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21 pages, 4415 KB  
Review
The Role of Laser Technology in Modern Hysteroscopy: Narrative Literature Review of Principles, Clinical Applications, and Current Limitations
by Alessandro Messina, Alessio Massaro, Eleonora Dalmasso, Alessandro Libretti, Livio Leo and Bianca Masturzo
Surgeries 2026, 7(3), 92; https://doi.org/10.3390/surgeries7030092 - 9 Aug 2026
Viewed by 274
Abstract
Laser technology has recently gained renewed interest in hysteroscopic surgery due to advances in fiber-optic delivery systems, device miniaturization, and the growing adoption of office-based procedures. In this context, laser energy represents a potential alternative to conventional mechanical and electrosurgical techniques, particularly in [...] Read more.
Laser technology has recently gained renewed interest in hysteroscopic surgery due to advances in fiber-optic delivery systems, device miniaturization, and the growing adoption of office-based procedures. In this context, laser energy represents a potential alternative to conventional mechanical and electrosurgical techniques, particularly in settings where precision and tissue preservation are clinically relevant. This narrative review provides a comprehensive and clinically oriented overview of the role of laser technology in modern hysteroscopy. A literature search was conducted in PubMed, Scopus, and Web of Science up to December 2025, focusing on studies addressing technical aspects, clinical applications, safety, and outpatient feasibility of laser-assisted hysteroscopy. Different laser systems, including Nd:YAG, diode, CO2, Ho:YAG, and KTP lasers, are discussed in terms of physical properties and tissue interaction. Current clinical applications include the management of intrauterine adhesions, submucous myomas, endometrial polyps, septate uterus, and selected cases of endometrial ablation. Available evidence suggests that modern diode laser platforms are particularly suited for office-based procedures due to their combined cutting and coagulative effects and compatibility with small-caliber hysteroscopes. However, most of the current literature is based on small, heterogeneous studies, and robust comparative data with standard hysteroscopic techniques remain limited. As a result, laser hysteroscopy cannot yet be considered a standard approach across indications. To move beyond a purely technical appraisal, this review also frames laser hysteroscopy as a potential translational platform in which laser–tissue interaction, biomarker-informed patient selection, endometrial repair biology, fertility outcomes, and adhesion-formation mechanisms may be integrated into future functional precision medicine pathways. In conclusion, laser technology represents a promising and evolving tool in operative hysteroscopy, with potential advantages in selected clinical scenarios. Further prospective and comparative studies are required to better define its role and to support its broader integration into routine clinical practice. Full article
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25 pages, 6957 KB  
Article
Integrative In Vivo and Proteomic Analysis of a Bovistella utriformis Polysaccharide Formulation Reveals Mechanisms of Enhanced Skin Wound Healing
by Aya Maaloul, Juan Decara, Piedad Valverde-Guillén, Casimiro Cárdenas-García, Cristian Riquelme, Claudia Pérez Manríquez, Antonio Jesús López-Gambero, María Albendea Santana, Manuel Marí-Beffa, Marisel Araya-Rojas, Victor Fajardo and Roberto Teófilo Abdala-Díaz
Molecules 2026, 31(8), 1233; https://doi.org/10.3390/molecules31081233 - 8 Apr 2026
Viewed by 1062
Abstract
Natural fungal polysaccharides are increasingly explored as bioactive compounds capable of orchestrating complex regenerative responses during tissue repair. This study aimed to evaluate the in vivo wound-healing efficacy and molecular mechanisms of a topical polysaccharide formulation derived from Bovistella utriformis (Calvatin 2%) using [...] Read more.
