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护发素对毛发纤维表面硬度的影响:一项使用原子力显微镜的研究。

Effects of conditioners on surface hardness of hair fibers: an investigation using atomic force microscopy.

作者信息

Ruetsch S B, Kamath Y K, Kintrup L, Schwark H-J

机构信息

TRI/Princeton, Princeton, NJ 08542, USA.

出版信息

J Cosmet Sci. 2003 Nov-Dec;54(6):579-88.

Abstract

Conditioners are known to have a prophylactic effect on hair damage caused by cosmetic chemical treatments or mechanical grooming procedures. They are known to impart softness and smoothness to hair by moisturizing the fiber. Since the amount of conditioners deposited on the fiber is very small in quantity, it is conceivable that mainly the surface is moisturized. This is especially true of polymeric conditioners, which deposit preferentially on the surface of the fiber, rather than penetrate into the cortex. Therefore, this study strictly investigates whether cationic polymeric conditioners impart softness to the surface cuticle cell as a result of their hydrophilicity, with no regard to its applicability to cosmetic effects. Such softening can be detected by indentation of the surface and can be quantified by measuring the depth of the indent in real time. Atomic force microscopy (AFM), equipped with nano-indentation capability, is ideally suited for this purpose. In this work it was used to determine changes in the microhardness (micromechanical properties) of the hair fiber surface as a result of fiber/conditioner/moisture interactions. In a preliminary study, we observed that the scale faces of hair treated with Polyquaternium 10 (PQ-10) conditioner gave deeper indents, while scale edges yielded shallower ones in comparison to cuticle cells of untreated hair. This suggests that the conditioner softens the scale face and hardens the scale edges. However, because of significant amounts of conditioner residues left on the scale face, this conclusion was rather ambiguous. Therefore, the study was repeated in which multiple indentations were made on the surface cuticle cells of a larger number of the same hair fibers before and after multiple applications of the conditioner. This reduces errors due to fiber-to-fiber variation in pre-existing microhardness differences in surface cuticle cells. Also, the larger number of fibers investigated in the current work allowed for a statistical outcome. This latter study has led to a rather definite conclusion that the scale face is indeed softened by polymeric conditioners such as Polyquaternium-10 (PQ-10). These studies will ultimately help in the development of conditioners with suitable moisturizing and softening effect on hair.

摘要

护发素对由美容化学处理或机械梳理程序导致的头发损伤具有预防作用,这是众所周知的。人们已知护发素通过滋润发丝纤维来赋予头发柔软顺滑的质感。由于沉积在纤维上的护发素数量非常少,可以想象主要是头发表面得到了滋润。对于聚合物护发素而言尤其如此,它们优先沉积在纤维表面,而非渗透到皮质层中。因此,本研究严格探究阳离子聚合物护发素是否因其亲水性而使表面角质形成细胞变得柔软,而不考虑其在美容效果方面的适用性。这种软化可以通过表面压痕检测到,并且可以通过实时测量压痕深度进行量化。配备纳米压痕功能的原子力显微镜(AFM)非常适合此目的。在这项工作中,它被用于确定由于纤维/护发素/水分相互作用而导致的头发纤维表面显微硬度(微观力学性能)的变化。在一项初步研究中,我们观察到用聚季铵盐-10(PQ-10)护发素处理过的头发的鳞片表面产生的压痕更深,而与未处理头发的角质形成细胞相比,鳞片边缘产生的压痕更浅。这表明护发素使鳞片表面变软,使鳞片边缘变硬。然而,由于大量护发素残留物留在鳞片表面,这个结论相当模糊。因此,重复进行了该研究,在多次使用护发素之前和之后,对更多相同头发纤维的表面角质形成细胞进行多次压痕。这减少了由于表面角质形成细胞中预先存在的显微硬度差异导致的纤维间差异所产生的误差。此外,当前工作中研究的纤维数量更多,从而得出了统计结果。后一项研究得出了一个相当明确的结论,即聚季铵盐-10(PQ-10)等聚合物护发素确实使鳞片表面变软。这些研究最终将有助于开发对头发具有合适保湿和软化效果的护发素。

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