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首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Targeted Proapoptotic Peptides Depleting Adipose Stromal Cells Inhibit Tumor Growth
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Targeted Proapoptotic Peptides Depleting Adipose Stromal Cells Inhibit Tumor Growth

机译:消耗脂肪基质细胞的靶向凋亡肽抑制肿瘤生长

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Progression of many cancers is associated with tumor infiltration by mesenchymal stromal cells (MSC). Adipose stromal cells (ASC) are MSC that serve as adipocyte progenitors and endothelium-supporting cells in white adipose tissue (WAT). Clinical and animal model studies indicate that ASC mobilized from WAT are recruited by tumors. Direct evidence for ASC function in tumor microenvironment has been lacking due to unavailability of approaches to specifically inactivate these cells. Here, we investigate the effects of a proteolysis-resistant targeted hunter-killer peptide D-WAT composed of a cyclic domain CSWKYWFGEC homing to ASC and of a proapoptotic domain KLAKLAK(2). Using mouse bone marrow transplantation models, we show that D-WAT treatment specifically depletes tumor stromal and perivascular cells without directly killing malignant cells or tumor-infiltrating leukocytes. In several mouse carcinoma models, targeted ASC cytoablation reduced tumor vascularity and cell proliferation resulting in hemorrhaging, necrosis, and suppressed tumor growth. We also validated a D-WAT derivative with a proapoptotic domain KFAKFAK(2) that was found to have an improved cytoablative activity. Our results for the first time demonstrate that ASC, recruited as a component of tumor microenvironment, support cancer progression. We propose that drugs targeting ASC can be developed as a combination therapy complementing conventional cancer treatments.
机译:许多癌症的进展与间充质基质细胞(MSC)浸润肿瘤有关。脂肪基质细胞(ASC)是用作白色脂肪组织(WAT)中脂肪细胞的祖细胞和内皮支持细胞的MSC。临床和动物模型研究表明,从WAT动员的ASC被肿瘤吸收。由于缺乏使这些细胞特异性失活的方法,因此缺乏在肿瘤微环境中ASC功能的直接证据。在这里,我们研究了由归巢到ASC的环状结构域CSWKYWFGEC和一个具有凋亡作用的域KLAKLAK(2)组成的抗蛋白水解的靶向猎人杀手肽D-WAT的作用。使用小鼠骨髓移植模型,我们显示D-WAT治疗可特异性消耗肿瘤基质和血管周细胞,而不会直接杀死恶性细胞或肿瘤浸润性白细胞。在几种小鼠癌模型中,靶向ASC消融可减少肿瘤血管和细胞增殖,从而导致出血,坏死和抑制肿瘤生长。我们还验证了具有前凋亡域KFAKFAK(2)的D-WAT衍生物,该衍生物具有改善的细胞消除活性。我们的结果首次证明,作为肿瘤微环境组成部分的ASC支持癌症进展。我们建议可以将靶向ASC的药物开发为一种补充疗法,以补充常规的癌症治疗方法。

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