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1.
J Colloid Interface Sci ; 675: 263-274, 2024 Jul 03.
Article in English | MEDLINE | ID: mdl-38970912

ABSTRACT

The removal of dye molecules in alkaline environments is an issue that should receive increased attention. In this study, the interaction mechanism between polydopamine-modified multiwalled carbon nanotubes (P-MWCNTs) and multiwalled carbon nanotubes (MWCNTs) with the cationic dye methylene blue (MB) in alkaline environments was explained in depth by adsorption, spectroscopy, and density functional theory (DFT). The mechanism of action and dominant forces between the adsorbent and adsorbate were analyzed graphically by introducing energy decomposition analysis (EDA) and an independent gradient model (IGM) into the DFT calculations. In addition, the force distribution was investigated through an isosurface. Moreover, batch adsorption studies were conducted to evaluate the performance of MWCNTs and P-MWCNTs for MB removal in alkaline environments. The maximum MB adsorption capacities of the MWCNTs and P-MWCNTs in solution were 113.3 mg‧g-1 and 230.4 mg‧g-1, respectively, at pH 9. The IGM and EDA showed that the better adsorption capacity of the P-MWCNTs originated from the enhancement of the electrostatic effect by the proton dissociation of polydopamine. Moreover, the adsorption of MB by MWCNTs and P-MWCNTs in alkaline environments was governed by dispersion and electrostatic effects, respectively. Through this study, it is hoped that progress will be made in the use of DFT to explore the mechanism of adsorbent-adsorbate interactions.

2.
Colloids Surf B Biointerfaces ; 242: 114087, 2024 Jul 10.
Article in English | MEDLINE | ID: mdl-39003846

ABSTRACT

This study introduces a novel approach of repetitive modeling to simulate the pathological process of recurrent gout attacks in humans. This methodology addresses the instability issues present in rat models of gout, providing a more accurate representation of the damage recurrent gout episodes inflict on human skeletal systems. A soluble nanoneedle system encapsulating colchicine and iguratimod ethosomal formulations was developed. This system aims to modulate inflammatory cytokines and inhibit osteoclast activity, thereby treating inflammatory pain and bone damage associated with recurrent gout. Additionally, a comprehensive evaluation of the microneedles' appearance, morphology, mechanical properties, and penetration capability confirmed their effectiveness in penetrating the stratum corneum. Dissolution tests and skin irritation assessments demonstrated that these microneedles dissolve rapidly without irritating the skin. In vitro permeation studies indicated that transdermal drug delivery via these microneedles is more efficient and incurs lower drug loss compared to traditional topical applications. In vivo pharmacodynamic assessments conducted in animal models revealed significant analgesic and anti-inflammatory effects when both types of microneedles were used together. Further analyses, including X-ray imaging, hematoxylin and eosin (H&E) staining, Safranin-O/fast green staining, tartrate-resistant acid phosphatase staining, and quantification of osteoclasts, confirmed the bone-protective effects of the microneedle combination. In conclusion, the findings of this research underscore the potential of this novel therapeutic approach for clinical application in the treatment of recurrent gout.

