Date published: 2025-10-6

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tPA Inhibitors

The class of compounds known as tissue plasminogen activator (tPA) inhibitors encompasses a group of chemical entities that possess the ability to modulate the activity of the tissue plasminogen activator enzyme. Tissue plasminogen activator is a serine protease that plays a pivotal role in the regulation of the fibrinolytic system. This system is responsible for the dissolution of blood clots by converting plasminogen into plasmin, which subsequently degrades fibrin, a key component of blood clots. tPA inhibitors operate by binding to the active site of the tissue plasminogen activator enzyme, thereby impeding its enzymatic activity. This interaction hinders the conversion of plasminogen to plasmin, subsequently slowing down the fibrinolytic process. Chemically, tPA inhibitors display a diverse range of structures, often characterized by key functional groups that enable interaction with the active site of the enzyme. The molecular architecture of these inhibitors facilitates precise binding to the enzyme's catalytic pocket, preventing its substrate from accessing the active site. This binding specificity is essential for the inhibition of tissue plasminogen activator, as it ensures that the inhibitor selectively targets the enzyme without interfering with other proteases or physiological processes. The affinity of tPA inhibitors for the enzyme's active site can vary widely across different compounds, leading to differing degrees of enzymatic inhibition. Consequently, this class of compounds plays a vital role in fine-tuning the fibrinolytic system's activity, thus contributing to the intricate balance between clot formation and dissolution within the body. In conclusion, tPA inhibitors, through their distinctive chemical structures and precise binding interactions, constitute an essential class of molecules in the regulation of the fibrinolytic pathway by specifically targeting tissue plasminogen activator's enzymatic activity.

Items 1 to 10 of 12 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

uPA Inhibitor Inhibitor

149732-36-5sc-356184
5 mg
$311.00
1
(0)

uPA Inhibitor acts as a potent modulator of proteolytic activity, specifically targeting the urokinase-type plasminogen activator system. Its unique binding dynamics facilitate the stabilization of enzyme-inhibitor complexes, effectively altering the kinetics of substrate interactions. The compound's selective affinity for the active site enhances its ability to regulate protease activity, impacting various cellular mechanisms. Additionally, its distinct physicochemical properties contribute to its interaction profile within biological systems.

Aspirin

50-78-2sc-202471
sc-202471A
5 g
50 g
$20.00
$41.00
4
(1)

Irreversible inhibition of COX enzymes, reducing prostaglandin synthesis.

Omeprazole

73590-58-6sc-202265
50 mg
$66.00
4
(1)

Irreversibly inhibits the proton pump (H+/K+ ATPase) in gastric parietal cells, reducing acid secretion.

Allopurinol

315-30-0sc-207272
25 g
$128.00
(0)

Inhibits xanthine oxidase, an enzyme involved in uric acid production.

Methotrexate

59-05-2sc-3507
sc-3507A
100 mg
500 mg
$92.00
$209.00
33
(5)

Inhibits dihydrofolate reductase, interfering with DNA synthesis and cell division.

Imatinib

152459-95-5sc-267106
sc-267106A
sc-267106B
10 mg
100 mg
1 g
$25.00
$117.00
$209.00
27
(1)

Binds to and inhibits the tyrosine kinase activity of BCR-ABL and other kinases, used in cancer therapy.

Tamoxifen

10540-29-1sc-208414
2.5 g
$256.00
18
(2)

Selective estrogen receptor modulator (SERM) that competes with estrogen for binding to its receptor.

Captopril

62571-86-2sc-200566
sc-200566A
1 g
5 g
$48.00
$89.00
21
(1)

ACE inhibitor that reduces the conversion of angiotensin I to angiotensin II, lowering blood pressure.

Ritonavir

155213-67-5sc-208310
10 mg
$122.00
7
(1)

Inhibits HIV protease, preventing the cleavage of viral polyproteins and production of infectious virions.

Bortezomib

179324-69-7sc-217785
sc-217785A
2.5 mg
25 mg
$132.00
$1064.00
115
(2)

Reversible inhibitor of the proteasome, disrupting protein degradation pathways in cancer cells.