Leonardi Fabio, Simonazzi Barbara, Martini Filippo Maria, D'Angelo Pasquale, Foresti Ruben, Botti Maddalena
Department of Veterinary Science, University of Parma, 43126 Parma, Italy.
CNR-IMEM, Italian National Research Council, Institute of Materials for Electronics and Magnetism, 43126 Parma, Italy.
Vet Sci. 2024 Aug 12;11(8):368. doi: 10.3390/vetsci11080368.
In recent years, there has been a growing interest in 3D printing technology within the field of bioengineering. This technology offers the ability to create devices with intricate macro- and micro-geometries, as well as specific models. It has particularly gained attention for its potential in personalized medicine, allowing for the production of organ or tissue models tailored to individual patient needs. Further, 3D printing has opened up possibilities to manufacture structures that can substitute, complement, or enhance damaged or dysfunctional organic parts. To apply 3D printing in the medical field, researchers have studied various materials known as biomaterials, each with distinct chemical and physical characteristics. These materials fall into two main categories: hard and soft materials. Each biomaterial needs to possess specific characteristics that are compatible with biological systems, ensuring long-term stability and biocompatibility. In this paper, we aim to review some of the materials used in the biomedical field, with a particular focus on those utilized in veterinary medicine and ophthalmology. We will discuss the significant findings from recent scientific research, focusing on the biocompatibility, structure, applicability, and in vitro and in vivo biological characteristics of two hard and four soft materials. Additionally, we will present the current state and prospects of veterinary ophthalmology.
近年来,生物工程领域对3D打印技术的兴趣日益浓厚。这项技术能够制造出具有复杂宏观和微观几何形状的设备以及特定模型。它因其在个性化医疗方面的潜力而备受关注,能够生产根据个体患者需求定制的器官或组织模型。此外,3D打印为制造可替代、补充或增强受损或功能失调的有机部件的结构开辟了可能性。为了在医学领域应用3D打印技术,研究人员研究了各种被称为生物材料的材料,每种材料都具有独特的化学和物理特性。这些材料主要分为两类:硬质材料和软质材料。每种生物材料都需要具备与生物系统兼容的特定特性,以确保长期稳定性和生物相容性。在本文中,我们旨在综述生物医学领域中使用的一些材料,特别关注兽医学和眼科领域所使用的材料。我们将讨论近期科学研究的重要发现,重点关注两种硬质材料和四种软质材料的生物相容性、结构、适用性以及体外和体内生物学特性。此外,我们还将介绍兽用眼科的现状和前景。