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PMID: 42089234 已发表 · ppublish 英语

Precise Synthesis of Highly Branched Angelica dahurica Polysaccharides up to 66 Units Reveals a Minimal Motif for Wound Repair.

Angewandte Chemie (International ed. in English) ·第 65 卷 ·第 26 期 ·2026-06-22

Wang J, Ruan Y, Zhao N, Lu S, Ge R, Ling J, Wells CK, Shen W, Xin G, Zhang C, Qi LW, Ye XS, Qin X

摘要

Polysaccharides derived from Angelica dahurica exhibit potent wound healing activity, yet the pronounced structural heterogeneity of natural extracts has obscured the identity of the active motif and hindered clinical translation. Here we report a convergent, one-pot [22+22+22] glycosylation strategy based on glycosyl donor preactivation that enables the precise chemical synthesis of a 66-unit A. dahurica polysaccharide. This approach facilitates the efficient assembly of a comprehensive glycan library spanning tetrasaccharides to the full-length 66-mer polysaccharide, allowing for systematic biological evaluation. Functional screening identifies the reducing end hexasaccharide as the minimal active motif responsible for wound healing activity. Mechanistic analyses reveal that the synthetic hexa- and dodecasaccharides promote fibroblast and keratinocyte proliferation and migration, while concurrently reprogramming macrophage polarization. Crucially, gram-scale synthesis of both glycans enables definitive in vivo evaluation, demonstrating significantly accelerated wound closure through attenuation of excessive inflammation and promotion of organized collagen deposition. Collectively, these findings establish a general paradigm for deconvoluting heterogeneous natural polysaccharide extracts through de novo synthesis of structurally well-defined glycans as precision-engineered wound healing therapeutics.

关键词
glycan library polysaccharide synthesis structure‐activity relationship wound healing
文献信息
期刊
Angewandte Chemie (International ed. in English)
期刊简称
Angew Chem Int Ed Engl
ISSN
1521-3773
发表日期
2026-06-22
语言
英语
国家/地区
Germany
NLM ID
0370543
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