ERC Advanced Investigator Grant Research Group at the Institute for Physiological Chemistry, University Medical Center of the Johannes Gutenberg University, Duesbergweg 6, D-55128, Mainz, Germany.
Small. 2024 Aug;20(33):e2309528. doi: 10.1002/smll.202309528. Epub 2024 Mar 12.
Nanoparticles of a particular, evolutionarily old inorganic polymer found across the biological kingdoms have attracted increasing interest in recent years not only because of their crucial role in metabolism but also their potential medical applicability: it is inorganic polyphosphate (polyP). This ubiquitous linear polymer is composed of 10-1000 phosphate residues linked by high-energy anhydride bonds. PolyP causes induction of gene activity, provides phosphate for bone mineralization, and serves as an energy supplier through enzymatic cleavage of its acid anhydride bonds and subsequent ATP formation. The biomedical breakthrough of polyP came with the development of a successful fabrication process, in depot form, as Ca- or Mg-polyP nanoparticles, or as the directly effective polymer, as soluble Na-polyP, for regenerative repair and healing processes, especially in tissue areas with insufficient blood supply. Physiologically, the platelets are the main vehicles for polyP nanoparticles in the circulating blood. To be biomedically active, these particles undergo coacervation. This review provides an overview of the properties of polyP and polyP nanoparticles for applications in the regeneration and repair of bone, cartilage, and skin. In addition to studies on animal models, the first successful proof-of-concept studies on humans for the healing of chronic wounds are outlined.
近年来,一种在生物界广泛存在的特殊、古老的无机聚合物纳米颗粒引起了越来越多的关注,不仅因为它们在新陈代谢中的关键作用,还因为它们在医学上的潜在应用价值:这就是无机多聚磷酸盐(polyP)。这种无处不在的线性聚合物由 10-1000 个通过高能酐键连接的磷酸基团组成。多聚磷酸盐能诱导基因活性,为骨矿化提供磷酸,通过其酸酐键的酶促裂解和随后的 ATP 形成,作为能量供应源。多聚磷酸盐的生物医学突破是随着成功的制造工艺的发展而来的,以钙或镁多聚磷酸盐纳米颗粒的形式储存,或以直接有效的聚合物形式储存,即可溶性的 Na-polyP,用于再生修复和愈合过程,特别是在血液供应不足的组织区域。在生理上,血小板是循环血液中多聚磷酸盐纳米颗粒的主要载体。为了具有生物医学活性,这些颗粒会发生凝聚。本文综述了多聚磷酸盐及其纳米颗粒在骨、软骨和皮肤再生和修复中的应用。除了对动物模型的研究外,还概述了首例关于多聚磷酸盐纳米颗粒治疗慢性伤口愈合的人体概念验证研究。