Natural fungal polysaccharides are increasingly explored as bioactive compounds capable of orchestrating complex regenerative responses during tissue repair. This study aimed to evaluate the in vivo wound-healing efficacy and molecular mechanisms of a topical polysaccharide formulation derived from Bovistella utriformis (Calvatin 2%) using complementary murine, zebrafish, and proteomic approaches. Phylogenetic analysis based on ITS sequences confirmed the taxonomic identity of the Chilean specimen. In a murine full-thickness excisional wound model, Calvatin 2% significantly accelerated wound contraction and re-epithelialization compared to both saline and base-cream controls, achieving near-complete closure by day 10. Label-free quantitative proteomic analysis of wound tissue by UHPLC-HRMS identified 2432 high-confidence proteins, with 171 upregulated and 153 downregulated proteins in the Calvatin versus control comparison (p < 0.01). Functional enrichment revealed strong activation of innate immune response, complement activation, coagulation cascades, and acute-phase response pathways, while lipid metabolism, mitochondrial energy production, and muscle-related processes were significantly downregulated. KEGG pathway analysis further highlighted complement and coagulation cascades and neutrophil extracellular trap formation as the most prominently affected pathways. In a zebrafish laser-induced wound model, Calvatin induced early and sustained regenerative responses, reaching over 93% wound closure by 18 days post-lesion, significantly outperforming both PBS and vehicle-treated groups. Chronic oral administration of polysaccharides did not induce major hepatic inflammatory responses, supporting systemic safety. Overall, these findings indicate that B. utriformis polysaccharides are associated with modulation of immune- and repair-related pathways together with tissue reprogramming processes that may contribute to accelerated cutaneous regeneration, positioning Calvatin as a promising bioactive formulation for wound-healing applications. Full article
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15 pages, 2217 KB  
Article
Early Phase Gingival Wound Healing Following Low-Level Er:YAG Laser Irradiation: In Vitro and In Vivo Studies
by Lu Chen, Koji Mizutani, Natsumi Saito, Bruna Akinaga Moreira, Daisuke Kido, Takanori Iwata and Akira Aoki
Dent. J. 2026, 14(3), 138; https://doi.org/10.3390/dj14030138 - 2 Mar 2026
Viewed by 850
Abstract
Background: Low-level laser irradiation (LLLI) can promote wound healing. However, the biological effects of the erbium-doped yttrium aluminum garnet (Er:YAG) laser on gingival wound healing remain unclear. Objectives: To assess the effects of low-level Er:YAG laser irradiation on endothelial cell activity in vitro [...] Read more.
Background: Low-level laser irradiation (LLLI) can promote wound healing. However, the biological effects of the erbium-doped yttrium aluminum garnet (Er:YAG) laser on gingival wound healing remain unclear. Objectives: To assess the effects of low-level Er:YAG laser irradiation on endothelial cell activity in vitro and on early phase gingival wound healing in vivo. Methods: In vitro, human umbilical vein endothelial cells were irradiated with a low-level Er:YAG laser (30 mJ/pulse, 10 Hz, 20 and 30 s, defocused, no water spray) and assessed for viability, cytotoxicity, and migration. Standardized bilateral wounds (4 × 1 mm) were created in the palatal gingiva of 14 male mice using a scalpel and curette. The wounds were irradiated for 20 s under the same irradiation settings, using a contact tip (diameter 800 μm) to induce superficial blood surface coagulation, while contralateral sites were assigned to controls in a split-mouth design. Postoperative wound area and mRNA expression of IL-6, TNF-α, VEGF, FGF-2, and TGF-β1 were analyzed after 48 h. Results: In vitro, LLLI significantly enhanced cell proliferation with/without increasing cytotoxicity. In the wound healing assay, the LLLI significantly promoted cell migration compared with the control. In vivo, the reduction in residual wound area in the laser group was comparable to that in the control group. IL-6 and TNF-α expressions were significantly downregulated, whereas VEGF was significantly upregulated in the laser group. Conclusions: Low-level Er:YAG laser irradiation enhances anti-inflammatory and pro-angiogenic effects, suggesting its potential in promoting gingival wound healing. Full article
(This article belongs to the Special Issue Laser Dentistry: The Current Status and Developments)
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15 pages, 387 KB  
Review
Regenerative Surgery, State of the Art and New Perspectives: A Narrative Review
by Federica Pulicari, Matteo Pellegrini, Sabrina Darwish, Anita Groppi, Massimo Porrini, Moreno Bosotti, Margherita Rossi and Francesco Spadari
Medicina 2026, 62(3), 432; https://doi.org/10.3390/medicina62030432 - 25 Feb 2026
Viewed by 1059
Abstract
Background and Objectives: Soft tissue regeneration in oral surgery has undergone remarkable progress in the last decade, supported by the development of innovative laser technologies, advanced biomaterials, platelet-rich plasma (PRP), mesenchymal stem cells (MSCs), and three-dimensional (3D) printing. Lasers are increasingly used not [...] Read more.
