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Human Pulmonary Surfactant Protein SP-A1 provides maximal efficiency of lung interfacial films

dc.contributor.authorLópez-Rodríguez, Elena
dc.contributor.authorPascual, Alicia
dc.contributor.authorArroyo, Raquel
dc.contributor.authorFloros, Joanna
dc.contributor.authorPérez-Gil, Jesús
dc.date.accessioned2023-06-17T21:58:42Z
dc.date.available2023-06-17T21:58:42Z
dc.date.issued2016-08
dc.description.abstractPulmonary surfactant is a lipoprotein complex that reduces surface tension to prevent alveolar collapse and contributes to the protection of the respiratory surface from the entry of pathogens. Surfactant protein A (SP-A) is a hydrophilic glycoprotein of the collectin family, and its main function is related to host defense. However, previous studies have shown that SP-A also aids in the formation and biophysical properties of pulmonary surfactant films at the air-water interface. Humans, unlike rodents, have two genes, SFTPA1 and SFTPA2. The encoded proteins, SP-A1 and SP-A2, differ quantitatively or qualitatively in function. It has been shown that both gene products are necessary for tubular myelin formation, an extracellular structural form of lung surfactant. The goal of this study was to investigate potential differences in the biophysical properties of surfactants containing human SP-A1, SP-A2, or both. For this purpose, we have studied for the first time, to our knowledge, the biophysical properties of pulmonary surfactant from individual humanized transgenic mice expressing human SP-A1, SP-A2, or both SP-A1 and SP-A2, in the captive bubble surfactometer. We observed that pulmonary surfactant containing SP-A1 reaches lower surface tension after postexpansion interfacial adsorption than surfactants containing no SP-A or only SP-A2. Under interfacial compression-expansion cycling conditions, surfactant films containing SP-A1 also performed better, particularly with respect to the reorganization of the films that takes place during compression. On the other hand, addition of recombinant SP-A1 to a surfactant preparation reconstituted from the hydrophobic fraction of a porcine surfactant made it more resistant to inhibition by serum than the addition of equivalent amounts of SP-A2. We conclude that the presence of SP-A1 allows pulmonary surfactant to adopt a particularly favorable structure with optimal biophysical properties.
dc.description.departmentSección Deptal. de Bioquímica y Biología Molecular (Biológicas)
dc.description.facultyFac. de Ciencias Biológicas
dc.description.refereedTRUE
dc.description.sponsorshipMinisterio de Economía y Competitividad (MINECO)
dc.description.sponsorshipComunidad de Madrid
dc.description.sponsorshipNational Institutes of Health(USA)
dc.description.statuspub
dc.eprint.idhttps://eprints.ucm.es/id/eprint/43444
dc.identifier.doi10.1016/j.bpj.2016.06.025
dc.identifier.issn0006-3495, ESSN: 1542-0086
dc.identifier.officialurlhttp://www.cell.com/biophysj/fulltext/S0006-3495(16)30471-4
dc.identifier.urihttps://hdl.handle.net/20.500.14352/17876
dc.issue.number3
dc.journal.titleBiophysical Journal
dc.language.isoeng
dc.page.final536
dc.page.initial524
dc.publisherBiophysical Society
dc.relation.projectID(BIO2012-30733 and BIO2015-67930-R)
dc.relation.projectID(S2013/MlT-2807)
dc.relation.projectID(HL34788)
dc.rights.accessRightsrestricted access
dc.subject.cdu577.112
dc.subject.keywordPulmonary surfactant
dc.subject.keywordprotein SP-A1
dc.subject.keywordLung interfacial films
dc.subject.ucmBioquímica (Biología)
dc.subject.unesco2302 Bioquímica
dc.titleHuman Pulmonary Surfactant Protein SP-A1 provides maximal efficiency of lung interfacial films
dc.typejournal article
dc.volume.number111
dspace.entity.typePublication

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