Background Peri-implantitis management remains an evolving field, and no gold standard treatment exists. Although oxygen-based agents show promise in periodontal therapy, there’s limited data on their use in peri-implantitis. This study is aimed at evaluating the antimicrobial activity of an Oxygen-rich fluid (ORF) against titanium surface infected with peri-implant colonizing bacteria, namely, Escherichia coli ( E. coli ) and Staphylococcus aureus ( S. aureus ). Materials and Methods Titanium discs inoculated with E. coli or S. aureus were assigned to 100% ORF, ORF at its MIC, 0.2% chlorhexidine (CHX) as a positive control, or broth as a negative control. Discs were exposed to 1 mL of the assigned solution for 1 min, then assessed for viable bacteria by colony-forming units (CFU) and biofilm adhesion by crystal violet staining (OD600). Surface morphology was examined by field-emission scanning electron microscopy. Results ORF showed a downward trend in bacterial load and biofilm adhesion on Ti discs against both E. coli and S. aureus . CHX produced the greatest reduction, while 100% ORF showed an intermediate effect and MIC ORF the least reduction. However, after post hoc analysis, only the CHX vs control comparison remained statistically significant (p< 0.002). FE-SEM images showing clear membrane disruption CHX and 100% ORF groups, while MIC ORF group exposure left more intact membrane boundaries. Conclusion ORF showed a favorable trend in reducing E. coli and S. aureus bacterial counts and biofilm attachment on titanium surfaces, although CHX remained more effective.
Human gingival fibroblasts (HGnFs) play crucial roles in periodontal wound healing. This in vitro study examined the impact of varying concentrations of topical oxygen fluid (blue®m) on HGnF morphology, viability, proliferation, oxidative stress and pro-inflammatory cytokine production. The attempt was to underscore the potential of blue®m as a less cytotoxic alternative to chlorhexidine in the context of tissue-regeneration improvement. Primary HGnF cell cultures were subjected to oxygen fluid (blue®m) at concentrations of 0.6, 1.2 and 2.4% for a duration of 1 min. The positive control was 0.12% chlorhexidine. Cell morphology as well as actin cytoskeleton were assessed using microscopy and immunofluorescence staining. Cell viability and proliferation were assessed through AlamarBlue and trypan blue assays at 1, 2, 7, 10 and 14 days. Levels of reactive oxygen species (ROS) were quantified using DCFH-DA assay. Pro-inflammatory cytokines (IL-1β, IL-6, TNF-α, MMP-8 and TIMP-1) were assessed through ELISA. HGnF morphology and actin structure were preserved at all oxygen fluid concentrations. Cell viability and proliferation were significantly higher in the 0.6% and 1.2% groups than in the control and chlorhexidine groups (p ≤ 0.05). ROS levels were low at 0.6% and 1.2%, but increased at 2.4% and with chlorhexidine (p ≤ 0.05). Oxygen treatment reduced IL-1β, IL-6, TNF-α and TIMP-1 expression, while MMP-8 levels increased. Chlorhexidine significantly upregulated the expression of all proinflammatory cytokines (p ≤ 0.01). Oxygen fluid (blue®m) therapy improves the viability and proliferation of gingival fibroblasts and offers anti-inflammatory and preliminary antioxidative effects at the cellular level, especially at lower concentrations (0.6% and 1.2%), indicating potential application in periodontal wound management, subject to clinical validation.