Background and Objectives: Soft tissue regeneration in oral surgery has undergone remarkable progress in the last decade, supported by the development of innovative laser technologies, advanced biomaterials, platelet-rich plasma (PRP), mesenchymal stem cells (MSCs), and three-dimensional (3D) printing. Lasers are increasingly used not only for incision and coagulation but also for photobiomodulation, promoting cellular proliferation, angiogenesis, and tissue healing. The purpose of this review is to analyze the current advances in soft tissue regeneration, with a particular focus on the clinical use of lasers and their integration with other regenerative strategies. In parallel, hard tissue regeneration has evolved through the synergistic use of bioactive scaffolds, recombinant human growth factors (rhBMP-2, rhPDGF-BB), MSCs, and 3D-printed constructs. These innovations have enhanced alveolar bone regeneration, implant osseointegration, and periodontal tissue repair, offering predictable clinical outcomes. Materials and Methods: A review of the literature published between 2015 and 2025 was conducted through PubMed, Scopus, Web of Science, Embase, and Google Scholar. Clinical and preclinical studies on the use of CO2, Nd:YAG, Er:YAG, diode, and 445 nm lasers, biomaterials, PRP, MSCs, growth factors, and 3D-printed scaffolds were included. Results: Laser applications demonstrated significant benefits in epithelialization, biostimulation, and reduction in postoperative discomfort in soft tissues. For hard tissues, the combined use of MSCs, bioactive scaffolds, and growth factors promoted osteogenic differentiation, bone volume preservation, and improved mechanical stability. Photobiomodulation enhanced osteoblastic activity and accelerated bone remodeling, while 3D-printed scaffolds provided personalized architecture for optimal integration. Conclusions: Regenerative approaches integrating lasers, biomaterials, PRP, MSCs, growth factors, and 3D printing represent safe, minimally invasive, and effective strategies for the regeneration of both soft and hard oral tissues. These multidisciplinary techniques improve healing quality, functional recovery, and esthetic outcomes, reflecting the growing trend toward precision and technology-driven regenerative oral surgery. Full article
(This article belongs to the Special Issue New Regenerative Medicine Strategies in Oral Surgery)
25 pages, 7838 KB  
Review
Optical Biosensors for Blood Coagulation Monitoring: Advantages, Limitations, and Translational Potential
by Zichen Wang, Gaohong Di and Jing Wang
Biosensors 2026, 16(2), 123; https://doi.org/10.3390/bios16020123 - 16 Feb 2026
Viewed by 972
Abstract
Dynamic monitoring of hemostatic equilibrium is indispensable for clinical safety in high-risk scenarios, while current clinical methods are limited by sample volume, detection speed, and physiological relevance. These shortcomings underscore the demand for novel sensing platforms. Optical biosensors, leveraging label-free detection, rapid response, [...] Read more.
Dynamic monitoring of hemostatic equilibrium is indispensable for clinical safety in high-risk scenarios, while current clinical methods are limited by sample volume, detection speed, and physiological relevance. These shortcomings underscore the demand for novel sensing platforms. Optical biosensors, leveraging label-free detection, rapid response, and multi-level characterization, could serve as a transformative solution for decentralized and point-of-care monitoring. This review systematically summarizes advances in optical coagulation testing, encompassing light transmission aggregometry, laser speckle rheology, optical coherence tomography/elastography, optic–acoustic coupled methods, and fluorescence biosensing. These technologies complementarily capture structural and mechanical and some molecular and cellular dynamics of coagulation, bridging gaps in traditional assays. Despite promising preclinical and clinical correlations, translation barriers persist in lack of standardization of metrics, interference mitigation, and multi-center validation in diverse patient cohorts. Future development of optical biosensing platforms for coagulation testing should focus on modular integration, AI-aided interference correction, and microfluidic miniaturization to realize actionable, real-time coagulation assessment. Optical biosensors hold unparalleled potential to transform hemostatic monitoring from static endpoint testing to dynamic, interpretable evaluation, guiding personalized clinical decisions. Full article
(This article belongs to the Section Optical and Photonic Biosensors)
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11 pages, 3617 KB  
Article
The Effect of Conventional Ho:YAG, Magneto Ho:YAG and Thulium Fiber Laser on Soft Tissue: An Ex Vivo Comparative Study in Porcine Kidney
by Theodoros Spinos, Dimitra Gkanetsou, Vasileios Tatanis, Angelis Peteinaris, Michail Papapanou, Moisés Rodríguez Socarrás, Fernando Gómez Sancha, Athanasios Vagionis, Georgios-Eleftherios Anagnostopoulos, Evangelos Liatsikos and Panagiotis Kallidonis
J. Clin. Med. 2026, 15(3), 1074; https://doi.org/10.3390/jcm15031074 - 29 Jan 2026
Viewed by 1031
Abstract
Background/Objectives: In an attempt to combine the benefits of the Holmium:YAG (Ho:YAG) laser and Thulium Fiber Laser (TFL), the “Magneto” mode lowers the peak power of the Ho:YAG laser, generating longer duration pulses. The purpose of this study is to compare the [...] Read more.
