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Biomimetic synthesis within polyelectrolyte microcapsules: Characterization of enzyme catalyzed polyphenols and polypeptides.

机译:聚电解质微胶囊内的仿生合成:酶催化的多酚和多肽的表征。

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An enzyme-catalyzed synthesis of novel polymers within layer-by-layer (LbL) constructed polyelectrolyte microcapsules has been developed. This approach is based on the selective permeability of polyelectrolyte-capsule walls to monomer molecules. Conversely biocatalysts and forming polymeric chains cannot exit the micro-capsule interior because of their characteristic high molecular weight. Horseradish Peroxidase (HRP) was encapsulated into four bilayer PSS (poly-styrenesulfonate)/PAH (poly-allylamine hydrochloride) capsules with an average diameter of 5 mum using pH-driven pore opening. The polymerization of 4-(2-Aminoethyl) phenol hydrochloride (tyramine) catalyzed by HRP produces easily detectable fluorescent polymeric products after the addition of hydrogen peroxide to the system. It is known that proteolytic enzymes that effect hydrolysis can be used for peptide synthesis by manipulating physicochemical conditions such as pH, enzyme concentration, oxygen tension, and temperature. Papain (an endolytic cysteine protease, isolated from papaya latex) was encapsulated into four bilayer Tannic acid/Chitosan capsules with an average diameter of 6 mum. Papain catalyzed polymerization of phenylalanine to its corresponding polymeric form was achieved by heating a mixture of capsules with encapsulated papain within and monomer at 40°C for several hours. The filling of the capsules with polymer was confirmed by AFM (Atomic Force Microscopy), QCM (Quartz Crystal Microbalance), FS (Fluorescence Spectrometry), and CLSM (Confocal Laser Scanning Microscopy). This approach offers a novel biosynthetic pathway for polypeptide synthesis within micron-sized "reactors", which can have many applications within the field of biotechnology.
机译:已经开发了一种酶催化的新型聚合物,该聚合物在逐层(LbL)构造的聚电解质微胶囊内。该方法基于聚电解质胶囊壁对单体分子的选择性渗透性。相反,生物催化剂和形成的聚合物链由于其特征性的高分子量而不能离开微囊内部。辣根过氧化物酶(HRP)使用pH驱动的开孔剂封装成四个平均直径为5微米的双层PSS(聚苯乙烯磺酸盐)/ PAH(聚烯丙胺盐酸盐)胶囊。在系统中加入过氧化氢后,由HRP催化的4-(2-氨基乙基)苯酚盐酸盐(酪胺)的聚合反应可生成易于检测的荧光聚合物。已知可以通过控制诸如pH,酶浓度,氧张力和温度的物理化学条件来将影响水解的蛋白水解酶用于肽合成。木瓜蛋白酶(一种从木瓜乳胶中分离出来的内溶半胱氨酸蛋白酶)被封装在四个双层的单宁酸/壳聚糖胶囊中,平均直径为6微米。木瓜蛋白酶催化的苯丙氨酸聚合成其相应的聚合形式是通过在40°C下将胶囊与内包封的木瓜蛋白酶和单体的混合物加热数小时来实现的。通过AFM(原子力显微镜),QCM(石英晶体微量天平),FS(荧光光谱)和CLSM(共聚焦激光扫描显微镜)确认了用聚合物填充胶囊。这种方法为微米大小的“反应器”中的多肽合成提供了一种新颖的生物合成途径,在生物技术领域可以有许多应用。

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