Exosomal microRNA predicts and protects against severe bronchopulmonary dysplasia in extremely premature infants

被引:109
|
作者
Lal, Charitharth Vivek [1 ,2 ,3 ]
Olave, Nelida [1 ,2 ]
Travers, Colm [1 ]
Rezonzew, Gabriel [1 ,2 ]
Dolma, Kalsang [1 ]
Simpson, Alexandra [1 ]
Halloran, Brian [1 ,2 ]
Aghai, Zubair [4 ]
Das, Pragnya [5 ]
Sharma, Nirmal [6 ]
Xu, Xin [3 ,6 ]
Genschmer, Kristopher [3 ,6 ]
Russell, Derek [3 ,6 ]
Szul, Tomasz [3 ,6 ]
Yi, Nengjun [7 ]
Blalock, J. Edwin [3 ,6 ]
Gaggar, Amit [3 ,6 ]
Bhandari, Vineet [5 ]
Ambalavanan, Namasivayam [1 ,2 ]
机构
[1] UAB, Dept Pediat, Birmingham, AL USA
[2] UAB, Translat Res Disordered & Normal Dev Program, Birmingham, AL USA
[3] UAB, Dept Med, Program Protease & Matrix Biol, Birmingham, AL USA
[4] Thomas Jefferson Univ Nemours, Dept Pediat, Philadelphia, PA USA
[5] Drexel Univ, Dept Pediat, Philadelphia, PA 19104 USA
[6] UAB, Sch Publ Hlth, Div Pulm Allergy & Crit Care Med, Birmingham, AL USA
[7] UAB, Sch Publ Hlth, Dept Biostat, Birmingham, AL USA
关键词
EXTRACELLULAR VESICLES; DISEASE; IMPACT; BPD;
D O I
10.1172/jci.insight.93994
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Premature infants are at high risk for developing bronchopulmonary dysplasia (BPD), characterized by chronic inflammation and inhibition of lung development, which we have recently identified as being modulated by microRNAs ( miRNAs) and alterations in the airway microbiome. Exosomes and exosomal miRNAs may regulate cell differentiation and tissue and organ development. We discovered that tracheal aspirates from infants with severe BPD had increased numbers of, but smaller, exosomes compared with term controls. Similarly, bronchoalveolar lavage fluid from hyperoxia-exposed mice (an animal model of BPD) and supernatants from hyperoxia-exposed human bronchial epithelial cells (in vitro model of BPD) had increased exosomes compared with air controls. Next, in a prospective cohort study of tracheal aspirates obtained at birth from extremely preterm infants, utilizing independent discovery and validation cohorts, we identified unbiased exosomal miRNA signatures predictive of severe BPD. The strongest signal of reduced miR-876-3p in BPD-susceptible compared with BPD-resistant infants was confirmed in the animal model and in vitro models of BPD. In addition, based on our recent discovery of increased Proteobacteria in the airway microbiome being associated with BPD, we developed potentially novel in vivo and in vitro models for BPD combining Proteobacterial LPS and hyperoxia exposure. Addition of LPS led to a larger reduction in exosomal miR 876-3p in both hyperoxia and normoxia compared with hyperoxia alone, thus indicating a potential mechanism by which alterations in microbiota can suppress miR 876-3p. Gain of function of miR 876-3p improved the alveolar architecture in the in vivo BPD model, demonstrating a causal link between miR 876-3p and BPD. In summary, we provide evidence for the strong predictive biomarker potential of miR 876-3p in severe BPD. We also provide insights on the pathogenesis of neonatal lung disease, as modulated by hyperoxia and microbial product-induced changes in exosomal miRNA 876-3p, which could be targeted for future therapeutic development.
引用
收藏
页数:17
相关论文
共 50 条
  • [31] The association of γδ-T cells with bronchopulmonary dysplasia in premature infants
    Wang, Yin-juan
    Zhang, Xiao-li
    Liu, Jia-xin
    Niu, Ming
    Jin, Xin-yun
    Yuan, En-wu
    Shi, Ying
    Li, Wen-li
    Xu, Fa-lin
    HUMAN IMMUNOLOGY, 2021, 82 (01) : 54 - 59
  • [32] Growth and development in premature infants with bronchopulmonary dysplasia (BPD)
    Alshaar, M.
    Sajous, C.
    Weiss, M.
    PEDIATRIC RESEARCH, 2007, 62 (04) : 520 - 520
  • [33] Lung Ultrasonography to Diagnose Bronchopulmonary Dysplasia of Premature Infants
    Liu, Jing
    Chi, Jing-Han
    Fu, Wei
    Zhang, Li
    Qiu, Ru-Xin
    IRANIAN JOURNAL OF PEDIATRICS, 2021, 31 (04)
  • [34] Biomarkers associated with bronchopulmonary dysplasia/mortality in premature infants
    Jessica Balena-Borneman
    Namasivayam Ambalavanan
    Hemant K. Tiwari
    Russell L. Griffin
    Brian Halloran
    David Askenazi
    Pediatric Research, 2017, 81 : 519 - 525
  • [35] Furosemide Exposure and Prevention of Bronchopulmonary Dysplasia in Premature Infants
    Greenberg, Rachel G.
    Gayam, Sreepriya
    Savage, Destiny
    Tong, Andrew
    Gorham, Daniel
    Sholomon, Ari
    Clark, Reese H.
    Benjamin, Daniel K.
    Laughon, Matthew
    Smith, P. Brian
    JOURNAL OF PEDIATRICS, 2019, 208 : 134 - +
  • [36] Biomarkers associated with bronchopulmonary dysplasia/mortality in premature infants
    Balena-Borneman, Jessica
    Ambalavanan, Namasivayam
    Tiwari, Hemant K.
    Griffin, Russell L.
    Halloran, Brian
    Askenazi, David
    PEDIATRIC RESEARCH, 2017, 81 (03) : 519 - 525
  • [37] A nomogram for predicting the risk of Bronchopulmonary dysplasia in premature infants
    Shen, Xian
    Patel, Nishant
    Zhu, Wen
    Chen, Xu
    Lu, Keyu
    Cheng, Rui
    Mo, Xuming
    HELIYON, 2023, 9 (08)
  • [38] Serum enzyme activities in premature infants with bronchopulmonary dysplasia
    Zanardo, V
    Rizzo, L
    Trevisanuto, D
    Simbi, KA
    Golin, R
    Magarotto, M
    Marzari, F
    FETAL DIAGNOSIS AND THERAPY, 1999, 14 (06) : 341 - 344
  • [39] Comparisons of two definitions of bronchopulmonary dysplasia for the premature infants
    Li, Jiahui
    Xu, Haiyan
    PEDIATRIC PULMONOLOGY, 2022, 57 (01) : 217 - 223
  • [40] BECLOMETHASONE FOR TREATING PREMATURE-INFANTS WITH BRONCHOPULMONARY DYSPLASIA
    GAL, P
    DIAZ, PR
    RANSOM, JL
    CARLOS, RQ
    THORSON, DW
    JOURNAL OF PEDIATRICS, 1993, 123 (03): : 490 - 491