Background/Objectives: In an attempt to combine the benefits of the Holmium:YAG (Ho:YAG) laser and Thulium Fiber Laser (TFL), the “Magneto” mode lowers the peak power of the Ho:YAG laser, generating longer duration pulses. The purpose of this study is to compare the effect of the standard virtual basket (VB) Ho:YAG laser, Magneto Ho:YAG laser and TFL on soft tissue in an ex vivo model. Methods: Two renal units from a female pig were used for the current experiment. Sixteen distinct areas were defined. Each area included three parallel lines, which were made with the three different laser technologies. The VB Ho:YAG laser was used for the first line and the Ho:YAG laser in the “Magneto mode” was used to generate the second line, while the third line was performed with a TFL in short pulse mode. The same laser settings (1 J/10 Hz/10 W) and the same fiber diameter (200 μm) were used for all three laser incisions. The same surgeon performed all incisions with a standardized and repeatable technique, controlling hand speed and distance of laser fiber from kidney surface using the stabilization setup. Sections of the selected areas produced distinct paraffin blocks, each one containing three parallel laser lines. Two independent pathologists evaluated the incision depth, incision width, coagulation depth and carbonization effect of the three different lasers. Results: Although the incision depth and the carbonization effect were comparable between the three lasers, incision width and coagulation depth showed a statistically significant difference. Median incision width was 1.17 (1.04, 1.99) mm for the VB Ho:YAG laser, 1.05 (0.89, 1.50) mm for the Magneto Ho:YAG laser and 0.82 (0.65, 0.88) mm for the TFL (p = 0.001). The coagulation depth was 0.49 (0.41, 0.56) mm for the VB Ho:YAG laser, 0.51 (0.39, 0.59) mm for the Magneto Ho:YAG laser and 0.18 (0.17, 0.23) mm for the TFL (p < 0.001). During post hoc analysis for the three comparisons, the differences between the VB Ho:YAG laser and TFL and between the Magneto Ho:YAG laser and TFL were statistically significant for both parameters. Conclusions: Both the VB and Magneto Ho:YAG lasers produced laser incisions with statistically significant greater incision width and coagulation depth than the TFL on the ex vivo model. Overall, the Magneto Ho:YAG laser was associated with the greatest median coagulation depth. Post Hoc Man–Whitney tests for the three comparisons revealed statistically significant differences only between the VB Ho:YAG laser and TFL and between the Magneto Ho:YAG laser and TFL. This finding could potentially be translated into better haemostasis during endourological soft tissue surgery. The implementation of additional studies, both experimental and clinical ones, is of outmost importance to draw safer conclusions. Full article
(This article belongs to the Section Nephrology & Urology)
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17 pages, 1796 KB  
Article
Ultrasonic–Laser Hybrid Treatment for Cleaning Gasoline Engine Exhaust: An Experimental Study
by Bauyrzhan Sarsembekov, Madi Issabayev, Nursultan Zharkenov, Altynbek Kaukarov, Isatai Utebayev, Akhmet Murzagaliyev and Baurzhan Zhamanbayev
Vehicles 2026, 8(1), 22; https://doi.org/10.3390/vehicles8010022 - 20 Jan 2026
Cited by 3 | Viewed by 1955
Abstract
Vehicle exhaust gases remain one of the key sources of atmospheric air pollution and pose a serious threat to ecosystems and public health. This study presents an experimental investigation into reducing the toxicity of gasoline internal combustion engine exhaust using ultrasonic waves and [...] Read more.
