system neurones in culture from death induced by reduced PI 3-kinase pathway activity. Treatment of primary neural progenitor cells with SB216763 resulted in an...
Reference: SM90-50
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SB216763 protects both central and peripheral nervous system neurones in culture from death induced by reduced PI 3-kinase pathway activity. Treatment of primary neural progenitor cells with SB216763 resulted in an...
Reference: SM90-200
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SB216763 protects both central and peripheral nervous system neurones in culture from death induced by reduced PI 3-kinase pathway activity. Treatment of primary neural progenitor cells with SB216763 resulted in an...
Reference: SM33-2
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SB431542 suppresses TGF-β-induced proliferation of human osteosarcoma cells. SB431542 treatment of glioma cultures inhibited proliferation, TGF-β-mediated morphologic changes, and cellular motility. Small molecule...
Reference: SM33-10
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SB431542 suppresses TGF-β-induced proliferation of human osteosarcoma cells. SB431542 treatment of glioma cultures inhibited proliferation, TGF-β-mediated morphologic changes, and cellular motility. Small molecule...
Reference: SM33-50
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SB431542 suppresses TGF-β-induced proliferation of human osteosarcoma cells. SB431542 treatment of glioma cultures inhibited proliferation, TGF-β-mediated morphologic changes, and cellular motility. Small molecule...
Reference: SM33-200
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SB431542 suppresses TGF-β-induced proliferation of human osteosarcoma cells. SB431542 treatment of glioma cultures inhibited proliferation, TGF-β-mediated morphologic changes, and cellular motility. Small molecule...
Reference: SM48-1
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In melanoma and colorectal cancer cell lines with B-Raf V600E mutation, an effective inhibition of cell proliferation was achieved by using SB590885 at concentrations that blocked ERK phosphorylation.
Reference: SM48-5
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In melanoma and colorectal cancer cell lines with B-Raf V600E mutation, an effective inhibition of cell proliferation was achieved by using SB590885 at concentrations that blocked ERK phosphorylation.
Reference: SM48-50
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In melanoma and colorectal cancer cell lines with B-Raf V600E mutation, an effective inhibition of cell proliferation was achieved by using SB590885 at concentrations that blocked ERK phosphorylation.
Reference: SM95-10
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Sorafenib has anti-tumor activity in HCC models may be attributed to inhibition of tumor angiogenesis (VEGFR and PDGFR) and direct effects on tumor cell proliferation/survival (Raf kinase signaling-dependent and...
Reference: SM95-50
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Sorafenib has anti-tumor activity in HCC models may be attributed to inhibition of tumor angiogenesis (VEGFR and PDGFR) and direct effects on tumor cell proliferation/survival (Raf kinase signaling-dependent and...
Reference: SM95-500
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Sorafenib has anti-tumor activity in HCC models may be attributed to inhibition of tumor angiogenesis (VEGFR and PDGFR) and direct effects on tumor cell proliferation/survival (Raf kinase signaling-dependent and...
Reference: SM95-1000
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Sorafenib has anti-tumor activity in HCC models may be attributed to inhibition of tumor angiogenesis (VEGFR and PDGFR) and direct effects on tumor cell proliferation/survival (Raf kinase signaling-dependent and...
Reference: SM41-2
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SP600125 blocks the activation and differentiation of primary human CD4 cell cultures. SP600125 has also been shown to prevent apoptosis in an array of cell types, and it inhibits autophagy in HeLa cells.
Reference: SM41-10
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SP600125 blocks the activation and differentiation of primary human CD4 cell cultures. SP600125 has also been shown to prevent apoptosis in an array of cell types, and it inhibits autophagy in HeLa cells.
Reference: SM41-50
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SP600125 blocks the activation and differentiation of primary human CD4 cell cultures. SP600125 has also been shown to prevent apoptosis in an array of cell types, and it inhibits autophagy in HeLa cells.
Reference: SM41-100
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SP600125 blocks the activation and differentiation of primary human CD4 cell cultures. SP600125 has also been shown to prevent apoptosis in an array of cell types, and it inhibits autophagy in HeLa cells.