3.
Vet Ophthalmol ; 2024 Jul 16.
Article in English | MEDLINE | ID: mdl-39013802

ABSTRACT

OBJECTIVE: To compare ocular surface parameters in dogs with different cephalic conformations and evaluate correlations among tests. ANIMALS STUDIED: Sixty-eight privately owned dogs. PROCEDURES: The study categorized canine eyes into three groups based on the craniofacial ratio (CFR): brachycephaly (≤0.52), mesocephaly (>0.52 to <0.67), and dolichocephaly (≥0.67). All eyes were examined using an ocular surface analyzer (OSA-VET) to determine lipid layer thickness (LLT) of the tear film, tear meniscus height (TMH), non-invasive tear breakup time (NIBUT), and meibomian gland loss rate of the lower eyelids (MGLRL). Schirmer tear test 1 (STT-1) and tear film breakup time (TBUT) were also performed. Statistical analyses involved one-way ANOVA, Kruskal-Wallis H test, post hoc Holm-Sidak test, and Pearson correlation coefficient. RESULTS: While STT-1 showed no significant difference among dog groups, brachycephalic dogs had significantly lower values in TBUT, NIBUT, and LLT, and a higher TMH, compared to mesocephalic and dolichocephalic dogs. Additionally, brachycephalic dogs exhibited a significantly higher MGLRL than dolichocephalic dogs. Correlations among tests were generally weak to moderate (r < .6) except for a strong correlation between CFR and LLT (r = .641, p < .001), and between TBUT and NIBUT (r = .899, p < .001). CONCLUSIONS: Brachycephalic morphology predisposes dogs to a significantly thinner lipid layer and diminished tear film stability, likely due to factors such as impaired meibomian gland function and increased ocular exposure compared to other cephalic conformations, thereby increasing their risk of keratoconjunctivitis sicca (KCS). OSA-VET shows a valuable tool to provide more comprehensive and precise diagnosis for canine ocular surface disorders.

4.
BMC Musculoskelet Disord ; 25(1): 485, 2024 Jun 20.
Article in English | MEDLINE | ID: mdl-38902664

ABSTRACT

BACKGROUND: Arterial injury caused by heterotopic ossification (HO) following fractures is rarely reported, yet it can have catastrophic consequences. This case report presents a unique instance of femoral artery injury and hematoma organization, occurring a decade after intramedullary nail fixation for a femoral shaft fracture complicated by HO. CASE PRESENTATION: A 56-year-old male presented with right femoral artery injury and organized hematoma, a decade after suffering bilateral femoral shaft fractures with mild head injury in a traffic accident. He had received intramedullary nailing for the right femoral shaft fracture and plate fixation for the left side in a local hospital. Physical examination revealed two firm, palpable masses with clear boundaries, limited mobility, and no tenderness. Peripheral arterial pulses were intact. Radiography demonstrated satisfactory fracture healing, while a continuous high-density shadow was evident along the inner and posterior aspect of the right thigh. Computed tomography angiography identified a large mixed-density mass (16.8 × 14.8 × 20.7 cm) on the right thigh's medial side, featuring central calcification and multiple internal calcifications. The right deep femoral artery coursed within this mass, with a smaller lesion noted on the posterior thigh. Surgical consultation with a vascular surgeon led to planned intervention. The smaller mass was completely excised, but the larger one partially, as it encased the femoral artery. The inability to remove all HO was due to excessive bleeding. Postoperatively, the patient experienced no complications, and one-year follow-up revealed a favorable recovery with restoration of full right lower limb mobility. CONCLUSION: This case underscores the potential gravity of vascular injury associated with heterotopic ossification. Surgeons should remain vigilant regarding the risk of vascular injury during HO excision.


Subject(s)
Femoral Artery , Femoral Fractures , Ossification, Heterotopic , Humans , Ossification, Heterotopic/surgery , Ossification, Heterotopic/etiology , Ossification, Heterotopic/diagnostic imaging , Ossification, Heterotopic/complications , Male , Femoral Artery/surgery , Femoral Artery/injuries , Femoral Artery/diagnostic imaging , Middle Aged , Femoral Fractures/surgery , Femoral Fractures/etiology , Femoral Fractures/diagnostic imaging , Femoral Fractures/complications , Fracture Fixation, Intramedullary , Vascular System Injuries/etiology , Vascular System Injuries/surgery , Vascular System Injuries/diagnostic imaging , Hematoma/etiology , Hematoma/surgery , Hematoma/diagnostic imaging , Computed Tomography Angiography
5.
Sci Rep ; 14(1): 12894, 2024 06 05.
Article in English | MEDLINE | ID: mdl-38839827