Vehicle exhaust gases remain one of the key sources of atmospheric air pollution and pose a serious threat to ecosystems and public health. This study presents an experimental investigation into reducing the toxicity of gasoline internal combustion engine exhaust using ultrasonic waves and infrared (IR) laser exposure. An original hybrid system integrating an ultrasonic emitter and an IR laser module was developed. Four operating modes were examined: no treatment, ultrasound only, laser only, and combined ultrasound–laser treatment. The concentrations of CH, CO, CO2, and O2, as well as exhaust gas temperature, were measured at idle and under operating engine speeds. The experimental results show that ultrasound provides a substantial reduction in CO concentration (up to 40%), while IR laser exposure effectively decreases unburned hydrocarbons CH (by 35–40%). The combined treatment produces a synergistic effect, reducing CH and CO by 38% and 43%, respectively, while increasing the CO2 fraction and decreasing O2 content, indicating more complete post-oxidation of combustion products. The underlying physical mechanisms responsible for the purification were identified as acoustic coagulation of particulates, oxidation, and photodissociation of harmful molecules. The findings support the hypothesis that combined ultrasonic and laser treatment can enhance real-time exhaust gas purification efficiency. It is demonstrated that physical treatment of the gas phase not only lowers the persistence of by-products but also promotes more complete oxidation processes within the flow. Full article
(This article belongs to the Special Issue Intelligent Mobility and Sustainable Automotive Technologies)
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23 pages, 806 KB  
Systematic Review
Laser Therapy for Vascular Malformations of the Oral Cavity: A Systematic Review
by Matteo Pellegrini, Martina Bosisio, Federica Pulicari, Carmen Darinca Todea and Francesco Spadari
Dent. J. 2025, 13(9), 416; https://doi.org/10.3390/dj13090416 - 9 Sep 2025
Cited by 5 | Viewed by 3028
Abstract
Objectives: to compare the clinical effectiveness, safety, and aesthetic outcomes of different laser systems used for the treatment of oral vascular malformations. Materials and Methods: This review followed JBI guidelines and adhered to the PRISMA (Preferred Reporting Items for Systematic Reviews [...] Read more.
Objectives: to compare the clinical effectiveness, safety, and aesthetic outcomes of different laser systems used for the treatment of oral vascular malformations. Materials and Methods: This review followed JBI guidelines and adhered to the PRISMA (Preferred Reporting Items for Systematic Reviews and Meta-Analyses) 2020 statement. The research was performed through the databases PubMed, Scopus, and Web of Science using MeSH (Medical Subject Headings) terms for MEDLINE (PubMed), while equivalent free-text terms were applied to Scopus and Web of Science. The initial database search was performed on 20 May 2024. Studies published from 2014 to 2024 focusing on laser therapy for oral vascular lesions were included. Data quality was assessed using NHLBI and ROBINS-I V2 tools. Results: Of the 139 articles identified, 11 met inclusion criteria, assessing Nd:YAG, diode, Er,Cr:YSGG, and CO2 lasers. The Nd:YAG laser was effective for deep vascular lesions with strong thermal effects. The diode laser provided excellent coagulation and minimal postoperative discomfort. The Er,Cr:YSGG laser offered faster healing and better cosmetic results. The CO2 laser showed effective results with low recurrence rates. Most studies reported reduced bleeding, pain, and recovery time following laser treatment. Conclusions: Laser therapy, particularly Nd:YAG, diode, and CO2 lasers, offers a safe, effective alternative for oral vascular malformations, providing improved outcomes and fewer complications. Future studies should include larger sample sizes and comparisons with traditional therapies. Full article
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8 pages, 2677 KB  
Case Report
Outpatient Hysteroscopic Treatment of Cervical Ectopic Pregnancy in a Primigravida Using the Ho:YAG Laser: A Case Report and Operative Protocol Evaluation
by Dimitar Cvetkov, David Lukanovic and Angel Yordanov
Reprod. Med. 2025, 6(3), 21; https://doi.org/10.3390/reprodmed6030021 - 27 Aug 2025
Cited by 2 | Viewed by 2138
Abstract
Background and Clinical Significance: Cervical ectopic pregnancy (CEP) is a rare and potentially serious condition, in which the embryo implants within the cervical canal rather than the uterine cavity and is present in less than 1% of all ectopic pregnancies. There are [...] Read more.
Background and Clinical Significance: Cervical ectopic pregnancy (CEP) is a rare and potentially serious condition, in which the embryo implants within the cervical canal rather than the uterine cavity and is present in less than 1% of all ectopic pregnancies. There are different treatment options depending on the particular situation and the woman’s reproductive desire but conservative approaches as the first line of treatment is preferred in all cases and hysteroscopic resection of the fetus is one of these options. Several types of laser systems are available for use in hysteroscopic surgery, including neodymium:YAG (Nd:YAG) lasers, KTP and Argon lasers, as well as diode lasers. The holmium:YAG (Ho:YAG) laser, although more commonly used in urology due to its ability to cut, coagulate, and vaporize tissue, has gained interest in gynecologic procedures because of its precision and favorable safety profile. Case Presentation: We present the case of a 32-year-old woman, pregnant for the first time, who was diagnosed with CEP and successfully treated using a Ho:YAG laser during an outpatient hysteroscopic procedure. As far as we know, this is the first published case using this approach. Conclusions: The Ho:YAG laser is a proven tool for outpatient hysteroscopic procedures like septum and adhesion removal. Its ability to both cut and coagulate offers a minimally invasive, fertility-sparing option for managing cervical ectopic pregnancy. With the right patient and proper backup plans in place, this approach could be a promising alternative to more aggressive treatments. Full article
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14 pages, 1172 KB  
Article
Laser-Mediated Hemostasis for Older Patients Receiving Routine Dental Treatment
by Suwat Tanya, Saengsome Prajaneh, Piyachat Patcharanuchat and Sajee Sattayut
Dent. J. 2025, 13(7), 315; https://doi.org/10.3390/dj13070315 - 11 Jul 2025
Cited by 2 | Viewed by 2511
Abstract
Background/Objective: Laser therapy has gained attention in dental practice to minimize bleeding and enhance blood clot formation. This study aimed to explore the utilization and to compare the clinical efficacy of laser-mediated hemostasis for older patients receiving routine dental treatment. Methods: A prospective [...] Read more.
