human mmp Search Results


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R&D Systems duoset elisa
Duoset Elisa, supplied by R&D Systems, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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R&D Systems recombinant mmp 9
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R&D Systems human recombinant mmp
Human Recombinant Mmp, supplied by R&D Systems, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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R&D Systems mmp
Mmp, supplied by R&D Systems, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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99
R&D Systems fluorokine map human mmp9 kit
Figure 7 Knockdown of WASF3 expression suppresses <t>MMP9</t> expression levels and inhibits MMP9 release from prostate cancer cell lines. (A) RT–PCR analysis of PC3 and DU145 cells showing knockdown of WASF3 also show down-regulation of MMP9, but not MMP2 expression levels. Cont ¼ parental cells. (B) Secretion of the pro- and active form of MMP9 from PC3 and DU145 cells were measured in the supernatants of actively growing cells using the <t>Fluorokine</t> <t>MAP</t> assay procedure. Cells from each clone showing knockdown of WASF3 also showed reduced MMP9 levels compared with parental (control) and non-knockdown cells that did not.
Fluorokine Map Human Mmp9 Kit, supplied by R&D Systems, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+mmp/Human+Active+MMP-9+Fluorokine+E+Kit/pm20717117-94-32-37
Average 99 stars, based on 1 article reviews
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R&D Systems human active mmp
Figure 7 Knockdown of WASF3 expression suppresses <t>MMP9</t> expression levels and inhibits MMP9 release from prostate cancer cell lines. (A) RT–PCR analysis of PC3 and DU145 cells showing knockdown of WASF3 also show down-regulation of MMP9, but not MMP2 expression levels. Cont ¼ parental cells. (B) Secretion of the pro- and active form of MMP9 from PC3 and DU145 cells were measured in the supernatants of actively growing cells using the <t>Fluorokine</t> <t>MAP</t> assay procedure. Cells from each clone showing knockdown of WASF3 also showed reduced MMP9 levels compared with parental (control) and non-knockdown cells that did not.
Human Active Mmp, supplied by R&D Systems, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 93 stars, based on 1 article reviews
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R&D Systems elisa kit
Figure 7 Knockdown of WASF3 expression suppresses <t>MMP9</t> expression levels and inhibits MMP9 release from prostate cancer cell lines. (A) RT–PCR analysis of PC3 and DU145 cells showing knockdown of WASF3 also show down-regulation of MMP9, but not MMP2 expression levels. Cont ¼ parental cells. (B) Secretion of the pro- and active form of MMP9 from PC3 and DU145 cells were measured in the supernatants of actively growing cells using the <t>Fluorokine</t> <t>MAP</t> assay procedure. Cells from each clone showing knockdown of WASF3 also showed reduced MMP9 levels compared with parental (control) and non-knockdown cells that did not.
Elisa Kit, supplied by R&D Systems, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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R&D Systems active mmp 1 fluorokine kit
Figure 7 Knockdown of WASF3 expression suppresses <t>MMP9</t> expression levels and inhibits MMP9 release from prostate cancer cell lines. (A) RT–PCR analysis of PC3 and DU145 cells showing knockdown of WASF3 also show down-regulation of MMP9, but not MMP2 expression levels. Cont ¼ parental cells. (B) Secretion of the pro- and active form of MMP9 from PC3 and DU145 cells were measured in the supernatants of actively growing cells using the <t>Fluorokine</t> <t>MAP</t> assay procedure. Cells from each clone showing knockdown of WASF3 also showed reduced MMP9 levels compared with parental (control) and non-knockdown cells that did not.
Active Mmp 1 Fluorokine Kit, supplied by R&D Systems, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+mmp/Human+Active+MMP-1+Fluorokine+E+Kit/pm31276679-276-16-37
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96
