Ace2 Inhibitor And Cough
Lab Reagents
Ace2 Inhibitor Laboratories manufactures the ace2 inhibitor and cough reagents distributed by Genprice. The Ace2 Inhibitor And Cough reagent is RUO (Research Use Only) to test human serum or cell culture lab samples. To purchase these products, for the MSDS, Data Sheet, protocol, storage conditions/temperature or for the concentration, please contact ACE2 Inhibitor. Other Ace2 products are available in stock. Specificity: Ace2 Category: Inhibitor Group: And Cough
Mouse Angiotensin I Converting Enzyme 2 (ACE2) ELISA Kit |
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RDR-ACE2-Mu-48Tests | Reddot Biotech | 48 Tests | 640.8 EUR |
Mouse Angiotensin I Converting Enzyme 2 (ACE2) ELISA Kit |
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RDR-ACE2-Mu-96Tests | Reddot Biotech | 96 Tests | 890.4 EUR |
Rat Angiotensin I Converting Enzyme 2 (ACE2) ELISA Kit |
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RDR-ACE2-Ra-48Tests | Reddot Biotech | 48 Tests | 594 EUR |
Rat Angiotensin I Converting Enzyme 2 (ACE2) ELISA Kit |
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RDR-ACE2-Ra-96Tests | Reddot Biotech | 96 Tests | 822 EUR |
Ace2/ Rat Ace2 ELISA Kit |
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ELI-06051r | Lifescience Market | 96 Tests | 1063.2 EUR |
Angiotensin II Converting Enzyme (ACE2) Inhibitor Screening Kit |
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K310-100 | Biovision | each | 744 EUR |
Recombinant ACE2 Protein with His and Avi Tag |
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E80008-1 | EpiGentek | 100 ul | 799.7 EUR |
ACE2 antibody |
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70R-15539 | Fitzgerald | 50 ul | 522 EUR |
Description: Rabbit polyclonal ACE2 antibody |
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ACE2 Antibody |
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3215-002mg | ProSci | 0.02 mg | 206.18 EUR |
Description: ACE2 Antibody: Angiotensin-converting enzyme 2 (ACE2) plays a central role in vascular, renal, and myocardial physiology. In contrast to its homolog ACE, ACE2 expression is restricted to heart, kidney, and testis. Recently. ACE2 has also been shown to be a functional receptor of the SARS coronavirus. Homology modeling shows 2019-nCoV has a similar receptor-binding domain structure as SARS-CoV, which suggests COVID-19 (2019-nCoV) may use ACE2 as a receptor in humans for infection. The normal function of ACE2 is to convert the inactive vasoconstrictor angiotensin I (AngI) to Ang1-9 and the active form AngII to Ang1-7, unlike ACE, which converts AngI to AngII. While the role of these vasoactive peptides is not well understood, lack of ACE2 expression in ace2-/ace2- mice leads to severely reduced cardiac contractility, indicating its importance in regulating heart function. |
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ACE2 Antibody |
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3215-01mg | ProSci | 0.1 mg | 523.7 EUR |
Description: ACE2 Antibody: Angiotensin-converting enzyme 2 (ACE2) plays a central role in vascular, renal, and myocardial physiology. In contrast to its homolog ACE, ACE2 expression is restricted to heart, kidney, and testis. Recently. ACE2 has also been shown to be a functional receptor of the SARS coronavirus. Homology modeling shows 2019-nCoV has a similar receptor-binding domain structure as SARS-CoV, which suggests COVID-19 (2019-nCoV) may use ACE2 as a receptor in humans for infection. The normal function of ACE2 is to convert the inactive vasoconstrictor angiotensin I (AngI) to Ang1-9 and the active form AngII to Ang1-7, unlike ACE, which converts AngI to AngII. While the role of these vasoactive peptides is not well understood, lack of ACE2 expression in ace2-/ace2- mice leads to severely reduced cardiac contractility, indicating its importance in regulating heart function. |
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ACE2 Antibody |
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3217-002mg | ProSci | 0.02 mg | 206.18 EUR |
Description: ACE2 Antibody: Angiotensin-converting enzyme 2 (ACE2) plays a central role in vascular, renal, and myocardial physiology. In contrast to its homolog ACE, ACE2 expression is restricted to heart, kidney, and testis. Recently. ACE2 has also been shown to be a functional receptor of the SARS coronavirus. Homology modeling shows 2019-nCoV has a similar receptor-binding domain structure as SARS-CoV, which suggests COVID-19 (2019-nCoV) may use ACE2 as a receptor in humans for infection. The normal function of ACE2 is to convert the inactive vasoconstrictor angiotensin I (AngI) to Ang1-9 and the active form AngII to Ang1-7, unlike ACE, which converts AngI to AngII. While the role of these vasoactive peptides is not well understood, lack of ACE2 expression in ace2-/ace2- mice leads to severely reduced cardiac contractility, indicating its importance in regulating heart function. |
