School of Energy, Environmental, Biological and Medical Engineering, University of Cincinnati, Cincinnati, OH 45221, USA.
Nanotechnology. 2013 Feb 8;24(5):055603. doi: 10.1088/0957-4484/24/5/055603. Epub 2013 Jan 16.
Aqueous channels of foam represent a simplified, natural bioreactor on the micro-/nano-scale. Previous studies have demonstrated the feasibility and potential application of foams in replicating cellular process in vitro, but no research has been performed to establish a basis for designing stable and biocompatible foam formulations. Our research has been directed specifically to the evaluation of ranaspumin-2 (RSN-2), a frog foam nest protein. The strong surfactant activity of RSN-2 enabled us to produce foams using low protein concentration (1 mg ml(-1)) over a wide pH range (pH ≥ 3). Importantly, the RSN-2 formulation exhibited the best foam stability at a near neutral pH condition, which shows a potential for application to various biosynthesis applications. Model cellular systems such as liposomes and inactivated A/PR/8/34 influenza virus maintained their physicochemical stability and full hemagglutination activity, indicating biocompatibility of RSN-2 with both cellular membranes and proteins both in bulk solution and in foam. Moreover, the addition of RSN-2 did not exert any deteriorative effects on bacterial cell growth kinetics. In contrast, Tween 20, Triton X-100, and BSA did not show satisfactory performance in terms of foamability, foam stability, physicochemcial stability, and biochemical stability. Although our study has been limited to representative formulations composed of only surfactant molecules, a number of unique advantages make RSN-2 a promising candidate for in vitro foam biosynthesis.
泡沫中的水通道代表了一种简化的、自然的微纳尺度生物反应器。先前的研究已经证明了泡沫在体外复制细胞过程中的可行性和潜在应用,但尚未进行研究为设计稳定和生物相容的泡沫配方建立基础。我们的研究专门针对蛙泡沫巢蛋白 ranaspumin-2 (RSN-2) 进行评估。RSN-2 具有很强的表面活性剂活性,使我们能够在很宽的 pH 范围内(pH≥3)使用低蛋白浓度(1mg/ml)产生泡沫。重要的是,RSN-2 配方在接近中性 pH 的条件下表现出最佳的泡沫稳定性,这表明它有潜力应用于各种生物合成应用。脂质体和灭活的 A/PR/8/34 流感病毒等模型细胞系统保持其物理化学稳定性和完全血凝活性,表明 RSN-2 在溶液和泡沫中均与细胞膜和蛋白质具有生物相容性。此外,添加 RSN-2 对细菌细胞生长动力学没有任何恶化作用。相比之下,Tween 20、Triton X-100 和 BSA 在起泡性、泡沫稳定性、物理化学稳定性和生物化学稳定性方面表现不佳。尽管我们的研究仅限于仅由表面活性剂分子组成的代表性配方,但 RSN-2 具有许多独特的优势,使其成为体外泡沫生物合成的有前途的候选物。