Category: Reagents

Reference: SM49-1000
€0.00 (tax incl.)
Fasudil effectively inhibited ISO-induced heart failure, as evaluated by biometric, hemodynamic, and histological examinations. It has been demonstrated that fasudil decrease human embryonic stem cells (hESC)...
Reference: SM18-2
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Forskolin allows maintenance of human embryonic stem cells in a naive or ground state similar to mouse embryonic stem cells. Forskolin also enables chemical reprogramming of mouse embryonic fibroblasts to induced...
Reference: SM18-10
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Forskolin allows maintenance of human embryonic stem cells in a naive or ground state similar to mouse embryonic stem cells. Forskolin also enables chemical reprogramming of mouse embryonic fibroblasts to induced...
Reference: SM18-50
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Forskolin allows maintenance of human embryonic stem cells in a naive or ground state similar to mouse embryonic stem cells. Forskolin also enables chemical reprogramming of mouse embryonic fibroblasts to induced...
Reference: SM18-100
€0.00 (tax incl.)
Forskolin allows maintenance of human embryonic stem cells in a naive or ground state similar to mouse embryonic stem cells. Forskolin also enables chemical reprogramming of mouse embryonic fibroblasts to induced...
Reference: SM18-1000
€0.00 (tax incl.)
Forskolin allows maintenance of human embryonic stem cells in a naive or ground state similar to mouse embryonic stem cells. Forskolin also enables chemical reprogramming of mouse embryonic fibroblasts to induced...
Reference: SM52-1
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Garcinol predominantly down-regulates global gene expression in HeLa cells. Additional research shows that Garcinol exhibits anti-carcinogenic and anti-inflammatory properties through selectively suppressing...
Reference: SM52-5
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Garcinol predominantly down-regulates global gene expression in HeLa cells. Additional research shows that Garcinol exhibits anti-carcinogenic and anti-inflammatory properties through selectively suppressing...
Reference: SM52-25
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Garcinol predominantly down-regulates global gene expression in HeLa cells. Additional research shows that Garcinol exhibits anti-carcinogenic and anti-inflammatory properties through selectively suppressing...
Reference: SM54-5
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GDC-0449 targets the Hedgehog signaling pathway, blocking the activities of the Hedgehog-ligand cell surface receptors PTCH and/or SMO and suppressing Hedgehog signaling. GDC-0449 prevents multiple ATP-binding...
Reference: SM54-25
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GDC-0449 targets the Hedgehog signaling pathway, blocking the activities of the Hedgehog-ligand cell surface receptors PTCH and/or SMO and suppressing Hedgehog signaling. GDC-0449 prevents multiple ATP-binding...
Reference: SM54-50
€0.00 (tax incl.)
GDC-0449 targets the Hedgehog signaling pathway, blocking the activities of the Hedgehog-ligand cell surface receptors PTCH and/or SMO and suppressing Hedgehog signaling. GDC-0449 prevents multiple ATP-binding...
Reference: SM54-200
€0.00 (tax incl.)
GDC-0449 targets the Hedgehog signaling pathway, blocking the activities of the Hedgehog-ligand cell surface receptors PTCH and/or SMO and suppressing Hedgehog signaling. GDC-0449 prevents multiple ATP-binding...
Reference: SM19-2
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GDC-0941 plays a vital role in diverse cellular functions such as cell growth and proliferation. This small molecule is deregulated in a number of conditions, including cancer.
Reference: SM19-10
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GDC-0941 plays a vital role in diverse cellular functions such as cell growth and proliferation. This small molecule is deregulated in a number of conditions, including cancer.
Reference: SM19-25
€0.00 (tax incl.)
GDC-0941 plays a vital role in diverse cellular functions such as cell growth and proliferation. This small molecule is deregulated in a number of conditions, including cancer.
Reference: SM19-50
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GDC-0941 plays a vital role in diverse cellular functions such as cell growth and proliferation. This small molecule is deregulated in a number of conditions, including cancer.
Reference: SM19-200
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GDC-0941 plays a vital role in diverse cellular functions such as cell growth and proliferation. This small molecule is deregulated in a number of conditions, including cancer.
Reference: SM55-2
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Geldanamycin has antiproliferative and antitumor effects, as it binds to HSP90, inhibits the HSP90-mediated conformational maturation/refolding reaction. It interferes with cellular stress response. Geldanamycin...
