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首页> 外文期刊>The Journal of biological chemistry >Effect of Molecular Characteristics on Cellular Uptake, Subcellular Localization, and Phototoxicity of Zn(II) N-Alkylpyridylporphyrins
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Effect of Molecular Characteristics on Cellular Uptake, Subcellular Localization, and Phototoxicity of Zn(II) N-Alkylpyridylporphyrins

机译:分子特性对Zn(II)N-烷基吡啶吡嗪的细胞吸收,亚细胞定位和光毒性的影响

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Tetra-cationic Zn(II) meso-tetrakis(N-alkylpyridinium-2 (or -3 or -4)-yl)porphyrins (ZnPs) with progressively increased lipophilicity were synthesized to investigate how the tri-dimensional shape and lipophilicity of the photosensitizer (PS) affect cellular uptake, subcellular distribution, and photodynamic efficacy. The effect of the tri-dimensional shape of the molecule was studied by shifting the N-alkyl substituent attached to the pyridyl nitrogen from ortho to meta and para positions. Progressive increase of lipophilicity from shorter hydrophilic (methyl) to longer amphiphilic (hexyl) alkyl chains increased the phototoxicity of the ZnP PSs. PS efficacy was also increased for all derivatives when the alkyl substituents were shifted from ortho to meta, and from meta to para positions. Both cellular uptake and subcellular distribution of the PSs were affected by the lipophilicity and the position of the alkyl chains on the periphery of the porphyrin ring. Whereas the hydrophilic ZnPs demonstrated mostly lysosomal distribution, the amphiphilic hexyl derivatives were associated with mitochondria, endoplasmic reticulum, and plasma membrane. A comparison of hexyl isomers revealed that cellular uptake and partition into membranes followed the order para > meta > ortho. Varying the position and length of the alkyl substituents affects (i) the exposure of cationic charges for electrostatic interactions with anionic biomolecules and (ii) the lipophilicity of the molecule. The charge, lipophilicity, and the tri-dimensional shape of the PS are the major factors that determine cellular uptake, subcellular distribution, and as a consequence, the phototoxicity of the PSs.
机译:四阳离子的Zn(II)的内消旋 - 四(N-烷基吡啶鎓-2(或-3或-4) - 基)卟啉(ZnPs)具有逐渐增加的亲脂性合成研究如何三维形状和亲脂性光敏剂的(PS)影响的细胞摄取,亚细胞分布,和光动力学功效。通过移动连接于吡啶氮从邻位间位和对位的N-烷基取代基所研究的分子的三维形状的效果。从较短的亲水性(甲基)亲脂性,以较长的两亲性(己基)的逐步增加的烷基链增加了ZNP的PS的光毒性。 PS功效也增加了对所有的衍生物当烷基取代基是从邻位转移到间位,和从间位对位。两者细胞摄取和的PS的亚细胞分布是由亲脂性和烷基链上的卟啉环的外周的位置的影响。而亲水ZnPs证明大多溶酶体分布,两亲己基衍生物用线粒体,内质网,与质膜相关。己基异构体的比较揭示了细胞摄取和分割成膜,随后的顺序对位>元>邻。不同烷基取代基的位置和长度影响(i)的情况与阴离子生物分子和(ii)所述分子的亲脂性静电相互作用阳离子电荷的曝光。上的电荷,亲脂性,和PS的三维形状是确定的细胞摄取,亚细胞分布的主要因素,并且作为结果,的PS的光毒性。

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