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使用响应性光子晶体微珠对淡水脊椎动物模式生物(日本青鳉)胃肠道内的离子状态进行非侵入性体内成像。

Non-invasive in vivo imaging of the ionic regimes along the gastrointestinal tract of a freshwater vertebrate model organism (Japanese medaka) using responsive photonic crystal beads.

作者信息

Du Xuemin, Lei Ngai-Yu, Chiu Hiu-Man, Ge Xuewu, Zhang Zhicheng, Hon-Wah Lam Michael

机构信息

Advanced Laboratory for Environmental Research & Technology, USTC-CityU, Suzhou, China.

出版信息

J Mater Chem B. 2013 Mar 21;1(11):1535-1540. doi: 10.1039/c2tb00236a. Epub 2013 Feb 4.

Abstract

Microspherical photonic colloidal crystalline beads that are responsive to media ionic strength of cationic electrolytes have been developed for in vivo imaging of the morphology and concentration gradient of cationic electrolytes along the gastrointestinal (GI) tract of live Japanese medaka (Oryzias latipes). These responsive photonic beads were assembled from core-shell nano-sized particles with polystyrene-co-polyacrylic acid (PS-co-PAA) cores and poly(hydroxyethyl methacrylate-co-p-styrene sulfonate) (PHEMA-co-PSS) hydrogel shells. The three-dimensional orderly packing of these nano-sized core-shell particles gave rise to the photonic properties of the resultant colloidal crystalline array of microspheres. The cationic electrolyte-induced volume phase transition of the sulfonate-laden hydrogel shells of the nano-sized particles altered the lattice spacing among those particles and brought about the photonic responses of the colloidal crystalline beads. Unambiguous changes in the diffraction colour of the colloidal crystalline beads were observable under ordinary ambient light in solution media of increasing concentration of sodium chloride up to 500 mM. These photonic colloidal crystalline beads were found to possess enough structural integrity for in vivo imaging of the GI tract of live Japanese medaka. With the use of a conventional optical microscope, the gradient in the ionic strength of cationic electrolytes along the GI tract of live Japanese medaka larvae was readily revealed, with a lower electrolyte concentration in the mid-intestine (<50 mM) compared to that of the posterior-intestine (≥50 mM). Our results demonstrated the potential of stimuli-responsive photonic materials in bio-imaging applications.

摘要

已开发出对阳离子电解质的介质离子强度有响应的微球形光子胶体晶体珠,用于在活体日本青鳉(Oryzias latipes)的胃肠道中对阳离子电解质的形态和浓度梯度进行体内成像。这些响应性光子珠由具有聚苯乙烯 - 共 - 聚丙烯酸(PS - co - PAA)核和聚(甲基丙烯酸羟乙酯 - 共 - 对苯乙烯磺酸盐)(PHEMA - co - PSS)水凝胶壳的核壳纳米粒子组装而成。这些纳米尺寸的核壳粒子的三维有序堆积产生了所得微球胶体晶体阵列的光子特性。纳米粒子中富含磺酸盐的水凝胶壳在阳离子电解质诱导下发生体积相变,改变了这些粒子之间的晶格间距,并引发了胶体晶体珠的光子响应。在高达500 mM的氯化钠浓度不断增加的溶液介质中,在普通环境光下可观察到胶体晶体珠的衍射颜色发生明确变化。发现这些光子胶体晶体珠具有足够的结构完整性,可用于活体日本青鳉胃肠道的体内成像。使用传统光学显微镜,很容易揭示活体日本青鳉幼虫胃肠道中阳离子电解质离子强度的梯度,中肠(<50 mM)中的电解质浓度低于后肠(≥50 mM)。我们的结果证明了刺激响应性光子材料在生物成像应用中的潜力。

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