Abstract:
Previously, it was difficult to obtain high-affinity antibodies that specifically bind to HMGB-1 but not to HMGB-2. Under this circumstance, the present inventors successfully obtained antibodies that are more reactive to HMGB-1 than to HMGB-2 by using specific peptides as an antigen. The present inventors also demonstrated that the antibodies had a HMGB-1-neutralizing activity. The present inventors administered the antibodies to amyloidosis model animals, and as a result, successfully demonstrated that the antibodies produced a significant therapeutic effect.
Abstract:
Previously, it was difficult to obtain high-affinity antibodies that specifically bind to HMGB-1 but not to HMGB-2. Under this circumstance, the present inventors successfully obtained antibodies that are more reactive to HMGB-1 than to HMGB-2 by using specific peptides as an antigen. The present inventors also demonstrated that the antibodies had a HMGB-1-neutralizing activity. The present inventors administered the antibodies to amyloidosis model animals, and as a result, successfully demonstrated that the antibodies produced a significant therapeutic effect.
Abstract:
Previously, it was difficult to obtain high-affinity antibodies that specifically bind to HMGB-1 but not to HMGB-2. Under this circumstance, the present inventors successfully obtained antibodies that are more reactive to HMGB-1 than to HMGB-2 by using specific peptides as an antigen. The present inventors also demonstrated that the antibodies had a HMGB-1-neutralizing activity. The present inventors administered the antibodies to amyloidosis model animals, and as a result, successfully demonstrated that the antibodies produced a significant therapeutic effect.
Abstract:
An objective of the present invention is to provide effective methods for treating interstitial pulmonary diseases including interstitial pneumonia such as IPF. The present invention suggests that antibodies against HMGB-1 are effective for treating pulmonary fibrosis. Thus, the present invention provides preparations which comprise an anti-HMGB-1 antibody for treating interstitial pulmonary diseases.
Abstract:
An objective of the present invention is to provide effective methods for suppressing rejection in organ transplantation, in particular, pancreatic islet transplantation which is useful in treating diabetes. The present invention demonstrated that antibodies against HMGB-1 suppressed the rejection in pancreatic islet transplantation and promoted the survival of grafted pancreatic islets. Thus, the present invention provides agents that comprise an anti-HMGB-1 antibody for suppressing rejection in organ transplantation.
Abstract:
An olefin polymer that is obtained using an olefin polymerization catalyst that includes a solid catalyst component for olefin polymerization that includes titanium, magnesium, a halogen, and an ester compound (A) represented by the following formula (1): R1R2C═C(COOR3)(COOR4), an organoaluminum compound, and an optional external electron donor compound, exhibits primary properties (e.g., molecular weight distribution and stereoregularity) similar to those of an olefin polymer obtained using a solid catalyst component that includes a phthalic ester as an electron donor.
Abstract:
A tape adhering apparatus and a tape adhering method for adhering an ACF tape formed from an anisotropic conductive film to a target adhering area on a substrate are disclosed. It is an objective of the invention to provide a tape adhering apparatus and a tape adhering method that enable shortening of a time consumed by operation for adhering one cut piece of an ACF tape. According to the present invention, the separator is peeled from the cut piece of the ACF tape by letting the tape conveyor means convey the tape member in synchronism with the transfer action of the transfer base and thereafter a cut portion of the ACF tape to be next adhered is placed at the cutting position of the tape cutting means by letting the tape conveyor means continually convey the tape member in the forward conveyance direction.
Abstract:
In the tape attaching method of cutting a tape member into conductive tape pieces and attaching the conductive tape pieces onto a plurality of attachment regions which are formed at a side edge part of a board, an attaching step in which the conductive tape pieces is attached onto the attachment region of a first press position, and a moving step, in which by driving a tape sending mechanism to perform the operation of sending the tape member while a press bonding head and a peeling unit are integrally moved relative to the board, the press bonding head is aligned with the attachment region of a second press position, and a separator is peeled from the tape member attached onto the first press position by the peeling unit during the relative movement, are repeated.
Abstract:
An olefin polymer that is obtained using an olefin polymerization catalyst that includes a solid catalyst component for olefin polymerization that includes titanium, magnesium, a halogen, and an ester compound (A) represented by the following formula (1): R1R2C═C(COOR3)(COOR4), an organoaluminum compound, and an optional external electron donor compound, exhibits primary properties (e.g., molecular weight distribution and stereoregularity) similar to those of an olefin polymer obtained using a solid catalyst component that includes a phthalic ester as an electron donor.
Abstract:
It is an objective of the invention to provide a tape adhering apparatus and a tape adhering method that enable shortening of a time consumed by operation for adhering one cut piece of an ACF tape. After a cut piece 4S of an ACF tape 4 is pressed against and adhered to a target adhering area Sa on a substrate 2 by a press tool 22, a transfer base 14 is transferred, and a tape member Tp is then forwardly conveyed in synchronism with transfer of the transfer base 14 in such a way that the press tool 22 comes to an elevated position above the target adhering area Sa on the substrate 2 where the cut piece 4S of the ACF tape 4 is to be adhered, thereby peeling a separator Sp off from the cut piece 4S of the ACF tape 4. A tape cutting unit 24 is disposed downstream of a region Rg of, immediately below the press tool 22, of the tape member Tp conveyed by the tape conveyor unit 23 with respect to a forward conveyance direction of the tape member Tp. A cut position of the ACF tape 4 can be positioned by continual forward transfer of the tape member Tp.