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聚(L-乳酸)的酶促、碱性和自催化降解:双轴取向的影响。

Enzymatic, alkaline, and autocatalytic degradation of poly(L-lactic acid): effects of biaxial orientation.

作者信息

Tsuji Hideto, Ogiwara Miyuki, Saha Swapan Kumar, Sakaki Takuya

机构信息

Department of Ecological Engineering, Faculty of Engineering, Toyohashi University of Technology, Tempaku-cho, Toyohashi, Aichi 441-8580, Japan.

出版信息

Biomacromolecules. 2006 Jan;7(1):380-7. doi: 10.1021/bm0507453.

Abstract

The hydrolytic degradation of biaxially oriented and de-oriented (melt-crystallized) poly(l-lactic acid) (PLLA) films was investigated in Tris-HCl-buffered solution (pH 8.6) with proteinase K, alkaline solution, and phosphate-buffered solution (pH 7.4) by the use of gravimetry, gel permeation chromatography, differential scanning calorimetry, and scanning electron microscopy. Biaxial orientation disturbed the proteinase K-catalyzed enzymatic degradation of PLLA films and the effects of biaxial orientation overcame those of crystallinity. The former may be due to the fact the enzyme cannot attach to the extended (strained) chains in the amorphous regions of the biaxially oriented PLLA film or cannot catalyze the cleavage of the strained chains. Another probable cause is that the enzyme can act only at the film surface of the biaxially oriented PLLA film, in marked contrast with the case of the de-oriented PLLA films where enzymatic degradation can proceed beneath the spherulitic crystalline residues. The effects of biaxial orientation on the alkaline and autocatalytic degradation of the PLLA films were insignificant for the periods studied here. The crystallinity rather than the biaxial orientation seems to determine the alkaline and autocatalytic degradation rates of the PLLA films. The accumulation of crystalline residues formed as a result of selective cleavage and removal of the amorphous chains was observed for the de-oriented PLLA films, but not for the biaxially oriented PLLA film, when degraded in the presence of proteinase K. This means the facile release of formed crystalline residues from the surface of the biaxially oriented PLLA film during enzymatic degradation, due to the fact that the crystalline regions of the biaxially oriented PLLA film were oriented with their c axis parallel to the film surface.

摘要

通过重量法、凝胶渗透色谱法、差示扫描量热法和扫描电子显微镜,研究了双轴取向和去取向(熔融结晶)的聚(L-乳酸)(PLLA)薄膜在含有蛋白酶K的Tris-HCl缓冲溶液(pH 8.6)、碱性溶液和磷酸盐缓冲溶液(pH 7.4)中的水解降解情况。双轴取向干扰了蛋白酶K催化的PLLA薄膜的酶促降解,且双轴取向的影响超过了结晶度的影响。前者可能是由于酶无法附着在双轴取向PLLA薄膜非晶区的伸展(应变)链上,或者无法催化应变链的断裂。另一个可能的原因是,酶只能作用于双轴取向PLLA薄膜的表面,这与去取向PLLA薄膜的情况形成显著对比,在去取向PLLA薄膜中,酶促降解可以在球晶结晶残留物下方进行。在这里研究的时间段内,双轴取向对PLLA薄膜的碱性降解和自催化降解的影响不显著。似乎是结晶度而非双轴取向决定了PLLA薄膜的碱性降解和自催化降解速率。当在蛋白酶K存在下降解时,在去取向PLLA薄膜中观察到了由于无定形链的选择性断裂和去除而形成的结晶残留物的积累,但在双轴取向PLLA薄膜中未观察到。这意味着在酶促降解过程中,双轴取向PLLA薄膜表面形成的结晶残留物很容易释放,这是因为双轴取向PLLA薄膜的结晶区域的c轴与薄膜表面平行。

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