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    • 4. 发明申请
    • SURFACE-ACTIVE COLLAGEN BARRIER MEMBRANE TO WHICH A PEPTIDE IS BOUND
    • 表面活性胶原蛋白膜对于肽是有害的
    • WO2012144778A2
    • 2012-10-26
    • PCT/KR2012002895
    • 2012-04-17
    • NANO INTELLIGENT BIOMED ENGCHUNG CHONG-PYOUNGPARK YOON-JEONGLEE JUE-YEONSHIM IN KYONGPARK HYUN JUNG
    • CHUNG CHONG-PYOUNGPARK YOON-JEONGLEE JUE-YEONSHIM IN KYONGPARK HYUN JUNG
    • C07K19/00A61K38/39A61L27/24C07K14/78
    • C07K14/51A61K38/00A61L27/227A61L27/54A61L2300/25A61L2300/412C07K14/4723C07K14/485C07K14/49C07K14/78C07K2319/00
    • The present invention relates to a barrier membrane to which a peptide, which binds to collagen and which is capable of regenerating bone tissue, is bound. More particularly, the present invention relates to a collagen barrier membrane in which a fusion peptide consisting of a collagen-bound peptide and a functional bone-tissue-regenerating peptide is fixed to the surface of collagen. According to the present invention, the surface-active collagen barrier membrane, in which a fusion peptide is coupled to the surface of collagen, can stably bind to the body due to increased local retention, and promote the transport, proliferation, and differentiation of cells, to thereby ultimately maximize bone-tissue-regenerating capacity when implanted in the body. Therefore, the barrier membrane of the present invention is useful in the development of guided bone-regeneration technology. In addition, a fusion peptide can be applied to implants made of collagen having other shapes, and a collagen-bound peptide, which constitutes the fusion peptide, can be bound to and synthesized with a peptide having effects in regenerating other tissue, and therefore can be useful in tissue-regenerating biomaterials for other purposes, e.g. for regenerating skin.
    • 本发明涉及一种与胶原结合且能够再生骨组织的肽结合的阻隔膜。 更具体地说,本发明涉及胶原屏障膜,其中由胶原结合肽和功能性骨组织再生肽组成的融合肽固定在胶原蛋白表面。 根据本发明,融合肽与胶原表面偶联的表面活性胶原屏障膜可以由于局部保留的增加而稳定地结合身体,促进细胞的转运,增殖和分化 ,从而最终使植入体内的骨组织再生能力最大化。 因此,本发明的阻隔膜可用于引导骨再生技术的开发。 此外,融合肽可以应用于具有其他形状的胶原的植入物,并且构成融合肽的胶原结合肽可以与具有再生其他组织的肽结合并合成,因此可以 用于组织再生生物材料用于其他目的,例如 用于再生皮肤。
    • 5. 发明申请
    • TARGET ACTIVATED CELL/TISSUE TRANSLOCATION PEPTIDE FOR IMPERMEABLE COMPOUND STRATEGY, AND USES THEREOF
    • 目标活化细胞/组织转移肽用于不可复制的化合物战略及其用途
    • WO2010095881A3
    • 2011-01-06
    • PCT/KR2010001033
    • 2010-02-19
    • UNIV SEOUL NAT R & DB FOUNDNANO INTELLIGENT BIOMED ENGPARK YOON-JEONGCHUNG CHONG-PYOUNGYANG VICTOR C
    • PARK YOON-JEONGCHUNG CHONG-PYOUNGYANG VICTOR C
    • C07K19/00A61K38/17C07K14/47
    • C07K14/47A61K38/00A61K47/645A61K47/65C07K2319/10
    • The present invention relates to a target activated cell/tissue translocation peptide for an impermeable compound strategy (TACTICS), and to uses thereof. More particularly, the present invention relates to a target activated cell/tissue translocation peptide for an impermeable compound strategy (TACTICS), which comprises (a) a protein transport domain (PTD), (B) a masking domain, and (C) a spacer having a target cell/tissue enzyme-specific cleavage, wherein the peptide is provided with selectivity to exhibit translocation performance specifically only in the target tissue. The present invention also relates to an image of the peptide, therapeutic drugs, or a complex of drug-containing grains. The target activated cell/tissue translocation peptide for an impermeable compound strategy-drug complex according to the present invention provides the peptide with target selectivity to obtain the highest quality images and excellent curative effects, and inhibits the unspecific distribution of the complex in the body to minimize side effects and maximize diagnosis effects. Thus, the peptide of the present invention can be valuably used in treating diseases.
