Department of Chemistry and Biochemistry, Mendel University in Brno, Brno, Czech Republic.
Central European Institute of Technology, Brno University of Technology, Brno, Czech Republic.
Int J Nanomedicine. 2024 Apr 30;19:3907-3917. doi: 10.2147/IJN.S452119. eCollection 2024.
As highlighted by recent pandemic outbreaks, antiviral drugs are crucial resources in the global battle against viral diseases. Unfortunately, most antiviral drugs are characterized by a plethora of side effects and low efficiency/poor bioavailability owing to their insolubility. This also applies to the arylnaphthalide lignin family member, diphyllin (Diph). Diph acts as a vacuolar ATPase inhibitor and has been previously identified as a promising candidate with broad-spectrum antiviral activity. However, its physicochemical properties preclude its efficient administration in vivo, complicating preclinical testing.
We produced human recombinant - ferritin (HsaFtH) and used it as a delivery vehicle for Diph encapsulation through pH-mediated reversible reassembly of HsaFtH. Diph nanoformulation was subsequently thoroughly characterized and tested for its non-target cytotoxicity and antiviral efficiency using a panel of pathogenic viral strain.
We revealed that loading into HsaFtH decreased the undesired cytotoxicity of Diph in mammalian host cells. We also confirmed that encapsulated Diph exhibited slightly lower antiviral activity than free Diph, which may be due to the differential uptake mechanism and kinetics of free Diph and Diph@HsaFtH. Furthermore, we confirmed that the antiviral effect was mediated solely by Diph with no contribution from HsaFtH.
It was confirmed that HsaFtH is a suitable vehicle that allows easy loading of Diph and production of highly homogeneous nanoparticles dispersion with promising broad-spectrum antiviral activity.
最近的几次大流行病爆发凸显出,抗病毒药物是全球对抗病毒性疾病的关键资源。遗憾的是,由于大多数抗病毒药物溶解度低,其往往具有多种副作用且效率低/生物利用度差。芳基萘内酯木质素家族成员二氢菲(Diph)也不例外。Diph 作为液泡型三磷酸腺苷酶抑制剂,先前已被鉴定为具有广谱抗病毒活性的有前途的候选药物。然而,其理化性质使其难以在体内有效给药,这使得临床前测试变得复杂。
我们制备了人重组 - 铁蛋白(HsaFtH),并通过 HsaFtH 的 pH 介导的可逆重组装将其用作封装 Diph 的载体。随后对 Diph 纳米制剂进行了全面表征,并使用一系列致病性病毒株测试其非靶向细胞毒性和抗病毒效率。
我们发现,负载到 HsaFtH 中降低了 Diph 在哺乳动物宿主细胞中的不良细胞毒性。我们还证实,包封的 Diph 的抗病毒活性略低于游离 Diph,这可能是由于游离 Diph 和 Diph@HsaFtH 的摄取机制和动力学存在差异。此外,我们证实抗病毒作用仅由 Diph 介导,而与 HsaFtH 无关。
证实 HsaFtH 是一种合适的载体,可轻松负载 Diph 并生产具有潜在广谱抗病毒活性的高均匀纳米颗粒分散体。