BACKGROUND:This study aimed to identify the predictors of liver decompensation and mortality in patients with HCC treated with trans arterial radioembolization (TARE). METHODS:A retrospective analysis of 140 HCC patients who underwent TARE was conducted. Kaplan-Meier and multivariate Cox regression analyses were performed to identify the key predictors of mortality and liver decompensation, defined as a total bilirubin level greater than 50 μmol/l or an upgrade in the Child-Pugh class within three months of the first TARE procedure. RESULTS:The cohort comprised 69.3% males with a mean age of 71.3 ± 11.9 years. Most patients (73.6%) had Child-Pugh class A cirrhosis and 34.3% had BCLC stage B disease. Liver decompensation was recorded in 55 patients (39.2%) within three months of the first TARE procedure. A total of 80 patients (57.1%) died during the follow-up period. The median survival was significantly longer in those without liver decompensation (3.2 vs. 0.7 years, P < 0.001). Multivariate analysis revealed that male gender (adjusted odds ratio [aOR] 5.889, P = 0.009), cirrhosis (aOR 6.82, P = 0.047), and baseline international normalized ratio (INR) (aOR 316.664, P = 0.013) were independent predictors of liver decompensation. Cox regression analysis revealed several significant predictors of increased mortality including ascites (HR 2.012, 95% CI, 1.122-3.61; P = 0.019), portal vein invasion (HR 1.695, 95% CI, 1.057-2.718; P = 0.029), and diabetes mellitus (HR 1.823, 95% CI, 1.017-3.265; P = 0.044). Conversely, non-multifocal HCC (HR 0.593, 95% CI, 0.369-0.955; P = 0.031), treatment of the liver lobe other than the right lobe (HR, 0.482; 95% CI 0.236-0.986, P = 0.046), and age ≥60 years (HR 0.288, 95% CI, 0.139-0.597; P = 0.001) were associated with a reduced risk of mortality. CONCLUSION:This study identified the key predictors of liver decompensation and mortality in patients with HCC undergoing TARE, potentially improving patient selection and management strategies.
Background: Transarterial radioembolization (TARE) with Yttrium-90 microspheres is an established therapy for unresectable hepatocellular carcinoma (HCC). However, its clinical efficacy compared to transarterial chemoembolization (TACE) remains unclear. Methods: We retrospectively reviewed 279 consecutive patients undergoing TARE (n = 104) or TACE (n = 175) at four tertiary centers. Patients with metastatic disease, locally advanced HCC, or Child–Pugh (CP) C were excluded. Data on treatment, adverse events, survival outcomes (median overall survival [mOS], and objective response rates [by modified Response Evaluation Criteria in Solid Tumors; mRECIST]) were collected. Results: The median follow-up of the cohort was 27 months (IQR 13–50), the mean age was 67.6 ± 10.1 years, and 207 (74.2%) were male. The cohort was balanced in age, performance status, CP class, and HCC etiology. Maximum tumor diameter was significantly larger in the TARE cohort compared to the TACE cohort (4.4 vs. 3.1 cm, p < 0.001), including within the BCLC 0/A (4.2 vs. 2.7 cm, p = 0.001) and BCLC B (5.0 vs. 4.0 cm, p = 0.049) subgroups. The mOS was longer with TACE (37 vs. 22 months; hazard ratio [HR] 1.65, 95% CI: 1.19–2.29, p = 0.002). In BCLC 0/A patients, TACE yielded longer mOS (60 vs. 25 months; HR 2.35, 95% CI: 1.17–4.69; p = 0.016). In BCLC B, mOS was longer with TACE (32 vs. 20 months), but was not statistically significant (HR 1.39, 95% CI: 0.96–2.03, p = 0.080). In BCLC 0/A, complete response rates were higher with TACE (43.2% vs. 34.3%, p = 0.012). Hepatic decompensation was more frequent with TARE- (26.0%) than with TACE-treated patients (13.7%, p = 0.010). Conclusions: TACE demonstrated superior survival outcomes over TARE, particularly in early-stage disease. These results advocate for a more nuanced selection of embolization therapies in these patients.
