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用于肽治疗的缀合物:系统评价和荟萃分析。

Conjugates for use in peptide therapeutics: A systematic review and meta-analysis.

机构信息

Department of Biochemistry, Memorial University of Newfoundland, St. John's, Newfoundland and Labrador, Canada.

Department of Physics and Physical Oceanography, Memorial University of Newfoundland, St. John's, Newfoundland and Labrador, Canada.

出版信息

PLoS One. 2022 Mar 8;17(3):e0255753. doi: 10.1371/journal.pone.0255753. eCollection 2022.

Abstract

While peptides can be excellent therapeutics for several conditions, their limited in vivo half-lives have been a major bottleneck in the development of therapeutic peptides. Conjugating the peptide to an inert chemical moiety is a strategy that has repeatedly proven to be successful in extending the half-life of some therapeutics. This systematic review and meta-analysis was conducted to examine the available literature and assess it in an unbiased manner to determine which conjugates, both biological and synthetic, provide the greatest increase in therapeutic peptide half-life. Systematic searches run on PubMed, Scopus and SciFinder databases resulted in 845 studies pertaining to the topic, 16 of these were included in this review after assessment against pre-specified inclusion criteria registered on PROSPERO (#CRD42020222579). The most common reasons for exclusion were non-IV administration and large peptide size. Of the 16 studies that were included, a diverse suite of conjugates that increased half-life from 0.1 h to 33.57 h was identified. Amongst these peptides, the largest increase in half-life was seen when conjugated with glycosaminoglycans. A meta-analysis of studies that contained fatty acid conjugates indicated that acylation contributed to a statistically significant extension of half-life. Additionally, another meta-analysis followed by a sensitivity analysis suggested that conjugation with specifically engineered recombinant peptides might contribute to a more efficient extension of peptide half-life as compared to PEGylation. Moreover, we confirmed that while polyethylene glycol is a good synthetic conjugate, its chain length likely has an impact on its effectiveness in extending half-life. Furthermore, we found that most animal studies do not include as much detail when reporting findings as compared to human studies. Inclusion of additional experimental detail on aspects such as independent assessment and randomization may be an easily accomplished strategy to drive more conjugated peptides towards clinical studies.

摘要

虽然肽类可以成为许多疾病的优秀治疗药物,但它们在体内的半衰期有限,这一直是治疗性肽类药物发展的主要瓶颈。将肽与惰性化学部分缀合是一种已被证明可成功延长某些治疗剂半衰期的策略。本系统评价和荟萃分析旨在检查现有文献,并以公正的方式对其进行评估,以确定哪些缀合物(包括生物和合成)能最大程度地延长治疗性肽的半衰期。在 PubMed、Scopus 和 SciFinder 数据库上进行的系统搜索产生了 845 项与该主题相关的研究,在根据 PROSPERO(#CRD42020222579)预先指定的纳入标准对这些研究进行评估后,有 16 项研究被纳入本综述。排除的最常见原因是非 IV 给药和肽的大小较大。在纳入的 16 项研究中,确定了一系列可增加半衰期的缀合物,半衰期从 0.1 小时增加到 33.57 小时。在这些肽中,与糖胺聚糖缀合时半衰期延长最大。对包含脂肪酸缀合物的研究进行荟萃分析表明,酰化作用导致半衰期显著延长。此外,另一个荟萃分析和敏感性分析表明,与专门设计的重组肽缀合可能比 PEG 化更有效地延长肽的半衰期。此外,我们证实,虽然聚乙二醇是一种良好的合成缀合物,但它的链长可能会影响其延长半衰期的效果。此外,我们发现与人类研究相比,大多数动物研究在报告结果时并没有包含那么多的细节。在独立评估和随机化等方面纳入更多的实验细节可能是一种简单的策略,可以推动更多的缀合肽进入临床试验。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1f5/8903268/c27f61fbcaa4/pone.0255753.g001.jpg

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