Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Angiogenesis is the formation of new blood vessel from existing vessels and is a critical first step in tissue repair following chronic disturbances in healing and degenerative tissues. Chronic pathoanatomic tissues are characterized by a high number of inflammatory cells; an overexpression of inflammatory mediators; such as tumor necrosis factor-α (TNF-α) and interleukin-1 (IL-1); the presence of mast cells, T cells, reactive oxygen species, and matrix metalloproteinases; and a decreased angiogenic capacity. Multiple studies have demonstrated that autologous orthobiological cellular preparations (e.g., platelet-rich plasma (PRP)) improve tissue repair and regenerate tissues. There are many PRP devices on the market. Unfortunately, they differ greatly in platelet numbers, cellular composition, and bioformulation. PRP is a platelet concentrate consisting of a high concentration of platelets, with or without certain leukocytes, platelet-derived growth factors (PGFs), cytokines, molecules, and signaling cells. Several PRP products have immunomodulatory capacities that can influence resident cells in a diseased microenvironment, inducing tissue repair or regeneration. Generally, PRP is a blood-derived product, regardless of its platelet number and bioformulation, and the literature indicates both positive and negative patient treatment outcomes. Strangely, the literature does not designate specific PRP preparation qualifications that can potentially contribute to tissue repair. Moreover, the literature scarcely addresses the impact of platelets and leukocytes in PRP on (neo)angiogenesis, other than a general one-size-fits-all statement that "PRP has angiogenic capabilities". Here, we review the cellular composition of all PRP constituents, including leukocytes, and describe the importance of platelet dosing and bioformulation strategies in orthobiological applications to initiate angiogenic pathways that re-establish microvasculature networks, facilitating the supply of oxygen and nutrients to impaired tissues.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10377284PMC
http://dx.doi.org/10.3390/biomedicines11071922DOI Listing

Publication Analysis

Top Keywords

tissue repair
20
platelet dosing
8
dosing bioformulation
8
bioformulation strategies
8
strategies orthobiological
8
platelet-rich plasma
8
prp
8
cellular composition
8
platelets leukocytes
8
repair
5

Similar Publications

Purpose: To clinically validate the nursing diagnosis "Inadequate Nutritional Intake" based on elements identified within a specific situation theory framework in the context of children with cancer.

Methods: This is a diagnostic accuracy study following the Standards for Reporting Diagnostic Accuracy Studies (STARD) protocol. Specifically, it refers to the clinical validation phase of the nursing diagnosis Inadequate nutritional intake, using a cross-sectional design.

View Article and Find Full Text PDF

The global surge in the population of people 60 years and older, including that in China, challenges healthcare systems with rising age-related diseases. To address this demographic change, the Aging Biomarker Consortium (ABC) has launched the X-Age Project to develop a comprehensive aging evaluation system tailored to the Chinese population. Our goal is to identify robust biomarkers and construct composite aging clocks that capture biological age, defined as an individual's physiological and molecular state, across diverse Chinese cohorts.

View Article and Find Full Text PDF

Durotaxis is a driver and potential therapeutic target in lung fibrosis and metastatic pancreatic cancer.

Nat Cell Biol

September 2025

Department of Medicine, Division of Pulmonary and Critical Care Medicine, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA.

Durotaxis, cell migration along stiffness gradients, is linked to embryonic development, tissue repair and disease. Despite solid in vitro evidence, its role in vivo remains largely speculative. Here we demonstrate that durotaxis actively drives disease progression in vivo in mouse models of lung fibrosis and metastatic pancreatic cancer.

View Article and Find Full Text PDF

Electrical pulse generator for electroporation induction in myocytes: Compared effects on skeletal and cardiac cells.

Med Eng Phys

October 2025

Departament of Electronics and Biomedical Engineering, School of Electrical and Computer Engineering (DEEB/FEEC), University of Campinas (UNICAMP), Campinas, SP, Brazil; National Laboratory for Study of Cell Calcium (LabNECC), Center for Biomedical Engineering (CEB), UNICAMP, Campinas, SP, Brazil.

High-intensity, external electric fields (HIEF) have been used in research and therapy for abnormal generation/propagation of the cardiac electrical activity (e.g., defibrillation), and for promoting access of membrane-impermeant molecules into the cytosol through electropores.

View Article and Find Full Text PDF

Dermal Filler Use in Patients Undergoing Chemotherapy and Radiation Therapy.

JMIR Dermatol

September 2025

College of Osteopathic Medicine, Rocky Vista University, 8401 S Chambers Road, Parker, CO, 80112, United States, 1 9253236431.

Dermal fillers have gained increasing popularity for their ability to enhance facial symmetry, restore volume, and improve skin texture. However, their use in patients with cancer undergoing active chemotherapy and radiation therapy poses unique challenges, as these treatments can alter both the safety profile and efficacy of filler procedures. Chemotherapy can interfere with normal wound healing and immune responses, warranting a more cautious and individualized approach when considering dermal fillers in this population.

View Article and Find Full Text PDF