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Keywords = postoperative adhesion formation

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15 pages, 6918 KiB  
Article
Temperature-Responsive and Self-Healing Hydrogel: A Novel Approach to Combat Postoperative Adhesions
by Yujia Zhan, Xueshan Zhao, Changyuan He, Siwei Bi, Ruiqi Liu, Jun Gu and Bin Yan
Polymers 2025, 17(14), 1925; https://doi.org/10.3390/polym17141925 - 12 Jul 2025
Viewed by 350
Abstract
Postoperative adhesions are a prevalent complication following abdominal surgeries, often leading to significant clinical challenges. This study introduces an innovative solution utilizing a polyethylene glycol (PEG)-based triblock copolymer to form an injectable, self-healing hydrogel aimed at preventing these adhesions. The hydrogel, formulated with [...] Read more.
Postoperative adhesions are a prevalent complication following abdominal surgeries, often leading to significant clinical challenges. This study introduces an innovative solution utilizing a polyethylene glycol (PEG)-based triblock copolymer to form an injectable, self-healing hydrogel aimed at preventing these adhesions. The hydrogel, formulated with temperature-responsive and self-healing properties through the incorporation of poly (N-isopropyl acrylamide) (PNIPAM) and anion–pi interactions, was synthesized using reversible addition–fragmentation chain transfer (RAFT) polymerization. The hydrogel’s physical properties, biocompatibility, hemostatic effect, and anti-adhesive capabilities were rigorously tested through in vitro and in vivo experiments involving rat models. It demonstrated excellent biocompatibility, effective tissue adhesion, and robust hemostatic properties. Most notably, it exhibited significant anti-adhesive effects in a rat abdominal wall–cecum model, reducing adhesion formation effectively compared to controls. The PEG-based injectable hydrogel presents a promising approach for postoperative adhesion prevention. Its ability to gel in situ triggered by body heat, coupled with its self-healing properties, provides a substantial advantage in clinical settings, indicating its potential utility as a novel anti-adhesion material. Full article
(This article belongs to the Section Smart and Functional Polymers)
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16 pages, 2293 KiB  
Article
Molecular Dynamics Simulation of the Thermosensitive Gelation Mechanism of Phosphorylcholine Groups-Conjugated Methylcellulose Hydrogel
by Hongyu Mei, Yaqing Huang, Juzhen Yi, Wencheng Chen, Peng Guan, Shanyue Guan, Xiaohong Chen, Wei Li and Liqun Yang
Gels 2025, 11(7), 521; https://doi.org/10.3390/gels11070521 - 4 Jul 2025
Viewed by 345
Abstract
The intelligently thermosensitive 2-methacryloyloxyethyl phosphorylcholine (MPC) groups-conjugated methylcellulose (MC) hydrogel, abbreviated as MPC-g-MC, exhibits good potential for prevention of postoperative adhesions. However, its thermosensitive gelation mechanism and why the MPC-g-MC hydrogel shows a lower gelation temperature than that of MC hydrogel are still [...] Read more.
The intelligently thermosensitive 2-methacryloyloxyethyl phosphorylcholine (MPC) groups-conjugated methylcellulose (MC) hydrogel, abbreviated as MPC-g-MC, exhibits good potential for prevention of postoperative adhesions. However, its thermosensitive gelation mechanism and why the MPC-g-MC hydrogel shows a lower gelation temperature than that of MC hydrogel are still unclear. Molecular dynamics (MD) simulation was thus used to investigate these mechanisms in this work. After a fully atomistic MPC-g-MC molecular model was constructed, MD simulations during the thermal simulation process and at constant temperatures were performed using GROMACS 2022.3 software. The results indicated that the hydrophobic interactions between the MPC-g-MC molecular chains increased, the interactions between the MPC-g-MC molecular chains and H2O molecules decreased with the rise in temperature, and the hydrogen bonding structures were changed during the thermal simulation process. As a result, the MPC-g-MC molecular chains began to aggregate at about 33 °C (close to the gelation temperature of 33 °C determined by the rheological measurement), bringing about the formation of the MPC-g-MC hydrogel in the macroscopic state. The mechanism of MPC-g-MC hydrogel formation showed that its lower gelation temperature than that of the MC hydrogel is attributed to the increase in the interactions (including hydrophobic interactions, hydrogen bonding interactions, Van der Waals and Coulomb forces) induced by the side MPC groups of MPC-g-MC molecules. The thermosensitive gelation mechanism revealed in this study provides an important reference for the development of novel thermosensitive MC-derived hydrogels with gelation temperatures close to human body temperature. Full article
(This article belongs to the Special Issue Advances in Functional and Intelligent Hydrogels)
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47 pages, 986 KiB  
Review
Integrating Genomics and Molecular Biology in Understanding Peritoneal Adhesion
by Mirela Lungu, Claudiu N. Lungu, Andreea Creteanu and Mihaela C. Mehedinti
Curr. Issues Mol. Biol. 2025, 47(6), 475; https://doi.org/10.3390/cimb47060475 - 19 Jun 2025
Viewed by 524
Abstract
Peritoneal adhesions following surgical injury remain a major clinical challenge, often resulting in severe complications, such as intestinal obstruction, chronic pain, and infertility. This review systematically integrates recent genomic and molecular biology insights into the pathogenesis of peritoneal adhesions, explicitly focusing on molecular [...] Read more.
