Department of Bioengineering, Stanford University, Stanford, California, USA.
Nat Methods. 2013 Jun;10(6):508-13. doi: 10.1038/nmeth.2481.
With potential relevance for brain-mapping work, hydrogel-based structures can now be built from within biological tissue to allow subsequent removal of lipids without mechanical disassembly of the tissue. This process creates a tissue-hydrogel hybrid that is physically stable, that preserves fine structure, proteins and nucleic acids, and that is permeable to both visible-spectrum photons and exogenous macromolecules. Here we highlight relevant challenges and opportunities of this approach, especially with regard to integration with complementary methodologies for brain-mapping studies.
水凝胶基结构现在可以从生物组织内部构建,以允许在不机械拆卸组织的情况下去除脂质,这与脑图谱工作具有潜在相关性。该过程会生成物理上稳定的组织-水凝胶混合物,可保留精细结构、蛋白质和核酸,并且对可见光谱光子和外源性大分子都是可渗透的。在此,我们重点介绍了该方法的相关挑战和机遇,特别是在与脑图谱研究的互补方法集成方面。