ABSTRACT

The decrease in assisted reproductive technology success among older women, attributed to decreased oocyte quantity and quality, poses a significant challenge. Currently, no consensus on the optimal ovarian stimulation protocol for older women undergoing IVF exists. This retrospectively registered cohort study aimed to compare the cumulative live birth rate (CLBR), time to live birth (TTLB), and cost-effectiveness among women older than 35 years who were receiving either the gonadotropin-releasing hormone agonist (GnRHa) or clomiphene citrate and gonadotropin cotreatment with ovarian stimulation (CC cotreatment) protocol. To compare treatment outcomes, we performed propensity score matching (PSM) on 2871 IVF cycles in women older than 35 years who received either the GnRHa or CC cotreatment protocol, resulting in 375 cycles in each group. Additionally, a decision tree model was utilized to assess the cost-effectiveness of the two protocols. Following PSM, both groups had similar baseline characteristics. The CC cotreatment protocol resulted in a greater rate of cycle cancellation (13.07% vs. 8.00%, p = 0.032), but the groups maintained comparable fertilization rates and embryo quality. Although the TTLB was longer in the CC cotreatment group, the CLBR per initial cycle (41.07% vs. 45.33%, p = 0.269) and delivery outcomes were similar between the two groups at the 24 months follow-up. Additionally, the average cost per live birth in the CC cotreatment group was 21.27% lower than in the GnRHa group (¥32,301.42 vs. ¥39,174.22). In conclusion, for women older than 35 years undergoing IVF, the CC cotreatment protocol offered a comparable CLBR to the GnRHa protocol but with reduced costs, indicating its potential as a viable and cost-effective ovarian stimulation option.Clinical trial registration: https://www.chictr.org.cn/ , identifier [ChiCTR2300076537].


Subject(s)
Clomiphene , Cost-Benefit Analysis , Gonadotropin-Releasing Hormone , Live Birth , Ovulation Induction , Humans , Female , Clomiphene/therapeutic use , Clomiphene/economics , Clomiphene/administration & dosage , Gonadotropin-Releasing Hormone/agonists , Adult , Ovulation Induction/methods , Ovulation Induction/economics , Pregnancy , Live Birth/epidemiology , Retrospective Studies , Birth Rate , Fertilization in Vitro/methods , Fertilization in Vitro/economics , Gonadotropins/therapeutic use , Fertility Agents, Female/economics , Fertility Agents, Female/therapeutic use , Fertility Agents, Female/administration & dosage , Pregnancy Rate
6.
Front Biosci (Landmark Ed) ; 29(6): 208, 2024 May 30.
Article in English | MEDLINE | ID: mdl-38940030

ABSTRACT

Polycystic ovary syndrome (PCOS) is a prevalent reproductive, endocrine, and metabolic disease that affects 5-18% of women worldwide, with a rising incidence. Hyperandrogenemia and insulin resistance are two key pathophysiological factors that contribute to PCOS, both of which contribute to a variety of health issues such as menstrual irregularities, obesity, dysfunctional glucose and lipid homeostasis, infertility, mental disorders, and cardiovascular and cerebrovascular diseases. Despite ongoing studies, the origin and pathogenesis of PCOS remain elusive; there is also a clinical need for simpler, more effective, longer lasting, and more comprehensive treatments for women with PCOS. The gut-fat axis, a critical regulatory route for metabolism, endocrine function, and immune response, has received considerable interest in recent years in the research of the etiology and treatment of metabolic illnesses such as type 2 diabetes mellitus and non-alcoholic fatty liver disease. The latest research in PCOS has revealed significant alterations in the homogeneity and phylogenetic diversity of the gut microbiota. Animal research using fecal microbiota transplantation has confirmed the importance of gut microbiota in regulating insulin sensitivity and sex hormone balance in PCOS. Furthermore, studies have shown a decrease in the volume and/or activity of brown adipose tissue (BAT) in PCOS patients, a change that alters adipokine release, leading to insulin resistance and hyperandrogenemia, aggravating PCOS progression. Given the function of BAT in increasing energy expenditure and alleviating metabolic parameters, efforts to activate BAT or induce browning of white adipose tissue have emerged as possible treatments for PCOS. Recent research has suggested that the gut microbiota can influence BAT creation and activity via metabolites such as short-chain fatty acids and bile acids, as well as the gut-brain axis. Cold exposure, healthy dieting, metformin, bariatric surgery, glucagon-like peptide 1 receptor agonists and melatonin have all been shown in basic and clinical studies to modulate BAT activity by influencing the gut microbiota, demonstrating significant clinical potential. However, more studies into the regulation mechanisms of the gut-BAT axis are required to produce more effective, comfortable, and safe tailored therapeutics for PCOS.


