Rudolfs Cimdins Riga Biomaterials Innovation and Development Centre, Institute of General Chemical Engineering, Faculty of Materials Science and Applied Chemistry, Riga Technical University, Pulka 3, Riga LV-1007, Latvia; Baltic Biomaterials Centre of Excellence, Headquarters at Riga Technical University, Riga, Latvia.
Rudolfs Cimdins Riga Biomaterials Innovation and Development Centre, Institute of General Chemical Engineering, Faculty of Materials Science and Applied Chemistry, Riga Technical University, Pulka 3, Riga LV-1007, Latvia.
Acta Biomater. 2022 Sep 15;150:48-57. doi: 10.1016/j.actbio.2022.07.063. Epub 2022 Aug 3.
Amidst an ever-increasing demand for the enhancement of the lifestyle and the modulation of modern diseases, the functionalization of biomaterials is of utmost importance. One of the leading materials for the aforementioned purpose have been calcium phosphates (CaPs). They have been widely used in bone regeneration displaying favourable regenerative potential and biological properties. Many studies have placed their entire focus on facilitating the osteogenic differentiation of stem cells and bone progenitor cells, while the aspect of antibacterial properties has been surmounted. Nevertheless, increasing antibiotic resistance of bacteria requires the development of new materials and the usage of alternative approaches such as ion doping. Gallium (Ga) has been the potential star on the rise among the ions. However, the obstacle that accompanies gallium is the scarcity of research performed and the variety of amalgamations. The question that imposes itself is how a growing field of therapeutics can be further entwined with advances in material science, and how will the incorporation of gallium bring a new outlook. The present study offers a comprehensive overview of state-of-the-art gallium containing calcium phosphates (GaCaPs), their synthesis methods, antibacterial properties, and biocompatibility. Considering their vast potential as antibacterial agents, the need for a methodical perspective is highly necessary to determine if it is a direction on the brink of recognition or a fruitless endeavour. STATEMENT OF SIGNIFICANCE: Although several studies have been published on various metal ions-containing calcium phosphates, to this date there is no systematic overview pointing out the properties and benefits of gallium containing calcium phosphates. Here we offer a critical overview, including synthesis, structure and biological properties of gallium containing calcium phosphates.
在对生活方式的提升和现代疾病的调节的需求不断增加的情况下,生物材料的功能化变得至关重要。钙磷灰石(CaPs)是用于上述目的的主要材料之一。它们已广泛用于骨再生,显示出良好的再生潜力和生物特性。许多研究都将重点完全放在促进干细胞和骨祖细胞的成骨分化上,而忽略了抗菌性能方面。然而,细菌对抗生素的耐药性不断增加,需要开发新材料和使用替代方法,如离子掺杂。镓(Ga)是离子中崛起的潜在明星。然而,镓所伴随的障碍是研究的缺乏和各种组合的多样性。问题在于,不断发展的治疗领域如何与材料科学的进步进一步融合,以及镓的加入将带来什么样的新前景。本研究全面概述了含镓的钙磷灰石(GaCaPs)的最新研究进展,包括它们的合成方法、抗菌性能和生物相容性。考虑到它们作为抗菌剂的巨大潜力,非常有必要从系统的角度来确定它们是处于被认可的边缘,还是徒劳无益。意义陈述:尽管已经发表了许多关于各种含金属离子的钙磷灰石的研究,但迄今为止,还没有系统的综述指出含镓的钙磷灰石的特性和优势。在这里,我们提供了一个批判性的综述,包括含镓的钙磷灰石的合成、结构和生物学特性。