聚乙二醇 (PEG) 是一种用途广泛的聚合物,广泛用作食品和化妆品的添加剂,以及聚乙二醇化疗法的载体。尽管 PEG 被认为免疫原性较低,甚至可能是非免疫原性的,具有多种物理化学特性,但越来越多的证据表明,当与蛋白质和纳米载体等其他材料结合时,PEG 会引起免疫原性反应。在这些条件下,PEG 与其他材料可导致给药后产生抗 PEG 抗体。诱导的抗体似乎对随后施用的聚乙二醇化制剂的治疗功效具有有害影响。此外,对聚乙二醇化制剂的超敏反应可能是使用聚乙二醇化产品的重大障碍。几份报告已将抗 PEG 抗体的存在与 PEG 化制剂给药后补体激活相关假性过敏 (CARPA) 的发生率联系起来。COVID-19 mRNA 疫苗主要由聚乙二醇化脂质纳米颗粒 (LNP) 组成,最近已获得广泛认可,尽管已记录了许多疫苗接种后超敏反应的病例。因此,我们的综述不仅关注 PEG 的重要性及其在提高各种药物疗效方面的巨大作用,还关注归因于使用包括基于 PEG 的 mRNA COVID-19 疫苗在内的聚乙二醇化产品的超敏反应。COVID-19 mRNA 疫苗主要由聚乙二醇化脂质纳米颗粒 (LNP) 组成,最近已获得广泛认可,尽管已记录了许多疫苗接种后超敏反应的病例。因此,我们的综述不仅关注 PEG 的重要性及其在提高各种药物疗效方面的巨大作用,还关注归因于使用包括基于 PEG 的 mRNA COVID-19 疫苗在内的聚乙二醇化产品的超敏反应。COVID-19 mRNA 疫苗主要由聚乙二醇化脂质纳米颗粒 (LNP) 组成,最近已获得广泛认可,尽管已记录了许多疫苗接种后超敏反应的病例。因此,我们的综述不仅关注 PEG 的重要性及其在提高各种药物疗效方面的巨大作用,还关注归因于使用包括基于 PEG 的 mRNA COVID-19 疫苗在内的聚乙二醇化产品的超敏反应。
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Polyethylene glycol (PEG): The nature, immunogenicity, and role in the hypersensitivity of PEGylated products
Polyethylene glycol (PEG) is a versatile polymer that is widely used as an additive in foods and cosmetics, and as a carrier in PEGylated therapeutics. Even though PEG is thought to be less immunogenic, or perhaps even non-immunogenic, with a variety of physicochemical properties, there is mounting evidence that PEG causes immunogenic responses when conjugated with other materials such as proteins and nanocarriers. Under these conditions, PEG with other materials can result in the production of anti-PEG antibodies after administration. The antibodies that are induced seem to have a deleterious impact on the therapeutic efficacy of subsequently administered PEGylated formulations. In addition, hypersensitivity to PEGylated formulations could be a significant barrier to the utility of PEGylated products. Several reports have linked the presence of anti-PEG antibodies to incidences of complement activation-related pseudoallergy (CARPA) following the administration of PEGylated formulations. The use of COVID-19 mRNA vaccines, which are composed mainly of PEGylated lipid nanoparticles (LNPs), has recently gained wide acceptance, although many cases of post-vaccination hypersensitivity have been documented. Therefore, our review focuses not only on the importance of PEGs and its great role in improving the therapeutic efficacy of various medications, but also on the hypersensitivity reactions attributed to the use of PEGylated products that include PEG-based mRNA COVID-19 vaccines.