R&D Systems x analyzer
Figure 7 Knockdown of WASF3 expression suppresses <t>MMP9</t> expression levels and inhibits MMP9 release from prostate cancer cell lines. (A) RT–PCR analysis of PC3 and DU145 cells showing knockdown of WASF3 also show down-regulation of MMP9, but not MMP2 expression levels. Cont ¼ parental cells. (B) Secretion of the pro- and active form of MMP9 from PC3 and DU145 cells were measured in the supernatants of actively growing cells using the <t>Fluorokine</t> <t>MAP</t> assay procedure. Cells from each clone showing knockdown of WASF3 also showed reduced MMP9 levels compared with parental (control) and non-knockdown cells that did not.
X Analyzer, supplied by R&D Systems, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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R&D Systems human fluorokine map matrix metalloproteinase kit
Figure 7 Knockdown of WASF3 expression suppresses <t>MMP9</t> expression levels and inhibits MMP9 release from prostate cancer cell lines. (A) RT–PCR analysis of PC3 and DU145 cells showing knockdown of WASF3 also show down-regulation of MMP9, but not MMP2 expression levels. Cont ¼ parental cells. (B) Secretion of the pro- and active form of MMP9 from PC3 and DU145 cells were measured in the supernatants of actively growing cells using the <t>Fluorokine</t> <t>MAP</t> assay procedure. Cells from each clone showing knockdown of WASF3 also showed reduced MMP9 levels compared with parental (control) and non-knockdown cells that did not.
Human Fluorokine Map Matrix Metalloproteinase Kit, supplied by R&D Systems, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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R&D Systems mouse anti human mmp2
Figure 7 Knockdown of WASF3 expression suppresses <t>MMP9</t> expression levels and inhibits MMP9 release from prostate cancer cell lines. (A) RT–PCR analysis of PC3 and DU145 cells showing knockdown of WASF3 also show down-regulation of MMP9, but not MMP2 expression levels. Cont ¼ parental cells. (B) Secretion of the pro- and active form of MMP9 from PC3 and DU145 cells were measured in the supernatants of actively growing cells using the <t>Fluorokine</t> <t>MAP</t> assay procedure. Cells from each clone showing knockdown of WASF3 also showed reduced MMP9 levels compared with parental (control) and non-knockdown cells that did not.
Mouse Anti Human Mmp2, supplied by R&D Systems, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Elabscience Biotechnology immunosorbent assay elisa
The boxplots of the MMP‐2 levels in the cultured media of human endometrial stromal cells (hESCs). Confluent hESC cultures were treated with E 2 (10 −8 M) (group E 2 ), E 2 (10 −8 M)+ ethanol (0.1%) (group E 2 + S), E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 ), Er‐YAG laser + E 2 (10 −8 M) (group E 2 + L), Er‐YAG laser+ E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 + L) for 12, 24, 48, and 72 h. Only hESCs (incubated in serum‐free DMEM/F12) and hESCs + Er‐YAG laser (hESCs + L) groups were incubated for 12 and 72 h. MMP‐2 levels were quantified by <t>ELISA</t> in culture media and normalized to total cell protein ( n = 3, median (Q1–Q3). DMEM, Dulbecco modified Eagle medium; E 2 , estradiol; ELISA, enzyme‐linked <t>immunosorbent</t> assay; Er‐YAG, nonablative Erbium YAG; ESC, endometrial stromal cell; MMP‐2, matrix metalloproteinase‐2; P 4 , progesterone.
Immunosorbent Assay Elisa, supplied by Elabscience Biotechnology, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Figure 7 Knockdown of WASF3 expression suppresses MMP9 expression levels and inhibits MMP9 release from prostate cancer cell lines. (A) RT–PCR analysis of PC3 and DU145 cells showing knockdown of WASF3 also show down-regulation of MMP9, but not MMP2 expression levels. Cont ¼ parental cells. (B) Secretion of the pro- and active form of MMP9 from PC3 and DU145 cells were measured in the supernatants of actively growing cells using the Fluorokine MAP assay procedure. Cells from each clone showing knockdown of WASF3 also showed reduced MMP9 levels compared with parental (control) and non-knockdown cells that did not.