Dental implants have become the most effective treatment option for replacing missing teeth, worldwide. The popularity and demand for dental implants are continually increasing. Nevertheless, its complications are undeniable. Peri-implant diseases, including peri-implant mucositis and peri-implantitis, are a multifaceted clinical condition. Therefore, it is in the best interest to optimize the management of peri-implantitis, and there are still numerous methods to treat and manage infections in the vicinity of dental implants. The main goal of peri-implantitis treatment is to arrest disease progression, eliminate infection, and reconstruct damaged tissues around the implant. The clinical evidence on treating peri-implantitis that is available in PubMed was reviewed. Additionally, we presented the most comprehensive management strategies. As a result, numerous clinical trials recommended mechanical debridement and local administration of antimicrobial agents as well as topical oxygen therapy to mitigate bacterial biofilm and manage infection. The regenerative (bone grafting) approach for the treatment of peri-implantitis is another effective method. Finally, implant surface engineering can address high antibacterial efficacy and site-specific biofilm reduction.
Globally, oral infections and inflammatory lesions persist as substantial public health concerns, necessitating the introduction of novel oral treatment protocols. Oral diseases are linked to various causative factors, with dental plaque/biofilm resulting from inadequate hygiene practices playing a predominant role. The strategic implementation of novel topical therapies holds promise for effectively controlling the biofilms, addressing oral infections and promoting enhanced oral wound healing. This review aims to providing a comprehensive overview of the available evidence pertaining to the potential efficacy of topical oxygen and lactoferrin-releasing biomaterials, exemplified by the blue®m formula, as novel oral care interventions within the scope of contemporary implantology, oral surgery and periodontology.
Peri-implant diseases including peri-implant mucositis and peri-implantitis are among the major causes of failure of implant-supported dental restorations. They are characterized by progressive inflammation of the peri-implant mucosa, extending to the surrounding connective tissues and leading to bone loss and implant failure. Although strict oral hygiene practices help in preventing peri-implant diseases, plaque buildup around the implant restoration leads to chronic inflammation, due to the adherent bacterial biofilm. While mechanical debridement and non-surgical therapy to remove inflamed connective tissue (ICT) form the mainstay of treatment, additional local adjunctive therapies enhance clinical outcomes. Topical oxygen therapy is known to reduce inflammation, increase vascularity, and act as a bacteriostatic measure. The use of oxygen-based therapy (blue®m) products as a local adjunctive therapy for peri-implant mucositis and peri-implantitis can result in clinical outcomes similar to that of conventional local adjuncts such as chlorhexidine, antibiotics, and antibacterial agents. This report aims to present the clinical findings of patients with peri-implant mucositis and peri-implantitis, who were managed using local oxygen-based therapy as an adjunct to non-surgical therapy. In addition, a review of the literature about commonly used local adjuncts for peri-implant diseases has been included in the report to provide a means of comparison between conventional local adjunct therapy and topical oxygen-based therapy. Based on the reported findings and reviewed literature, local oxygen-based adjunct therapy was equally effective as conventionally used local adjuncts such as antibiotics, antibacterials, and probiotics, in treating patients with peri-implant diseases.
ABSTRACT:Hepatitis C virus (HCV) infection has been a major global health concern, with a significant impact on public health. In recent years, there have been remarkable advancements in our understanding of HCV and the development of novel therapeutic agents. The Saudi Society for the Study of Liver Disease and Transplantation formed a working group to develop HCV practice guidelines in Saudi Arabia. The methodology used to create these guidelines involved a comprehensive review of available evidence, local data, and major international practice guidelines regarding HCV management. This updated guideline encompasses critical aspects of HCV care, including screening and diagnosis, assessing the severity of liver disease, and treatment strategies. The aim of this updated guideline is to assist healthcare providers in the management of HCV in Saudi Arabia. It summarizes the latest local studies on HCV epidemiology, significant changes in virus prevalence, and the importance of universal screening, particularly among high-risk populations. Moreover, it discusses the promising potential for HCV elimination as a public health threat by 2030, driven by effective treatment and comprehensive prevention strategies. This guideline also highlights evolving recommendations for advancing disease management, including the treatment of HCV patients with decompensated cirrhosis, treatment of those who have previously failed treatment with the newer medications, management in the context of liver transplantation and hepatocellular carcinoma, and treatment for special populations.
