역상 고상 합성: 펩타이드 합성을 위한 혁신적인 도구

역상 고상 합성: 펩타이드 합성을 위한 혁신적인 도구

Peptide synthesis is a key technology for obtaining peptides with specific sequences and functions, which is widely used in the fields of biomedicine and material science. The traditional liquid-phase synthesis method is cumbersome and low yielding, which is difficult to meet the increasing demand, and was revolutionized by Bruce Merrifield’s Solid Phase Peptide Synthesis (SPSS) ~에 1963, for which he was awarded the Nobel Prize in Chemistry in 1984. 하지만, the traditional solid phase synthesis technique requires repetitive steps of deprotection, coupling and washing to gradually extend the peptide chain, and finally cutting the target molecule from the carrier, which is not in line with the concept of green chemistry. Reverse Phase Solid Phase Peptide Synthesis (RP-SPPS) employs hydrophobic carriers (예를 들어, polystyrene resin) and polar solvents (예를 들어, DMF), which is the opposite of normal phase solid phase synthesis. In recent years, RP-SPPS has been more and more widely used in the field of peptide synthesis due to its unique advantages.

Advantages

Compared with the traditional forward solid-phase synthesis, 역고상 합성 (RP-SPPS) has its unique advantages.
Completely mimic the peptide synthesis in the organism: It is highly consistent with the direction of peptide synthesis in the organism, which provides an in vitro experimental basis for the study of peptide and protein synthesis in the organism.
Easier purification: The hydrophobic carrier is easy to be washed with organic solvents, effectively removes excessive reagents and by-products, and simplifies the purification steps.
Unique carboxy-terminal modification: RP-SPPS enables carboxy-terminal modification to be synthesized directly on the solid-phase resin, eliminating the need for pre-modification or modification after peptide chain synthesis.
More in line with green chemistry: Reversed-phase solid-phase synthesis is resistant to reactions under aqueous conditions and requires only a small amount of organic solvent to efficiently complete the coupling.
Suitable for unprotected strategies: RP-SPPS is suitable for most unprotected synthetic peptide strategies on the market, making peptide synthesis easier.

Peptide chain extension in N-C direction

Application Prospects

With the development of new carriers, coupling reagents and automated synthesizers, RP-SPPS will play a greater role in the field of peptide synthesis, providing more efficient and convenient peptide synthesis solutions for the fields of biomedicine and material science.

관리자 아바타

허 미아오

전달 시스템 연구 과학자 핵심 전문 지식: 경구 펩타이드 전달, 지질 나노입자 (LNP) 캡슐화, 세포 투과성 펩타이드 (CPP), 및 서방형 제제.

윤곽: 펩타이드 약물 개발의 가장 큰 문제점은 짧은 반감기와 경구 투여의 어려움이다., Miao He는 이러한 문제를 해결하는 데 있어 최고의 전문가입니다.. 그녀는 펩타이드 전달 시스템 분야에서 광범위한 경험을 보유하고 있습니다.. 그녀는 현재 펩타이드의 생체 이용률을 크게 향상시키기 위한 새로운 투과 강화제 및 나노구 개발에 주력하고 있습니다..

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