Journal: British journal of cancer

Article Title: Inactivation of the WASF3 gene in prostate cancer cells leads to suppression of tumorigenicity and metastases.

doi: 10.1038/sj.bjc.6605850

Figure Lengend Snippet: Figure 7 Knockdown of WASF3 expression suppresses MMP9 expression levels and inhibits MMP9 release from prostate cancer cell lines. (A) RT–PCR analysis of PC3 and DU145 cells showing knockdown of WASF3 also show down-regulation of MMP9, but not MMP2 expression levels. Cont ¼ parental cells. (B) Secretion of the pro- and active form of MMP9 from PC3 and DU145 cells were measured in the supernatants of actively growing cells using the Fluorokine MAP assay procedure. Cells from each clone showing knockdown of WASF3 also showed reduced MMP9 levels compared with parental (control) and non-knockdown cells that did not.

Article Snippet: After 24 h, the media were collected in tubes and centrifuged for 10 min at 10 000 g. The pro- and active MMP-9 levels released into the media were measured using a Fluorokine MAP human MMP9 kit (R&D Systems, Minneapolis, MN, USA) according to the manufacturer’s instructions.

Techniques: Knockdown, Expressing, Reverse Transcription Polymerase Chain Reaction, Control

The boxplots of the MMP‐2 levels in the cultured media of human endometrial stromal cells (hESCs). Confluent hESC cultures were treated with E 2 (10 −8 M) (group E 2 ), E 2 (10 −8 M)+ ethanol (0.1%) (group E 2 + S), E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 ), Er‐YAG laser + E 2 (10 −8 M) (group E 2 + L), Er‐YAG laser+ E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 + L) for 12, 24, 48, and 72 h. Only hESCs (incubated in serum‐free DMEM/F12) and hESCs + Er‐YAG laser (hESCs + L) groups were incubated for 12 and 72 h. MMP‐2 levels were quantified by ELISA in culture media and normalized to total cell protein ( n = 3, median (Q1–Q3). DMEM, Dulbecco modified Eagle medium; E 2 , estradiol; ELISA, enzyme‐linked immunosorbent assay; Er‐YAG, nonablative Erbium YAG; ESC, endometrial stromal cell; MMP‐2, matrix metalloproteinase‐2; P 4 , progesterone.

Journal: Lasers in Surgery and Medicine

Article Title: Effects of Nonablative Er‐ YAG Laser on Human Endometrial Stromal Cells (hESCs): A Pilot Study

doi: 10.1002/lsm.70020

Figure Lengend Snippet: The boxplots of the MMP‐2 levels in the cultured media of human endometrial stromal cells (hESCs). Confluent hESC cultures were treated with E 2 (10 −8 M) (group E 2 ), E 2 (10 −8 M)+ ethanol (0.1%) (group E 2 + S), E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 ), Er‐YAG laser + E 2 (10 −8 M) (group E 2 + L), Er‐YAG laser+ E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 + L) for 12, 24, 48, and 72 h. Only hESCs (incubated in serum‐free DMEM/F12) and hESCs + Er‐YAG laser (hESCs + L) groups were incubated for 12 and 72 h. MMP‐2 levels were quantified by ELISA in culture media and normalized to total cell protein ( n = 3, median (Q1–Q3). DMEM, Dulbecco modified Eagle medium; E 2 , estradiol; ELISA, enzyme‐linked immunosorbent assay; Er‐YAG, nonablative Erbium YAG; ESC, endometrial stromal cell; MMP‐2, matrix metalloproteinase‐2; P 4 , progesterone.

Article Snippet: To evaluate the remodeling effect of Er‐YAG laser on endometrial tissue, matrix metalloproteinase‐2 (MMP‐2) levels in conditioned media were measured by an enzyme‐linked immunosorbent assay (ELISA) (Elabscience; E‐EL‐H1445, Houston, TX, USA), which has a sensitivity of 0.47 ng/mL and no reported cross‐reactivity or interference [ ].

Techniques: Cell Culture, Incubation, Enzyme-linked Immunosorbent Assay, Modification

The boxplots of the TNF‐α and IL‐6 levels in the cultured media of human endometrial stromal cells (hESCs). Confluent hESC cultures were treated with E 2 (10 −8 M) (group E 2 ), E 2 (10 −8 M) + ethanol (0.1%) (group E 2 + S), E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 ), Er‐YAG laser + E 2 (10 −8 M) (group E 2 + L), Er‐YAG laser+ E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 + L) for 12, 24, 48, and 72 h. Only hESCs (incubated in serum‐free DMEM/F12) and hESCs + Er‐YAG laser (hESCs + L) groups were incubated for 12 and 72 h. (A) represents subsequent time points for TNF‐α analysis, and (B) represents subsequent time points for IL‐6 analysis. TNF‐α and IL‐6 levels were quantified by ELISA in culture media and normalized to total cell protein ( n = 3, median (Q1–Q3). DMEM, Dulbecco modified Eagle medium; E 2 , estradiol; ELISA, enzyme‐linked immunosorbent assay; Er‐YAG, nonablative Erbium YAG; ESC, endometrial stromal cell; IL‐6: interleukin‐6; MMP‐2, matrix metalloproteinase‐2; P 4 , progesterone; TNF‐α, tumor necrosis factor‐alpha.

