用于传递mrna -脂质纳米颗粒的微针贴片的开发。

IF 5.5 3区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
Sophia H Sakers, B Pradeep K Reddy, Gianna Fiduccia, Katherine E Byrne, Ingrid Stén, Julie Kim, Afsane Radmand, James E Dahlman, Mark R Prausnitz
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引用次数: 0

摘要

通过微针贴片(MNP)递送mRNA可以实现无痛递送,减少对医疗保健专业知识的需求,并提高热稳定性。在本研究中,我们研究了MNPs的配方和制造方法,这些MNPs在MNP的制造和储存过程中提供装载mrna的脂质纳米颗粒(LNPs),编码荧光素酶作为报告蛋白,包括mRNA-LNP的浓度、配方、pH、辅料和背底材料。在体外和体内评估MNPs的mRNA-LNP大小、包封效率和蛋白表达。与离心或切向流过滤的mRNA-LNP浓度相比,最初以较高浓度制备的mRNA-LNPs制备的MNPs具有更好的表达。在MNP制造过程中,酸性pH使体外表达量增加。然而,在体内没有观察到这种相关性。聚乙烯醇(PVA)在MNP制造过程中稳定mRNA-LNPs的效果最好。在MNPs中加入糖并没有进一步提高稳定性。与25°C和40°C干燥相比,低温干燥(5°C)能更好地保存mRNA的功能。虽然最初有明显的活性丧失(在40°C下2天损失87%),但即使在加速条件下(在40°C下28天额外损失10%),mRNA表达也在随后的较长时间内保持稳定。我们的系统方法确定了将mRNA-LNPs纳入MNPs的成功配方和制造方法的关键参数,这可以扩大基于mrna的医疗干预的可及性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a microneedle patch for delivery of mRNA-lipid nanoparticles.

mRNA delivered by microneedle patch (MNP) can enable painless delivery, reduced need for healthcare expertise, and improved thermostability. In this study, we investigated formulation and manufacturing approaches for developing MNPs that deliver mRNA-loaded lipid nanoparticles (LNPs) encoding luciferase as a reporter protein during MNP fabrication and storage, including mRNA-LNP concentration, formulation, pH, excipients, and backing material. MNPs were assessed for mRNA-LNP size, encapsulation efficiency, and protein expression in vitro and in vivo. MNPs fabricated with mRNA-LNPs initially prepared at a higher concentration yielded superior expression compared to mRNA-LNP concentration by centrifugation or tangential flow filtration. Acidic pH during MNP manufacturing enabled greater expression in vitro. However, no such correlation was observed in vivo. Polyvinyl alcohol (PVA) best stabilized mRNA-LNPs during the MNP manufacturing process amongst the tested polymers. Incorporating sugars in MNPs did not further improve stability. Low temperature drying (5 °C) preserved mRNA functionality better compared to drying at 25 °C and 40 °C. Though there was significant activity loss initially (87% loss in 2 days at 40 °C), mRNA expression was stabilized for extended subsequent periods even at accelerated conditions (10% additional loss after 28 days at 40 °C). Our systematic approach identified key parameters for successful formulation and manufacturing approaches to incorporate mRNA-LNPs into MNPs, which could expand access to mRNA-based medical interventions.

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来源期刊
Drug Delivery and Translational Research
Drug Delivery and Translational Research MEDICINE, RESEARCH & EXPERIMENTALPHARMACOL-PHARMACOLOGY & PHARMACY
CiteScore
11.70
自引率
1.90%
发文量
160
期刊介绍: The journal provides a unique forum for scientific publication of high-quality research that is exclusively focused on translational aspects of drug delivery. Rationally developed, effective delivery systems can potentially affect clinical outcome in different disease conditions. Research focused on the following areas of translational drug delivery research will be considered for publication in the journal. Designing and developing novel drug delivery systems, with a focus on their application to disease conditions; Preclinical and clinical data related to drug delivery systems; Drug distribution, pharmacokinetics, clearance, with drug delivery systems as compared to traditional dosing to demonstrate beneficial outcomes Short-term and long-term biocompatibility of drug delivery systems, host response; Biomaterials with growth factors for stem-cell differentiation in regenerative medicine and tissue engineering; Image-guided drug therapy, Nanomedicine; Devices for drug delivery and drug/device combination products. In addition to original full-length papers, communications, and reviews, the journal includes editorials, reports of future meetings, research highlights, and announcements pertaining to the activities of the Controlled Release Society.
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