Swilley Sarah N, Wu Hao, Tomasina Clarissa, Moroni Lorenzo, Wieringa Paul, Baker Matthew B, Matson John B
MERLN Institute for Technology-Inspired Regenerative Medicine, Complex Tissue Regeneration Department, Maastricht University, P.O. Box 616, Maastricht 6200MD, The Netherlands.
Department of Chemistry, Virginia Tech Center for Drug Discovery, Macromolecules Innovation Institute, 1040 Drillfield Dr, Blacksburg, Virginia 24061, United States.
Biomacromolecules. 2025 Sep 8;26(9):6057-6069. doi: 10.1021/acs.biomac.5c00975. Epub 2025 Aug 1.
Persulfides (RSSH) and hydrogen sulfide (HS) are endogenously produced bioactive molecules that serve important roles in vasculogenesis and tissue repair processes. Through the physical incorporation of RSSH/HS donors into electrospun fibers, we designed polymeric fiber mats that released provasculogenic and cytoprotective reactive sulfur species over biologically relevant time scales. The release of small molecules from the fiber mats showed that 20-50% of the analytes were released from the scaffolds after 4 h. Tube formation assays indicated that the persulfide donors improved tube formation in human microvascular endothelial cells (HMVECs) over baseline levels under oxidative conditions (HO). Analysis of HMVECs on the electrospun fiber mats demonstrated cell viability >80% for all groups tested. This design enables controlled release of small-molecule prodrugs as a novel method toward the formation of tissue engineering constructs that deliver reactive sulfur species, including RSSH, addressing an ongoing challenge in the field of tissue engineering.
过硫化物(RSSH)和硫化氢(HS)是内源性产生的生物活性分子,在血管生成和组织修复过程中发挥重要作用。通过将RSSH/HS供体物理掺入电纺纤维中,我们设计了聚合物纤维垫,其在生物学相关的时间尺度上释放促血管生成和细胞保护的活性硫物质。纤维垫中小分子的释放表明,4小时后20-50%的分析物从支架中释放出来。管形成试验表明,在氧化条件(HO)下,过硫化物供体相对于基线水平改善了人微血管内皮细胞(HMVECs)中的管形成。对电纺纤维垫上的HMVECs的分析表明,所有测试组的细胞活力均>80%。这种设计能够控制小分子前药的释放,作为一种形成递送活性硫物质(包括RSSH)的组织工程构建体的新方法,解决了组织工程领域中一个持续存在的挑战。