Hall Patrick C, Reid Harrison W, Liashenko Ievgenii, Tandon Biranche, O'Neill Kelly L, Paxton Naomi C, Lindberg Gabriella C J, Jasti Ramesh, Dalton Paul D
Phil and Penny Knight Campus for Accelerating Scientific Impact, University of Oregon, 1505 Franklin Boulevard, Eugene, OR, 97403-6231, USA.
Department of Chemistry and Biochemistry & Materials Science Institute, University of Oregon, 1505 Franklin Boulevard, Eugene, OR, 97403-6231, USA.
Small. 2024 Oct;20(40):e2400882. doi: 10.1002/smll.202400882. Epub 2024 Jun 6.
Fluorescent probes are an indispensable tool in the realm of bioimaging technologies, providing valuable insights into the assessment of biomaterial integrity and structural properties. However, incorporating fluorophores into scaffolds made from melt electrowriting (MEW) poses a challenge due to the sustained, elevated temperatures that this processing technique requires. In this context, [n]cycloparaphenylenes ([n]CPPs) serve as excellent fluorophores for MEW processing with the additional benefit of customizable emissions profiles with the same excitation wavelength. Three fluorescent blends are used with distinct [n]CPPs with emission wavelengths of either 466, 494, or 533 nm, identifying 0.01 wt% as the preferred concentration. It is discovered that [n]CPPs disperse well within poly(ε-caprolactone) (PCL) and maintain their fluorescence even after a week of continuous heating at 80 °C. The [n]CPP-PCL blends show no cytotoxicity and support counterstaining with commonly used DAPI (Ex/Em: 359 nm/457 nm), rhodamine- (Ex/Em: 542/565 nm), and fluorescein-tagged (Ex/Em: 490/515 nm) phalloidin stains. Using different color [n]CPP-PCL blends, different MEW fibers are sequentially deposited into a semi-woven scaffold and onto a solution electrospun membrane composed of [8]CPP-PCL as a contrasting substrate for the [10]CPP-PCL MEW fibers. In general, [n]CPPs are potent fluorophores for MEW, providing new imaging options for this technology.
荧光探针是生物成像技术领域不可或缺的工具,为评估生物材料的完整性和结构特性提供了有价值的见解。然而,由于熔体静电纺丝(MEW)加工技术需要持续的高温,将荧光团掺入由MEW制成的支架中具有挑战性。在这种情况下,[n]环对亚苯基([n]CPPs)是MEW加工的优秀荧光团,具有在相同激发波长下可定制发射光谱的额外优势。使用了三种具有不同[n]CPPs的荧光共混物,其发射波长分别为466、494或533 nm,确定0.01 wt%为最佳浓度。研究发现,[n]CPPs在聚(ε-己内酯)(PCL)中分散良好,即使在80°C连续加热一周后仍能保持其荧光。[n]CPP-PCL共混物无细胞毒性,并支持与常用的4',6-二脒基-2-苯基吲哚(Ex/Em:359 nm/457 nm)、罗丹明(Ex/Em:542/565 nm)和荧光素标记(Ex/Em:490/515 nm)的鬼笔环肽染色进行复染。使用不同颜色的[n]CPP-PCL共混物,将不同的MEW纤维依次沉积到半编织支架上,并沉积到由[8]CPP-PCL组成的溶液静电纺丝膜上,作为[10]CPP-PCL MEW纤维的对比底物。一般来说,[n]CPPs是MEW的有效荧光团,为该技术提供了新的成像选择。