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Connective Tissue Polarity Unraveled by a Markov-Chain Mechanism of Collagen Fibril Segment Self-Assembly

机译:胶原纤维节段自组装的马尔可夫链机理揭示了结缔组织的极性

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摘要

The well-established occurrence of pyroelectricity (Lang, 1966) in tissues of living organisms has found a first explanation by a Markov-chain mechanism taking place during collagen fibril self-assembly in extracytoplasmic channels. Recently reported biochemical findings on the longitudinal fusion reactivity of small fibril segments (which undergo C-, N- and C-, C- but not N-, N-terminal fusions; see Graham et al., 2000; Kadler et al., 1996) may provide a mechanism by which a difference in the fusion probabilities PCC, PNN drives the self-assembly into partial macroscopic polar order. In principle, a Markov-chain growth process can lower the noncentrosymmetric ∞2 symmetry describing dielectric properties of a growing limb (as managed by fibroblasts) into the polar ∞ group. It is proposed that macroscopically polar properties enter the biological world by a stochastic mechanism of unidirectional growth. Polarity formation in organisms shows similarity to effects reported for molecular crystals (Hulliger et al., 2002).
机译:在生物体组织中公认的热释电发生(Lang,1966)已经通过在细胞质外通道胶原纤维自组装过程中发生的马尔可夫链机制找到了第一个解释。最近报道的关于小原纤维片段(进行C-,N-和C-,C-但不包含N-,N-末端融合的纵向融合反应性)的生化发现;参见Graham等,2000; Kadler等, (1996年)可能提供一种机制,通过这种机制,融合概率PCC,PNN会将自组装驱动为部分宏观极化顺序。原则上,马尔可夫链的生长过程可以将描述生长中肢体(由成纤维细胞管理)的介电特性的非中心对称∞2对称性降低到极性∞组。提出了宏观上的极性特性是通过单向生长的随机机制进入生物学世界的。生物体中极性的形成与分子晶体的作用相似(Hulliger等,2002)。

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