Reference: SM41-300
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SP600125 blocks the activation and differentiation of primary human CD4 cell cultures. SP600125 has also been shown to prevent apoptosis in an array of cell types, and it inhibits autophagy in HeLa cells.
Reference: SM96-1
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Stauprimide may be used to study the signaling involved in differentiation of ESC. It increased definitive endodermal markers but not markers for visceral/parietal endoderm or mesoderm. Stauprimide-differentiated...
Reference: SM96-5
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Stauprimide may be used to study the signaling involved in differentiation of ESC. It increased definitive endodermal markers but not markers for visceral/parietal endoderm or mesoderm. Stauprimide-differentiated...
Reference: SM96-100
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Stauprimide may be used to study the signaling involved in differentiation of ESC. It increased definitive endodermal markers but not markers for visceral/parietal endoderm or mesoderm. Stauprimide-differentiated...
Reference: SM97-1
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Staurosporine has several effects on cell function, including interruption of cell-cell contacts, decreasing focal contact size, inducing epithelial to mesenchyme transition, and promoting cell differentiation....
Reference: SM97-5
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Staurosporine has several effects on cell function, including interruption of cell-cell contacts, decreasing focal contact size, inducing epithelial to mesenchyme transition, and promoting cell differentiation....
Reference: SM97-10
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Staurosporine has several effects on cell function, including interruption of cell-cell contacts, decreasing focal contact size, inducing epithelial to mesenchyme transition, and promoting cell differentiation....
Reference: SM97-50
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Staurosporine has several effects on cell function, including interruption of cell-cell contacts, decreasing focal contact size, inducing epithelial to mesenchyme transition, and promoting cell differentiation....
Reference: SM98-5
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StemRegenin 1 treatment accelerates the proliferation of CD34+ cells. Sequential co-culture with BMP-4, PGE2, and StemRegenin 1 leads to robust Macaca nemestrina iPSC hematopoietic progenitor cell formation. Culture...
Reference: SM98-25
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StemRegenin 1 treatment accelerates the proliferation of CD34+ cells. Sequential co-culture with BMP-4, PGE2, and StemRegenin 1 leads to robust Macaca nemestrina iPSC hematopoietic progenitor cell formation. Culture...
Reference: SM98-50
€0.00 (tax incl.)
StemRegenin 1 treatment accelerates the proliferation of CD34+ cells. Sequential co-culture with BMP-4, PGE2, and StemRegenin 1 leads to robust Macaca nemestrina iPSC hematopoietic progenitor cell formation. Culture...
Reference: SM98-100
€0.00 (tax incl.)
StemRegenin 1 treatment accelerates the proliferation of CD34+ cells. Sequential co-culture with BMP-4, PGE2, and StemRegenin 1 leads to robust Macaca nemestrina iPSC hematopoietic progenitor cell formation. Culture...
Reference: SM99-1
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SU5402 is used in an embryonic stem cells (ESC) culture method with three inhibitors (3i: SU5402 for FGFR, PD184352 for ERK, and CHIR99021 for GSK3). It has been showed that this 3i method is extremely instrumental in...
Reference: SM99-5
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SU5402 is used in an embryonic stem cells (ESC) culture method with three inhibitors (3i: SU5402 for FGFR, PD184352 for ERK, and CHIR99021 for GSK3). It has been showed that this 3i method is extremely instrumental in...
Reference: SM99-10
€0.00 (tax incl.)
SU5402 is used in an embryonic stem cells (ESC) culture method with three inhibitors (3i: SU5402 for FGFR, PD184352 for ERK, and CHIR99021 for GSK3). It has been showed that this 3i method is extremely instrumental in...
Reference: SM99-50
€0.00 (tax incl.)
SU5402 is used in an embryonic stem cells (ESC) culture method with three inhibitors (3i: SU5402 for FGFR, PD184352 for ERK, and CHIR99021 for GSK3). It has been showed that this 3i method is extremely instrumental in...
Reference: SM100-2
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SU6668 inhibits proliferation of HUVEC and NIH3T3 cells in-vitro and induces >75% growth inhibition against a broad range of tumor types. SU6668 shows antiangiogenic, anti-inflammatory, antimetastatic and proapototic...
