Francius Grégory, Hemmerlé Joseph, Ohayon Jacques, Schaaf Pierre, Voegel Jean-Claude, Picart Catherine, Senger Bernard
Institut National de la Santé et de la Recherche Médicale, Unité 595, Faculté de Chirurgie Dentaire,Université Louis Pasteur, 67085 Strasbourg Cedex, France.
Microsc Res Tech. 2006 Feb;69(2):84-92. doi: 10.1002/jemt.20275.
A homemade colloidal probe atomic force microscope was used to perform nanoindentation with a spherical probe of 5 microm in diameter, at different approach velocities in order to extract the Young's modulus, E0, of poly(L-lysine)/hyaluronan (PLL/HA) films. This parameter is of prime importance to control cellular adhesion. The films were either kept in their native form or cross-linked with a mixture of 1-ethyl-3-(3-dimethyl aminopropyl)carbodiimide (EDC) and N-hydrosulfosuccinimide (sulfo-NHS), where the EDC concentration was varied from 1 up to 100 mg mL(-1) (approximately from 5 to 500 mM). A model based on Hertz mechanics was used to account for the interactions between film and probe. It is shown that the Young's modulus varies with the approach velocity for the native (PLL/HA) films, whereas for cross-linked ones, E0 is independent from the velocity over the whole range investigated. It is found that for native films, E0 takes a value of 3 kPa at low approach velocities, a velocity domain that should be relevant in cellular adhesion processes. The Young's modulus increases with the EDC concentration used to cross-link the films and levels off at a value of about 400 kPa for EDC concentrations exceeding 40 mg mL(-1). Thus, it is possible by crosslinking PLL/HA films to control their elastic properties with the aim to alter their behavior as to the cellular adhesion.
使用自制的胶体探针原子力显微镜,采用直径为5微米的球形探针,在不同的接近速度下进行纳米压痕试验,以提取聚(L - 赖氨酸)/透明质酸(PLL/HA)薄膜的杨氏模量E0。该参数对于控制细胞粘附至关重要。薄膜要么保持其天然形式,要么用1-乙基-3-(3-二甲基氨基丙基)碳二亚胺(EDC)和N-氢磺基琥珀酰亚胺(磺基-NHS)的混合物交联,其中EDC浓度从1到100 mg mL(-1)变化(约为5到500 mM)。基于赫兹力学的模型用于解释薄膜与探针之间的相互作用。结果表明,天然(PLL/HA)薄膜的杨氏模量随接近速度而变化,而交联薄膜的E0在整个研究范围内与速度无关。研究发现,对于天然薄膜,在低接近速度下E0值为3 kPa,这个速度范围在细胞粘附过程中应该是相关的。杨氏模量随着用于交联薄膜的EDC浓度增加而增加,当EDC浓度超过40 mg mL(-1)时,趋于稳定在约400 kPa的值。因此,通过交联PLL/HA薄膜来控制其弹性性能,目的是改变它们在细胞粘附方面的行为是可行的。