ZERO WORLD RESEARCHアミノ酸・有機酸の学術文献データベース

Nanomaterial Nitric Oxide Delivery in Traumatic Orthopedic Regenerative Medicine.

外傷性整形外科再生医療におけるナノ材料一酸化窒素送達 (機械翻訳の邦題)

Frontiers in bioengineering and biotechnology2020Anastasio AT, Paniagua A, Diamond C, et al.
研究デザインレビュー
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記録の確認項目

研究デザイン
レビュー
対象
未確定
出版年
2020
出典
doi.org
抄録の表示
表示あり
出版状態
有効な記録
状態確認日
2026/08/17
収集日
2026/08/03
鮮度
確認期限内
確認段階
自動処理
記録状態
公開

日本語要約(機械生成)

骨折の治癒不全は多因子性で、創傷汚染、感染、開放骨折、血管状態不良、免疫応答異常などが関与する。一酸化窒素(NO)は細胞膜を拡散し、創傷治癒において除染、炎症調節、血管新生、組織リモデリングに関与し、グラム陰性・陽性菌の増殖抑制により感染対策にも寄与する。本総説では、NO供与体(有機硝酸塩、金属NO錯体、NONOateなど)と、エアロゲル、ゾルゲル由来ナノ材料、デンドリマー、ミセル、コア架橋スター(CCS)ポリマーなどのナノ材料によるNOの骨への局所送達機構の最近の進歩を概説する。さらに、3D骨スキャフォールドへのナノ粒子化NO放出の組み込みについても議論し、骨折治癒改善における治療上の可能性を探る。

この要約は公開抄録のみを根拠にAIが機械的に生成したものです。正確な内容は原文を確認してください。

抄録

Achieving bone fracture union after trauma represents a major challenge for the orthopedic surgeon. Fracture non-healing has a multifactorial etiology and there are many risk factors for non-fusion. Environmental factors such as wound contamination, infection, and open fractures can contribute to non-healing, as can patient specific factors such as poor vascular status and improper immunologic response to fracture. Nitric oxide (NO) is a small, neutral, hydrophobic, highly reactive free radical that can diffuse across local cell membranes and exert paracrine functions in the vascular wall. This molecule plays a role in many biologic pathways, and participates in wound healing through decontamination, mediating inflammation, angiogenesis, and tissue remodeling. Additionally, NO is thought to play a role in fighting wound infection by mitigating growth of both Gram negative and Gram positive pathogens. Herein, we discuss recent developments in NO delivery mechanisms and potential implications for patients with bone fractures. NO donors are functional groups that store and release NO, independent of the enzymatic actions of NOS. Donor molecules include organic nitrates/nitrites, metal-NO complexes, and low molecular weight NO donors such as NONOates. Numerous advancements have also been made in developing mechanisms for localized nanomaterial delivery of nitric oxide to bone. NO-releasing aerogels, sol- gel derived nanomaterials, dendrimers, NO-releasing micelles, and core cross linked star (CCS) polymers are all discussed as potential avenues of NO delivery to bone. As a further target for improved fracture healing, 3d bone scaffolds have been developed to include potential for nanoparticulated NO release. These advancements are discussed in detail, and their potential therapeutic advantages are explored. This review aims to provide valuable insight for translational researchers who wish to improve the armamentarium of the feature trauma surgeon through use of NO mediated augmentation of bone healing.

DOI 10.3389/fbioe.2020.592008

PMID 33537289

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