Subject(s)
Adipose Tissue, Brown , Gastrointestinal Microbiome , Polycystic Ovary Syndrome , Polycystic Ovary Syndrome/microbiology , Polycystic Ovary Syndrome/metabolism , Polycystic Ovary Syndrome/therapy , Polycystic Ovary Syndrome/physiopathology , Humans , Female , Gastrointestinal Microbiome/physiology , Adipose Tissue, Brown/metabolism , Animals , Insulin Resistance , Fecal Microbiota Transplantation , Obesity/microbiology , Obesity/metabolism , Obesity/therapy
7.
J Cancer Res Clin Oncol ; 150(5): 276, 2024 May 26.
Article in English | MEDLINE | ID: mdl-38796816

ABSTRACT

PURPOSE: Colorectal cancer (CRC) refers to high-mortality tumors arising in the colon or rectum with a high rate of recurrence. The involvement of long non-coding RNAs (lncRNAs) contributes to the treatment and prognosis evaluation of CRC, and brings a new direction for the radical cure of patients. To identify the pathological mechanism and regulation of lncRNA LINC01128 (LINC01128) on CRC cells, and analyze its potential prognostic value. METHODS: LINC01128 level in tissue and cell specimens from 122 CRC patients was evaluated by RT-qPCR. The clinical significance and prognostic value of LINC01128 in CRC were analyzed via Kaplan-Meier and Cox analysis. CCK8 and Transwell assays were used to study the function of LINC01128 in vitro. The relationship between LINC01128 and miR-363-3p was confirmed by luciferase reporter gene assay. RESULTS: The overexpression of LINC01128 is associated with TNM stage and lymph node metastasis in CRC patients. Silencing LINC01128 inhibited the proliferation and metastasis of CRC cells. In addition, LINC01128 directly targeted and negatively regulated the miR-363-3p expression, while miR-363-3p inhibitor restored the inhibitory function of LINC01128. CONCLUSION: As an independent prognostic factor of CRC, upregulation of LINC01128 predicts poor prognosis and accelerates tumor deterioration through miR-363-3p.


Subject(s)
Cell Proliferation , Colorectal Neoplasms , MicroRNAs , RNA, Long Noncoding , Up-Regulation , Humans , Colorectal Neoplasms/genetics , Colorectal Neoplasms/pathology , RNA, Long Noncoding/genetics , MicroRNAs/genetics , Prognosis , Male , Cell Proliferation/genetics , Female , Middle Aged , Gene Expression Regulation, Neoplastic , Cell Line, Tumor , Biomarkers, Tumor/genetics , Biomarkers, Tumor/metabolism , Lymphatic Metastasis/genetics , Aged
8.
Sci Total Environ ; 928: 172234, 2024 Jun 10.
Article in English | MEDLINE | ID: mdl-38615756

