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Study of nanoscale structures in hydrated biomaterials using small-angle neutron scattering

机译:利用小角度中子散射研究水合生物材料中的纳米结构

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Distribution of water in three classes of biomedically relevant and degradable polymers was investigated using small-angle neutron scattering. In semicrystalline polymers, such as poly(lactic acid) and poly(glycolic acid), water was found to diffuse preferentially into the non-crystalline regions. In amorphous polymers, such as poly(d,l-lactic acid) and poly(lactic-co-glycolic acid), the scattering after 7 days of incubation was attributed to water in microvoids that form following the hydrolytic degradation of the polymer. In amorphous copolymers containing hydrophobic segments (desaminotyrosyl-tyrosine ethyl ester) and hydrophilic blocks (poly(ethylene glycol) (PEG)), a sequence of distinct regimes of hydration were observed: homogeneous distribution (~10 length scales) at <13 wt.% PEG (~1 water per EG), clusters of hydrated domains (~50 ? radius) separated at 24 wt.% PEG (1-2 water per EG), uniformly distributed hydrated domains at 41 wt.% PEG (~4 water per EG) and phase inversion at >50 wt.% PEG (>6 water per EG). Increasing the PEG content increased the number of these domains with only a small decrease in distance between the domains. These discrete domains appeared to coalesce to form submicron droplets at ~60°C, above the melting temperature of crystalline PEG. The significance of such observations on the evolution of micrometer-size channels that form during hydrolytic erosion is discussed.
机译:使用小角中子散射研究了三类生物医学相关和可降解聚合物中水的分布。在诸如聚乳酸和聚乙醇酸的半结晶聚合物中,发现水优先扩散到非结晶区域中。在无定形聚合物中,例如聚(d,l-乳酸)和聚(乳酸-乙醇酸共聚物),温育7天后的散射归因于微孔中的水,该水是在聚合物水解降解后形成的。在含有疏水链段(去氨酪氨酰酪氨酸乙酯)和亲水嵌段(聚乙二醇(PEG))的无定形共聚物中,观察到一系列不同的水合作用方式:均质分布(〜10长度尺度),<13 wt。%。 %PEG(每EG含约1个水),以24 wt。%PEG(每EG含1-2个水)分离的水合结构域簇(约50?半径),在41 wt。%PEG(约4个水)下均匀分布的水合结构域每EG)和相转化> 50 wt。%PEG(每EG> 6水)。 PEG含量的增加增加了这些结构域的数量,而结构域之间的距离仅有很小的减少。这些离散结构域似乎在高于结晶PEG熔融温度的约60°C时聚结形成亚微米液滴。讨论了这种观察对水解侵蚀过程中形成的微米级通道演变的意义。

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