Autophagy, a self-renewal mechanism, can help to maintain the stability of the intracellular environment of organisms. Autophagy can also regulate several cellular functions and is strongly related to the onset and progression of several diseases. Wound healing is a biological process that is coregulated by different types of cells. However, it is troublesome owing to prolonged treatment duration and poor recovery. In recent years, biomaterials have been reported to influence the skin wound healing process by finely regulating autophagy. Biomaterials that regulate autophagy in various cells involved in skin wound healing to regulate the differentiation, proliferation and migration of cells, inflammatory responses, oxidative stress and formation of the extracellular matrix (ECM) have emerged as a key method for improving the tissue regeneration ability of biomaterials. During the inflammatory phase, autophagy enhances the clearance of pathogens from the wound site and leads to macrophage polarization from the M1 to the M2 phenotype, thus preventing enhanced inflammation that can lead to further tissue damage. Autophagy plays important roles in facilitating the formation of extracellular matrix (ECM) during the proliferative phase, removing excess intracellular ROS, and promoting the proliferation and differentiation of endothelial cells, fibroblasts, and keratinocytes. This review summarizes the close association between autophagy and skin wound healing and discusses the role of biomaterial-based autophagy in tissue regeneration. The applications of recent biomaterials designed to target autophagy are highlighted, including polymeric materials, cellular materials, metal nanomaterials, and carbon-based materials. A better understanding of biomaterial-regulated autophagy and skin regeneration and the underlying molecular mechanisms may open new possibilities for promoting skin regeneration. Moreover, this can lay the foundation for the development of more effective therapeutic approaches and novel biomaterials for clinical applications.
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http://dx.doi.org/10.2147/IJN.S398107 | DOI Listing |
J Matern Fetal Neonatal Med
December 2025
Department of Ultrasound, the First Affiliated Hospital of Hainan Medical College, Haikou, Hainan, China.
Objective: To compare the diagnostic value of transvaginal ultrasound (TVS) and magnetic resonance imaging (MRI) in cesarean scar pregnancy (CSP) by a method of meta-analysis.
Methods: Studies on TVS and MRI for CSP were collected from PubMed, Cochrane Library, Embase, Web of Science, China National Knowledge Infrastructure (CNKI), Wanfang data, and Chinese Scientific Journal Database (VIP database) until April 1, 2024. Stata 15.
J Biol Chem
January 2025
Department of Urology, Renmin Hospital of Wuhan University, Wuhan, Hubei Province, P.R.China. Electronic address:
Bladder cancer (BCa) is a common and lethal disease characterized by high recurrence rates and limited treatment options. Understanding the molecular pathways of BCa progress is crucial for investigating more effective targeted therapies. While ADAMTS12 is known to contribute to cancer progression and treatment resistance, its prognostic significance and underlying mechanisms in BCa remain poorly understood.
View Article and Find Full Text PDFGene
January 2025
Department of Otolaryngology Head and Neck Surgery, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.
Object: N6-methyladenosine (mA), is well known as the most abundant epigenetic modification in messenger RNA, but its influence on laryngeal squamous cell carcinoma (LSCC) remains largely unexplored and poorly understood. This study was designed to explore the effects of mA on WISP1-mediated epithelial-mesenchymal transition (EMT) and tumorigenesis in LSCC.
Methods: mA methylated and expression levels of WISP1 in LSCC tumor tissues and cells were measured by MeRIP-qPCR, qRT-PCR, and western blotting.
Drug Test Anal
January 2025
Hemarina SA, Aeropôle Centre, Morlaix, France.
The natural extracellular hemoglobin of the lugworm Arenicola marina (AmHb) has many interesting characteristics: It carries 40 times more oxygen than human hemoglobin; has anti-inflammatory, antibacterial, and antioxidant properties; and is 250 times smaller than a red blood cell. It is nontoxic and nonimmunogenic. It is thus a very promising hemoglobin-based oxygen carrier.
View Article and Find Full Text PDFInt J Biol Macromol
January 2025
Department of Materials Engineering, Taiyuan Institute of Technology, Taiyuan 030008, China. Electronic address:
Bacterial infections have become a fatal issue for human health. The excessive use of antibiotics leads to bacterial resistance. It is of great importance to develop alternate antimicrobial nanomaterials for effective antibacterial therapy.
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