Peritoneal adhesions following surgical injury remain a major clinical challenge, often resulting in severe complications, such as intestinal obstruction, chronic pain, and infertility. This review systematically integrates recent genomic and molecular biology insights into the pathogenesis of peritoneal adhesions, explicitly focusing on molecular pathways, including TGF-β signaling, COX-2-mediated inflammatory responses, fibrinolytic balance (tPA/PAI-1), angiogenesis pathways (VEGF, PDGF), and extracellular matrix remodeling (MMPs/TIMPs). Newly conducted transcriptomic and proteomic analyses highlight distinct changes in gene expression patterns in peritoneal fibroblasts during adhesion formation, pinpointing critical roles for integrins, cadherins, selectins, and immunoglobulin superfamily molecules. Recent studies indicate significant shifts in TGF-β isoforms expression, emphasizing isoform-specific impacts on fibrosis and scarring. These insights reveal substantial knowledge gaps, particularly the differential regulatory mechanisms involved in fibrosis versus normal reparative reperitonealization. Future therapeutic strategies could target these molecular pathways and inflammatory mediators to prevent or reduce adhesion formation. Further research into precise genetic markers and the exploration of targeted pharmacological interventions remain pivotal next steps in mitigating postoperative adhesion formation and improving clinical outcomes. Full article
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17 pages, 3382 KiB  
Article
Electrospun DegraPol Tube Delivering Stem Cell/Tenocyte Co-Culture-Derived Secretome to Transected Rabbit Achilles Tendon—In Vitro and In Vivo Evaluation
by Julia Rieber, Iris Miescher, Petra Wolint, Gabriella Meier Bürgisser, Jeroen Grigioni, Jess G. Snedeker, Viola Vogel, Pietro Giovanoli, Maurizio Calcagni and Johanna Buschmann
Int. J. Mol. Sci. 2025, 26(12), 5457; https://doi.org/10.3390/ijms26125457 - 6 Jun 2025
Viewed by 442
Abstract
Tendon ruptures have recently reached incidences of 18–35 cases/100,000 and often lead to adhesion formation during healing. Furthermore, scar formation may result in inferior biomechanics and often leads to re-ruptures. To address these problems, we cultivated rabbit adipose-derived stem cells in a co-culture [...] Read more.