Background and aims: Gastrointestinal bleeding is a major healthcare burden and is associated with significant morbidity and mortality. This study aimed to assess the prevalence, clinical presentation, and risk factors of patients presenting with gastrointestinal bleeding in the emergency department. Materials and methods: This retrospective study was conducted in two tertiary care hospitals in Riyadh, Saudi Arabia. The medical records of patients who presented to the emergency department with gastrointestinal bleeding between January 2010 and January 2020 were reviewed. Patients aged 18 years or older, with gastrointestinal bleeding (upper or lower) regardless of underlying cause, lifestyle, location of bleeding, health status, or medication use, were included. Demographic characteristics, initial vital signs, medical history, physical examination findings, comorbidities, medications, laboratory and radiological investigations, cause and stage of liver disease, management, and complications were recorded. Endoscopic findings and management of the bleeding site were collected according to the presenting symptoms. Results: A total of 760 patients were included. The mean age was 62.7 +/- 17.8 years, and 61.4% were males. The most common comorbidities at presentation were hypertension (54.1%), diabetes mellitus (51.2%), and ischemic heart disease (18.2%). The origins of the bleeding were lower gastrointestinal in 52% and upper gastrointestinal in 48% of patients. Conclusions: Lower gastrointestinal bleeding was found to be more common than upper gastrointestinal bleeding. Hemorrhoids, polyps, diverticular disease, and colonic ulcers were the major risk factors for lower gastrointestinal bleeding. In contrast, upper gastrointestinal bleeding was predominantly caused by esophageal varices, gastritis, and peptic ulcers.
Gingivitis and periodontitis are common oral pathological conditions. Several optional adjunctive local therapies are used clinically. While antibiotics and chlorhexidine are the most common agents of choice, their long-term use is associated with several adverse effects. Some of these include staining of teeth and restorations, cellular cytotoxicity and hypersensitivity. Topical oxygen therapy has been recently introduced and could be clinically capable of inhibiting plaque bacterial biofilm growth. Available as a mouthwash, toothpaste and oral gel, this formulation comprises cellulose, glycerol and sodium peroxoborate, and releases topical oxygen in a controlled manner. Moreover, it releases topical oxygen, in a controlled manner, and lactoferrin, which are capable of antibacterial action and stimulation of bone cells, respectively. The aim of this paper is to report a case of gingivitis and another case of periodontitis, both of which were successfully treated clinically with adjunctive local oxygen therapy (blue®m). Additionally, this paper aims to review the relevant literature in terms of adjunct topical or local therapies used in the treatment of gingivitis and periodontitis, in order to understand how local therapies are helpful and to know if local oxygen therapy is a suitable clinical alternative.
OBJECTIVES:To assess the effectiveness of generic sofosbuvir (SOF) and branded daclatasvir (DCV) for the treatment of chronic hepatitis C virus (HCV)infected patients.METHODS:This retrospective study, performed in a single center in Saudi Arabia between August 2017 and July 2022, we enrolled 140 consecutive patients with HCV who received generic SOF and branded DCV. The primary outcome was sustained virologic response at week 12 (SVR12).RESULTS:The majority of the patients were female (62.1%), infected with genotype 4 (57.9%), and treatment-naïve in 120 (85.7%) patients with baseline cirrhosis in 55 (39.3%). The mean patient age was 61±13.6 years. In the intention-to-treat analysis, 131 (93.6%) patients achieved SVR12. Moreover, 85.7%, 100%, 100%, 88.9%, and 96.3% of genotypes 1a, 1b, 2, 3, and 4, respectively, achieved SVR12. In the per-protocol analysis, 131 (96.3%) patients achieved an SVR of 12. Additionally, 92.3%, 100%, 100%, 88.9%, and 98.7% of the patients with genotypes 1a, 1b, 2, 3, and 4, respectively, achieved SVR12. No HCV virologic breakthroughs occurred. In the subgroup analysis, SVR12 rates were comparable regardless of baseline characteristics, such as treatment history, cirrhosis, and hepatocellular carcinoma. Patients achieving SVR12 showed a significant improvement in post-treatment serum liver enzyme and total bilirubin levels.CONCLUSION:The findings of our study confirm the effectiveness of generic sofosbuvir as a treatment option for HCV infection.