Reference: SM55-10
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Geldanamycin has antiproliferative and antitumor effects, as it binds to HSP90, inhibits the HSP90-mediated conformational maturation/refolding reaction. It interferes with cellular stress response. Geldanamycin...
Reference: SM55-25
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Geldanamycin has antiproliferative and antitumor effects, as it binds to HSP90, inhibits the HSP90-mediated conformational maturation/refolding reaction. It interferes with cellular stress response. Geldanamycin...
Reference: SM55-50
€0.00 (tax incl.)
Geldanamycin has antiproliferative and antitumor effects, as it binds to HSP90, inhibits the HSP90-mediated conformational maturation/refolding reaction. It interferes with cellular stress response. Geldanamycin...
Reference: SM55-250
€0.00 (tax incl.)
Geldanamycin has antiproliferative and antitumor effects, as it binds to HSP90, inhibits the HSP90-mediated conformational maturation/refolding reaction. It interferes with cellular stress response. Geldanamycin...
Reference: SM20-1
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Go 6983 inhibits intracellular Ca2+ accumulation, suggesting a mechanism for its vasodilator properties. The inhibition of PKC signaling is an efficient strategy to establish and maintain pluripotent rat embryonic...
Reference: SM20-5
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Go 6983 inhibits intracellular Ca2+ accumulation, suggesting a mechanism for its vasodilator properties. The inhibition of PKC signaling is an efficient strategy to establish and maintain pluripotent rat embryonic...
Reference: SM20-10
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Go 6983 inhibits intracellular Ca2+ accumulation, suggesting a mechanism for its vasodilator properties. The inhibition of PKC signaling is an efficient strategy to establish and maintain pluripotent rat embryonic...
Reference: SM21-2
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GSK429286A significantly inhibits rat aortic ring dilation and reduces mean arterial pressure in the spontaneously hypertensive rats (SHRs).
Reference: SM21-10
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GSK429286A significantly inhibits rat aortic ring dilation and reduces mean arterial pressure in the spontaneously hypertensive rats (SHRs).
Reference: SM21-50
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GSK429286A significantly inhibits rat aortic ring dilation and reduces mean arterial pressure in the spontaneously hypertensive rats (SHRs).
Reference: SM56-2
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GX15-070 enhances the antimyeloma activity induced by melphalan, dexamethasone, or bortezomib. GX15-070 potentiates TRAIL-mediated apoptosis by unsequestering Bak and Bim from Bcl-2/Bcl-xL or Mcl-1 proteins in PANC-1...
Reference: SM56-10
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GX15-070 enhances the antimyeloma activity induced by melphalan, dexamethasone, or bortezomib. GX15-070 potentiates TRAIL-mediated apoptosis by unsequestering Bak and Bim from Bcl-2/Bcl-xL or Mcl-1 proteins in PANC-1...
Reference: SM56-50
€0.00 (tax incl.)
GX15-070 enhances the antimyeloma activity induced by melphalan, dexamethasone, or bortezomib. GX15-070 potentiates TRAIL-mediated apoptosis by unsequestering Bak and Bim from Bcl-2/Bcl-xL or Mcl-1 proteins in PANC-1...
Reference: SM56-200
€0.00 (tax incl.)
GX15-070 enhances the antimyeloma activity induced by melphalan, dexamethasone, or bortezomib. GX15-070 potentiates TRAIL-mediated apoptosis by unsequestering Bak and Bim from Bcl-2/Bcl-xL or Mcl-1 proteins in PANC-1...
Reference: SM01-1
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ID-8 enables the long term expansion of embryonic stem cells (ESC). ESC treated with ID-8 in a serum-free medium were subsequently consistently differentiated into many cell types, including neurons, muscle cells and...
Reference: SM01-5
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ID-8 enables the long term expansion of embryonic stem cells (ESC). ESC treated with ID-8 in a serum-free medium were subsequently consistently differentiated into many cell types, including neurons, muscle cells and...
Reference: SM01-50
€0.00 (tax incl.)
ID-8 enables the long term expansion of embryonic stem cells (ESC). ESC treated with ID-8 in a serum-free medium were subsequently consistently differentiated into many cell types, including neurons, muscle cells and...
Reference: SM01-100
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ID-8 enables the long term expansion of embryonic stem cells (ESC). ESC treated with ID-8 in a serum-free medium were subsequently consistently differentiated into many cell types, including neurons, muscle cells and...