Tendon ruptures have recently reached incidences of 18–35 cases/100,000 and often lead to adhesion formation during healing. Furthermore, scar formation may result in inferior biomechanics and often leads to re-ruptures. To address these problems, we cultivated rabbit adipose-derived stem cells in a co-culture with rabbit Achilles tenocytes and harvested their secretome. Following a cell-free approach, we incorporated such secretome into an electrospun tube via emulsion electrospinning. These novel implants were characterized by SEM, the WCA, and FTIR. Then, they were implanted in the rabbit Achilles tendon full transection model with an additional injection of secretome, and the adhesion extent as well as the biomechanics of extracted tendons were assessed three weeks postoperatively. The fiber thickness was around 3–5 μm, the pore size 11–13 μm, and the tube wall thickness approximately 265 μm. The WCA indicated slightly hydrophilic surfaces in the secretome-containing layer, with values of 80–90°. In vivo experiments revealed a significant reduction in adhesion formation (−22%) when secretome-treated tendons were compared to DegraPol® (DP) tube-treated tendons (no secretome). Furthermore, the cross-sectional area was significantly smaller in secretome-treated tendons compared to DP tube-treated ones (−32%). The peak load and stiffness of secretome-treated tendons were not significantly different from native tendons, while tendons treated with pure DP tubes exhibited significantly lower values. We concluded that secretome treatment supports tendon healing, with anti-adhesion effects and improved biomechanics at 3 weeks, making this approach interesting for clinical application. Full article
(This article belongs to the Section Biochemistry)
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17 pages, 1502 KiB  
Review
Peripheral Nerve Protection Strategies: Recent Advances and Potential Clinical Applications
by Weronika Radecka, Wiktoria Nogalska and Maria Siemionow
J. Funct. Biomater. 2025, 16(5), 153; https://doi.org/10.3390/jfb16050153 - 24 Apr 2025
Cited by 2 | Viewed by 1519
Abstract
Peripheral nerve injuries (PNIs) are a significant clinical challenge, often resulting in persistent sensory and motor deficits despite surgical repair. Autologous nerve grafts remain the gold standard for repair; however, outcomes are frequently suboptimal due to donor site morbidity and inconsistent functional recovery. [...] Read more.
Peripheral nerve injuries (PNIs) are a significant clinical challenge, often resulting in persistent sensory and motor deficits despite surgical repair. Autologous nerve grafts remain the gold standard for repair; however, outcomes are frequently suboptimal due to donor site morbidity and inconsistent functional recovery. A major obstacle in nerve regeneration is the formation of postoperative adhesions and fibrosis, which impede healing and necessitate revision surgeries. Nerve protectors from biological, synthetic, and hybrid materials offer a promising tissue engineering strategy to enhance nerve regeneration. These protectors are applied as a protective barrier when a nerve is severed without the gap, allowing for direct repair. They provide mechanical support and reduce scarring. Biocompatible biological wraps, including vascularized fat flaps, vein wraps, collagen-based materials, human amniotic membrane (hAM), porcine small intestinal submucosa (PSIS), and chitosan, modulate immune responses and promote vascularization. Synthetic alternatives, like polycaprolactone (PCL), provide mechanical stability with controlled degradation. Hybrid wraps, such as PCL-amnion, combine the benefits of both. Despite optimistic results, the heterogeneity of study methodologies hinders direct comparisons and standardization. This review highlights the latest developments in nerve wraps, their clinical applications, limitations, and future potential, guiding clinicians in selecting the most appropriate materials for peripheral nerve repair. Full article
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33 pages, 4263 KiB  
Review
Iatrogenic Ocular Surface Complications After Surgery for Ocular and Adnexal Tumors
by Maria Angela Romeo, Andrea Taloni, Massimiliano Borselli, Alessandra Di Maria, Alessandra Mancini, Vincenzo Mollace, Giovanna Carnovale-Scalzo, Vincenzo Scorcia and Giuseppe Giannaccare
Cancers 2025, 17(9), 1384; https://doi.org/10.3390/cancers17091384 - 22 Apr 2025
Viewed by 1287
Abstract
Background/Objectives: The management of ocular tumors often necessitates surgery, either alone or in combination with radiotherapy, chemotherapy, or other modalities. While crucial for tumor control, these treatments can significantly impact the ocular surface, leading to both acute and chronic complications. This review examines [...] Read more.