OBJECTIVES The Model for End-Stage Liver Disease score is used to prioritize patients awaiting liver transplant. Since hepatocellular carcinoma does not affect the score, patients with hepatocellular carcinoma are given exception points to promote fairness. In the United States,this practice has resulted in overcorrection; hence, a 6-month delay to grant exceptions was implemented. A similar flaw may exist in Saudi Arabia. MATERIALS AND METHODS We retrospectively reviewed data for 214 adults listed for liver transplant from January 2016 to July 2020 at King Abdulaziz Medical City, Riyadh. Data included diagnoses, Model for End-Stage Liver Disease scores, wait times, and outcomes. Comparative analyses were performed to contrast patients with hepatocellular carcinoma versus patients without hepatocellular carcinoma. RESULTS Mean age was 55.2 ± 11.6 years, and 61% were male patients. Outcomes were that the patient received a transplant(77%; n = 165/214), dropped out (18%; n = 38/214), or remained on the wait (5%; n = 11/214). Of the hepatocellular carcinoma group, 84% (n = 56/68) received transplant versus 74% (n = 108/146) in the control group (P = .11). There was no significant difference in dropout rates (P = .33). Patients with hepatocellular carcinoma constituted 32% (n = 68/214) ofthe waitlist, yetthey received 40% of deceased organ offers (P = .015). Most patients in the hepatocellular carcinoma group received pretransplant bridging therapy for a median of 166 days (101-329.5 days). Median time from listing to transplant was shorter for the control group, 57 days versus 148 days (P < .001). Long-term outcomes were comparable between both groups. CONCLUSIONS This study suggests that implementation of the 6-month wait time for patients with hepatocellular carcinoma before granting exception points may not be necessary for active living related liver transplant programs. Nevertheless, this remains a sound strategy to follow.
Acute kidney damage (AKI) is a common cause of pediatric intensive care unit (PICU) admissions. Implementing a reno-protective strategy for AKI prediction can significantly enhance outcomes. The renal angina index (RAI) is a risk stratification tool used to predict severe AKI. We aim to assess the reliability and accuracy of the RAI scoring system in predicting AKI as compared to other conventional AKI markers. A prospective, observational study was conducted in the PICU of 2 tertiary medical centers in the Middle East. A total of 446 patients, aged 1-month to 14-years, without chronic kidney disease were enrolled. The RAI was calculated using the renal risk and renal injury score within the first 8 to 12 hours of admission. The accuracy of RAI was compared to changes in serum creatinine from baseline. The outcome was assessed on Day 3 for presence of AKI according to the kidney disease improving global outcome (KDIGO) criteria and associated sequelae. A positive RAI (RA+) was defined as RAI readings ≥ 8. Among the patients, 89 (19.9%) had a positive RAI within the first 8 to 12 hours of admission. The RA + group had a significantly higher occurrence of Day 3 severe AKI (KDIGO stages 2&3) compared to the RA− group (60.6% vs 4.2%, P < .001). The RA + group also had a significantly higher utilization of renal replacement therapy (RRT) (21.3% vs 1.1%, P < .001), longer mean PICU length of stay in days (11.1 ± 3.5 vs 5.5 ± 2.1, P < .001), and increased mortality (31.4% vs 2.8%, P < .001) compared to the RA− group. The RAI score demonstrated superior predictive ability for Day 3 AKI, with a sensitivity of 72%, specificity of 95%, and area under the curve (AUC) of 0.837, compared to changes in serum creatinine from baseline (sensitivity: 65%, specificity: 89%, AUC: 0.773), fluid overload (sensitivity: 43.7%, specificity: 79%, AUC: 0.613), and illness severity scores (sensitivity: 52.4%, specificity: 80.5%, AUC: 0.657). RAI proved to be a reliable and rapid bedside test for identifying critically ill children at risk of developing severe AKI. This enables physicians to implement reno-protective measures and intervene early, thereby improving prognosis.