Background/Objective: Laser therapy has gained attention in dental practice to minimize bleeding and enhance blood clot formation. This study aimed to explore the utilization and to compare the clinical efficacy of laser-mediated hemostasis for older patients receiving routine dental treatment. Methods: A prospective observational study was conducted across research networks between October 2023 and August 2024, involving 60 patients aged 50 years and older (average = 63.35 years) at risk of postoperative bleeding following dental treatments. Additionally, laser therapy for hemostasis was selected and provided among calibrated operators. A single researcher performed data collection. Before statistical analysis, data verification and clinical assessment were conducted by the operators and researcher. A clinical cut-off for hemostasis was set at 5 min. Two diode laser machines were used namely, an 810 nm and dual wavelengths of 635 nm and 980 nm. Results: There were 94 extraction sockets, 28 procedures of scaling and root planing and 18 procedures of minor oral surgery. Combining laser ablating sulcular fiber and photobiomodulation initiating blood clot formation was a preferable hemostatic technique for extraction socket, while photobiomodulation alone was a preferred technique for soft tissue hemostasis (p < 0.001). All operators confirmed that 97.86 percent of bleeding events achieved more rapid hemostasis. 61.43 percent of bleeding events clinically achieved hemostasis within 5 min by using laser-mediated hemostasis alone (p = 0.092). Full recovery of the extraction socket was significantly observed during the 2- to 4-week follow-up period (p = 0.005). No clinical complications were reported. Conclusions: Laser-mediated hemostasis effectively reduced hemostatic duration, prevented postoperative bleeding and promoted wound healing in older patients undergoing routine dental treatment. Full article
(This article belongs to the Special Issue Laser Dentistry: The Current Status and Developments)
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14 pages, 268 KB  
Review
Sequential Fractional CO2 and 1540/1570 nm Lasers: A Narrative Review of Preclinical and Clinical Evidence
by Alessandro Clementi, Giovanni Cannarozzo, Luca Guarino, Elena Zappia, Fortunato Cassalia, Antonio Alma, Mario Sannino, Caterina Longo and Steven Paul Nisticò
J. Clin. Med. 2025, 14(11), 3867; https://doi.org/10.3390/jcm14113867 - 30 May 2025
Cited by 19 | Viewed by 14181
Abstract
Ablative fractional CO2 laser is an established tool for dermatologic and aesthetic indications. Non-ablative wavelengths, such as 1540 and 1570 nm, are increasingly being combined with CO2 laser to optimise the results while reducing the recovery time. A narrative review of [...] Read more.
Ablative fractional CO2 laser is an established tool for dermatologic and aesthetic indications. Non-ablative wavelengths, such as 1540 and 1570 nm, are increasingly being combined with CO2 laser to optimise the results while reducing the recovery time. A narrative review of the literature was conducted, including ex vivo, in vivo, and in vitro studies, as well as human clinical trials that evaluated the efficacy, safety, and histological impact of dual-laser systems. Preclinical studies have shown that sequential application of fractional CO2 followed by 1540/1570 nm expands the thermal coagulation zone without increasing the ablation depth. At the histological level, the dual protocol promotes collagen remodelling with greater thermal precision. On a clinical level, a combined treatment has shown efficacy in improving scars, striae distensae, skin laxity, and wrinkles, with reduced recovery times compared to CO2 monotherapy. Preliminary data also suggest potential benefits in inflammatory conditions such as hidradenitis suppurativa. The sequential CO2 + 1540/1570 nm combination represents an effective and well-tolerated approach in regenerative dermatology. Current evidence supports its use as a versatile, safe, and reproducible technique for skin rejuvenation and scar modulation; however, further comparative studies are needed to standardise protocols. Full article
26 pages, 4597 KB  
Review
A Review of Materials for the Removal of Micro- and Nanoplastics from Different Environments
by Christian Ebere Enyoh, Arti Devi, Tochukwu Oluwatosin Maduka, Lavista Tyagi, Sohel Rana, Ifunanya Scholastica Akuwudike and Qingyue Wang
Micro 2025, 5(2), 17; https://doi.org/10.3390/micro5020017 - 9 Apr 2025
Cited by 30 | Viewed by 16387
Abstract
Microplastics (MPs) and nanoplastics (NPs) have emerged as persistent environmental pollutants, posing significant ecological and human health risks. Their widespread presence in aquatic, terrestrial, and atmospheric ecosystems necessitates effective removal strategies. Traditional removal methods, including filtration, coagulation, and sedimentation, have demonstrated efficacy for [...] Read more.