Background/Objectives: The management of ocular tumors often necessitates surgery, either alone or in combination with radiotherapy, chemotherapy, or other modalities. While crucial for tumor control, these treatments can significantly impact the ocular surface, leading to both acute and chronic complications. This review examines iatrogenic ocular surface diseases resulting from oncologic interventions, emphasizing their pathophysiology, diagnostic challenges, and management strategies. Methods: A literature review was conducted to identify studies on iatrogenic ocular surface complications associated with ocular tumor treatments. Results: Ocular surface complications include direct damage from surgical manipulation, leading to corneal opacities and persistent epithelial defects, as well as dry eye disease secondary to postoperative chemosis. These disruptions may progress to more severe conditions such as keratopathy, corneal ulcers, limbal stem cell deficiency, and stromal scarring, further impairing visual function. Structural alterations contribute to eyelid malpositions—including ectropion, entropion, round eye, and lagophthalmos—which exacerbate exposure-related damage and ocular surface instability. In cases of uveal melanomas, the exposure of episcleral brachytherapy plaques can induce chronic conjunctival irritation, promoting adhesion formation and symblepharon. Surgical interventions disrupt ocular surface homeostasis, while radiotherapy and chemotherapy exacerbate these effects through cytotoxic and inflammatory mechanisms. Conclusions: Preventing and managing iatrogenic ocular surface complications require a multidisciplinary approach involving early diagnosis, personalized treatment strategies, and targeted postoperative care. Comprehensive pre- and postoperative planning is essential to optimize both visual function and long-term ocular surface integrity, ultimately ensuring a balance between oncologic control with functional and aesthetic preservation. Full article
(This article belongs to the Section Cancer Therapy)
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19 pages, 1651 KiB  
Review
Nanotechnology-Based Therapies for Preventing Post-Surgical Adhesions
by Zi Yi Teo, Samyuktha Dhanalakshmi Senthilkumar and Dinesh Kumar Srinivasan
Pharmaceutics 2025, 17(3), 389; https://doi.org/10.3390/pharmaceutics17030389 - 19 Mar 2025
Viewed by 907
Abstract
Adhesions are the body’s natural response to various inflammatory causes, with surgery being the most common cause. However, the formation of postoperative adhesions can lead to significant complications, including intestinal obstruction and chronic pain. To prevent such postoperative complications associated with adhesions, developing [...] Read more.
Adhesions are the body’s natural response to various inflammatory causes, with surgery being the most common cause. However, the formation of postoperative adhesions can lead to significant complications, including intestinal obstruction and chronic pain. To prevent such postoperative complications associated with adhesions, developing effective strategies for adhesion prevention has been a major focus of research. Currently, several therapeutic models have been developed to achieve this objective. These include pharmaceuticals, inert polymers, functional biomaterials, and nanotherapeutics. Among the various strategies developed, nanotherapeutics, though still in its early stages, has shown promise as a potential approach. Other therapeutic models are associated with adverse side effects and complications related to their application. On the other hand, nanotherapeutic models are able to overcome the limitations of the other strategies and provide their own set of unique advantages. Hence, nanotherapeutics represents a promising area for further research. Further efforts should be made to refine existing nanotherapeutics for clinical application while also addressing associated safety and ethical concerns related to their use in medical practice. Therefore, this article aims to review the various nanotherapeutic approaches developed for the prevention of postoperative adhesions, explore their regulatory pathways, and discuss associated safety and ethical concerns. Full article
(This article belongs to the Special Issue Recent Advances in Nanotechnology Therapeutics)
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12 pages, 227 KiB  
Review
Enhancing Safety in Gynecologic Surgery: Innovative Access and Lymphadenectomy Techniques to Reduce Complications
by Angel Chimenea and Ana María Calderón
Complications 2025, 2(1), 8; https://doi.org/10.3390/complications2010008 - 13 Mar 2025
Viewed by 774
Abstract
This review explores current strategies aimed at reducing complications in gynecologic surgery, focusing on innovations in laparoscopic entry techniques, extraperitoneal lymphadenectomy, and alternative approaches such as gasless laparoscopy. We conducted a comprehensive literature review, including studies and technical descriptions relevant to improved surgical [...] Read more.
This review explores current strategies aimed at reducing complications in gynecologic surgery, focusing on innovations in laparoscopic entry techniques, extraperitoneal lymphadenectomy, and alternative approaches such as gasless laparoscopy. We conducted a comprehensive literature review, including studies and technical descriptions relevant to improved surgical access, lymph node dissection, and overall risk mitigation. Key findings indicate that the individualized selection of entry points—ranging from Palmer’s point in the left upper quadrant to the recently described Jain point—can minimize vascular and bowel injuries, especially in patients with prior abdominal surgeries. Furthermore, extraperitoneal lymphadenectomy appears to lower adhesion formation and bowel handling, potentially decreasing postoperative morbidity in oncologic cases. Gasless laparoscopy may offer comparable surgical outcomes with improved cardiorespiratory stability in high-risk patients, although visualization challenges remain. Overall, the evidence suggests that advanced minimally invasive methods and tailored procedural planning can effectively enhance patient safety and reduce postoperative complications. These approaches, however, demand a high level of surgical expertise, thorough preoperative imaging, and an institutional framework that supports training and ongoing quality monitoring. Continued investigations, including prospective trials and larger sample sizes, are required to validate these findings and further refine protocols aimed at optimizing outcomes in gynecologic surgery. Full article
11 pages, 862 KiB  
Article
A Personalized Approach to Adhesion Prevention in Single-Port Access Laparoscopic Surgery: A Randomized Prospective Study Evaluating the Efficacy of Adhesion Barriers and Patient-Specific Risk Factors
by Seongyun Lim, Joseph Noh, Junhyeong Seo, Youngeun Chung and Taejoong Kim
J. Pers. Med. 2025, 15(2), 68; https://doi.org/10.3390/jpm15020068 - 12 Feb 2025
Viewed by 1290
Abstract
Abstract: Background/Objectives: Single-port access (SPA) laparoscopic surgery has gained popularity due to its cosmetic benefits and reduced postoperative pain. However, concerns persist regarding the increased risk of adhesions due to the larger umbilical incision. This study aims to contribute to personalized [...] Read more.
