Several biocompatible materials have been applied for managing soft tissue lesions; cerium oxide nanoparticles (CNPs, or nanoceria) are among the most promising candidates due to their outstanding properties, including antioxidant, anti-inflammatory, antibacterial, and angiogenic activities. Much attention should be paid to the physical properties of nanoceria, since most of its biological characteristics are directly determined by some of these relevant parameters, including the particle size and shape. Nanoceria, either in bare or functionalized forms, showed the excellent capability of accelerating the healing process of both acute and chronic wounds. The skin, heart, nervous system, and ophthalmic tissues are the main targets of nanoceria-based therapies, and the other soft tissues may also be evaluated in upcoming experimental studies. For the repair and regeneration of soft tissue damage and defects, nanoceria-incorporated film, hydrogel, and nanofibrous scaffolds have been proven to be highly suitable replacements with satisfactory outcomes. Still, some concerns have remained regarding the long-term effects of nanoceria administration for human tissues and organs, such as its clearance from the vital organs. Moreover, looking at the future, it seems necessary to design and develop three-dimensional (3D) printed scaffolds containing nanoceria for possible use in the concepts of personalized medicine.
In this study, we successfully utilized nitrate precursors for the synthesis of silver (Ag)-doped borate-based mesoporous bioactive glass (MBGs) based on the 1393B3 glass formulation in the presence of a polymeric substrate (polyvinyl alcohol (PVA)) as a stabilizer of boric acid. The X-ray diffraction (XRD) analysis confirmed the glassy state of all the MBGs. The incorporation of 7.5 mol% Ag into the glass composition led to a decrease in the glass transition temperature (Tg). Improvements in the particle size, zeta potential, surface roughness, and surface area values were observed in the Ag-doped MBGs. The MBGs (1 mg/mL) had no adverse effect on the viability of fibroblasts. In addition, Ag-doped MBGs exhibited potent antibacterial activity against gram-positive and gram-negative species. In summary, a modified sol–gel method was confirmed for producing the Ag-doped 1393B3 glasses, and the primary in vitro outcomes hold promise for conducting in vivo studies for managing burns.
Objective: The Bethesda System 2001 for reporting cervical cytology recommends reporting benign-appearing, exfoliated endometrial cells in women aged 40 years or older. The objective of this study was to determine the significance of normal endometrial cells in conventional Papanicolaou (Pap) tests of women aged 40 years and older and to correlate this finding with histological follow-up. Study Design: Over a period of 5 years, all Pap tests showing endometrial cells in women aged ≥40 years were identified. Histological follow-up and outcome were evaluated. Results: Out of 17,275 Pap tests, 199 (1.15%) showed benign endometrial cells. Forty-seven of these 199 patients had subsequent tissue sampling by surgical procedures including endometrial curettage (n = 31), lower genital tract biopsy (n = 30) and hysterectomy (n = 2). Overall, out of 47 cases, 3 (6.4%) had significant endometrial pathology including 2 simple hyperplasias without atypia and 1 complex hyperplasia with atypia. Conclusion: The incidence of clinically significant endometrial lesions associated with the presence of endometrial cells in Pap tests of women aged 40 years and older was very low. Considering this finding, women aged between 40 and 50 years with benign endometrial cells in a Pap test should undertake endometrial sampling only when additional clinical indicators are recognized.
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