Microplastics (MPs) and nanoplastics (NPs) have emerged as persistent environmental pollutants, posing significant ecological and human health risks. Their widespread presence in aquatic, terrestrial, and atmospheric ecosystems necessitates effective removal strategies. Traditional removal methods, including filtration, coagulation, and sedimentation, have demonstrated efficacy for larger MPs but struggle with nanoscale plastics. Advanced techniques, such as adsorption, membrane filtration, photocatalysis, and electrochemical methods, have shown promising results, yet challenges remain in scalability, cost-effectiveness, and environmental impact. Emerging approaches, including functionalized magnetic nanoparticles, AI-driven detection, and laser-based remediation, present innovative solutions for tackling MP and NP contamination. This review provides a comprehensive analysis of current and emerging strategies, evaluating their efficiency, limitations, and future prospects. By identifying key research gaps, this study aims to guide advancements in sustainable and scalable microplastic removal technologies, essential for mitigating their environmental and health implications. Full article
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11 pages, 1012 KB  
Article
Low Rates of Intrapulmonary Local Recurrence After Laser Metastasectomy: A Single-Center Retrospective Cohort Study of Colorectal Cancer Metastases
by Ahmad Shalabi, Sundus F. Shalabi, Thomas Graeter, Stefan Welter, Ahmed Ehab and Jonas Kuon
Cancers 2025, 17(4), 683; https://doi.org/10.3390/cancers17040683 - 18 Feb 2025
Cited by 2 | Viewed by 1592
Abstract
Objective: Colorectal pulmonary metastasis is the most common resected metastatic disease of the lung. Pulmonary metastasectomy (PM) for colorectal oligometastases is a well-established intervention with curative intent. Local recurrence at the resection site in the lung is a problem, with an impact on [...] Read more.
Objective: Colorectal pulmonary metastasis is the most common resected metastatic disease of the lung. Pulmonary metastasectomy (PM) for colorectal oligometastases is a well-established intervention with curative intent. Local recurrence at the resection site in the lung is a problem, with an impact on survival. The use of a 1320 nm neodymium:yttrium aluminum garnet (Nd:YAG) laser causes the vaporization and coagulation at the resection line and thereby increases safety margins around the nodule. We aimed to evaluate the local recurrence rate after laser-assisted pulmonary metastasectomy (LPM) for colorectal metastases. Methods: We conducted a retrospective analysis of 49 patients treated with laser-assisted pulmonary metastasectomy for 139 metastatic nodules from colorectal cancer from 2010 to 2018. All nodules were resected using Nd:YAG 1320 nm laser, aiming for a safety margin of five mm. The minimum follow-up time after PM was 24 months. Results: Local intrapulmonary recurrence developed at 7 of the 139 (5.0%) resection sites in 5 of the 49 patients (10.2%). Microscopically incomplete resection was a significant risk factor for recurrence (p = 0.023). Larger nodule size (>12 mm) negatively impacted local recurrence (p = 0.024). Nodules larger or equal to 12 mm in size also lowered the patients’ probability of survival by 67.29% (HR: 0.3271, 95% CI: 0.1265–0.846, p = 0.018). Conclusions: The rate of local recurrence at the resection site after LPM for colorectal metastases is low. Complete resection is a positive predictor of survival without local recurrence. Microscopic complete resection with the addition of vaporization and coagulation at the resection margin seems to be sufficient to prevent local recurrence. However, larger nodules may require larger safety margins. Full article
(This article belongs to the Special Issue Surgery in Metastatic Cancer (2nd Edition))
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15 pages, 999 KB  
Article
Investigation of Removal Efficiency of Microplastics at Different Process Stages of a Wastewater Treatment Plant in the Textile Industry in Southern China
by Yanjing Zhu, Sijia Yang, Mathias Gustavsson, Wenli Huang, Si Gao and Rui Wang
Water 2025, 17(4), 574; https://doi.org/10.3390/w17040574 - 17 Feb 2025
Cited by 10 | Viewed by 4546
Abstract
Wastewater treatment plants (WWTPs) play a crucial role in mitigating microplastic (MP) release to the environment. In this paper, a WWTP of a textile manufacturing plant in Guangdong, China, was investigated to identify MP characteristics and the effectiveness of wastewater treatment within the [...] Read more.