Abstract: Background/Objectives: Single-port access (SPA) laparoscopic surgery has gained popularity due to its cosmetic benefits and reduced postoperative pain. However, concerns persist regarding the increased risk of adhesions due to the larger umbilical incision. This study aims to contribute to personalized medicine by evaluating the effectiveness of applying an anti-adhesive agent (Guardix SG®, HanmiPharmaceutical Co., Ltd., Seoul, Korea) at the umbilical incision and identifying patient-specific risk factors for adhesion formation in SPA laparoscopic surgeries. Methods: In this randomized prospective study, 55 female patients with benign gynecological conditions were enrolled. Participants were randomly assigned to either an intervention group, which received the anti-adhesive agent at both the surgical and umbilical sites, or a control group, which received it only at the surgical site. Participants returned for outpatient visits 1–3 months post-surgery to assess incision site complications, including adhesions. Results: The overall adhesion rate was 10.9%, with 13.3% in the control group and 8% in the intervention group, though the difference was not statistically significant (p = 0.678). Infection rates were 6.7% in the control group and 4% in the intervention group; however, there was no significant difference in complications. Logistic regression identified pre-existing adhesions as a significant risk factor (p = 0.0379; OR = 6.909). Conclusions: Although the adhesion barrier showed a trend toward reducing umbilical adhesions, the difference was not statistically significant. The application of the adhesion barrier did not influence incision site complications, confirming its safety. Our findings highlight the need for personalized approaches to adhesion prevention, considering individual patient characteristics and risk factors. Further larger studies are necessary to explore adhesion prevention in a more personalized manner for individual patients in this context. Full article
(This article belongs to the Section Methodology, Drug and Device Discovery)
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18 pages, 6862 KiB  
Review
Adhesion Prevention in Gynecologic Surgery: Guidance and Clinical Experience
by Ibrahim Alkatout, Rudy Leon De Wilde, Jörg Herrmann, Rüdiger Klapdor, Ivo Meinhold-Heerlein, József Mészáros, Alexander Mustea, Peter Oppelt, Julian Maria Pape, Sebastian Daniel Schäfer, Markus Wallwiener and Bernhard Krämer
J. Clin. Med. 2024, 13(24), 7517; https://doi.org/10.3390/jcm13247517 - 10 Dec 2024
Viewed by 2243
Abstract
Postoperative adhesions represent a major medical challenge and are associated with serious health and economic consequences. 4DryField® PH (PlantTec Medical GmbH, Lueneburg, Germany) is a starch-based medical device designed both to prevent adhesions and for hemostasis. This paper explores methods to successfully [...] Read more.
