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result(s) for
"Lehtinen, Miia L."
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Placental growth factor exerts a dual function for cardiomyogenesis and vasculogenesis during heart development
2023
Cardiogenic growth factors play important roles in heart development. Placental growth factor (PLGF) has previously been reported to have angiogenic effects; however, its potential role in cardiogenesis has not yet been determined. We analyze single-cell RNA-sequencing data derived from human and primate embryonic hearts and find PLGF shows a biphasic expression pattern, as it is expressed specifically on ISL1
+
second heart field progenitors at an earlier stage and on vascular smooth muscle cells (SMCs) and endothelial cells (ECs) at later stages. Using chemically modified mRNAs (modRNAs), we generate a panel of cardiogenic growth factors and test their effects on enhancing cardiomyocyte (CM) and EC induction during different stages of human embryonic stem cell (hESC) differentiations. We discover that only the application of PLGF modRNA at early time points of hESC-CM differentiation can increase both CM and EC production. Conversely, genetic deletion of
PLGF
reduces generation of CMs, SMCs and ECs in vitro. We also confirm in vivo beneficial effects of PLGF modRNA for development of human heart progenitor-derived cardiac muscle grafts on murine kidney capsules. Further, we identify the previously unrecognized PLGF-related transcriptional networks driven by EOMES and SOX17. These results shed light on the dual cardiomyogenic and vasculogenic effects of PLGF during heart development.
Growth factors play key roles during heart development. Here they show that PLGF has both autocrine and paracrine roles during cardiomyogenesis and vasculogenesis, suggesting it may have therapeutic potential for heart disease.
Journal Article
Bridging to a delayed pulmonary endarterectomy in massive acute-on-chronic pulmonary thromboembolism: a case report
by
Kesävuori, Risto
,
Nykänen, Antti
,
Ropponen, Jussi
in
Acute Disease
,
Blood clots
,
Cardiac Surgery
2025
Background
Rarely, the first sign of chronic thromboembolic pulmonary hypertension (CTEPH) is acute embolism, an acute-on-chronic event. These patients are challenging: they need emergent care but are not candidates for immediate definitive treatment with pulmonary endarterectomy (PEA) due to their critical condition.
Case presentation
We report a patient with massive acute-on-chronic pulmonary thromboembolism leading to cardiogenic shock. We decided on a staged surgical treatment strategy: emergency surgical embolectomy; brindging and stabilization with central veno-arterial extracorporeal membrane oxygenator; and delayed PEA. The patient had full recovery.
Conclusions
Patients with an undiagnosed CTEPH developing an acute embolism are in a very high risk of facing a complicated recovery and death. A multidisciplinary team effort is warranted. A staged surgical approach with delayed PEA after stabilization seems a reasonable option to manage these rare and complex patients.
Journal Article
Epicardial delivery of autologous atrial appendage micrografts during coronary artery bypass surgery—safety and feasibility study
by
Nummi, Annu
,
Kankuri, Esko
,
Teittinen, Kari
in
Atrial appendage
,
Autologous micrografts
,
Biomedicine
2017
Background
The atrial appendages are a tissue reservoir for cardiac stem cells. During on-pump coronary artery bypass graft (CABG) surgery, part of the right atrial appendage can be excised upon insertion of the right atrial cannula of the heart-lung machine. In the operating room, the removed tissue can be easily cut into micrografts for transplantation. This trial aims to assess the safety and feasibility of epicardial transplantation of atrial appendage micrografts in patients undergoing CABG surgery.
Methods/design
Autologous cardiac micrografts are made from leftover right atrial appendage during CABG of 6 patients. Atrial appendage is mechanically processed to micrografts consisting of atrial appendage-derived cells (AADCs) and their extracellular matrix (ECM). The micrografts are epicardially transplanted in a fibrin gel and covered with a tissue-engineered ECM sheet. Parameters including echocardiography—reflecting cardiac insufficiency—are studied pre- and post-operatively as well as at 3 and 6 months of the follow-up. Cardiac functional magnetic resonance imaging is performed preoperatively and at 6-month follow-up. The primary outcome measures are patient safety in terms of hemodynamic and cardiac function over time and feasibility of therapy administration in a clinical setting. Secondary outcome measures are left ventricular wall thickness, change in the amount of myocardial scar tissue, changes in left ventricular ejection fraction, plasma concentrations of N-terminal pro-B-type natriuretic peptide (NT-proBNP) levels, New York Heart Association class, days in hospital, and changes in the quality of life. Twenty patients undergoing routine CAGB surgery will be recruited to serve as a control group.
Discussion
This study aims to address the surgical feasibility and patient safety of epicardially delivered atrial appendage micrografts during CABG surgery. Delivery of autologous micrografts and AADCs has potential applications for cell and cell-based gene therapies.
Trial registration
ClinicalTrials.gov
Identifier:
NCT02672163
. Date of registration: 02.02.2016
Journal Article
Migratory and anti-fibrotic programmes define the regenerative potential of human cardiac progenitors
2022
Heart regeneration is an unmet clinical need, hampered by limited renewal of adult cardiomyocytes and fibrotic scarring. Pluripotent stem cell-based strategies are emerging, but unravelling cellular dynamics of host–graft crosstalk remains elusive. Here, by combining lineage tracing and single-cell transcriptomics in injured non-human primate heart biomimics, we uncover the coordinated action modes of human progenitor-mediated muscle repair. Chemoattraction via CXCL12/CXCR4 directs cellular migration to injury sites. Activated fibroblast repulsion targets fibrosis by SLIT2/ROBO1 guidance in organizing cytoskeletal dynamics. Ultimately, differentiation and electromechanical integration lead to functional restoration of damaged heart muscle. In vivo transplantation into acutely and chronically injured porcine hearts illustrated CXCR4-dependent homing, de novo formation of heart muscle, scar-volume reduction and prevention of heart failure progression. Concurrent endothelial differentiation contributed to graft neovascularization. Our study demonstrates that inherent developmental programmes within cardiac progenitors are sequentially activated in disease, enabling the cells to sense and counteract acute and chronic injury.
In this study, the authors report that pluripotent stem cell-derived ventricular progenitors target loss of myocardium and fibrotic scarring to promote heart regeneration, thus offering new potential therapeutic strategies for heart injury.
Journal Article