Reference: SM100-10
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SU6668 inhibits proliferation of HUVEC and NIH3T3 cells in-vitro and induces >75% growth inhibition against a broad range of tumor types. SU6668 shows antiangiogenic, anti-inflammatory, antimetastatic and proapototic...
Reference: SM100-50
€0.00 (tax incl.)
SU6668 inhibits proliferation of HUVEC and NIH3T3 cells in-vitro and induces >75% growth inhibition against a broad range of tumor types. SU6668 shows antiangiogenic, anti-inflammatory, antimetastatic and proapototic...
Reference: SM100-200
€0.00 (tax incl.)
SU6668 inhibits proliferation of HUVEC and NIH3T3 cells in-vitro and induces >75% growth inhibition against a broad range of tumor types. SU6668 shows antiangiogenic, anti-inflammatory, antimetastatic and proapototic...
Reference: SM101-10
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Sunitinib has been shown to impinge on the osteoblast differentiation process in-vitro. It exhibits antiangiogenic and antitumor activity in multiple xenograft models.
Reference: SM101-50
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Sunitinib has been shown to impinge on the osteoblast differentiation process in-vitro. It exhibits antiangiogenic and antitumor activity in multiple xenograft models.
Reference: SM101-300
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Sunitinib has been shown to impinge on the osteoblast differentiation process in-vitro. It exhibits antiangiogenic and antitumor activity in multiple xenograft models.
Reference: SM101-500
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Sunitinib has been shown to impinge on the osteoblast differentiation process in-vitro. It exhibits antiangiogenic and antitumor activity in multiple xenograft models.
Reference: SM101-1000
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Sunitinib has been shown to impinge on the osteoblast differentiation process in-vitro. It exhibits antiangiogenic and antitumor activity in multiple xenograft models.
Reference: SM102-10
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Tandutinib inhibits cellular proliferation and induces apoptosis. Tandutinib works as a stem-like cells targeted agent to increase efficiency of anticancer drugs and it has antineoplastic activity.
Reference: SM102-50
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Tandutinib inhibits cellular proliferation and induces apoptosis. Tandutinib works as a stem-like cells targeted agent to increase efficiency of anticancer drugs and it has antineoplastic activity.
Reference: SM102-100
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Tandutinib inhibits cellular proliferation and induces apoptosis. Tandutinib works as a stem-like cells targeted agent to increase efficiency of anticancer drugs and it has antineoplastic activity.
Reference: SM103-1
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TG101348 exhibits promising pharmacokinetic profiles. TG101348 inhibits erythropoiesis from induced pluripotent stem cells (iPSC), but has less inhibitory effect on the self-renewal of CD34+ hematopoietic progenitors.
Reference: SM103-5
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TG101348 exhibits promising pharmacokinetic profiles. TG101348 inhibits erythropoiesis from induced pluripotent stem cells (iPSC), but has less inhibitory effect on the self-renewal of CD34+ hematopoietic progenitors.
Reference: SM103-10
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TG101348 exhibits promising pharmacokinetic profiles. TG101348 inhibits erythropoiesis from induced pluripotent stem cells (iPSC), but has less inhibitory effect on the self-renewal of CD34+ hematopoietic progenitors.
Reference: SM103-50
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TG101348 exhibits promising pharmacokinetic profiles. TG101348 inhibits erythropoiesis from induced pluripotent stem cells (iPSC), but has less inhibitory effect on the self-renewal of CD34+ hematopoietic progenitors.
Reference: SM35-2
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Thiazovivin protects human embryonic stem cells (hESC) in the absence of ECM by regulating E-cadherin mediated cell-cell interaction. Thiazovivin also promotes single cell passage of human pluripotent cells.
Reference: SM35-10
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Thiazovivin protects human embryonic stem cells (hESC) in the absence of ECM by regulating E-cadherin mediated cell-cell interaction. Thiazovivin also promotes single cell passage of human pluripotent cells.
Reference: SM35-50
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Thiazovivin protects human embryonic stem cells (hESC) in the absence of ECM by regulating E-cadherin mediated cell-cell interaction. Thiazovivin also promotes single cell passage of human pluripotent cells.
Reference: SM36-1
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HDAC is overexpressed in a variety of cancers and is closely correlated with oncogenic factors.