Postoperative adhesions represent a major medical challenge and are associated with serious health and economic consequences. 4DryField® PH (PlantTec Medical GmbH, Lueneburg, Germany) is a starch-based medical device designed both to prevent adhesions and for hemostasis. This paper explores methods to successfully apply it in gynecological surgery, leveraging the authors’ extensive clinical experience. We provide detailed insights into best practices that benefit most patients with conditions such as endometriosis, along with practical tips and guidance on optimizing application and dosage. Our real-world clinical experience across various indications, supported by published data, demonstrates significant patient benefits: reduced adhesion formation, better recovery, less pain, and improved fertility. Patient acceptance and satisfaction are notably high. The device can be applied to surgical wounds as a powder for hemostasis and transformed into a gel in situ or as a premixed gel when adhesion prevention is prioritized. Specific advantages for each method are demonstrated by case studies. When used correctly, 4DryField PH is safe and effective, especially for larger wound areas with a high risk of reoperation and adhesion formation and when pregnancy is desired. It offers great versatility due to its use as either in situ gel or premixed gel with different viscosities. Despite some remaining gaps in clinical evidence and ongoing studies, our personal clinical experience suggests significant benefits with minimal risks. Therefore, we have no concerns regarding the broad use of 4DryField PH in gynecology and other surgical disciplines. Future research should focus on patient-reported outcomes and health economic benefits to support reimbursement efforts. Full article
(This article belongs to the Special Issue New Advances in Minimally Invasive Surgery for Gynecologic Cancer)
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18 pages, 1789 KiB  
Article
Docosahexaenoic Acid-Infused Core–Shell Fibrous Membranes for Prevention of Epidural Adhesions
by Zhuo-Hao Liu, Yin-Cheng Huang, Chang-Yi Kuo, Darshan Tagadur Govindaraju, Nan-Yu Chen, Ping K. Yip and Jyh-Ping Chen
Int. J. Mol. Sci. 2024, 25(23), 13012; https://doi.org/10.3390/ijms252313012 - 3 Dec 2024
Viewed by 1199
Abstract
Avoiding epidural adhesion following spinal surgery can reduce clinical discomfort and complications. As the severity of epidural adhesion is positively correlated with the inflammatory response, implanting a fibrous membrane after spinal surgery, which can act as a physical barrier to prevent adhesion formation [...] Read more.
Avoiding epidural adhesion following spinal surgery can reduce clinical discomfort and complications. As the severity of epidural adhesion is positively correlated with the inflammatory response, implanting a fibrous membrane after spinal surgery, which can act as a physical barrier to prevent adhesion formation while simultaneously modulates postoperative inflammation, is a promising approach to meet clinical needs. Toward this end, we fabricated an electrospun core–shell fibrous membrane (CSFM) based on polylactic acid (PLA) and infused the fiber core region with the potent natural anti-inflammatory compound docosahexaenoic acid (DHA). The PLA/DHA CSFM can continuously deliver DHA for up to 36 days in vitro and reduce the penetration and attachment of fibroblasts. The released DHA can downregulate the gene expression of inflammatory markers (IL-6, IL-1β, and TNF-α) in fibroblasts. Following an in vivo study that implanted a CSFM in rats subjected to lumbar laminectomy, the von Frey withdrawal test indicates the PLA/DHA CSFM treatment can successfully alleviate neuropathic pain-like behaviors in the treated rats, showing 3.60 ± 0.49 g threshold weight in comparison with 1.80 ± 0.75 g for the PLA CSFM treatment and 0.57 ± 0.37 g for the untreated control on day 21 post-implantation. The histological analysis also indicates that the PLA/DHA CSFM can significantly reduce proinflammatory cytokine (TNF-α and IL-1β) protein expression at the lesion and provide anti-adhesion effects, indicating its vital role in preventing epidural fibrosis by mitigating the inflammatory response. Full article
(This article belongs to the Special Issue Multifunctional Application of Biopolymers and Biomaterials 2.0)
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27 pages, 2360 KiB  
Systematic Review
Mesenchymal Stromal Cells for the Enhancement of Surgical Flexor Tendon Repair in Animal Models: A Systematic Review and Meta-Analysis
by Ilias Ektor Epanomeritakis, Andreas Eleftheriou, Anna Economou, Victor Lu and Wasim Khan
Bioengineering 2024, 11(7), 656; https://doi.org/10.3390/bioengineering11070656 - 27 Jun 2024
Cited by 2 | Viewed by 1693
Abstract
Flexor tendon lacerations are primarily treated by surgical repair. Limited intrinsic healing ability means the repair site can remain weak. Furthermore, adhesion formation may reduce range of motion post-operatively. Mesenchymal stromal cells (MSCs) have been trialled for repair and regeneration of multiple musculoskeletal [...] Read more.
