TY - JOUR
T1 - Mesenchymal Stem Cell-derived Extracellular Vesicles Prevent Experimental Bronchopulmonary Dysplasia Complicated by Pulmonary Hypertension
AU - Sharma, Mayank
AU - Bellio, Michael A.
AU - Benny, Merline
AU - Kulandavelu, Shathiyah
AU - Chen, Pingping
AU - Janjindamai, Chawisa
AU - Han, Chenxu
AU - Chang, Liming
AU - Sterling, Shanique
AU - Williams, Kevin
AU - Damianos, Andreas
AU - Batlahally, Sunil
AU - Kelly, Kaitlyn
AU - Aguilar-Caballero, Daniela
AU - Zambrano, Ronald
AU - Chen, Shaoyi
AU - Huang, Jian
AU - Wu, Shu
AU - Hare, Joshua M.
AU - Schmidt, Augusto
AU - Khan, Aisha
AU - Young, Karen
N1 - Publisher Copyright:
© 2022 The Author(s). Published by Oxford University Press.
PY - 2022/8
Y1 - 2022/8
N2 - Mesenchymal stem cell (MSC) extracellular vesicles (EVs) have beneficial effects in preclinical bronchopulmonary dysplasia and pulmonary hypertension (BPD-PH) models. The optimal source, dosing, route, and duration of effects are however unknown. The objectives of this study were to (a) compare the efficacy of GMP-grade EVs obtained from Wharton's Jelly MSCs (WJ-MSCs) and bone marrow (BM-MSCs), (b) determine the optimal dosing and route of administration, (c) evaluate its long-Term effects, and (d) determine how MSC EVs alter the lung transcriptome. Newborn rats exposed to normoxia or hyperoxia (85% O2) from postnatal day (P)1-P14 were given (a) intra-Tracheal (IT) BM or WJ-MSC EVs or placebo, (b) varying doses of IT WJ-MSC EVs, or (c) IT or intravenous (IV) WJ-MSC EVs on P3. Rats were evaluated at P14 or 3 months. Early administration of IT BM-MSC or WJ-MSC EVs had similar beneficial effects on lung structure and PH in hyperoxia-exposed rats. WJ-MSC EVs however had superior effects on cardiac remodeling. Low, medium, and high dose WJ-MSC EVs had similar cardiopulmonary regenerative effects. IT and IV WJ-MSC EVs similarly improved vascular density and reduced PH in hyperoxic rats. Gene-set enrichment analysis of transcripts differentially expressed in WJ-MSC EV-Treated rats showed that induced transcripts were associated with angiogenesis. Long-Term studies demonstrated that a single early MSC EV dose has pulmonary vascular protective effects 3 months after administration. Together, our findings have significant translational implications as it provides critical insight into the optimal source, dosing, route, mechanisms of action, and duration of effects of MSC-EVs for BPD-PH.
AB - Mesenchymal stem cell (MSC) extracellular vesicles (EVs) have beneficial effects in preclinical bronchopulmonary dysplasia and pulmonary hypertension (BPD-PH) models. The optimal source, dosing, route, and duration of effects are however unknown. The objectives of this study were to (a) compare the efficacy of GMP-grade EVs obtained from Wharton's Jelly MSCs (WJ-MSCs) and bone marrow (BM-MSCs), (b) determine the optimal dosing and route of administration, (c) evaluate its long-Term effects, and (d) determine how MSC EVs alter the lung transcriptome. Newborn rats exposed to normoxia or hyperoxia (85% O2) from postnatal day (P)1-P14 were given (a) intra-Tracheal (IT) BM or WJ-MSC EVs or placebo, (b) varying doses of IT WJ-MSC EVs, or (c) IT or intravenous (IV) WJ-MSC EVs on P3. Rats were evaluated at P14 or 3 months. Early administration of IT BM-MSC or WJ-MSC EVs had similar beneficial effects on lung structure and PH in hyperoxia-exposed rats. WJ-MSC EVs however had superior effects on cardiac remodeling. Low, medium, and high dose WJ-MSC EVs had similar cardiopulmonary regenerative effects. IT and IV WJ-MSC EVs similarly improved vascular density and reduced PH in hyperoxic rats. Gene-set enrichment analysis of transcripts differentially expressed in WJ-MSC EV-Treated rats showed that induced transcripts were associated with angiogenesis. Long-Term studies demonstrated that a single early MSC EV dose has pulmonary vascular protective effects 3 months after administration. Together, our findings have significant translational implications as it provides critical insight into the optimal source, dosing, route, mechanisms of action, and duration of effects of MSC-EVs for BPD-PH.
KW - bronchopulmonary dysplasia
KW - extracellular vesicles
KW - mesenchymal stem cell
KW - preterm
KW - pulmonary hypertension
UR - https://www.scopus.com/pages/publications/85137124173
U2 - 10.1093/stcltm/szac041
DO - 10.1093/stcltm/szac041
M3 - Article
C2 - 35758326
AN - SCOPUS:85137124173
SN - 2157-6564
VL - 11
SP - 828
EP - 840
JO - Stem cells translational medicine
JF - Stem cells translational medicine
IS - 8
ER -