Reference: SM36-5
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HDAC is overexpressed in a variety of cancers and is closely correlated with oncogenic factors.
Reference: SM36-25
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HDAC is overexpressed in a variety of cancers and is closely correlated with oncogenic factors.
Reference: SM105-2
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TWS119 induces neuronal differentiation in pluripotent murine embryonal carcinoma cells and embryonic stem cells (ESC). Because neuronal differentiation can be achieved without embryoid bodies (EB) formation and RA...
Reference: SM105-10
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TWS119 induces neuronal differentiation in pluripotent murine embryonal carcinoma cells and embryonic stem cells (ESC). Because neuronal differentiation can be achieved without embryoid bodies (EB) formation and RA...
Reference: SM105-25
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TWS119 induces neuronal differentiation in pluripotent murine embryonal carcinoma cells and embryonic stem cells (ESC). Because neuronal differentiation can be achieved without embryoid bodies (EB) formation and RA...
Reference: SM105-50
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TWS119 induces neuronal differentiation in pluripotent murine embryonal carcinoma cells and embryonic stem cells (ESC). Because neuronal differentiation can be achieved without embryoid bodies (EB) formation and RA...
Reference: SM106-5
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Inhibition of MEK/ERK activity by specific MEK inhibitors PD98059 and U0126 rapidly causes the loss of human embryonic stem cells (hESC) pluripotency, acting as a promoter of hESC differentiation. U0126 is also useful...
Reference: SM106-25
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Inhibition of MEK/ERK activity by specific MEK inhibitors PD98059 and U0126 rapidly causes the loss of human embryonic stem cells (hESC) pluripotency, acting as a promoter of hESC differentiation. U0126 is also useful...
Reference: SM106-100
€0.00 (tax incl.)
Inhibition of MEK/ERK activity by specific MEK inhibitors PD98059 and U0126 rapidly causes the loss of human embryonic stem cells (hESC) pluripotency, acting as a promoter of hESC differentiation. U0126 is also useful...
Reference: SM106-300
€0.00 (tax incl.)
Inhibition of MEK/ERK activity by specific MEK inhibitors PD98059 and U0126 rapidly causes the loss of human embryonic stem cells (hESC) pluripotency, acting as a promoter of hESC differentiation. U0126 is also useful...
Reference: SM107-2
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Vandetanib has been shown to influence in the osteoblast differentiation process in-vitro.
Reference: SM107-25
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Vandetanib has been shown to influence in the osteoblast differentiation process in-vitro.
Reference: SM107-100
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Vandetanib has been shown to influence in the osteoblast differentiation process in-vitro.
Reference: SM107-500
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Vandetanib has been shown to influence in the osteoblast differentiation process in-vitro.
Reference: SM16-1
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WH-4-023 in combination with other small molecules supports the self-renewal of naive human embryonic stem cells and maintenance of ground state pluripotency.
Reference: SM16-5
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WH-4-023 in combination with other small molecules supports the self-renewal of naive human embryonic stem cells and maintenance of ground state pluripotency.
Reference: SM16-25
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WH-4-023 in combination with other small molecules supports the self-renewal of naive human embryonic stem cells and maintenance of ground state pluripotency.
Reference: SM16-50
€0.00 (tax incl.)
WH-4-023 in combination with other small molecules supports the self-renewal of naive human embryonic stem cells and maintenance of ground state pluripotency.
Reference: SM16-100
€0.00 (tax incl.)
WH-4-023 in combination with other small molecules supports the self-renewal of naive human embryonic stem cells and maintenance of ground state pluripotency.
Reference: SM16-500
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WH-4-023 in combination with other small molecules supports the self-renewal of naive human embryonic stem cells and maintenance of ground state pluripotency.
Reference: SM38-2
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XAV939 inhibits growth of DLD-1 cells, an APC-deficient colorectal cancer cell line.
Reference: SM38-10
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XAV939 inhibits growth of DLD-1 cells, an APC-deficient colorectal cancer cell line.
Reference: SM38-50
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XAV939 inhibits growth of DLD-1 cells, an APC-deficient colorectal cancer cell line.
Reference: SM38-200
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XAV939 inhibits growth of DLD-1 cells, an APC-deficient colorectal cancer cell line.
