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采用复合微针持续递呈抗原用于有效的经皮免疫治疗。

Sustained antigens delivery using composite microneedles for effective epicutaneous immunotherapy.

机构信息

Key Laboratory of Precision Nutrition and Food Quality, Key Laboratory of Functional Dairy, Ministry of Education, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing, 100083, China.

出版信息

Drug Deliv Transl Res. 2023 Jun;13(6):1828-1841. doi: 10.1007/s13346-023-01298-8. Epub 2023 Mar 24.

Abstract

Allergen-specific immunotherapy (SIT) is a desirable way of therapy for various allergic diseases such as food allergy (FA). However, frequent visits for more than 3 years and potential adverse effects often hinder patient compliance. Recently, many researchers started focusing on microneedles (MNs) as a new method for SIT. In this study, we proposed an implantable MNs system produced by a two-step casting process, consisting of OVA (antigen)-loaded silk microneedles and a dissolvable, flexible polyvinyl alcohol (PVA) pedestal. Different from PVA, silk fibroin hydrogel has preferable vaccine release ability in vivo and in vitro. Once MNs are inserted into the skin, the PVA pedestal can dissolve in the interstitial fluid of the excised skin within 5 min and implant the OVA-loaded silk microneedle tips in dermal layer as a sustained antigen depot, thus inducing long-lasting immune response for at least 2 weeks. After receiving 3 doses of MN-based immunotherapy, the immune response in OVA-sensitized mice was successfully suppressed, with no apparent side effects. Compared to conventional subcutaneous immunotherapy (total dose of 150 [Formula: see text]g), MN immunotherapy ameliorated systemic anaphylaxis more effectively even at a lower dose (total dose of 30 [Formula: see text]g), demonstrating the antigen dose-sparing potential of the proposed MNs. Moreover, due to the prolonged release effect of silk-PVA composite MNs, the frequency of immunotherapy can be significantly reduced. To sum up, through prolonged skin exposure to antigen, this implantable designed MN may offer a new therapeutic strategy for FA treatment with significant improvements in efficacy and convenience. Schematic illustration of silk-PVA composite microneedles, consisting of OVA (antigen)-loaded silk microneedles and a dissolvable, flexible PVA pedestal. Once inserted into the skin, the PVA pedestal can dissolve in the interstitial fluid of the excised skin within 5 min. Subsequently, the OVA-loaded silk microneedle tips were implanted in the dermal layer as a sustained antigen depot and induced long-lasting immune response. This MNs-based immunotherapy can significantly modulate the Th1/Th2 imbalance of sensitized mice.

摘要

过敏原特异性免疫疗法(SIT)是治疗各种过敏性疾病(如食物过敏(FA))的理想方法。然而,频繁就诊超过 3 年和潜在的不良反应常常阻碍了患者的依从性。最近,许多研究人员开始关注微针(MNs)作为 SIT 的新方法。在这项研究中,我们提出了一种由两步铸造工艺生产的可植入 MNs 系统,该系统由载有 OVA(抗原)的丝微针和可溶解的柔性聚乙烯醇(PVA)底座组成。与 PVA 不同,丝素水凝胶在体内和体外具有更好的疫苗释放能力。一旦 MNs 插入皮肤,PVA 底座可在 5 分钟内在切除皮肤的间质液中溶解,并将载有 OVA 的丝微针尖端植入真皮层作为持续的抗原库,从而诱导至少 2 周的持久免疫反应。接受 3 剂 MN 免疫治疗后,OVA 致敏小鼠的免疫反应得到成功抑制,无明显副作用。与传统的皮下免疫治疗(总剂量为 150[公式:见文本]g)相比,MN 免疫治疗在较低剂量(总剂量为 30[公式:见文本]g)下更有效地改善了全身过敏反应,显示了所提出的 MNs 的抗原剂量节约潜力。此外,由于丝-PVA 复合 MNs 的延长释放效果,免疫治疗的频率可以显著降低。总之,通过延长皮肤暴露于抗原,这种可植入设计的 MN 可能为 FA 治疗提供一种新的治疗策略,在疗效和便利性方面有显著改善。丝-PVA 复合微针的示意图,由载有 OVA(抗原)的丝微针和可溶解的柔性 PVA 底座组成。一旦插入皮肤,PVA 底座可在 5 分钟内在切除皮肤的间质液中溶解。随后,载有 OVA 的丝微针尖端被植入真皮层作为持续的抗原库,诱导持久的免疫反应。这种基于 MNs 的免疫疗法可以显著调节致敏小鼠的 Th1/Th2 失衡。

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