ABSTRACT

BACKGROUND: Epidemiological studies have examined the relation between air pollution (NOx, NO2, PM2.5, PM2.5-10, and PM10) and adverse pregnancy outcomes (APOs). There's increasing evidence that air pollution increases the risk of APOs. However, the results of these studies are controversial, and the causal relation remains uncertain. We aimed to assess whether a genetic causal link exists between air pollution and APOs and the potential effects of this relation. METHODS: A novel two-sample Mendelian randomisation (MR) study used pooled data from a large-scale complete genome correlation study. The primary analysis method was inverse variance weighting (IVW), which explored the expose-outcome relationship for assessing single nucleotide polymorphisms (SNPs) associated with air pollution. Further sensitivity analysis, including MR-PRESSO, MR-Egger regression, and leave-one analysis, was used to test the consistency of the results. RESULTS: There was a significant correlation between air pollution-related SNPs and APOs. A robust causal link was found between genetic susceptibility to air pollution and APOs. CONCLUSIONS: Our MR analysis reveals a genetic causal relation between air pollution and APOs, which may help provide new insights into further mechanisms and clinical studies in air pollution-mediated APOs.


Subject(s)
Air Pollutants , Air Pollution , Mendelian Randomization Analysis , Polymorphism, Single Nucleotide , Pregnancy Outcome , Pregnancy , Female , Air Pollution/adverse effects , Air Pollution/statistics & numerical data , Humans , Pregnancy Outcome/epidemiology , Maternal Exposure/statistics & numerical data , Maternal Exposure/adverse effects , Particulate Matter , Environmental Exposure/statistics & numerical data , Environmental Exposure/adverse effects
9.
Int J Biol Macromol ; 267(Pt 1): 131406, 2024 May.
Article in English | MEDLINE | ID: mdl-38582472

ABSTRACT

Starch and plant fibers are abundant natural polymers that offer biodegradability, making them potential substitutes for plastics in certain applications, but are usually limited by its high hydrophilicity, and low mechanical performance. To address this issue, polylactic acid (PLA) is blended with cellulose and chitosan to create a waterproof film that can be applied to starch-fiber foaming biodegradable composites to enhance their water resistance properties. Here, plant fibers as a reinforcement is incorporated to the modified starch by foaming mold at 260 °C, and PLA based hydrophobic film is coated onto the surface to prepare the novel hydrophobic bio-composites. The developed bio-composite exhibits comprehensive water barrier properties, which is significantly better than that of traditional starch and cellulose based materials. Introducing PLA films decreases water vapor permeability from 766.83 g/m2·24h to 664.89 g/m2·24h, and reduce hysteresis angles from 15.57° to 8.59° within the first five minutes after exposure to moisture. The water absorption rate of PLA films also decreases significantly from 12.3 % to 7.9 %. Additionally, incorporating hydrophobic films not only enhances overall waterproof performance but also improves mechanical properties of the bio-composites. The fabricated bio-composite demonstrates improved tensile strength from 2.09 MPa to 3.53 MPa.


Subject(s)
Hydrophobic and Hydrophilic Interactions , Polyesters , Starch , Tensile Strength , Water , Polyesters/chemistry , Starch/chemistry , Water/chemistry , Permeability , Chitosan/chemistry , Cellulose/chemistry , Steam , Surface Properties
10.
Clin Lab ; 70(4)2024 Apr 01.
Article in English | MEDLINE | ID: mdl-38623683

ABSTRACT

BACKGROUND: Ureaplasma urealyticum (U. urealyticum) commonly occurs in female genitourinary infections, and its different biovars and serotypes have varying degrees of resistance to different antibiotics. This study aimed to ex-plore the characteristics of U. urealyticum infection and drug-resistant profiles in Chinese females. METHODS: We included 1,045 females with genital tract infections who visited Tangshan Workers' Hospital and Tangshan Maternal and Child Health Center from September 2017 to December 2018. The bacteria were selectively cultured, and drug sensitivity experiments were conducted. Eight pairs of oligonucleotide primers were designed, and polymerase chain reaction (PCR) was performed to amplify specific DNA fragments to perform bacterial strain typing. RESULTS: Among the 1,045 participants included, 566 (54.11%) participants were positive for mycoplasma infection. There were 432 (41.34%) participants with U. urealyticum infection, accounting for 76.33% of the positive participants. The infection rate of U. urealyticum was the highest in females who were 21 - 30 years old, followed by those who were 31 - 40 years old. Ureaplasma urealyticum showed the highest sensitivity to tetracyclines and the greatest resistance to quinolones. The biovar 1 of U. urealyticum with the highest detection rate of serotype 4, accounted for 66.88%. The biovar 2 of U. urealyticum mainly showed mixed subtypes 2 and 3. Biovar 2 showed higher resistance to sparfloxacin, clarithromycin, josamycin, and doxycycline than biovar 1. CONCLUSIONS: Women might be more susceptible to U. urealyticum, especially if they are of childbearing age. Urea-plasma urealyticum is mainly caused by a single serotype 6 infection. The resistance of U. urealyticum to quinolone (e.g., norfloxacin) is a great concern. Sparfloxacin, clarithromycin, ciprofloxacin, and doxycycline might be more suitable for people with biovar 1 infection. Biotyping may facilitate clinical drug use and help avoid the emergence of drug-resistant strains.


