Bcl-2 selective inhibitors: development and application to cancer treatment
Bcl-2 selective inhibitors: development and application to cancer treatment
批准号:
7258840
负责人:
CHENGGUO XING
金额:
$20.35万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-08-01 至 2010-07-31
中文摘要
描述(由申请人提供):耐药性是对抗癌症的重要绊脚石。抑制抗凋亡Bcl-2蛋白的小分子具有克服这种耐药性的潜力。目前大多数小分子抑制剂非选择性地靶向多种抗凋亡Bcl-2蛋白。尚待确定的是:2)非选择性抑制多种抗凋亡Bcl-2蛋白是否可能对健康组织引入更多毒性; 3)非选择性地抑制多种抗凋亡Bcl-2蛋白在治疗某些癌症中是否可能不太有效,因为所有内源性抗凋亡Bcl-2蛋白在治疗某些癌症中是否有效是值得怀疑的。2蛋白在所有肿瘤中都具有保护作用。我们的长期目标是开发抗凋亡Bcl-2蛋白的化学探针,以帮助研究它们在各种肿瘤中的功能,并开发用于癌症治疗的小分子抑制剂。我们提出的这项研究的中心假设是,抗凋亡Bcl-2蛋白的成员选择性抑制剂将选择性地诱导/敏化过表达这种蛋白的癌症细胞凋亡。这一中心假设是根据以下观察结果提出的。首先,尽管一些肿瘤同时过表达多种抗凋亡Bcl-2蛋白,但许多肿瘤仅过表达单一抗凋亡Bcl- 2蛋白。一种抗凋亡Bcl-2蛋白的选择性过表达表明选择性抑制剂将有效克服耐药性。第二,Wang等人鉴定的Bcl-2抑制剂(YC 137)选择性地诱导过表达Bcl-2蛋白的肿瘤细胞系中的细胞凋亡,并且对正常细胞显示出较小的毒性。第三,我们实验室鉴定的Bcl-2选择性抑制剂可以有效地克服Bcl-2过表达诱导的耐药性(初步研究)。基于这些观察结果,该提案的重点是开发抗凋亡Bcl-2蛋白的选择性抑制剂及其对原发性肿瘤的评估,用于癌症治疗。具体目标是:1.鉴定一组具有严格选择性的Bcl-2、Bcl-XL和Bcl-w抑制剂(每种蛋白质两种)。我们将1)通过分子模拟和固相合成,基于有希望的模板合理设计和合成72个成员的文库; 2)通过固相测定鉴定选择性抑制剂; 3)确定它们的绝对结合选择性。2.检查结合选择性对肿瘤相对于健康组织的选择性毒性潜力的影响,以及使肿瘤对常规癌症治疗敏感的潜力。我们将1)评估我们目前的选择性和非选择性抑制剂对血液学原发性肿瘤和健康血细胞的细胞毒性; 2)评估我们目前的选择性抑制剂与临床治疗对血液学原发性肿瘤的潜在协同作用。
英文摘要
DESCRIPTION (provided by applicant): Drug resistance is a significant stumbling block in the fight against cancer. Small molecules that inhibit anti- apoptotic Bcl-2 proteins have the potential to overcome such drug resistance. Most of current small- molecule inhibitors non-selectively target multiple anti-apoptotic Bcl-2 proteins. It remains to be determined: 1) whether a selective inhibitor will be effective in overcoming drug resistance; 2) whether non-selectively inhibiting multiple anti-apoptotic Bcl-2 proteins may introduce more toxicity against healthy tissues; 3) whether non-selectively inhibiting multiple anti-apoptotic Bcl-2 proteins may be less effective in the treatment of certain cancers since it is questionable that all endogenous anti-apoptotic Bcl-2 proteins have protective functions in all tumors. Our long-term goal is to develop chemical probes for anti-apoptotic Bcl-2 proteins to help study their functions in various tumors and to develop small-molecule inhibitors for cancer treatment. Our central hypothesis for this proposed research is that member-selective inhibitors of anti-apoptotic Bcl-2 proteins will selectively induce / sensitize the cancers that overexpress such a protein to apoptosis. This central hypothesis is formulated based on the following observations. First, though some tumors simultaneously overexpress multiple anti-apoptotic Bcl-2 proteins, many tumors only overexpress a single anti-apoptotic Bcl- 2 protein. The selective overexpression of one anti-apoptotic Bcl-2 protein suggests that a selective inhibitor would be effective in overcoming the drug resistance. Second, a Bcl-2 inhibitor identified by Wang et al (YC 137) selectively induces apoptosis in a tumor cell line that overexpresses Bcl-2 protein and shows less toxicity to normal cells. Third, a Bcl-2 selective inhibitor identified in our laboratory can effectively overcome the drug resistance induced by Bcl-2 overexpression (Preliminary Studies). Based on these observations, the focus of this proposal is on the development of selective inhibitors for anti-apoptotic Bcl-2 proteins and their evaluation against primary tumors for cancer treatment. The specific aims are to: 1. Identify a set of inhibitors for Bcl-2, Bcl-XL, and Bcl-w with stringent selectivity (two for each protein). We will 1) rationally design and synthesize a 72-member library based on a promising template by using molecular modeling and solid-phase synthesis; 2) identify the selective inhibitors by a solid-phase assay; and 3) determine their absolute binding selectivity. 2. Examine the effect of binding selectivity on the potential for selective toxicity to tumors over healthy tissues and the potential of sensitizing tumors to conventional cancer treatment. We will 1) evaluate our current selective and non-selective inhibitors for their cytotoxicity against hematologic primary tumors and healthy blood cells; 2) evaluate our current selective inhibitors for their potential synergism with clinical therapies against the hematologic primary tumors.
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