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透明质酸在 COPD 中的治疗潜力。

The Therapeutic Potential of Hyaluronan in COPD.

机构信息

Department of Medicine, Mt. Sinai-St. Luke's-Roosevelt Hospital, New York, NY; Department of Medicine, Mt. Sinai Icahn School of Medicine, New York, NY.

Department of Medicine, Mt. Sinai-St. Luke's-Roosevelt Hospital, New York, NY; Department of Medicine, Mt. Sinai Icahn School of Medicine, New York, NY.

出版信息

Chest. 2018 Apr;153(4):792-798. doi: 10.1016/j.chest.2017.12.016. Epub 2017 Dec 28.

Abstract

Insights into the clinical course of COPD indicate the need for new therapies for this condition. The discovery of alpha-1 antitrypsin deficiency (AATD) led to the protease-antiprotease imbalance hypothesis, which was applied to COPD related to AATD as well as COPD not related to AATD. The discovery of AATD brought recognition to the importance of elastin fibers in maintaining lung matrix structure. Two cross-linking amino acids, desmosine and isodesmosine (DI), are unique to mature elastin and can serve as biomarkers of the degradation of elastin. The intravenous augmentation treatment and lung density in severe alpha-1 antitrypsin deficiency (RAPID) study shows a correlation of an anatomic index of COPD (on CT imaging) correlating with a chemical indicator of matrix injury in COPD, DI. The results suggest that preservation of lung elastin structure may slow the progression of COPD. Hyaluronan aerosol decreases the severity of elastase-induced emphysema in animals and has induced reductions in DI levels in preliminary human studies. Hyaluronan deserves further development as a therapy for COPD.

摘要

对 COPD 临床病程的深入了解表明,这种疾病需要新的治疗方法。α-1 抗胰蛋白酶缺乏症(AATD)的发现导致了蛋白酶-抗蛋白酶失衡假说,该假说适用于与 AATD 相关的 COPD 以及与 AATD 无关的 COPD。AATD 的发现使人们认识到弹性纤维在维持肺基质结构中的重要性。两种交联氨基酸,即脱氨酸和异脱氨酸(DI),是成熟弹性蛋白所特有的,可作为弹性蛋白降解的生物标志物。静脉增强治疗和严重α-1 抗胰蛋白酶缺乏症(RAPID)研究中的肺密度表明,COPD 的解剖学指标(在 CT 成像上)与 COPD 中基质损伤的化学指标 DI 相关。结果表明,肺弹性蛋白结构的保存可能会减缓 COPD 的进展。透明质酸气雾剂可降低动物弹性蛋白酶诱导性肺气肿的严重程度,初步人体研究表明透明质酸可降低 DI 水平。透明质酸作为 COPD 的一种治疗方法值得进一步开发。

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