首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Natural Product Synthesis Special Feature: Prospects for total synthesis: A vision for a totally synthetic vaccine targeting epithelial tumors
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Natural Product Synthesis Special Feature: Prospects for total synthesis: A vision for a totally synthetic vaccine targeting epithelial tumors

机译:天然产物合成特殊功能:全面合成的前景:针对上皮肿瘤的完全合成疫苗的愿景

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摘要

Vaccines derived from totally synthetic carbohydrate antigens have been shown to elicit an immune response in both preclinical and clinical settings. The vaccines have been proven safe when administered in human clinical trials and are also competent at inducing antibodies that react with aberrant cells expressing the corresponding carbohydrate antigen. The most well studied vaccines have hitherto focused on single carbohydrate antigens, notwithstanding the known heterogeneity of transformed cells. Advances in synthetic organic chemistry have enabled the preparation and subsequent investigation of vaccines that contain several different tumor-associated carbohydrate antigens in a single molecule. These unimolecular constructs could, in principle, serve as superior mimics of cell surface antigens and hence, as multifaceted cancer vaccines. We report here the synthesis of a pentameric vaccine targeting a specific cancer. The new vaccine contains prostate tumor-associated antigens, Tn, TF, STn, Lewisy, and Globo-H. To reach our goal, antigen-containing amino acid monomers were assembled in a linear fashion to form a glycopeptide containing the five distinct carbohydrate antigen units. The attachment of a linker to the glycopeptide followed by an extraordinary global deprotection and subsequent conjugation to two different immunogenic carriers, keyhole limpet hemocyanin and N-α-palmitoyl-S-[2,3-bis(palmitoyloxy)-(2RS)-propyl]-l-cysteine, resulted in the vaccine constructs. The results described herein indicate that complex unimolecular multivalent vaccines can be efficiently produced in the laboratory. These fully synthetic vaccines have the potential to stimulate a multifaceted immune response against prostate cancer.
机译:已经显示,源自完全合成的碳水化合物抗原的疫苗在临床前和临床环境中均可引发免疫反应。该疫苗在人类临床试验中被证明是安全的,并且还具有诱导与表达相应碳水化合物抗原的异常细胞反应的抗体的能力。尽管已知转化细胞具有异质性,但迄今为止,研究最深入的疫苗主要针对单一碳水化合物抗原。合成有机化学的进展使得能够制备和随后研究在单个分子中包含几种不同的肿瘤相关碳水化合物抗原的疫苗。这些单分子构建体原则上可以用作细胞表面抗原的高级模拟物,因此可以用作多方面的癌症疫苗。我们在这里报告针对特定癌症的五聚体疫苗的合成。新疫苗含有前列腺肿瘤相关抗原,Tn,TF,STn,Lewis y 和Globo-H。为了达到我们的目标,将含抗原的氨基酸单体以线性方式组装以形成包含五个不同碳水化合物抗原单元的糖肽。接头连接到糖肽上,然后发生异常的整体脱保护,随后与两种不同的免疫原性载体(钥孔血蓝蛋白和N-α-棕榈酰基-S- [2,3-双(棕榈酰氧基)-(2RS)-丙基)结合] -1-半胱氨酸产生疫苗构建体。本文所述的结果表明,复杂的单分子多价疫苗可以在实验室中有效地生产。这些完全合成的疫苗具有刺激针对前列腺癌的多方面免疫反应的潜力。

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