Mmepe na itinye mgbanaka emechi oxidative nke nwere ọtụtụ otu sulfhydryl

Mmepe na itinye mgbanaka emechi oxidative nke nwere ọtụtụ otu sulfhydryl

Research background and challenges

Selective ring closure of multiple sulfhydryl compounds is a key step in the synthesis of sulfur-containing heterocyclic compounds, but the traditional method has the following problems:

  • Multiple sulfhydryl reaction activities are similar, making it difficult to achieve selective control. Many side reactions, complex products, and difficult to isolate and purify. The reaction conditions are harsh and the scope of application is limited. We have successfully developed a new selective oxidative ring-closing technology, which completely solves the above problems and achieves efficient and precise ring-closing reaction.

Technical breakthroughs

  • Innovative oxidation system: The first alkyne amide-based oxidation system is proposed, which significantly improves the selectivity.
  • Unique reaction design: through a variety of different positions of the sulfhydryl substrate, the precise ring closure of multiple sulfhydryl substrates is achieved.

Technical Advantages

  • High selectivity: precise identification of target sites among multiple sulfhydryl substrates to achieve single product generation.
  • High efficiency: the reaction conditions are mild, and the reaction yield is significantly improved.
  • Universality: applicable to the synthesis of various sulfur-containing heterocyclic compounds.

Application Fields

  • Drug synthesis: construction of sulfur-containing heterocyclic drug molecules (eg., thiophene, benzothiophene, dithiopyrrolidine, wdg.).
  • Functional materials: preparation of sulfur-containing polymer materials (eg. self-repairing materials, conductive polymers, wdg.).
  • Chemical biology: study the formation and function of protein disulfide bonds.

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Xiaoxia Chen

Ọgwụ ọhụrụ R&D nka nka Ọkachamara isi: Nchọpụta ebumnuche, nhazi-mmekọrịta ọrụ (SAR) nyocha, peptide-ọgwụ conjugates (Ndị PDC), na mmepe nke mgbochi ịka nká na metabolic peptides.

Profaịlụ: Xiaoxia Chen eduzila nchọpụta mmalite na nyocha nke ọma maka ọtụtụ ọgwụ peptide nke metabolic na etuto ezubere iche.. Ọ bụghị naanị na ọ maara nke ọma na nyocha ụlọ akwụkwọ peptide dị elu kamakwa ọ makwara nke ọma n'iji usoro mgbakọ na mwepụ na-enyere AI aka maka imewe usoro peptide de novo.. Ugbu a, ọ na-eduga otu ndị raara onwe ha nye nyocha miri emi na mmepe nke agonists multifunctional ọgbọ na-abịa (dị ka dual- ma ọ bụ peptides na-ebelata abụba ebumnobi okpukpu atọ) na anụ ahụ na-arụsi ọrụ ike nke ukwuu-ndozi peptides.

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