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TRANSPLANT IMMUNOSUPPRESSION WITH ANTISENSE TECHNOLOGY

TRANSPLANT IMMUNOSUPPRESSION WITH ANTISENSE TECHNOLOGY
利用反义技术进行移植免疫抑制
批准号:
2672641
负责人:
Stanislaw M Stepkowski
金额:
$20.15万
依托单位国家:
美国
项目类别:
财政年份:
1996
资助国家:
美国
项目状态:
已结题
起止时间:
1996-07-01 至 1999-06-30

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项目成果

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中文摘要
翻译
描述:(改编自申请人的摘要)虽然 同种异体肾移植一年达到80-90%,五年达到70%-80% 存活的大鼠,大多数同种异体移植物(50%-80%)在 移植后前三个月,由于急性排斥反应。 以环孢素(CsA)为基础的免疫抑制治疗窗口较窄, 从而导致毒性或过度免疫抑制。目前的研究 重点介绍了一种新型靶向无毒基因的应用 免疫抑制治疗有望诱导移植耐受。 设计用于抑制细胞基因表达的寡核苷酸 通过Watson-Crick配对杂交特定的信使RNA。反义词 硫代寡核苷酸(PS-OGO)被设计用于靶向 参与细胞间黏附的分子以及所需的分子 用于激活T和B细胞。先前的研究表明,使用 细胞间黏附分子-1、血管黏附分子-1 血管细胞黏附分子-1或c-raf反义PS-寡核苷酸延长心脏存活时间 以剂量依赖和序列特定的方式进行同种异体移植。现在时 实验将检测内皮细胞-白细胞黏附分子 (E-选择素)、白细胞功能相关抗原分子-1(LFA-1) 移植肾、心脏和小肠的存活情况。T细胞识别 通过由α和β组成的T细胞受体(TCR)的同种异体抗原 链;每个链由可变区(V)和恒定区组成。因此,Vbeta8 反义PS寡核苷酸可阻断大鼠同种异体器官移植排斥反应 同种异体抗原特有的方式。B7反义PS-寡核苷酸(二次激活 信号)或/和白介素2/干扰素(干扰素)-u反义 PS-寡核苷酸(封闭T辅助分子1)可诱导移植耐受。这个 将检测C-RAF、蛋白C(PKC)、RAS和Lck PS-寡聚糖以阻断T 细胞功能与心脏移植排斥反应。B细胞识别同种异体抗原 通过免疫球蛋白(Ig)的B细胞受体(BCR),即IgM(Mu)、IgG1 、IgG2a(Gamma2a)、IgG2b(Gamma2b)或IgG3(Gamma3)bcr;反义 靶向这些不同表位(Mu,Gamma1,Gamma2a,Gamma2b, Gamma3)可以选择性地阻断针对同种异体抗原的抗体产生。在……里面 此外,在γ-1和IL-4的联合作用下,反义PS-寡核苷酸可能会抑制 免疫球蛋白类转成IgG1、Gamma2a和T细胞生长因子-β(TGF-β) 针对免疫球蛋白的反义PS-寡核苷酸,以及针对 IgG2b。PS-寡核苷酸技术提供有效且无毒的基因靶向 免疫抑制,可能会彻底改变器官的治疗方案 移植。与单抗相比,PS-寡聚糖不能 诱导产生抗寡核苷酸特异性抗体。
英文摘要
DESCRIPTION: (Adapted from the applicant's abstract) Although survival of kidney allografts reached a remarkable 80-90% one year and 70-80% five year survival rats, the majority of allografts (50-80%) are affected, during first three months postgrafting, by an acute rejection episode. Cyclosporine (CsA)-based immunosuppression has narrow therapeutic window, thereby resulting in toxicity or over immunosuppression. Present study focuses on application of a new gene-targeted and non-toxic immunosuppressive treatments poised to induce transplantation tolerance. Cellular gene expression is inhibited by oligonucleotide designed to hybridize a specific messenger RNA by Watson-Crick pairing. The antisense phosphorothioated oligonuleotides (PS-oligo) are designed to target molecules involved in cell-to-cell adhesion as well as molecules required for activation of T and B cells. Previous study showed that treatment with intercellular adhesion molecule-1 (lCAM-1), vascular adhesion molecule-1 (VCAM-1), or c-raf antisense PS-oligo prolonged the survival of heart allografts in a dose-dependent and sequence specific fashion. Present experiments will examine endothelial-leukocyte adhesion molecule (E-selectin), leukocyte function-associated antigen molecule-1 (LFA-1) on the survival of kidney, heart and small bowel allografts. T cells recognize alloantigens through T cell receptor (TCR) composed of alpha and beta chains; each chain consists variable (V) and constant regions. Thus, Vbeta8 antisense PS-oligo may block the rejection of organ allografts in alloantigen-specific fashion. B7 antisense PS-oligos (second activation signal) or/and with interleukin (IL)-2/interferon (IFN)-mu antisense PS-oligos (blocking T helper 1) may induce transplantation tolerance. The c-raf, protein C (PKC), Ras, and Lck PS-oligos will be tested to block T cell functions and heart allograft rejection. B cells recognize alloantigen through immunoglobulin (Ig) B cell receptor (BCR), namely the IgM(mu), IgG1 gamma1), IgG2a(gamma2a), IgG2b (gamma2b), or IgG3 (gamma3) BCR; antisense PS-oligo targeting these different epitopes (mu, gamma1, gamma2a, gamma2b, gamma3) may selectively block antibody production to alloantigens. In addition, in combination of gamma1 and IL-4 antisense PS-oligos may inhibit Ig class switching to IgG1; gamma2a and T cell growth factor-beta (TGF-beta) antisense PS-oligos to IgGa; and gamma2b and IFN-y antisense PS-oligos to IgG2b. PS-oligo technology offer potent and nontoxic gene-targeted immunosuppression, which may revolutionize therapeutic protocols for organ transplantation. In contrast to monoclonal antibodies PS-oligos do not induce production of anti-oligo specific antibodies.
期刊论文(11)
专著(0)
科研奖励(0)
会议论文
Nucleotide sequences of three distinct complementary DNA clones encoding rat class II major histocompatibility complex RT1.D beta-chain proteins.
编码大鼠 II 类主要组织相容性复合体 RT1.D β 链蛋白的三个不同互补 DNA 克隆的核苷酸序列。
DOI: 10.1007/s002510050676
发表时间: 1999
期刊: Immunogenetics
影响因子: 3.2
作者: [Tian,L, Wang,M, Yu,J, Kahan,BD, Stepkowski,SM]
通讯作者: Stepkowski,SM
Development of antisense oligodeoxynucleotides for transplantation.
用于移植的反义寡脱氧核苷酸的开发。
DOI: --
发表时间: 2000
期刊: Current opinion in molecular therapeutics.
影响因子: --
作者: [Stepkowski,SM]
通讯作者: Stepkowski,SM
Selective inhibition of IL-2 gene expression by IL-2 antisense oligonucleotides blocks heart allograft rejection.
IL-2 反义寡核苷酸选择性抑制 IL-2 基因表达可阻止心脏同种异体移植排斥。
DOI: 10.1097/00007890-200109150-00029
发表时间: 2001
期刊: Transplantation
影响因子: 6.2
作者: [Qu,X, Kirken,RA, Tian,L, Wang,M, Bennett,CF, Stepkowski,SM]
通讯作者: Stepkowski,SM
Inhibition of C-raf expression by antisense oligonucleotides extends heart allograft survival in rats.
反义寡核苷酸抑制 C-raf 表达可延长大鼠同种异体心脏移植物的存活率。
DOI: 10.1097/00007890-200008270-00020
发表时间: 2000
期刊: Transplantation
影响因子: 6.2
作者: [Stepkowski,SM, Qu,X, Wang,ME, Tian,L, Chen,W, Wancewicz,EV, Johnston,JF, Bennett,CF, Monia,BP]
通讯作者: Monia,BP
共 8 条
    Machine Learning and Network Science for Predicting Kidney Transplant Survival
    • 批准号:
      10221053
    • 项目类别:
    • 资助金额:
      $27.78万
    • 财政年份:
      2019
    • 负责人:
      Stanislaw M Stepkowski
    • 依托单位:
    Risk stratification for sensitized patients in Kidney Paired Donation program
    Improvement in Paired Donation Program
    Improvement in Paired Donation Program
    海外基金