Wastewater treatment plants (WWTPs) play a crucial role in mitigating microplastic (MP) release to the environment. In this paper, a WWTP of a textile manufacturing plant in Guangdong, China, was investigated to identify MP characteristics and the effectiveness of wastewater treatment within the plant. Laser Direct Infrared (LDIR) and Liquid Chromatography with Mass Spectrometry (LC-MS/MS) were applied to quantify both the number and the mass of the microplastics in the effluent of the textile manufacturing plant where most of the wastewater were from three printing and dyeing lines. The study further investigated the MP removal efficiency of each wastewater treatment process of the industry-owned WWTP and analysed the removal mechanism of each step, highlighting limitations in detecting and eliminating MPs. It is observed that (1) the results from LDIR and LC-MS/MS can be complementary to each other; (2) the MP concentration in the influent was 1730 n/L by number and 13.52 µg/L by mass; (3) the total removal efficiency of the WWTP were 99% by the number of MPs and 67.7% by the mass of MPs; (4) nine types of polymers have been identified in the influent, of which Polyamide (PA) was dominating; (5) hydrolysis acidification removed PA most; (6) aerobic tank, sand filter, and biological aerated filter (BAF) showed low removal efficiency; (7) coagulation and sedimentation tank had the highest removal efficiency to PET than any other processes. Full article
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13 pages, 605 KB  
Article
Retinopathy of Prematurity: Incidence, Risk Factors, and Treatment Outcomes in a Tertiary Care Center
by Mara Nike Blazon, Sandra Rezar-Dreindl, Lorenz Wassermann, Thomas Neumayer, Angelika Berger and Eva Stifter
J. Clin. Med. 2024, 13(22), 6926; https://doi.org/10.3390/jcm13226926 - 17 Nov 2024
Cited by 13 | Viewed by 10589
Abstract
Retinopathy of prematurity (ROP) remains a major cause of childhood blindness. Its pooled prevalence worldwide is 31.9%, and that of severe ROP is 7.5% among prematurely born babies. Investigating risk factors is essential for improving early detection and treatment outcomes. Purpose: To [...] Read more.
Retinopathy of prematurity (ROP) remains a major cause of childhood blindness. Its pooled prevalence worldwide is 31.9%, and that of severe ROP is 7.5% among prematurely born babies. Investigating risk factors is essential for improving early detection and treatment outcomes. Purpose: To determine the frequency and stages of ROP cases and evaluate the treatment methods for premature infants at the Medical University of Vienna. Methods: In this retrospective study, 352 children who underwent ROP screening between 2018 and 2021 with a gestational age (GA) ≤ 32 weeks and/or a birth weight (BW) ≤ 1500 g were included. Results: ROP was found in 144 (40.9%) of the 352 screened premature infants, with 17 (4.8%) requiring treatment. Significant risk factors included GA and BW, while sex and pregnancy type were not significant. The mean GA was 27.7 ± 2.5 weeks, and the mean BW was 989.1 ± 359.7 g. Infants with ROP had a lower GA (25.9 ± 1.7 weeks) and BW (778.6 ± 262.4 g) than those without ROP (28.9 ± 2.2 weeks; 1134.9 ± 345.9 g). GA and BW were significantly lower in infants developing ROP (p < 0.001). Stage 2 ROP was the most common severity in 74 children (51.4%). Laser therapy was the most common first-line treatment, used in 11 infants (64.7%), followed by anti-VEGF therapy, used in 6 infants (35.3%). Children were treated within 1.0 ± 0.6 days on average. Of the 17 infants treated, 14 (82.4%) showed initial regression. Three infants (17.6%) required re-treatment: two with initial anti-VEGF therapy and one after laser therapy. Conclusions: The findings provide insights into ROP’s prevalence and treatment preferences at a university tertiary care center. GA and BW were confirmed to be significant predictors, aiding in early detection and informing treatment decisions. These insights will enable comparisons with similar studies and contribute to improved patient care. Full article
(This article belongs to the Section Ophthalmology)
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