Reference: SM02-1
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Y-27632 increases the cloning efficiency of human embryonic stem cells (hESC). Enables the long term expansion of embryonic stem cells (ESC) with single cell passage. hESC treated with Y-27632 in a serum-free medium...
Reference: SM02-5
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Y-27632 increases the cloning efficiency of human embryonic stem cells (hESC). Enables the long term expansion of embryonic stem cells (ESC) with single cell passage. hESC treated with Y-27632 in a serum-free medium...
Reference: SM02-10
€0.00 (tax incl.)
Y-27632 increases the cloning efficiency of human embryonic stem cells (hESC). Enables the long term expansion of embryonic stem cells (ESC) with single cell passage. hESC treated with Y-27632 in a serum-free medium...
Reference: SM02-100
€0.00 (tax incl.)
Y-27632 increases the cloning efficiency of human embryonic stem cells (hESC). Enables the long term expansion of embryonic stem cells (ESC) with single cell passage. hESC treated with Y-27632 in a serum-free medium...
Reference: AG-10B-0001EK
€0.00 (tax incl.)
ELISA Kit Component: Wash Buffer (30ml) - Suitable amount for all AG-45A-XXXXEK and AG-45B-XXXXEK single box ELISA Kits.
Reference: AG-10B-0002EK
€0.00 (tax incl.)
ELISA Kit Component: ELISA Buffer (30ml) - Suitable amount for all AG-45A-XXXXEK and AG-45B-XXXXEK single box ELISA Kits.
Reference: AG-10B-0003EK
€0.00 (tax incl.)
ELISA Kit Component: TMB Substrate Solution (12ml) - Suitable amount for all AG-45A-XXXXEK and AG-45B-XXXXEK single box ELISA Kits.
Reference: AG-10B-0004EK
€0.00 (tax incl.)
ELISA Kit Component: Stop Solution (12ml) - Suitable amount for all AG-45A-XXXXEK and AG-45B-XXXXEK single box ELISA Kits.
Reference: AG-10T-0020
€0.00 (tax incl.)
Loading buffer for separation and visualization proteins with SDS-PAGE and Western Blot analysis.
Reference: AG-10T-0022
€0.00 (tax incl.)
Pre-coupled Mg-ATP is an ideal energy source for semi-purified conjugation/degradation reactions. Supplied as a pH adjusted solution and will not alter reaction pH. Eliminates the reaction needed to produce usable ATP...
Reference: AG-CC1-0002
€0.00 (tax incl.)
Molecular biology reagent. beta-Galactosidase activity inducer in several bacteria, by binding and inhibiting the lac repressor. Used in gene cloning together with X-Gal (Prod. No. AG-CC1-0003), in a technique called...
Reference: AG-CC1-0003
€0.00 (tax incl.)
Molecular biology reagent. Chromogenic substrate for beta-galactosidase. Used in gene cloning together with IPTG (Prod. No. AG-CC1-0002) to indicate whether a cell expresses the beta-galactosidase enzyme, which is...
Reference: AG-CC1-0004
€0.00 (tax incl.)
Non-ionic detergent. For functional solubilization, purification and crystallography of membrane proteins. For the stabilization and activation of enzymes.
Reference: AG-CC1-0005
€0.00 (tax incl.)
Non-ionic detergent. For functional solubilization, purification and crystallography of membrane proteins. The thioether linkage makes it resistant to degradation by beta-glucosidase enzymes. For the stabilization and...
Reference: AG-CC1-0006
€0.00 (tax incl.)
Non-ionic detergent. For functional solubilization, purification and crystallography of membrane proteins. For the stabilization and activation of enzymes.
Reference: AG-CC1-0007
€0.00 (tax incl.)
Non-ionic water-soluble detergent with nondenaturing properties. Transparent in the UV region. Relatively high critical micelle concentration (CMC) value (79mM/l). Ideal for studying the conformation and function of...
Reference: AG-CC1-0008
€0.00 (tax incl.)
Non-ionic detergent for the functional solubilization, isolation, purification and crystallograpy of membrane proteins. Mild, non-denaturing detergent that is used for the solubilization and reconstitution of...

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