School of Life Sciences, Tianjin University, Tianjin300072, China.
Tianjin Engineering Center of Micro-Nano Biomaterials and Detection-Treatment Technology, Tianjin Key Laboratory of Function and Application of Biological Macromolecular Structures, Tianjin300072, China.
ACS Appl Mater Interfaces. 2023 Feb 8;15(5):6536-6547. doi: 10.1021/acsami.2c20399. Epub 2023 Jan 28.
Genetically modified engineered microorganisms have been encapsulated in hydrogels and used as "living materials" for the treatment of skin diseases. However, their applications are often limited by the epidermal dry, nutrient-poor environment and cannot maintain functions stably for an expected sufficient time. To solve this problem, a photoautotrophic "living material" containing an engineered microbial consortium was designed and fabricated. The engineered microbial consortium comprised PCC7942 for producing sucrose by photosynthesis and another heterotrophic engineered bacterium ( or ) that can utilize sucrose for the growth and secretion of functional biomolecules. These engineered microorganisms in the "living material" were proved to function stably for a longer time than only individual microbes. Subsequently, CXCL12-secreting engineered was used to construct the "living material", and its effect on promoting wound healing was verified in a full-thickness rat-skin defect model. The wounds treated by our hydrogel-encapsulated engineered microbial consortium (HeEMC) healed faster, with a wound area ratio of only 13.2% at day 14, compared to the remaining 62.6, 51.4, and 40.8% of the control, PEGDA, and PEGDA/CS groups, respectively. In conclusion, we established an efficient living material HeEMC to offer promising applications in the treatment of skin diseases.
基因工程微生物已被包裹在水凝胶中,并被用作治疗皮肤病的“活材料”。然而,它们的应用通常受到表皮干燥、营养贫瘠的环境限制,无法稳定地维持预期的足够时间的功能。为了解决这个问题,设计并制造了一种含有工程微生物联合体的光自养“活材料”。该工程微生物联合体由 PCC7942 组成,用于通过光合作用生产蔗糖,另一种异养工程细菌(或)可以利用蔗糖生长和分泌功能性生物分子。证明这些“活材料”中的工程微生物比单个微生物更稳定地发挥作用更长时间。随后,使用分泌 CXCL12 的工程 来构建“活材料”,并在全层大鼠皮肤缺损模型中验证其促进伤口愈合的效果。用我们的水凝胶包封工程微生物联合体(HeEMC)治疗的伤口愈合更快,第 14 天的伤口面积比仅为 13.2%,而对照组、PEGDA 组和 PEGDA/CS 组分别为 62.6%、51.4%和 40.8%。总之,我们建立了一种高效的活材料 HeEMC,为治疗皮肤病提供了有前途的应用。