Reference: SM04-2
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IM-12 significantly increases beta-catenin levels. IM-12 leads to TCF-induction and promotes neuronal differentiation in human neural progenitor cells by activating Wnt pathway. IM-12 when combined with other small...
Reference: SM04-10
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IM-12 significantly increases beta-catenin levels. IM-12 leads to TCF-induction and promotes neuronal differentiation in human neural progenitor cells by activating Wnt pathway. IM-12 when combined with other small...
Reference: SM04-25
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IM-12 significantly increases beta-catenin levels. IM-12 leads to TCF-induction and promotes neuronal differentiation in human neural progenitor cells by activating Wnt pathway. IM-12 when combined with other small...
Reference: SM04-100
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IM-12 significantly increases beta-catenin levels. IM-12 leads to TCF-induction and promotes neuronal differentiation in human neural progenitor cells by activating Wnt pathway. IM-12 when combined with other small...
Reference: SM04-500
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IM-12 significantly increases beta-catenin levels. IM-12 leads to TCF-induction and promotes neuronal differentiation in human neural progenitor cells by activating Wnt pathway. IM-12 when combined with other small...
Reference: SM61-5
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As a Topo I inhibitor, Irinotecan inhibits the religation step of the enzyme's normal action, inducing single stranded DNA breaks. These single stranded breaks are then converted to double-stranded breaks within the...
Reference: SM61-25
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As a Topo I inhibitor, Irinotecan inhibits the religation step of the enzyme's normal action, inducing single stranded DNA breaks. These single stranded breaks are then converted to double-stranded breaks within the...
Reference: SM61-100
€0.00 (tax incl.)
As a Topo I inhibitor, Irinotecan inhibits the religation step of the enzyme's normal action, inducing single stranded DNA breaks. These single stranded breaks are then converted to double-stranded breaks within the...
Reference: SM61-250
€0.00 (tax incl.)
As a Topo I inhibitor, Irinotecan inhibits the religation step of the enzyme's normal action, inducing single stranded DNA breaks. These single stranded breaks are then converted to double-stranded breaks within the...
Reference: SM61-1000
€0.00 (tax incl.)
As a Topo I inhibitor, Irinotecan inhibits the religation step of the enzyme's normal action, inducing single stranded DNA breaks. These single stranded breaks are then converted to double-stranded breaks within the...
Reference: SM39-2
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IWP-2 promotes cardiomyocyte differentiation from human pluripotent stem cells (hPSC). This small molecule also suppresses self-renewal in mouse embryonic stem cells and supports their conversion to epiblast-like stem...
Reference: SM39-10
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IWP-2 promotes cardiomyocyte differentiation from human pluripotent stem cells (hPSC). This small molecule also suppresses self-renewal in mouse embryonic stem cells and supports their conversion to epiblast-like stem...
Reference: SM39-50
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IWP-2 promotes cardiomyocyte differentiation from human pluripotent stem cells (hPSC). This small molecule also suppresses self-renewal in mouse embryonic stem cells and supports their conversion to epiblast-like stem...
Reference: SM39-100
€0.00 (tax incl.)
IWP-2 promotes cardiomyocyte differentiation from human pluripotent stem cells (hPSC). This small molecule also suppresses self-renewal in mouse embryonic stem cells and supports their conversion to epiblast-like stem...
Reference: SM62-1
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JNJ-10198409 displays potent antiproliferative properties in human tumor cell lines and antiangiogenic activity.
Reference: SM62-5
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JNJ-10198409 displays potent antiproliferative properties in human tumor cell lines and antiangiogenic activity.
Reference: SM62-50
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JNJ-10198409 displays potent antiproliferative properties in human tumor cell lines and antiangiogenic activity.
Reference: SM64-2
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KY02111 promotes differentiation of human pluripotent stem cells (hPSC) to cardiomyocytes by inhibiting Wnt signaling in hPSC in a manner that is distinct from that of previously studied Wnt inhibitors. The...
Reference: SM64-10
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KY02111 promotes differentiation of human pluripotent stem cells (hPSC) to cardiomyocytes by inhibiting Wnt signaling in hPSC in a manner that is distinct from that of previously studied Wnt inhibitors. The...
Reference: SM64-50
€0.00 (tax incl.)
KY02111 promotes differentiation of human pluripotent stem cells (hPSC) to cardiomyocytes by inhibiting Wnt signaling in hPSC in a manner that is distinct from that of previously studied Wnt inhibitors. The...
