Abstract:
PURPOSE: A kit for diagnosing HBe antigen negative chronic hepatitis type B and liver diseases is provided to effectively diagnose liver diseases. CONSTITUTION: A kit for diagnosing HBe antigen negative chronic hepatitis type B contains a primer having bases of seqeunce numbers 1-4. The kit comprises: a DNA probe having base sequences of sequence numbers 17-24 binding to a gene encoding F38S core antigen protein; a linker which contains oligo(dT)15, -(CH2)6-, and amine group in order; and a solid substrate in which an aldehyde group is attached on the surface and which has aldehyde group on the surface linked to an amine group by Schiff's base reaction.
Abstract:
The present invention relates to a cis-regulatory element for an eukaryotic cell. The cis-regulatory element is selected from the group consisting of polynucleotides of sequence numbers 1-14. The present invention provides an animal cell expression vector including the cis-regulatory element and a promoter that is operable in an eukaryotic cell. The vector of the present invention effectively expresses recombinant proteins in an animal cell. The vector of and a method for producing a recombinant protein using same of the present invention can be very effectively used for the industrial mass production of medicine and medical supplies.
Abstract:
HBV의 W4P preS1 변이 단백질을 코딩하는 뉴클레오티드 서열을 포함하는 HBV 유전체, 상기 HBV 유전체를 포함하는 발현시스템, 상기 HBV 유전체로부터 생성된 HBV 변이주 및 이를 이용한 HBV 감염 치료용 후보 물질의 스크리닝 방법이 제시되어 있다. 본 발명의 HBV 유전체는 외피 항원의 합성을 유도하고 유전체 복제 및 비리온 생성능이 높아, B형 간염 바이러스를 타겟으로 하는 HBV 감염 치료용 후보 물질을 스크리닝하는데 유용하며, 기타 HBV 비리온 형성 및 복제와 관련된 간질환의 악화 유도 기전 발굴의 도구로 유용하게 사용될 수 있다.
Abstract:
PURPOSE: Micro-patterning of graphene using inkjet printing and applying the micro-patterns to a flexible thin film electrode are provided to freely form patterns have no limit to a form. CONSTITUTION: A method for forming a flexible graphene thin film electrode is as follows. A water-dispersible graphene oxide nanoparticle solution utilized as conductive ink for an inkjet printing is manufactured after dissolving oxidation graphite in the water by using an ultrasonic generator. Chemical properties of the surface of a polymer film are modulated by plasma-processing so that the water-dispersible graphene oxide nanoparticle solution forms precise patterns on the flexible polymer film. After manufacturing ink by adding an auxiliary solvent into the water-dispersible graphene oxide nanoparticle solution, the manufactured ink is injected into a printer head and discharged by an inkjet printer on the plasma-processed polymer film so that a graphene thin film is formed. The polymer film in which the graphene thin film is formed is arranged inside a vapor deposition reactor. A reduction reaction is processed on the surface of the polymer film by vaporizing a reducing agent for proper time under a proper temperature so that graphene sheet patterns are formed. The graphene sheet variously patterned on the polymer film is utilized as an electrode so that properties of the electrode such surface resistance and flexibility are analyzed. [Reference numerals] (AA) Water-dispersible graphene oxide nanoparticle solution; (BB) Nozzle; (CC) Plastic substrate; (DD) Front unit; (EE) Rear unit; (FF) Progressive direction; (GG) 27V DC
Abstract:
PURPOSE: A transformed animal which reveals a preS1 W4P variation protein of a hepatitis B virus and a use thereof are provided to valuably use for investigation of pathogenesis of a liver disorder which is sex-specific as a liver-disordered animal model and to valuably use a liver disease medicine for screening. CONSTITUTION: A non-human transformed animal which has been through transformation with an HBV dielectric contains a W4P preS1 gene to reveal a W4P preS1 variation protein of hepatitis B virus (HBV). A dielectric HBV dielectric is an A type or a C type. The HBV dielectric has a base sequence from 1433 to 4674 among the base sequence of a sequence number 1. The HBV dielectric has a base sequence from 1448 to 4694 among the base sequence of a sequence number 2. The transformed non-human animal is a liver disease model which reveals over-expression of an HBs antigen and an HBe antigen protein.
Abstract:
본 발명은 B형 간염에서 유래된 간질환 환자에 특이적인 HBV로부터 유래된 변이된 코어 항원 유전자 또는 단백질을 검출하여, HBe 항원 음성 만성 B형 간염 및 이로부터 유래된 간질환을 진단할 수 있는 진단용 키트에 관한 것이다. 본 발명의 HBe 항원 음성 만성 B형 간염 진단용 키트를 사용할 경우, HBe 항원 음성 만성 B형 간염에 특이적인 변이된 HBV 코어 항원 유전자 또는 단백질을 용이하게 검출할 수 있으므로, 변이된 코어 항원 유전자 또는 단백질을 포함하는 HBV에 의하여 발병되는 HBe 항원 음성 만성 B형 간염 및 이로부터 유래된 간질환을 조기에 효과적으로 진단할 수 있을 것이다.
Abstract:
PURPOSE: A kit for diagnosing HBe antigen-negative chronic hepatitis type B and liver diseases is provided to easily detect HBV-specific mutated HBV S antigen gene or protein. CONSTITUTION: A kit for detecting HBe antigen-negative chronic hepatitis type B contains a primer of sequence numbers 1-4. The kit contains: a DNA probe having base sequences of sequence numbers 11-18, which specifically binds to a gene encoding 100th amino acid of L110I S antigen protein; a linker which contains oligo(dT)15, -(CH2)6-, and amine group in order and is connected to thymine region at 5' terminal of the DNA probe; and a solid substrate having aldehyde which is attached on the surface, in which an amine group of an electric linker is connected to the aldehyde group by Schiff's base reaction.