Journal: Lasers in Surgery and Medicine

Article Title: Effects of Nonablative Er‐ YAG Laser on Human Endometrial Stromal Cells (hESCs): A Pilot Study

doi: 10.1002/lsm.70020

Figure Lengend Snippet: The boxplots of the TNF‐α and IL‐6 levels in the cultured media of human endometrial stromal cells (hESCs). Confluent hESC cultures were treated with E 2 (10 −8 M) (group E 2 ), E 2 (10 −8 M) + ethanol (0.1%) (group E 2 + S), E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 ), Er‐YAG laser + E 2 (10 −8 M) (group E 2 + L), Er‐YAG laser+ E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 + L) for 12, 24, 48, and 72 h. Only hESCs (incubated in serum‐free DMEM/F12) and hESCs + Er‐YAG laser (hESCs + L) groups were incubated for 12 and 72 h. (A) represents subsequent time points for TNF‐α analysis, and (B) represents subsequent time points for IL‐6 analysis. TNF‐α and IL‐6 levels were quantified by ELISA in culture media and normalized to total cell protein ( n = 3, median (Q1–Q3). DMEM, Dulbecco modified Eagle medium; E 2 , estradiol; ELISA, enzyme‐linked immunosorbent assay; Er‐YAG, nonablative Erbium YAG; ESC, endometrial stromal cell; IL‐6: interleukin‐6; MMP‐2, matrix metalloproteinase‐2; P 4 , progesterone; TNF‐α, tumor necrosis factor‐alpha.

Article Snippet: To evaluate the remodeling effect of Er‐YAG laser on endometrial tissue, matrix metalloproteinase‐2 (MMP‐2) levels in conditioned media were measured by an enzyme‐linked immunosorbent assay (ELISA) (Elabscience; E‐EL‐H1445, Houston, TX, USA), which has a sensitivity of 0.47 ng/mL and no reported cross‐reactivity or interference [ ].

Techniques: Cell Culture, Incubation, Enzyme-linked Immunosorbent Assay, Modification

The boxplots of the VEGF‐A levels in the cultured media of human endometrial stromal cells (hESCs). Confluent hESC cultures were treated with E 2 (10 −8 M) (group E 2 ), E 2 (10 −8 M)+ ethanol (0.1%) (group E 2 + S), E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 ), Er‐YAG laser + E 2 (10 −8 M) (group E 2 + L), Er‐YAG laser+ E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 + L) for 12, 24, 48, and 72 h. Only hESCs (incubated in serum‐free DMEM/F12) and hESCs + Er‐YAG laser (hESCs + L) groups were incubated for 12 and 72 h. VEGF‐A levels were quantified by ELISA in culture media and normalized to total cell protein ( n = 3, median (Q1–Q3). DMEM, Dulbecco modified Eagle medium; E 2 , estradiol; ELISA, enzyme‐linked immunosorbent assay; Er‐YAG, nonablative Erbium YAG; ESC, endometrial stromal cell; P 4 , progesterone; VEGF‐A, vascular endothelial growth factor‐A.

