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CHEMOPROT OF HEMATOPOIETIC CELLS BY MDR GENE TRANSFER

CHEMOPROT OF HEMATOPOIETIC CELLS BY MDR GENE TRANSFER
通过 MDR 基因转移对造血细胞进行化学保护
批准号:
2767475
负责人:
Arthur Bank
金额:
$29.76万
依托单位国家:
美国
项目类别:
财政年份:
1995
资助国家:
美国
项目状态:
已结题
起止时间:
1995-02-06 至 2001-11-30

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中文摘要
翻译
治愈晚期癌症的一种方法是使用更多 强化化疗。 避免严重或危及生命的骨髓 这种治疗伴随的毒性,相关的干细胞支持 目前正在评估高剂量化疗方案 许多肿瘤。 然而,即使在这种情况下,患者的心 细胞和骨髓再生正常造血的能力是 通常最终会受到严重限制。 该提案的目标是 建立化疗耐药的骨髓细胞群 可能会导致使用更高剂量的化疗而更少 毒性。 正常骨髓细胞表达低水平的人类 多重耐药(MDR)基因,因此容易受到 需要 MDR 基因作用的药物类别导致死亡 跨膜蛋白、p-糖蛋白,用于从细胞中输出; 这些药物包括蒽环类药物、长春花生物碱、鬼臼素 和紫杉烷类药物,均常用于治疗癌症。 我们已经展示过 我们有一个安全的逆转录病毒载体,可以转移和表达 CD34细胞中的人类MDR基因,并提供紫杉醇抗性 这些细胞。 然而,在 1 期临床试验中,我们只看到 患者中低水平的MDR转导。 我们现在建议寻找更多 转导人类造血干细胞(HSC)的有效方法 人类MDR基因在体内建立耐药骨髓。 这些研究可能会导致允许更高剂量的条件 化疗适用于病情较轻的晚期癌症患者 血液学毒性、更长的缓解期或潜在治愈这些 患者。
英文摘要
One approach to the cure of advanced cancer is by the use of more intensive chemotherapy. To avoid severe or life-threatening bone marrow toxicity accompanying this treatment, stem cell support in association with high-dose chemotherapy regimens is currently being evaluated for many tumors. However, even in this circumstance, the patient's stem cells and marrow capacity for regenerating normal hematopoiesis are often eventually severely limited. The goal of this proposal is to establish a chemotherapy-resistant population of bone marrow cells which can result in the use of higher doses of chemotherapy with less toxicity. Normal bone marrow cells express low levels of the human multiple drug resistance (MDR) gene, and thus, are susceptible to killing by classes of drugs that require the action of the MDR gene transmembrane protein, p-glycoprotein, for their export from cells; these drugs include the anthracyclines, vinca alkaloids, podophyllins and taxanes, all commonly used to treat cancer. We have already shown that we have a safe retroviral vector that can transfer and express the human MDR gene in CD34+ cells, and provide paclitaxel resistance to these cells. However, in a Phase 1 clinical trial, we have seen only low level MDR transduction in patients. We now propose to find more effective methods to transduce human hematopoietic stem cells (HSC) with the human MDR gene to establish a drug-resistant bone marrow in vivo. These studies could lead to conditions for permitting higher doses of chemotherapy to be administered to advanced cancer patients with less hematologic toxicity, longer remissions or potential cure of these patients.
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