Subject(s)
Doxycycline , Ureaplasma urealyticum , Child , Humans , Female , Young Adult , Adult , Ureaplasma urealyticum/genetics , Clarithromycin , Microbial Sensitivity Tests , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/therapeutic use , Genitalia, Female , Drug Resistance
11.
BMC Musculoskelet Disord ; 25(1): 282, 2024 Apr 12.
Article in English | MEDLINE | ID: mdl-38609896

ABSTRACT

OBJECTIVE: Ferritin heavy chain 1 (FTH1) is an important subunit of ferro-storing proteins and is indispensable for iron metabolism. Though it has been extensively studied in numerous organs and diseases, the relationship between FTH1 and osteoarthritis (OA) is unclear. DESIGN: Primary murine chondrocytes and cartilage explants were treated with FTH1 siRNA for 72 h. Mice were injected with adenovirus expressing FTH1 after destabilized medial meniscus (DMM) surgery. These approaches were used to determine the effect of FTH1 expression on the pathophysiology of OA. RESULTS: FTH1 expression was down regulated in OA patients and mice after DMM surgery. Knock down of FTH1 induced articular cartilage damage and extracellular matrix degradation in cartilage explants. Further, over expression of FTH1 reduced the susceptibility of chondrocytes to ferroptosis and reversed decrements in SOX9 and aggrecan after DMM surgery. Moreover, FTH1 relieved OA by inhibition of the chondrocyte MAPK pathway. CONCLUSION: This study found FTH1 to play an essential role in extracellular matrix degradation, ferroptosis, and chondrocytes senescence during OA progression. Further, injection of adenovirus expressing FTH1 may be a potential strategy for OA prevention and therapy.


Subject(s)
Osteoarthritis , Animals , Humans , Mice , Adenoviridae/genetics , Aggrecans , Chondrocytes , Extracellular Matrix , Ferritins , Osteoarthritis/genetics , Oxidoreductases
12.
Adv Mater ; 36(27): e2314309, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38520284

ABSTRACT

Triple negative breast cancer (TNBCs), known as an immunologically cold tumor, is difficult to completely eliminate with existing monotherapies, let alone metastasis and recurrence. It is urgent to design a rational combination of multiple therapies to programmatically reconstitute tumor microenvironment (TME) and reverse the immune "cold" into "hot" inflammatory tumors to improve the therapeutic effect. Hence, in this work, a multifunctional nanosystem (FeSH NPs) that integrates metal-polyphenol coordination complex as a photothermal agent and polyphenol, salvianolic acid B (SAB) as immunomodulator is designed and fabricated for synergistic photothermal-immunotherapy of TNBCs combined with anti-PD-L1 antibody. Guided by photothermal/photoacoustic dual-mode imaging, photothermal therapy (PTT) caused by FeSH NPs induces immunogenic cell death (ICD) under 808 nm laser irradiation. Subsequently, the loaded SAB is released with the addition of deferoxamine mesylate (DFO) to remodel TME, specifically TGF-ß inhibition and PD-L1 upregulation, and eliminate the primary tumors. The combination of PTT and TME reprogramming by FeSH NPs further synergizes with anti-PD-L1 antibody to eradicate recurrence and inhibit metastasis of TNBCs concurrently. Given the biosafety of FeSH NPs throughout the lifecycle, this work provides a protocol with high clinical translational promise for comprehensive programmed therapeutics of immunologically cold tumors TNBCs.


