Evidence that Osteoblasts are Specialized Citrate-producing Cells that Provide the Citrate for Incorporation into the Structure of Bone.

Renty B Franklin, Meena Chellaiah, Jing Zou, Mark A Reynolds, Leslie C Costello
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引用次数: 39

Abstract

Citrate is a major component of bone in all vertebrates, but its implications in bone have remained largely unknown. Recent studies identified that citrate is incorporated into the structure of the hydroxyapatite nanocrystal/collagen complex; and is essential for the important biomechanical properties of bone. This raises the important question, "What is the source of citrate for incorporation into bone?"; A question that heretofore had remained unresolved. Studies in this report were designed to determine the plausibility of our concept that the osteoblasts are specialized citrate-producing cells, which provide the citrate that is incorporated into the structure of bone; and that osteogenic differentiation of mesenchyme cells leads to the development of the citrate-producing osteoblasts. The results demonstrated that primary human osteoblasts exhibit the capability of citrate-production. Undifferentiated mesenchyme cells do not exhibit the capability of citrate production; and osteogenic differentiation results in citrate-producing osteoblasts. The up-regulation of zinc uptake transporter ZIP1 is essential for the manifestation of the citrate-producing capability of the osteoblasts. We determined that osteoblast transport of citrate from plasma is not a likely source of citrate in bone. Thus, this study establishes for the first time that the osteoblasts are specialized citrate-producing cells that provide the citrate for incorporation into the structure of bone; and that mesenchyme cell osteogenesis leads to differentiated citrate-producing osteoblasts. This is a new understanding; which must include the osteogenic development of citrate-producing osteoblasts, and the process of "citration" in concert with mineralization during bone formation. It also provides a new understanding of the role of bone in the homeostatic maintenance of plasma citrate concentration.

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证据表明成骨细胞是专门生产柠檬酸盐的细胞,提供柠檬酸盐并入骨结构。
柠檬酸盐是所有脊椎动物骨骼的主要成分,但其对骨骼的影响在很大程度上仍然未知。最近的研究发现,柠檬酸盐被纳入羟基磷灰石纳米晶体/胶原复合物的结构中;对骨骼的重要生物力学特性至关重要。这就提出了一个重要的问题,“进入骨骼的柠檬酸盐的来源是什么?”这是一个至今仍未解决的问题。本报告中的研究旨在确定我们的概念的合理性,即成骨细胞是专门生产柠檬酸盐的细胞,它提供融入骨骼结构的柠檬酸盐;间充质细胞的成骨分化导致产生柠檬酸盐的成骨细胞的发育。结果表明,人原代成骨细胞具有产生柠檬酸盐的能力。未分化的间充质细胞不具有产生柠檬酸盐的能力;成骨分化导致产生柠檬酸盐的成骨细胞。锌摄取转运蛋白ZIP1的上调对成骨细胞柠檬酸盐生成能力的表现至关重要。我们确定,血浆中柠檬酸盐的成骨细胞运输不可能是骨中柠檬酸盐的来源。因此,这项研究首次证实了成骨细胞是一种专门的柠檬酸盐产生细胞,它为骨结构提供柠檬酸盐;间充质细胞成骨导致分化的柠檬酸盐生成成骨细胞。这是一种新的理解;这必须包括产生柠檬酸盐的成骨细胞的成骨发育,以及在骨形成过程中与矿化相一致的“柠檬酸”过程。这也为骨在维持血浆柠檬酸盐浓度的稳态中的作用提供了新的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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