Background And Aim Of The Study: The study aim was to assess the growth potential and function of the tricuspid valve (TV) annulus after annuloplasty with the intra-annular biodegradable ring.
Methods: Among 11 children (median age 4.5 years; age range: 0.2-10.9 years) who underwent surgery for severe congenital TV regurgitation, valve repair was completed using a biodegradable annuloplasty ring. The children were followed regularly using transthoracic echocardiography, whereby the TV annulus lateral diameter (TVALD) and valve function were monitored. Rates of valve growth were derived from the slope of the regression equations which related TVALD to the natural logarithm of the body surface area (lnBSA).
Results: The children's somatic growth was harmonious throughout the entire follow up period (mean 478 days; range: 171-1,477 days). The TVALD differed significantly at six months and at one and two years after surgery compared to the postoperative value at discharge, rising from 19 mm (range: 15.5-26.0 mm) to 24 mm (range: 19.0-30.0 mm) at the last control examination (p = 0.003), while the related Z-scores remained stable. A significant linear correlation between TVALD and lnBSA was found in 63.6% of patients. The median rate of growth for the whole cohort was 1.96-fold (range: 0.52-5.53-fold) higher than a norm, and correlated strongly and positively with age (r = 0.91; p <0.05). The median postoperative TV insufficiency fraction of 9.8% (range: 0-28.8%) remained constant during the follow up period. The postoperative TV maximal pressure gradient was 5.5 mmHg (range: 3.1-12.2 mmHg), and did not increase over time.
Conclusion: The implantation of a biodegradable ring does not restrict growth of the native TV annulus; this enabled its stabilization in proportion to the somatic growth in the majority of the children. The TV annulus began to change its dimension at six months postoperatively, which may coincide with its biodegradation. The rate of growth of the TV annulus differed from that in the normal population, and was proportional to the patient age. The increase in TV annulus diameter over time did not have any negative influence on the function of the repaired valve.
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Nanomedicine (Lond)
January 2025
Department of Pharmaceutical Sciences, Eugene Applebaum College of Pharmacy and Health Sciences, Wayne State University, Detroit, MI, USA.
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January 2025
Arizona College of Osteopathic Medicine, Midwestern University, Glendale, AZ, USA.
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View Article and Find Full Text PDFPharm Dev Technol
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Department of Pharmacy, School of Chemistry and Chemical Engineering, Liaoning Normal University, Dalian 116029, China.
In this paper, the pH-sensitive targeting functional material NGR-poly(2-ethyl-2-oxazoline)-cholesteryl methyl carbonate (NGR-PEtOz-CHMC, NPC) modified quercetin (QUE) liposomes (NPC-QUE-L) was constructed. The structure of NPC was confirmed by infrared spectroscopy (IR) and nuclear magnetic resonance hydrogen spectrum (H-NMR). Pharmacokinetic results showed that the accumulation of QUE in plasma of the NPC-QUE-L group was 1.
View Article and Find Full Text PDFNMR Biomed
February 2025
Department of Biomedical Engineering, Yale University, New Haven, Connecticut, USA.
Cellular metabolism is inextricably linked to transmembrane levels of proton (H), sodium (Na), and potassium (K) ions. Although reduced sodium-potassium pump (Na-K ATPase) activity in tumors directly disturbs transmembrane Na and K levels, this dysfunction is a result of upregulated aerobic glycolysis generating excessive cytosolic H (and lactate) which are extruded to acidify the interstitial space. These oncogene-directed metabolic changes, affecting intracellular Na and H, can be further exacerbated by upregulation of ion exchangers/transporters.
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