Flexor tendon lacerations are primarily treated by surgical repair. Limited intrinsic healing ability means the repair site can remain weak. Furthermore, adhesion formation may reduce range of motion post-operatively. Mesenchymal stromal cells (MSCs) have been trialled for repair and regeneration of multiple musculoskeletal structures. Our goal was to determine the efficacy of MSCs in enhancing the biomechanical properties of surgically repaired flexor tendons. A PRISMA systematic review was conducted using four databases (PubMed, Ovid, Web of Science, and CINAHL) to identify studies using MSCs to augment surgical repair of flexor tendon injuries in animals compared to surgical repair alone. Nine studies were included, which investigated either bone marrow- or adipose-derived MSCs. Results of biomechanical testing were extracted and meta-analyses were performed regarding the maximum load, friction and properties relating to viscoelastic behaviour. There was no significant difference in maximum load at final follow-up. However, friction, a surrogate measure of adhesions, was significantly reduced following the application of MSCs (p = 0.04). Other properties showed variable results and dissipation of the therapeutic benefits of MSCs over time. In conclusion, MSCs reduce adhesion formation following tendon injury. This may result from their immunomodulatory function, dampening the inflammatory response. However, this may come at the cost of favourable healing which will restore the tendon’s viscoelastic properties. The short duration of some improvements may reflect MSCs’ limited survival or poor retention. Further investigation is needed to clarify the effect of MSC therapy and optimise its duration of action. Full article
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23 pages, 799 KiB  
Review
Neutrophil Extracellular Traps: A Crucial Factor in Post-Surgical Abdominal Adhesion Formation
by Yuqing Lu, Julia Elrod, Martin Herrmann, Jasmin Knopf and Michael Boettcher
Cells 2024, 13(11), 991; https://doi.org/10.3390/cells13110991 - 6 Jun 2024
Cited by 3 | Viewed by 2048
Abstract
Post-surgical abdominal adhesions, although poorly understood, are highly prevalent. The molecular processes underlying their formation remain elusive. This review aims to assess the relationship between neutrophil extracellular traps (NETs) and the generation of postoperative peritoneal adhesions and to discuss methods for mitigating peritoneal [...] Read more.
Post-surgical abdominal adhesions, although poorly understood, are highly prevalent. The molecular processes underlying their formation remain elusive. This review aims to assess the relationship between neutrophil extracellular traps (NETs) and the generation of postoperative peritoneal adhesions and to discuss methods for mitigating peritoneal adhesions. A keyword or medical subject heading (MeSH) search for all original articles and reviews was performed in PubMed and Google Scholar. It included studies assessing peritoneal adhesion reformation after abdominal surgery from 2003 to 2023. After assessing for eligibility, the selected articles were evaluated using the Critical Appraisal Skills Programme checklist for qualitative research. The search yielded 127 full-text articles for assessment of eligibility, of which 7 studies met our criteria and were subjected to a detailed quality review using the Critical Appraisal Skills Programme (CASP) checklist. The selected studies offer a comprehensive analysis of adhesion pathogenesis with a special focus on the role of neutrophil extracellular traps (NETs) in the development of peritoneal adhesions. Current interventional strategies are examined, including the use of mechanical barriers, advances in regenerative medicine, and targeted molecular therapies. In particular, this review emphasizes the potential of NET-targeted interventions as promising strategies to mitigate postoperative adhesion development. Evidence suggests that in addition to their role in innate defense against infections and autoimmune diseases, NETs also play a crucial role in the formation of peritoneal adhesions after surgery. Therefore, therapeutic strategies that target NETs are emerging as significant considerations for researchers. Continued research is vital to fully elucidate the relationship between NETs and post-surgical adhesion formation to develop effective treatments. Full article
(This article belongs to the Special Issue Formation, Aggregation, Persistence, and Maturation of NETs)
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16 pages, 13682 KiB  
Article
Carotid Artery Bypass Surgery of In-Body Tissue Architecture-Induced Small-Diameter Biotube in a Goat Model: A Pilot Study
by Tadashi Umeno, Kazuki Mori, Ryosuke Iwai, Takayuki Kawashima, Takashi Shuto, Yumiko Nakashima, Tsutomu Tajikawa, Yasuhide Nakayama and Shinji Miyamoto
Bioengineering 2024, 11(3), 203; https://doi.org/10.3390/bioengineering11030203 - 21 Feb 2024
Cited by 4 | Viewed by 1962
Abstract
Biotubes are autologous tubular tissues developed within a patient’s body through in-body tissue architecture, and they demonstrate high potential for early clinical application as a vascular replacement. In this pilot study, we used large animals to perform implantation experiments in preparation for preclinical [...] Read more.