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ACE2 Antibody |
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3217-01mg | ProSci | 0.1 mg | 523.7 EUR |
Description: ACE2 Antibody: Angiotensin-converting enzyme 2 (ACE2) plays a central role in vascular, renal, and myocardial physiology. In contrast to its homolog ACE, ACE2 expression is restricted to heart, kidney, and testis. Recently. ACE2 has also been shown to be a functional receptor of the SARS coronavirus. Homology modeling shows 2019-nCoV has a similar receptor-binding domain structure as SARS-CoV, which suggests COVID-19 (2019-nCoV) may use ACE2 as a receptor in humans for infection. The normal function of ACE2 is to convert the inactive vasoconstrictor angiotensin I (AngI) to Ang1-9 and the active form AngII to Ang1-7, unlike ACE, which converts AngI to AngII. While the role of these vasoactive peptides is not well understood, lack of ACE2 expression in ace2-/ace2- mice leads to severely reduced cardiac contractility, indicating its importance in regulating heart function. |
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ACE2 Peptide |
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3217P | ProSci | 0.05 mg | 197.7 EUR |
Description: (CT) ACE2 peptide |
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ACE2 Antibody |
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3227-002mg | ProSci | 0.02 mg | 206.18 EUR |
Description: ACE2 Antibody: Angiotensin-converting enzyme 2 (ACE2) plays a central role in vascular, renal, and myocardial physiology. In contrast to its homolog ACE, ACE2 expression is restricted to heart, kidney, and testis. Recently. ACE2 has also been shown to be a functional receptor of the SARS coronavirus. Homology modeling shows 2019-nCoV has a similar receptor-binding domain structure as SARS-CoV, which suggests COVID-19 (2019-nCoV) may use ACE2 as a receptor in humans for infection. The normal function of ACE2 is to convert the inactive vasoconstrictor angiotensin I (AngI) to Ang1-9 and the active form AngII to Ang1-7, unlike ACE, which converts AngI to AngII. While the role of these vasoactive peptides is not well understood, lack of ACE2 expression in ace2-/ace2- mice leads to severely reduced cardiac contractility, indicating its importance in regulating heart function. |
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ACE2 Antibody |
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3227-01mg | ProSci | 0.1 mg | 523.7 EUR |
Description: ACE2 Antibody: Angiotensin-converting enzyme 2 (ACE2) plays a central role in vascular, renal, and myocardial physiology. In contrast to its homolog ACE, ACE2 expression is restricted to heart, kidney, and testis. Recently. ACE2 has also been shown to be a functional receptor of the SARS coronavirus. Homology modeling shows 2019-nCoV has a similar receptor-binding domain structure as SARS-CoV, which suggests COVID-19 (2019-nCoV) may use ACE2 as a receptor in humans for infection. The normal function of ACE2 is to convert the inactive vasoconstrictor angiotensin I (AngI) to Ang1-9 and the active form AngII to Ang1-7, unlike ACE, which converts AngI to AngII. While the role of these vasoactive peptides is not well understood, lack of ACE2 expression in ace2-/ace2- mice leads to severely reduced cardiac contractility, indicating its importance in regulating heart function. |
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ACE2 Peptide |
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3227P | ProSci | 0.05 mg | 197.7 EUR |
Description: (NT) ACE2 peptide |
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ACE2 Antibody |
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3229-002mg | ProSci | 0.02 mg | 206.18 EUR |
Description: ACE2 Antibody: Angiotensin-converting enzyme 2 (ACE2) plays a central role in vascular, renal, and myocardial physiology. In contrast to its homolog ACE, ACE2 expression is restricted to heart, kidney, and testis. Recently. ACE2 has also been shown to be a functional receptor of the SARS coronavirus. Homology modeling shows 2019-nCoV has a similar receptor-binding domain structure as SARS-CoV, which suggests COVID-19 (2019-nCoV) may use ACE2 as a receptor in humans for infection. The normal function of ACE2 is to convert the inactive vasoconstrictor angiotensin I (AngI) to Ang1-9 and the active form AngII to Ang1-7, unlike ACE, which converts AngI to AngII. While the role of these vasoactive peptides is not well understood, lack of ACE2 expression in ace2-/ace2- mice leads to severely reduced cardiac contractility, indicating its importance in regulating heart function. |