Prenatal VEGF Nano-Delivery Reverses Congenital Diaphragmatic Hernia-Associated Pulmonary Abnormalities

Stavros Loukogeorgakis,Federica Michielin,Soichi Shibuya,Noura Al-Juffali,Julio Jimenez,Jessica Allen-Hyttinen, Patrice Eastwood,Ahmed Alhendi,Joseph Davidson, Eleonora Naldi, Panos Maghsoudlou, Alfonso Tedeschi, Sahira Khalaf, Aziza Khabbush,Manuela Plate, Camila Fachin, Andre Dos Santos Dias, Nikhil Sindhawani,Dominic Scaglioni, Theodoros Xenakis,Neil Sebire, Monica Giomo,Simon Eaton,Jaan Toelen,Camilla Luni,Piero Pavan,Peter Carmeliet,Francesca Russo,Samuel Janes,Marko Nikolic,Nicola Elvassore,Jan Deprest,Paolo De Coppi

biorxiv(2024)

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摘要
Rationale: Congenital diaphragmatic hernia (CDH) results in lung hypoplasia. In severe cases, tracheal occlusion (TO) can be offered to promote lung growth. However the benefit is limited, and novel treatments are required to supplement TO. Vascular endothelial growth factor (VEGF) is downregulated in animal models of CDH and could be a therapeutic target, but its role in human CDH is not known. Objectives: To investigate whether VEGF supplementation could be a suitable treatment for CDH-associated lung pathology. Methods: Fetal lungs from CDH patients were used to determine pulmonary morphology and VEGF expression. A novel human ex vivo model of fetal lung compression recapitulating CDH features was developed and used to determine the effect of exogenous VEGF supplementation (Figure 1A). A nanoparticle-based approach for intra-pulmonary delivery of VEGF was developed by conjugating it on functionalized nanodiamonds (ND-VEGF) and was tested in experimental CDH in vivo. Measurements and Main Results: VEGF expression was downregulated in distal pulmonary epithelium of human CDH fetuses in conjunction with attenuated cell proliferation. The compression model resulted in impaired branching morphogenesis similar to CDH and downregulation of VEGF expression in conjunction with reduced proliferation of terminal bud epithelial progenitors; these could be reversed by exogenous supplementation of VEGF. Prenatal delivery of VEGF with the ND-VEGF platform in CDH fetal rats resulted in lung growth and pulmonary arterial remodelling that was complementary to that achieved by TO alone with appearances comparable to healthy controls. Conclusions: This innovative approach could have a significant impact on the treatment of CDH. ### Competing Interest Statement The authors have declared no competing interest.
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