Biotubes are autologous tubular tissues developed within a patient’s body through in-body tissue architecture, and they demonstrate high potential for early clinical application as a vascular replacement. In this pilot study, we used large animals to perform implantation experiments in preparation for preclinical testing of Biotube. The biological response after Biotube implantation was histologically evaluated. The designed Biotubes (length: 50 cm, internal diameter: 4 mm, and wall thickness: 0.85 mm) were obtained by embedding molds on the backs of six goats for a predetermined period (1–5 months). The same goats underwent bypass surgery on the carotid arteries using Biotubes (average length: 12 cm). After implantation, echocardiography was used to periodically monitor patency and blood flow velocity. The maximum observation period was 6 months, and tissue analysis was conducted after graft removal, including the anastomosis. All molds generated Biotubes that exceeded the tensile strength of normal goat carotid arteries, and eight randomly selected Biotubes were implanted. Thrombotic occlusion occurred immediately postoperatively (1 tube) if anticoagulation was insufficient, and two tubes, with insufficient Biotube strength (<5 N), were ruptured within a week. Five tubes maintained patency for >2 months without aneurysm formation. The spots far from the anastomosis became stenosed within 3 months (3 tubes) when Biotubes had a wide intensity distribution, but the shape of the remaining two tubes remained unchanged for 6 months. The entire length of the bypass region was walled with an αSMA-positive cell layer, and an endothelial cell layer covered most of the lumen at 2 months. Complete endothelial laying of the luminal surface was obtained at 3 months after implantation, and a vascular wall structure similar to that of native blood vessels was formed, which was maintained even at 6 months. The stenosis was indicated to be caused by fibrin adhesion on the luminal surface, migration of repair macrophages, and granulation formation due to the overproliferation of αSMA-positive fibroblasts. We revealed the importance of Biotubes that are homogeneous, demonstrate a tensile strength > 5 N, and are implanted under appropriate antithrombotic conditions to achieve long-term patency of Biotube. Further, we clarified the Biotube regeneration process and the mechanism of stenosis. Finally, we obtained the necessary conditions for a confirmatory implant study planned shortly. Full article
(This article belongs to the Special Issue iBTA Technology for Biomedical Applications)
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19 pages, 2875 KiB  
Article
The Determination of the Biocompatibility of New Compositional Materials, including Carbamide-Containing Heterocycles of Anti-Adhesion Agents for Abdominal Surgery
by Nurdana Kanasheva, Dmitry A. Fedorishin, Maria V. Lyapunova, Mikhail V. Bukterov, Olga A. Kaidash, Abdigali A. Bakibaev, Rakhmetulla Yerkassov, Togzhan Mashan, Rimma Nesmeyanova, Vladimir V. Ivanov, Elena V. Udut, Vera P. Tuguldurova, Margarita V. Salina, Victor S. Malkov and Alexey S. Knyazev
Molecules 2024, 29(4), 851; https://doi.org/10.3390/molecules29040851 - 14 Feb 2024
Cited by 2 | Viewed by 1558
Abstract
Due to traumatic injuries, including those from surgical procedures, adhesions occur in over 50% of cases, necessitating exclusive surgical intervention for treatment. However, preventive measures can be implemented during abdominal organ surgeries. These measures involve creating a barrier around internal organs to forestall [...] Read more.
Due to traumatic injuries, including those from surgical procedures, adhesions occur in over 50% of cases, necessitating exclusive surgical intervention for treatment. However, preventive measures can be implemented during abdominal organ surgeries. These measures involve creating a barrier around internal organs to forestall adhesion formation in the postoperative phase. Yet, the effectiveness of the artificial barrier relies on considerations of its biocompatibility and the avoidance of adverse effects on the body. This study explores the biocompatibility aspects, encompassing hemocompatibility, cytotoxicity, and antibacterial and antioxidant activities, as well as the adhesion of blood serum proteins and macrophages to the surface of new composite film materials. The materials, derived from the sodium salt of carboxymethylcellulose modified by glycoluril and allantoin, were investigated. The research reveals that film materials with a heterocyclic fragment exhibit biocompatibility comparable to commercially used samples in surgery. Notably, film samples developed with glycoluril outperform the effects of commercial samples in certain aspects. Full article
(This article belongs to the Section Chemical Biology)
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