    • 本发明涉及用于不可渗透化合物策略(TACTICS)的靶活化细胞/组织易位肽及其应用。 更具体地,本发明涉及用于不可渗透化合物策略(TACTICS)的靶活化细胞/组织易位肽,其包含(a)蛋白质转运结构域(PTD),(B)掩蔽结构域,和(C) 具有靶细胞/组织酶特异性切割的间隔物,其中所述肽具有仅在靶组织中显示易位性能的选择性。 本发明还涉及肽,治疗药物或含药颗粒的复合物的图像。 根据本发明的用于不可渗透化合物策略 - 药物复合物的靶活化细胞/组织易位肽提供具有靶选择性的肽以获得最高质量的图像和优异的疗效,并且抑制复合体在体内的非特异性分布 尽量减少副作用并最大化诊断效果。 因此,本发明的肽可以有价值地用于治疗疾病。
    • 6. 发明申请
    • SURFACE-ACTIVE COLLAGEN BARRIER MEMBRANE TO WHICH A PEPTIDE IS BOUND
    • 表面活性胶原蛋白膜对于肽是有害的
    • WO2012144778A3
    • 2013-01-17
    • PCT/KR2012002895
    • 2012-04-17
    • NANO INTELLIGENT BIOMED ENGCHUNG CHONG-PYOUNGPARK YOON-JEONGLEE JUE-YEONSHIM IN KYONGPARK HYUN JUNG
    • CHUNG CHONG-PYOUNGPARK YOON-JEONGLEE JUE-YEONSHIM IN KYONGPARK HYUN JUNG
    • C07K19/00A61K38/39A61L27/24C07K14/78
    • C07K14/51A61K38/00A61L27/227A61L27/54A61L2300/25A61L2300/412C07K14/4723C07K14/485C07K14/49C07K14/78C07K2319/00
    • The present invention relates to a barrier membrane to which a peptide, which binds to collagen and which is capable of regenerating bone tissue, is bound. More particularly, the present invention relates to a collagen barrier membrane in which a fusion peptide consisting of a collagen-bound peptide and a functional bone-tissue-regenerating peptide is fixed to the surface of collagen. According to the present invention, the surface-active collagen barrier membrane, in which a fusion peptide is coupled to the surface of collagen, can stably bind to the body due to increased local retention, and promote the transport, proliferation, and differentiation of cells, to thereby ultimately maximize bone-tissue-regenerating capacity when implanted in the body. Therefore, the barrier membrane of the present invention is useful in the development of guided bone-regeneration technology. In addition, a fusion peptide can be applied to implants made of collagen having other shapes, and a collagen-bound peptide, which constitutes the fusion peptide, can be bound to and synthesized with a peptide having effects in regenerating other tissue, and therefore can be useful in tissue-regenerating biomaterials for other purposes, e.g. for regenerating skin.
    • 本发明涉及一种与胶原结合且能够再生骨组织的肽结合的阻隔膜。 更具体地说,本发明涉及胶原屏障膜,其中由胶原结合肽和功能性骨组织再生肽组成的融合肽固定在胶原蛋白表面。 根据本发明,融合肽与胶原表面偶联的表面活性胶原屏障膜可以由于局部保留的增加而稳定地结合身体,促进细胞的转运,增殖和分化 ,从而最终使植入体内的骨组织再生能力最大化。 因此,本发明的阻隔膜可用于引导骨再生技术的开发。 此外,融合肽可以应用于具有其他形状的胶原的植入物,并且构成融合肽的胶原结合肽可以与具有再生其他组织的作用的肽结合并合成,因此可以 用于组织再生生物材料用于其他目的,例如 用于再生皮肤。
    • 10. 发明公开
    • HUMAN-DERIVED CELL-PERMEABLE PEPTIDE BIOACTIVE PEPTIDE CONJUGATE, AND USE THEREOF
    • AUS MENSCHLICHEN ZELLEN GEWONNENES ZELLPERMEABLES PEPTID,BIOAKTIVES PEPTIDKONJUGAT UND VERWENDUNG DAVON
    • EP2615105A4
    • 2013-11-13
    • EP11823705
    • 2011-04-25
    • UNIV SEOUL NAT R & DB FOUNDNANO INTELLIGENT BIOMED ENG
    • CHUNG CHONG-PYOUNGPARK YOON-JEONGLEE JUE-YEONSUH JIN SOOK
    • C07K7/06A61K38/08A61P19/00C07K7/08
    • C07K14/435A61K38/00C07K7/06C07K7/08C07K14/51
    • The present invention relates to a novel human-derived cell permeable peptide-bioactive peptide conjugate and the use thereof, and more particularly, to human-derived cell permeable peptide-bioactive peptide conjugate capable of directly permeate into a target cell to function as a peptide therapeutics by chemically binding cell permeable peptide to a bioactivity inducing sequences selected from a group consisting of a bone differentiation inducing sequence, a bone regeneration inducting sequence, and an anti-inflammation functional sequence to thereby directly introduce an important domain of an impermeable intracellular protein having a bioactivity into cells, and to a pharmaceutical composition for treatment containing the same. According to the present invention, cationic cell permeable peptides derived from human bone morphogenetic protein-4 have no toxicity and immuno-genicity and thus exhibit high stability as compared to viral peptide delivery vehicles, and can transport cell impermeable material into cells and into an organism without any damage to cell or material, thereby significantly increasing target gene expression. In addition, the peptide may be applied to clinical use without having to undergo a large number of processes and mass-produced, such that the present invention may be useful in the development pf a drug delivery system and treatment technologies using said peptide.
    • 本发明涉及新的源于人的细胞可渗透性肽 - 生物活性肽缀合物及其用途,并且更具体地涉及能够直接渗透到靶细胞中以起到肽的作用的源自人的可透过细胞的肽 - 生物活性肽缀合物 通过化学结合细胞可渗透肽至选自骨分化诱导序列,骨再生诱导序列和抗炎功能序列的生物活性诱导序列,从而直接引入不可渗透细胞内蛋白质的重要​​结构域 生物活性进入细胞,并且涉及包含其的治疗用药物组合物。 根据本发明,源自人骨形态发生蛋白-4的阳离子细胞可渗透肽没有毒性和免疫原性,因此与病毒肽递送载体相比表现出高稳定性,并且可以将细胞不可渗透的物质转运入细胞并进入生物体 而不会对细胞或物质造成任何损害,从而显着增加靶基因表达。 另外,所述肽可以应用于临床使用而不需要经历大量工艺并且大量生产,使得本发明可以用于药物递送系统的开发以及使用所述肽的治疗技术。