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3466 Innovative 3D Printed Intravaginal Rings: Developing AnelleO PRO the First Intravaginal Ring for Infertility

机译:3466创新的3D打印阴道环:正在开发AnelleO PRO这是第一款用于不孕症的阴道环

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摘要

OBJECTIVES/SPECIFIC AIMS: The study aims to develop and test a biocompatible 3D-printed IVRs for the mechanical and release properties of a model drug, β-estradiol, then translate these methods to the target drug, progesterone. The goals include demonstrating decoupling of mechanical and release properties of the rings, release profiles driven by geometry and efficacy in sheep animal models to evaluate device safety. METHODS/STUDY POPULATION: A novel 3D-printing platform, continuous liquid interface production (CLIP), pioneered by Carbon, enables the fabrication of complex designs on a timescale that is amenable to manufacturing. The process utilizes computational-aided design (CAD), specifying shape and geometry, which is recreated via a photopolymerization process. IVRs are fabricated with CLIP using a biocompatible resin at a rate of approximately 15 min. per ring. Rings were fabricated and assessed for the release of a model drug, β-estradiol. The process was then translated to the target drug, progesterone. Rings were evaluated for radial compression and in vitro release in simulated vaginal fluid (SVF). RESULTS/ANTICIPATED RESULTS: Intravaginal rings (IVRs) were designed and fabricated to be geometrically complex in an effort to control release. Ring geometry and subsequent pore size was achieved through the use of unit cells. Several design parameters were explored including unit cell type, size, and band presence in two resins of differing mechanical properties. Through design, a wide range of radial compressive properties were achieved which spanned values covered by commercially available rings. The release of β-estradiol in SVF was found to span 57 – 115 days and resulted in near or complete release of the total loaded drug. Changing the internal geometric design of the ring was found to have minimal influence on the compression properties, thus the mechanical and release characteristics of the rings were largely decoupled. DISCUSSION/SIGNIFICANCE OF IMPACT: This is a novel approach to the design and fabrication of intravaginal rings for the treatment of infertility. The use of CAD and the decoupling of release from mechanical properties allows for us to move away from the one-size one-dose fits all approach to IVRs.
机译:目标/特定目的:该研究旨在开发和测试具有生物相容性的3D打印IVR,以研究模型药物β-雌二醇的机械和释放特性,然后将这些方法转化为目标药物孕激素。目标包括证明环的机械性能和释放特性脱钩,由几何形状和功效驱动的释放曲线在绵羊动物模型中评估装置安全性。方法/研究人群:由Carbon率先开发的新颖的3D打印平台,连续液体界面生产(CLIP),可以在适合制造的时间范围内制造复杂的设计。该过程利用计算辅助设计(CAD)来指定形状和几何形状,并通过光聚合过程重新创建。使用生物相容性树脂以CLIP制作IVR的速度约为15分钟。每圈。制造环并评估模型药物β-雌二醇的释放。然后将该过程翻译成目标药物黄体酮。评估环在模拟阴道液(SVF)中的径向压缩和体外释放。结果/预期结果:阴道内环(IVR)的设计和制造在几何上很复杂,以控制释放。通过使用晶胞获得环的几何形状和随后的孔径。探索了几种设计参数,包括两种具有不同机械性能的树脂的晶胞类型,大小和能带。通过设计,获得了广泛的径向压缩性能,这些压缩性能跨越了市售环所覆盖的值。发现SVF中β-雌二醇的释放期为57-115天,导致总载药量接近或完全释放。发现改变环的内部几何设计对压缩性能的影响最小,因此,环的机械和释放特性在很大程度上分离。讨论/意义:这是设计和制造阴道环用于治疗不育症的新颖方法。 CAD的使用以及释放与机械性能的脱钩使我们能够摆脱一种均一的,适合IVR的单一剂量的方法。

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