Patent classifications
C07K14/8114
NEUTROPHIL ELASTASE BINDING PEPTIDES AND COMPOSITIONS THEREOF
Targeting or binding peptides to neutrophil elastase for specific targeting of activated neutrophils includes amino acid sequences substantially similar to a reactive center loop portion of alpha-1 anti-trypsin (AAT).
COMPOUND FOR MODULATING RLR, TLR, OAS AND/OR ONCOSTATIN M PATHWAYS, USE THEREOF FOR PREPARING A MEDICINE, COMPOSITION, METHOD FOR MODULATING SAID PATHWAYS AND METHOD OF TREATMENT
The invention falls within the fields of pharmaceutical sciences, immunology and methods of treatment of cancer Methods. More specifically, the invention relates to a compound for modulating one or more innate immune pathways selected from RLR, TLR, OAS and/or oncostatin M, said compound being amblyomin-×or peptides derived from amblyomin-X. Use of said compound for preparing medicines; a pharmaceutical composition comprising said compound, a method for modulating said pathways in vitro and a method of treatment are also described.
Compositions and methods for inhibiting thrombogenesis
The invention is directed to a composition comprising an (one or more) isolated peptide comprising a BF01 peptide, variants of a BF01 peptide and/or mutants of a BF01 peptide. In particular aspects, the composition is a pharmaceutical composition. The composition(s) can be used to inhibit thrombogenesis, selectively inhibit the intrinsic pathway of blood coagulation and selectively inhibit FX1 in an individual in need thereof comprising administering an effective amount of all or a biologically active portion of a BF01 peptide, one or more variants thereof and/or one or more mutants thereof.
MODULATION OF GRANZYME K ACTIVITY IN THE TREATMENT OF SKIN CONDITIONS
Methods for treating inflammatory skin conditions, such as atopic dermatitis and psoriasis, and for promoting skin wound healing and for treating skin wounds, such as thermal and pressure injury, by reducing the activity of Granzyme K.
Amniotic membrane preparations and purified compositions and therapy for scar reversal and inhibition
Compositions having a combination of specific biological components have been found to exert a number of useful effects in mammalian cells, including modulating TGF β signaling, apoptosis, and proliferation of mammalian cells, as well as decreasing inflammation in mice. These components can be obtained commercially, or can be prepared from biological tissues such as placental tissues. Placental amniotic membrane (AM) preparations described herein include AM pieces, AM extracts, AM jelly, AM stroma, and mixtures of these compositions with additional components. The compositions can be used to treat various diseases, such as wound healing, inflammation and angiogenesis-related diseases.
PANCREATIC CANCER TARGETS AND USES THEREOF
The present invention provides a method for diagnosing and detecting diseases associated with pancreas. The present invention provides one or more proteins or fragments thereof, peptides or nucleic acid molecules differentially expressed in pancreatic diseases (PCAT) and antibodies binds to PCAT. The present invention provides that PCAT is used as targets for screening agents that modulates the PCAT activities. Further, the present invention provides methods for treating diseases associated with pancreas.
METHOD AND REAGENT FOR DETECTING OVARIAN CLEAR CELL ADENOCARCINOMA
The present invention aims to provide a method for detecting, with high sensitivity and specificity, ovarian clear cell adenocarcinoma, which is highly malignant, among benign and malignant ovarian tumors having various tissue types, and a reagent that can be used for the method. The present invention provides NT-TFPI2, which is a novel processed tissue factor pathway inhibitor 2 polypeptide, as a new detection marker for ovarian clear cell adenocarcinoma. The detection of ovarian clear cell adenocarcinoma is carried out by measuring the amount of NT-TFPI2, or the total amount of NT-TFPI2 and intact TFPI2. The reagent for detecting ovarian clear cell adenocarcinoma contains an antibody that specifically recognizes NT-TFPI2 and intact TFPI2.
Muteins of α1m lipocalin and method of production therefor
The present disclosure relates to a collection of novel muteins derived from human α1m (or a1m) polypeptide or a functional homolog thereof. The disclosure further refers to a α1m mutein capable of specifically binding to one or more targets other than a target to which wild-type α1m binds. The disclosure also relates to a method for producing such collection of muteins and a method for isolating a mutein capable of binding one or more such non-natural targets of wild-type α1m polypeptide. These aspects are made possible due to, e.g, the structural elucidation of α1m disclosed herein by the present inventors, an appreciation of ligand-binding sights thereof and, hence, an understanding of which amino acid positions are most suitable for mutagenesis for re-engineering specificity and affinity for any given target while maintaining the secondary and/or tertiary structure of a1m.
Method and reagent for detecting ovarian clear cell adenocarcinoma
The present invention aims to provide a method for detecting, with high sensitivity and specificity, ovarian clear cell adenocarcinoma, which is highly malignant, among benign and malignant ovarian tumors having various tissue types, and a reagent that can be used for the method. The present invention provides NT-TFPI2, which is a novel processed tissue factor pathway inhibitor 2 polypeptide, as a new detection marker for ovarian clear cell adenocarcinoma. The detection of ovarian clear cell adenocarcinoma is carried out by measuring the amount of NT-TFPI2, or the total amount of NT-TFPI2 and intact TFPI2. The reagent for detecting ovarian clear cell adenocarcinoma contains an antibody that specifically recognizes NT-TFPI2 and intact TFPI2.
Ulinastatin polypeptides
Provided are ulinastatin glycoforms, ulinastatin fusion polypeptides, and related compositions, mixtures, and methods of use, including methods of recombinantly producing ulinastatin polypeptides and treating diseases.