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酚红-丝氨酸酪氨酸交联水凝胶

Phenol red-silk tyrosine cross-linked hydrogels.

作者信息

Sundarakrishnan Aswin, Herrero Acero Enrique, Coburn Jeannine, Chwalek Karolina, Partlow Benjamin, Kaplan David L

机构信息

Department of Biomedical Engineering, Tufts University, Medford, MA 02155, USA.

Department of Biomedical Engineering, Tufts University, Medford, MA 02155, USA; Austrian Centre of Industrial Biotechnology ACIB, 8010 Graz, Austria.

出版信息

Acta Biomater. 2016 Sep 15;42:102-113. doi: 10.1016/j.actbio.2016.06.020. Epub 2016 Jun 23.

Abstract

UNLABELLED

Phenol red is a cytocompatible pH sensing dye that is commonly added to cell culture media, but removed from some media formulations due to its structural mimicry of estrogen. Phenol red free media is also used during live cell imaging, to avoid absorbance and fluorescence quenching of fluorophores. To overcome these complications, we developed cytocompatible and degradable phenol red-silk tyrosine cross-linked hydrogels using horseradish peroxidase (HRP) enzyme and hydrogen peroxide (H2O2). Phenol red added to silk during tyrosine crosslinking accelerated di-tyrosine formation in a concentration-dependent reaction. Phenol red diffusion studies and UV-Vis spectra of phenol red-silk tyrosine hydrogels at different pHs showed altered absorption bands, confirming entrapment of dye within the hydrogel network. LC-MS of HRP-reacted phenol red and N-acetyl-l-tyrosine reaction products confirmed covalent bonds between the phenolic hydroxyl group of phenol red and tyrosine on the silk. At lower phenol red concentrations, leak-proof hydrogels which did not release phenol red were fabricated and found to be cytocompatible based on live-dead staining and alamar blue assessments of encapsulated fibroblasts. Due to the spectral overlap between phenol red absorbance at 415nm and di-tyrosine fluorescence at 417nm, phenol red-silk hydrogels provide both absorbance and fluorescence-based pH sensing. With an average pKa of 6.8 and good cytocompatibiltiy, phenol red-silk hydrogels are useful for pH sensing in phenol red free systems, cellular microenvironments and bioreactors.

STATEMENT OF SIGNIFICANCE

Phenol red entrapped within hydrogels facilitates pH sensing in phenol red free environments. Leak-proof phenol red based pH sensors require covalent binding techniques, but are complicated due to the lack of amino or carboxyl groups on phenol red. Currently, there is no simple, reliable technique to covalently link phenol red to hydrogel matrices, for real-time pH sensing in cell culture environments. Herein, we take advantage of phenolic groups for covalent linkage of phenol red to silk tyrosine in the presence of HRP and H2O2. The novelty of the current system stems from its simplicity and the use of silk protein to create a cytocompatible, degradable sensor capable of real-time pH sensing in cell culture microenvironments.

摘要

未标记

酚红是一种细胞相容性pH传感染料,通常添加到细胞培养基中,但由于其结构与雌激素相似,在一些培养基配方中被去除。无酚红培养基也用于活细胞成像,以避免荧光团的吸光度和荧光猝灭。为了克服这些问题,我们使用辣根过氧化物酶(HRP)和过氧化氢(H2O2)开发了细胞相容性和可降解的酚红-丝氨酸酪氨酸交联水凝胶。在酪氨酸交联过程中添加到丝中的酚红在浓度依赖性反应中加速了二酪氨酸的形成。不同pH值下酚红-丝氨酸酪氨酸水凝胶的酚红扩散研究和紫外-可见光谱显示吸收带发生变化,证实染料被困在水凝胶网络中。HRP反应的酚红和N-乙酰-L-酪氨酸反应产物的液相色谱-质谱联用(LC-MS)证实了酚红的酚羟基与丝上的酪氨酸之间存在共价键。在较低的酚红浓度下,制备了不释放酚红的防漏性水凝胶,并通过对封装成纤维细胞的活死染色和alamar蓝评估发现其具有细胞相容性。由于酚红在415nm处的吸光度与二酪氨酸在417nm处的荧光存在光谱重叠,酚红-丝水凝胶提供基于吸光度和荧光的pH传感。酚红-丝水凝胶的平均pKa为6.8,具有良好的细胞相容性,可用于无酚红系统、细胞微环境和生物反应器中的pH传感。

重要性声明

包封在水凝胶中的酚红有助于在无酚红环境中进行pH传感。基于酚红的防漏pH传感器需要共价结合技术,但由于酚红上缺乏氨基或羧基而变得复杂。目前,没有简单可靠的技术将酚红共价连接到水凝胶基质上,用于细胞培养环境中的实时pH传感。在此,我们利用酚基团在HRP和H2O2存在下将酚红与丝氨酸酪氨酸共价连接。当前系统的新颖之处在于其简单性以及使用丝蛋白创建一种能够在细胞培养微环境中进行实时pH传感的细胞相容性、可降解传感器。

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