Journal: Lasers in Surgery and Medicine

Article Title: Effects of Nonablative Er‐ YAG Laser on Human Endometrial Stromal Cells (hESCs): A Pilot Study

doi: 10.1002/lsm.70020

Figure Lengend Snippet: The boxplots of the VEGF‐A levels in the cultured media of human endometrial stromal cells (hESCs). Confluent hESC cultures were treated with E 2 (10 −8 M) (group E 2 ), E 2 (10 −8 M)+ ethanol (0.1%) (group E 2 + S), E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 ), Er‐YAG laser + E 2 (10 −8 M) (group E 2 + L), Er‐YAG laser+ E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 + L) for 12, 24, 48, and 72 h. Only hESCs (incubated in serum‐free DMEM/F12) and hESCs + Er‐YAG laser (hESCs + L) groups were incubated for 12 and 72 h. VEGF‐A levels were quantified by ELISA in culture media and normalized to total cell protein ( n = 3, median (Q1–Q3). DMEM, Dulbecco modified Eagle medium; E 2 , estradiol; ELISA, enzyme‐linked immunosorbent assay; Er‐YAG, nonablative Erbium YAG; ESC, endometrial stromal cell; P 4 , progesterone; VEGF‐A, vascular endothelial growth factor‐A.

Article Snippet: To evaluate the remodeling effect of Er‐YAG laser on endometrial tissue, matrix metalloproteinase‐2 (MMP‐2) levels in conditioned media were measured by an enzyme‐linked immunosorbent assay (ELISA) (Elabscience; E‐EL‐H1445, Houston, TX, USA), which has a sensitivity of 0.47 ng/mL and no reported cross‐reactivity or interference [ ].

Techniques: Cell Culture, Incubation, Enzyme-linked Immunosorbent Assay, Modification

The boxplots of the IGFBP‐1 secretions in the cultured media of human endometrial stromal cells (hESCs). Confluent hESC cultures were treated with E 2 (10 −8 M) (group E 2 ), E 2 (10 −8 M) + ethanol (0.1%) (group E 2 + S), E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 ), Er‐YAG laser+ E 2 (10 −8 M) (group E 2 + L), Er‐YAG laser + E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 + L) for 12, 24, 48, and 72 h. Only hESCs (incubated in serum‐free DMEM/F12) and hESCs + Er‐YAG laser (hESCs + L) groups were incubated for 12 and 72 h. IGFBP‐1 levels were quantified by ELISA in culture media and normalized to total cell protein ( n = 3, median (Q1–Q3). DMEM, Dulbecco modified Eagle medium; E 2 , estradiol; ELISA, enzyme‐linked immunosorbent assay; Er‐YAG, nonablative Erbium YAG; ESC, endometrial stromal cell; IGFBP‐1, insulin‐like growth factor‐binding protein‐1; P 4 , progesterone.

Journal: Lasers in Surgery and Medicine

Article Title: Effects of Nonablative Er‐ YAG Laser on Human Endometrial Stromal Cells (hESCs): A Pilot Study

doi: 10.1002/lsm.70020

Figure Lengend Snippet: The boxplots of the IGFBP‐1 secretions in the cultured media of human endometrial stromal cells (hESCs). Confluent hESC cultures were treated with E 2 (10 −8 M) (group E 2 ), E 2 (10 −8 M) + ethanol (0.1%) (group E 2 + S), E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 ), Er‐YAG laser+ E 2 (10 −8 M) (group E 2 + L), Er‐YAG laser + E 2 (10 −8 M) + P 4 (10 −7 M) (group E 2 + P 4 + L) for 12, 24, 48, and 72 h. Only hESCs (incubated in serum‐free DMEM/F12) and hESCs + Er‐YAG laser (hESCs + L) groups were incubated for 12 and 72 h. IGFBP‐1 levels were quantified by ELISA in culture media and normalized to total cell protein ( n = 3, median (Q1–Q3). DMEM, Dulbecco modified Eagle medium; E 2 , estradiol; ELISA, enzyme‐linked immunosorbent assay; Er‐YAG, nonablative Erbium YAG; ESC, endometrial stromal cell; IGFBP‐1, insulin‐like growth factor‐binding protein‐1; P 4 , progesterone.

Article Snippet: To evaluate the remodeling effect of Er‐YAG laser on endometrial tissue, matrix metalloproteinase‐2 (MMP‐2) levels in conditioned media were measured by an enzyme‐linked immunosorbent assay (ELISA) (Elabscience; E‐EL‐H1445, Houston, TX, USA), which has a sensitivity of 0.47 ng/mL and no reported cross‐reactivity or interference [ ].

Techniques: Cell Culture, Incubation, Enzyme-linked Immunosorbent Assay, Modification, Binding Assay