Background Vietnam and Saudi Arabia have high disease burden of primary hepatocellular carcinoma (HCC). Early detection in asymptomatic patients at risk for HCC is a strategy to improve survival outcomes in HCC management. GALAD score, a serum-based panel, has demonstrated promising clinical utility in HCC management. However, in order to ascertain its potential role in the surveillance of the early detection of HCC, GALAD needs to be validated prospectively for clinical surveillance of HCC (i.e., phase IV biomarker validation study). Thus, we propose to conduct a phase IV biomarker validation study to prospectively survey a cohort of patients with advanced fibrosis or compensated cirrhosis, irrespective of etiologies, using semi-annual abdominal ultrasound and GALAD score for five years. Methods We plan to recruit a cohort of 1,600 patients, male or female, with advanced fibrosis or cirrhosis (i.e., F3 or F4) and MELD ≤ 15, in Vietnam and Saudi Arabia ( n = 800 each). Individuals with a liver mass ≥ 1 cm in diameter, elevated alpha-fetoprotein (AFP) (≥ 9 ng/mL), and/or elevated GALAD score (≥ -0.63) will be scanned with dynamic contrast-enhanced magnetic resonance imaging (MRI), and a diagnosis of HCC will be made by Liver Imaging Reporting and Data System (LiRADS) assessment (LiRADS-5). Additionally, those who do not exhibit abnormal imaging findings, elevated AFP titer, and/or elevated GALAD score will obtain a dynamic contrast-enhanced MRI annually for five years to assess for HCC. Only MRI nearest to the time of GALAD score measurement, ultrasound and/or AFP evaluation will be included in the diagnostic validation analysis. MRI will be replaced with an abdominal computed tomography scan when MRI results are poor due to patient conditions such as movement etc. Gadolinium-ethoxybenzyl-diethylenetriamine pentaacetic acid-enhanced MRI will not be carried out in study sites in both countries. Bootstrap resampling technique will be used to account for repeated measures to estimate standard errors and confidence intervals. Additionally, we will use the Cox proportional hazards regression model with covariates tailored to the hypothesis under investigation for time-to-HCC data as predicted by time-varying biomarker data. Discussion The present work will evaluate the performance of GALAD score in early detection of liver cancer. Furthermore, by leveraging the prospective cohort, we will establish a biorepository of longitudinally collected biospecimens from patients with advanced fibrosis or cirrhosis to be used as a reference set for future research in early detection of HCC in the two countries. Trial registration Name of the registry: ClinicalTrials.gov Registration date: 22 April 2022 Trial registration number: NCT05342350 URL of trial registry record
The electro-oxidation of H2 (HOR) is 200x slower in base than in acid, hampering the deployment of alkaline fuel cells. It is disputed whether the hydrogen binding energy (HBE) or a bifunctional effect is the primary contributor to the improved HOR performance of alloy materials, because these effects are difficult to disentangle. Here, we used ordered intermetallic compounds (OICs) to produce strain-modulated Pt shells, in which PtSb@Pt and PtSb2@Pt exhibited compressive or tensile strain, respectively, to Pt. The HBE was tuned by the crystal structure of the OICs, allowing us to use the same two elements in the alloy and thus remove convolution from the bifunctional effect. PtSb@Pt exhibited a weaker HBE than Pt, achieving an exchange current density (jo) 1.6x larger than Pt. However, PtSb2@Pt exhibited a higher HBE, lowering the jo value by 1.2x compared to Pt. This work demonstrated that high alkaline HOR activity can be achieved solely by tuning the HBE.