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1.
Pharmacol Res ; 206: 107269, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-38880313

RESUMEN

Perivascular adipose tissue (PVAT) is known for being anti-contractile in healthy tissues. We discovered a new function of PVAT, the ability to stress relax and maintain a tone in response to a stretch. This is of note because stress relaxation has been attributed to smooth muscle, of which PVAT has none that is organized in a functional layer. We test the hypothesis the interactions of integrins with collagen play a role in stress relaxation. Our model is the thoracic aorta of the male Dahl SS rat. The PVAT and aorta were physically separated for most assays. Results from single nuclei RNA sequencing (snRNAseq) experiments, histochemistry and isometric contractility were also used. Masson Trichrome staining made evident the expression of collagen in PVAT. From snRNA seq experiments of the PVAT, mRNA for multiple collagen and integrin isoforms were detected: the α1 and ß1 integrin were most highly expressed. Pharmacological inhibition of integrin/collagen interaction was effected by the specific α1ß1 distintegrin obtustatin or general integrin inhibitor RGD peptide. RGD peptide but not obtustatin increased the stress relaxation. Cell-cell communication inference identified integrins αv and α5, two major RGD motif containing isoforms, as potential signaling partners of collagens. Collectively, these findings validate that stress relaxation can occur in a non-smooth muscle tissue, doing so in part through integrin-collagen interactions that may not include α1ß1 heterodimers. The importance of this lies in considering PVAT as a vascular layer that possesses mechanical functions.


Asunto(s)
Tejido Adiposo , Aorta Torácica , Colágeno , Integrinas , Ratas Endogámicas Dahl , Animales , Masculino , Tejido Adiposo/metabolismo , Integrinas/metabolismo , Aorta Torácica/metabolismo , Colágeno/metabolismo , Ratas
2.
Nat Commun ; 14(1): 8245, 2023 Dec 12.
Artículo en Inglés | MEDLINE | ID: mdl-38086920

RESUMEN

Pluripotent stem cell-derived organoids can recapitulate significant features of organ development in vitro. We hypothesized that creating human heart organoids by mimicking aspects of in utero gestation (e.g., addition of metabolic and hormonal factors) would lead to higher physiological and anatomical relevance. We find that heart organoids produced using this self-organization-driven developmental induction strategy are remarkably similar transcriptionally and morphologically to age-matched human embryonic hearts. We also show that they recapitulate several aspects of cardiac development, including large atrial and ventricular chambers, proepicardial organ formation, and retinoic acid-mediated anterior-posterior patterning, mimicking the developmental processes found in the post-heart tube stage primitive heart. Moreover, we provide proof-of-concept demonstration of the value of this system for disease modeling by exploring the effects of ondansetron, a drug administered to pregnant women and associated with congenital heart defects. These findings constitute a significant technical advance for synthetic heart development and provide a powerful tool for cardiac disease modeling.


Asunto(s)
Cardiopatías , Células Madre Pluripotentes Inducidas , Células Madre Pluripotentes , Embarazo , Humanos , Femenino , Células Madre Pluripotentes Inducidas/metabolismo , Organoides/metabolismo , Corazón , Cardiopatías/metabolismo , Diferenciación Celular/fisiología
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