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Fatty acid conjugation enhances potency of antisense oligonucleotides in muscle

机译:脂肪酸缀合可增强肌肉中反义寡核苷酸的效力

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Enhancing the functional uptake of antisense oligonucleotide (ASO) in the muscle will be beneficial for developing ASO therapeutics targeting genes expressed in the muscle. We hypothesized that improving albumin binding will facilitate traversal of ASO from the blood compartment to the interstitium of the muscle tissues to enhance ASO functional uptake. We synthesized structurally diverse saturated and unsaturated fatty acid conjugated ASOs with a range of hydrophobicity. The binding affinity of ASO fatty acid conjugates to plasma proteins improved with fatty acid chain length and highest binding affinity was observed with ASO conjugates containing fatty acid chain length from 16 to 22 carbons. The degree of unsaturation or conformation of double bond appears to have no influence on protein binding or activity of ASO fatty acid conjugates. Activity of fatty acid ASO conjugates correlated with the affinity to albumin and the tightest albumin binder exhibited the highest activity improvement in muscle. Palmitic acid conjugation increases ASO plasma C-max and improved delivery of ASO to interstitial space of mouse muscle. Conjugation of palmitic acid improved potency of DMPK, Cav3, CD36 and Malat-1 ASOs (3- to 7-fold) in mouse muscle. Our approach provides a foundation for developing more effective therapeutic ASOs for muscle disorders.
机译:增强肌肉中的反义寡核苷酸(ASO)的功能摄取将有利于在肌肉中表达靶向基因的肌肉治疗靶向基因。我们假设改善的白蛋白结合将促进从血液隔室到肌肉组织间隙的横穿,以提高ASO功能摄取。我们在结构各种饱和和不饱和脂肪酸缀合的ASOS中合成,具有一系列疏水性。含有脂肪酸链长度从16至22个碳的偶像缀合物观察到脂肪酸链长度和最高结合亲和力改善了脂肪酸缀合物与血浆蛋白质的结合亲和力。双键的不饱和度或构象的程度似乎对蛋白质结合或ASO脂肪酸缀合物的蛋白质结合或活性没有影响。与白蛋白亲和力和最紧密的白蛋白粘合剂相关的脂肪酸ASO缀合物的活性表现出肌肉的最高活性改善。棕榈酸缀合增加了ASO等离子体C-MAX和改进的ASO转移到小鼠肌肉的间质空间。棕榈酸的缀合性DMPK,CAV3,CD36和MALAT-1 ASOS(3-至7倍)在小鼠肌肉中的辛酸效力。我们的方法为为肌肉疾病开发更有效的治疗性AS提供了基础。

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