首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Two-layered injectable self-assembling peptide scaffold hydrogels for long-term sustained release of human antibodies
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Two-layered injectable self-assembling peptide scaffold hydrogels for long-term sustained release of human antibodies

机译:两层可注射自组装肽支架水凝胶可长期持续释放人抗体

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摘要

The release kinetics for human immunoglobulin (IgG) through the permeable structure of nanofiber scaffold hydrogels consisting of the ac-(RADA) _4-CONH _2 and ac-(KLDL) _3-CONH _2 self-assembling peptides were studied during a period of 3 months. Self assembling peptides are a class of stimuli-responsive materials which undergo sol-gel transition in the presence of an electrolyte solution such as biological fluids and salts. IgG diffusivities decreased with increasing hydrogel nanofiber density providing a means to control the release kinetics. Two-layered hydrogel structures were created consisting of concentric spheres of ac-(RADA) _4-CONH _2 core and ac-(KLDL) _3-CONH _2 shell and the antibody diffusion profile was determined through the 'onion-like' architecture. Secondary and tertiary structure analyses as well as biological assays using single molecule analyses and quartz crystal microbalance of the released IgG showed that encapsulation and release did not affect the conformation of the antibody and the biological activity even after 3 months inside the hydrogel. The functionality of polyclonal human IgG to the phosphocholine antigen was determined and showed that IgG encapsulation and release did not affect the antibody binding efficacy to the antigen. Our experimental protocol allows for 100% IgG loading efficiency inside the hydrogel while the maximum amount of antibody loading depends solely on the solubility of the antibody in water because the peptide hydrogel consists of water up to 99.5%. Our results show that this fully biocompatible and injectable peptide hydrogel system may be used for controlled release applications as a carrier for therapeutic antibodies.
机译:研究了人体免疫球蛋白(IgG)通过由ac-(RADA)_4-CONH _2和ac-(KLDL)_3-CONH _2自组装肽组成的纳米纤维支架水凝胶的可渗透结构的释放动力学几个月。自组装肽是一类刺激响应材料,它们在电解质溶液(例如生物流体和盐)存在下经历溶胶-凝胶转变。 IgG扩散度随水凝胶纳米纤维密度的增加而降低,从而提供了控制释放动力学的手段。创建了由ac-(RADA)_4-CONH _2核和ac-(KLDL)_3-CONH _2壳的同心球组成的两层水凝胶结构,并通过“洋葱样”结构确定了抗体扩散曲线。二级和三级结构分析以及使用单分子分析和释放的IgG的石英晶体微天平进行的生物学分析表明,即使在水凝胶中放置3个月后,包封和释放也不会影响抗体的构象和生物学活性。测定了多克隆人IgG对磷酸胆碱抗原的功能,并表明IgG的包封和释放不影响抗体对抗原的结合功效。我们的实验方案允许水凝胶内部的IgG负载效率为100%,而最大的抗体负载量仅取决于抗体在水中的溶解度,因为肽水凝胶包含高达99.5%的水。我们的结果表明,这种完全生物相容且可注射的肽水凝胶系统可用于控释应用,作为治疗性抗体的载体。

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