Reference: SM23-1
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LDN193189 inhibits ectopic ossification and it is a potential agent in the treatment of NSCLC lung tumors, showing significant in-vivo clinical utility. LDN193189 has been used to reduce ectopic ossification in a...
Reference: SM23-5
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LDN193189 inhibits ectopic ossification and it is a potential agent in the treatment of NSCLC lung tumors, showing significant in-vivo clinical utility. LDN193189 has been used to reduce ectopic ossification in a...
Reference: SM23-10
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LDN193189 inhibits ectopic ossification and it is a potential agent in the treatment of NSCLC lung tumors, showing significant in-vivo clinical utility. LDN193189 has been used to reduce ectopic ossification in a...
Reference: SM23-50
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LDN193189 inhibits ectopic ossification and it is a potential agent in the treatment of NSCLC lung tumors, showing significant in-vivo clinical utility. LDN193189 has been used to reduce ectopic ossification in a...
Reference: SM24-10
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LY294002 inhibits cell proliferation of choroidal melanoma OCM-1 cells. In mouse embryonic stem cells, LY294002 prevents self-renewal by inhibiting LIF2.
Reference: SM24-50
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LY294002 inhibits cell proliferation of choroidal melanoma OCM-1 cells. In mouse embryonic stem cells, LY294002 prevents self-renewal by inhibiting LIF2.
Reference: SM24-100
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LY294002 inhibits cell proliferation of choroidal melanoma OCM-1 cells. In mouse embryonic stem cells, LY294002 prevents self-renewal by inhibiting LIF2.
Reference: SM24-1000
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LY294002 inhibits cell proliferation of choroidal melanoma OCM-1 cells. In mouse embryonic stem cells, LY294002 prevents self-renewal by inhibiting LIF2.
Reference: SM25-1
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Notch signaling is a pathway known to regulate both differentiation and proliferation of cells in diverse adult tissues. LY411575 has been shown to promote goblet cell differentiation in mice intestine. It has also...
Reference: SM25-5
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Notch signaling is a pathway known to regulate both differentiation and proliferation of cells in diverse adult tissues. LY411575 has been shown to promote goblet cell differentiation in mice intestine. It has also...
Reference: SM25-10
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Notch signaling is a pathway known to regulate both differentiation and proliferation of cells in diverse adult tissues. LY411575 has been shown to promote goblet cell differentiation in mice intestine. It has also...
Reference: SM25-50
€0.00 (tax incl.)
Notch signaling is a pathway known to regulate both differentiation and proliferation of cells in diverse adult tissues. LY411575 has been shown to promote goblet cell differentiation in mice intestine. It has also...
Reference: SM25-100
€0.00 (tax incl.)
Notch signaling is a pathway known to regulate both differentiation and proliferation of cells in diverse adult tissues. LY411575 has been shown to promote goblet cell differentiation in mice intestine. It has also...
Reference: SM69-25
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NVP-BEZ235 shows high target specificity and demonstrates antiproliferative activity against tumor cell lines in animal models of cancer.
Reference: SM69-100
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NVP-BEZ235 shows high target specificity and demonstrates antiproliferative activity against tumor cell lines in animal models of cancer.
Reference: SM69-1000
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NVP-BEZ235 shows high target specificity and demonstrates antiproliferative activity against tumor cell lines in animal models of cancer.
Reference: SM26-2
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PD0325901 has potential antineoplastic activity. This molecule inhibits the growth of melanoma cell lines in-vitro and in-vivo.
Reference: SM26-10
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PD0325901 has potential antineoplastic activity. This molecule inhibits the growth of melanoma cell lines in-vitro and in-vivo.
Reference: SM26-25
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PD0325901 has potential antineoplastic activity. This molecule inhibits the growth of melanoma cell lines in-vitro and in-vivo.
Reference: SM26-100
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PD0325901 has potential antineoplastic activity. This molecule inhibits the growth of melanoma cell lines in-vitro and in-vivo.
Reference: SM27-2
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PD173074 inhibits proliferation and differentiation of oligodendrocyte progenitors. PD173074 also blocks tumor growth in H510 and H69 SCLC xenograft models.
Reference: SM27-10
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PD173074 inhibits proliferation and differentiation of oligodendrocyte progenitors. PD173074 also blocks tumor growth in H510 and H69 SCLC xenograft models.
