课题基金 / 基金详情

CUTANEOUS ONCOLOGY

CUTANEOUS ONCOLOGY
皮肤肿瘤学
批准号:
6522620
负责人:
MADELEINE DUVIC
金额:
$10.48万
依托单位国家:
美国
项目类别:
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-08-14 至 2005-07-31

项目摘要

项目成果

MADELEINE DUVIC的其他基金

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中文摘要
翻译
这是Madeleine Duvic的职业中期发展奖申请,她是MD Anderson癌症中心的医学教授和皮肤科主任。它将支持皮肤肿瘤学的一个新项目,并使她能够指导该领域的新助理教授、研究员、住院医生和医学生。申请人在开展以患者为导向的临床研究方面有着杰出的记录,并且在开发治疗皮肤T细胞淋巴瘤(CTCL)的新疗法方面处于领先地位。我们坚定不移地致力于在职业发展的各个层面开展以患者为导向的研究和指导。该奖项将免除申请人目前一半的临床职责,使她能够将60%以上的时间用于面向患者的类维生素a转化研究和指导活动。临床研究课程,肿瘤研究员系列研讨会和机构会议将促进申请人和学生的进一步职业发展。提出了两个利用类维生素a治疗癌症的转化研究项目。[1]一种新的II类肿瘤抑制因子,他zarotene诱导基因3 (TIG-3)的缺失将在非黑色素瘤皮肤癌的发生和进展中进行研究。与配对的正常皮肤相比,侵袭性皮肤癌和非侵袭性皮肤癌以及基底癌和鳞状癌中TIG-3显著减少的发现将在更大的样本集中进行检验,并通过测序cdna和杂合性丧失研究。侵袭性肿瘤患者口服阿曲坦辅助治疗可能与TIG-3上调有关。[2]目的格列汀分子标记物的开发,目的格列汀是一种实验性RXR选择性维甲酸,目的格列汀将在局部和口服治疗CTCL中进行评估。目的蛋白可能通过改变细胞因子和促进淋巴细胞浸润的凋亡来恢复表皮中RAR和RXR受体的表达。使用免疫组织化学和原位杂交技术研究患者治疗前后的皮肤病变,检测类视黄醛受体、细胞因子和fas/fas配体。大细胞进展和类视黄醇治疗后基因表达的遗传基础将通过基因组展示来探索,并将加强分子生物学的培训。了解皮肤癌和CTCL的生物学以及新型治疗药物的作用机制,将有助于开发出更好、毒性更小的癌症治疗方法。接受皮肤癌检测、预防和治疗高级培训的年轻医生和学生将是一种资源,并可能改善未来患者的预后。
英文摘要
This is a mid-career development award application for Madeleine Duvic, Professor of Medicine and Chief of Dermatology at the MD Anderson Cancer Center. It would support a new program in Cutaneous Oncology and enable her to mentor new Assistant Professors, fellows, residents, and medical students in the field. The applicant has an outstanding track record in conducting patient oriented clinical research and is a leader in developing new therapies for the treatment of Cutaneous T Cell Lymphomas (CTCL). There is an unwavering commitment to the conduct of patient oriented research and mentoring at all levels of career development. The award would free the applicant from half of her current clinical duties, allowing her to spend greater than 60 percent of her time on patient oriented translational retinoid research and mentoring activities. A Clinical Research curriculum, an oncology fellows seminar series, and institutional conferences will enhance further career development of the applicant and students. Two translational research projects are proposed using retinoids for cancer. 1] The loss of a novel class II tumor suppressor, Tazarotene Induced Gene 3 (TIG-3), will be investigated in the development and progression of non-melanoma skin cancers. The finding that TIG-3 is significantly decreased in aggressive versus non-aggressive skin cancer and in basal and squamous carcinomas, compared to paired normal skin will be examined in a larger set of samples and by sequencing cDNAs and by loss of heterozygosity studies. Oral Accutane adjuvant therapy for patients with aggressive tumors may be related to upregulation of TIG-3. 2] Development of molecular markers for Targretin, an experimental RXR selective retinoid, Targretin, will be assessed in the topical and oral treatment of CTCL. Targretin may restore expression of RAR and RXR receptors in epidermis, by altering cytokines and fostering apoptosis of the lymphocytic infiltrates. Patient's skin lesions before and after therapy will be studied using immunohistochemistry and in situ hybridization for retinoid receptors, cytokines, and fas/fas ligand. Genetic basis of large cell progression and gene expression following retinoid therapy will be explored using genomic display and will enhance the training in molecular biology. Understanding the biology of skin cancer and CTCL and the mechanism of novel therapeutic agents should result in the development of better and less toxic therapies for cancer. Young physicians and students who receive advanced training in the proper detection, prevention, and treatment of skin cancers will be a resource and may improve outcomes for patients of the future.
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