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1.
Biochimie ; 194: 1-12, 2022 Mar.
Article in English | MEDLINE | ID: mdl-34896570

ABSTRACT

Eczema is a skin condition characterized by itchy and inflammatory patches. The accumulation of neutrophils and the imbalance between enzymes and their inhibitors appears to be related to this condition. We proposed a neutrophil elastase (NE)-based eczema model in mice in order to verify histopathological features as well as the expression and activity of proteases and inhibitors. Mice skins were topically administered with human NE (0-2 pmol/cm2) for 24-168 h. It was observed thickening of epidermis, parakeratosis, spongiosis and leukocyte infiltration. Also, NE-treated skins presented high activity of epidermal kallikreins 5 and 7, and cathepsin B on synthetic substrates, and expression evaluated by RT-qPCR. The proteolytic activity was inhibited by soybean trypsin inhibitor, CA074 and Caesalpinia echinata kallikrein inhibitor (CeKI). The topic application of CeKI reversed eczema phenotype in NE-treated skins. Elafin expression was shown to be increased in NE-treated skins. These results suggest that the NE may trigger morphological and biochemical changes in skin similar to those observed in eczematous diseases. In addition to the establishment of this in vivo model, this work opens perspectives for the use of protease inhibitor-based drugs for the management of this skin condition.


Subject(s)
Eczema , Peptide Hydrolases , Animals , Cathepsin G , Cathepsins/metabolism , Eczema/drug therapy , Eczema/metabolism , Mice , Neutrophils , Peptide Hydrolases/metabolism , Protease Inhibitors/chemistry
2.
Pulm Med ; 2016: 9425807, 2016.
Article in English | MEDLINE | ID: mdl-28044105

ABSTRACT

Inflammation is an essential process in many pulmonary diseases in which kinins are generated by protease action on kininogen, a phenomenon that is blocked by protease inhibitors. We evaluated kinin release in an in vivo lung inflammation model in rats, in the presence or absence of CeKI (C. echinata kallikrein inhibitor), a plasma kallikrein, cathepsin G, and proteinase-3 inhibitor, and rCeEI (recombinant C. echinata elastase inhibitor), which inhibits these proteases and also neutrophil elastase. Wistar rats were intravenously treated with buffer (negative control) or inhibitors and, subsequently, lipopolysaccharide was injected into their lungs. Blood, bronchoalveolar lavage fluid (BALF), and lung tissue were collected. In plasma, kinin release was higher in the LPS-treated animals in comparison to CeKI or rCeEI groups. rCeEI-treated animals presented less kinin than CeKI-treated group. Our data suggest that kinins play a pivotal role in lung inflammation and may be generated by different enzymes; however, neutrophil elastase seems to be the most important in the lung tissue context. These results open perspectives for a better understanding of biological process where neutrophil enzymes participate and indicate these plant inhibitors and their recombinant correlates for therapeutic trials involving pulmonary diseases.


Subject(s)
Caesalpinia , Neutrophils , Pneumonia , Animals , Cathepsin G/metabolism , Disease Models, Animal , Kininogens/metabolism , Models, Biological , Neutrophils/drug effects , Neutrophils/enzymology , Phytochemicals/pharmacology , Plasma Kallikrein/metabolism , Pneumonia/drug therapy , Pneumonia/enzymology , Protease Inhibitors/pharmacology , Rats , Seeds
3.
ScientificWorldJournal ; 2012: 562715, 2012.
Article in English | MEDLINE | ID: mdl-22629147

ABSTRACT

Several proteins have been isolated from seeds of leguminous, but this is the first report that a protease was obtained from seeds of Caesalpinia echinata Lam., a tree belonging to the Fabaceae family. This enzyme was purified to homogeneity by hydrophobic interaction and anion exchange chromatographies and gel filtration. This 61-kDa serine protease (CeSP) hydrolyses H-D-prolyl-L-phenylalanyl-L-arginine-p-nitroanilide (K(m) 55.7 µM) in an optimum pH of 7.1, and this activity is effectively retained until 50 °C. CeSP remained stable in the presence of kosmotropic anions (PO(4) (3-), SO(4) (2-), and CH(3)COO(-)) or chaotropic cations (K(+) and Na(+)). It is strongly inhibited by TLCK, a serine protease inhibitor, but not by E-64, EDTA or pepstatin A. The characteristics of the purified enzyme allowed us to classify it as a serine protease. The role of CeSP in the seeds cannot be assigned yet but is possible to infer that it is involved in the mobilization of seed storage proteins.


Subject(s)
Seed Storage Proteins/chemistry , Seeds/enzymology , Serine Proteases/chemistry , Enzyme Activation , Enzyme Stability , Seed Storage Proteins/analysis , Serine Proteases/analysis
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