Reference: SM27-25
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PD173074 inhibits proliferation and differentiation of oligodendrocyte progenitors. PD173074 also blocks tumor growth in H510 and H69 SCLC xenograft models.
Reference: SM27-100
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PD173074 inhibits proliferation and differentiation of oligodendrocyte progenitors. PD173074 also blocks tumor growth in H510 and H69 SCLC xenograft models.
Reference: SM73-2
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PD184352 has anti-cancer properties, suppresses the ERK pathway, and has been used along with other classes of inhibitors to establish embryonic stem cell (ESC) lines.
Reference: SM73-10
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PD184352 has anti-cancer properties, suppresses the ERK pathway, and has been used along with other classes of inhibitors to establish embryonic stem cell (ESC) lines.
Reference: SM73-25
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PD184352 has anti-cancer properties, suppresses the ERK pathway, and has been used along with other classes of inhibitors to establish embryonic stem cell (ESC) lines.
Reference: SM73-100
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PD184352 has anti-cancer properties, suppresses the ERK pathway, and has been used along with other classes of inhibitors to establish embryonic stem cell (ESC) lines.
Reference: SM28-2
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PD98059 inhibits cell growth and reverses the phenotype of ras-transformed BALB3T3 mouse fibroblasts and rat kidney cells. PD98059 inhibits cell growth and proliferation in acute myelogenous leukemia (AML) cell lines...
Reference: SM28-10
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PD98059 inhibits cell growth and reverses the phenotype of ras-transformed BALB3T3 mouse fibroblasts and rat kidney cells. PD98059 inhibits cell growth and proliferation in acute myelogenous leukemia (AML) cell lines...
Reference: SM28-25
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PD98059 inhibits cell growth and reverses the phenotype of ras-transformed BALB3T3 mouse fibroblasts and rat kidney cells. PD98059 inhibits cell growth and proliferation in acute myelogenous leukemia (AML) cell lines...
Reference: SM28-50
€0.00 (tax incl.)
PD98059 inhibits cell growth and reverses the phenotype of ras-transformed BALB3T3 mouse fibroblasts and rat kidney cells. PD98059 inhibits cell growth and proliferation in acute myelogenous leukemia (AML) cell lines...
Reference: SM74-2
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In blast cells, PI-103 inhibits leukemic proliferation, the clonogenicity of leukemic progenitors and induces mitochondrial apoptosis, especially in the compartment containing leukemic stem cells.
Reference: SM74-10
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In blast cells, PI-103 inhibits leukemic proliferation, the clonogenicity of leukemic progenitors and induces mitochondrial apoptosis, especially in the compartment containing leukemic stem cells.
Reference: SM74-25
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In blast cells, PI-103 inhibits leukemic proliferation, the clonogenicity of leukemic progenitors and induces mitochondrial apoptosis, especially in the compartment containing leukemic stem cells.
Reference: SM74-100
€0.00 (tax incl.)
In blast cells, PI-103 inhibits leukemic proliferation, the clonogenicity of leukemic progenitors and induces mitochondrial apoptosis, especially in the compartment containing leukemic stem cells.
Reference: SM29-2.5
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Pifithrin μ rescues cells from lethal γ-irradiation-induced cell death.
Reference: SM29-10
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Pifithrin μ rescues cells from lethal γ-irradiation-induced cell death.
Reference: SM29-50
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Pifithrin μ rescues cells from lethal γ-irradiation-induced cell death.
Reference: SM76-2
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This molecule inhibits production of PIP2 and PIP3 in adipocytes, phosphorylation of Akt and also activation of mTORC1. It has been studied that PIK-75 significantly reduces leukemia burden and increases the survival...
Reference: SM76-10
€0.00 (tax incl.)
This molecule inhibits production of PIP2 and PIP3 in adipocytes, phosphorylation of Akt and also activation of mTORC1. It has been studied that PIK-75 significantly reduces leukemia burden and increases the survival...
Reference: SM76-50
€0.00 (tax incl.)
This molecule inhibits production of PIP2 and PIP3 in adipocytes, phosphorylation of Akt and also activation of mTORC1. It has been studied that PIK-75 significantly reduces leukemia burden and increases the survival...
Reference: SM76-100
€0.00 (tax incl.)
This molecule inhibits production of PIP2 and PIP3 in adipocytes, phosphorylation of Akt and also activation of mTORC1. It has been studied that PIK-75 significantly reduces leukemia burden and increases the survival...

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