Subject(s)
B7-H1 Antigen , Immunotherapy , Triple Negative Breast Neoplasms , Tumor Microenvironment , Triple Negative Breast Neoplasms/therapy , Triple Negative Breast Neoplasms/pathology , Triple Negative Breast Neoplasms/drug therapy , Animals , Mice , Tumor Microenvironment/drug effects , Humans , Cell Line, Tumor , B7-H1 Antigen/metabolism , B7-H1 Antigen/antagonists & inhibitors , B7-H1 Antigen/immunology , Female , Photothermal Therapy/methods , Polyphenols/chemistry , Polyphenols/pharmacology , Multifunctional Nanoparticles/chemistry , Transforming Growth Factor beta/metabolism , Coordination Complexes/chemistry , Coordination Complexes/therapeutic use
13.
Environ Res ; 251(Pt 1): 118571, 2024 Jun 15.
Article in English | MEDLINE | ID: mdl-38431066

ABSTRACT

Supercritical water oxidation (SCWO) has been regarded as a new and efficient technology for the harmless treatment and energy utilization of organic wastes, resulting in the quickly homogeneous oxidation between organics and oxidizers and the former being wholly degraded into small environment-friendly green molecules such as H2O and N2 and inorganic salts. This paper systematically analyzed the influencing behavior and mechanisms of the reaction factors, such as temperature, pressure, residence time, oxidant type, oxidation coefficient, and the concentration and pH values of the raw material, on the treatment effect of organic wastes. For most organic wastes, the SCWO conditions at 550 °C with a residence time of 1min and an oxidation coefficient of 100% can meet the removal rate of more than 99%. To further enhance the degradation rate of organics, the principles, implementation cases, and related equipment components of general enhancement technologies of supercritical water oxidation were discussed, such as fractional oxygen injection, auxiliary fuel co-oxidation, and hydrothermal flame-assisted degradation. This paper proposes a novel supercritical flame-assisted oxidation process in which the reactor performs preheating, corrosion protection, and desalination functions. The use of additive-enhanced oxidation, segmented oxidation, and supercritical hydrothermal flame-assisted oxidation has achieved good results in the complicated treatment process of brutal degradation of organic matter.


Subject(s)
Oxidation-Reduction , Water , Water/chemistry , Organic Chemicals/chemistry , Waste Disposal, Fluid/methods , Temperature
14.
J Colloid Interface Sci ; 661: 781-792, 2024 May.
Article in English | MEDLINE | ID: mdl-38325176

ABSTRACT

The increasing requirements for wearable and portable electronics are driving the interests of high performance fiber supercapacitor. Layered double hydroxide (LDH) is broadly used in electrode materials, owing to the adjustability of components and the unique lamellar structure. However, limited active sites and poor electrical conductivity hinder its applications. Herein, the core-shell heterostructured Ni(OH)2@activation Zn-Co-Ni layered double hydroxides (Ni(OH)2@A-ZnCoNi-LDH) electrode was fabricated by loading pseudocapacitance material on the A-ZnCoNi-LDH to improve the electrochemical performance. Significantly, benefits from the synergistic effect of the multi-metal ions and the core-shell heterostructure, the electrodes demonstrated a capacitance of 2405 mF·cm-2 at 1 mA·cm-2. Furthermore, Ni(OH)2@A-ZnCoNi-LDH was used as the core electrode and carbon nanotube (CNT) film coated with Fe2O3@reduced graphene oxide (rGO) was wrapped around the core electrode to assemble coaxial fiber asymmetric supercapacitor, which illustrated an ultrahigh energy density of 177.7 µWh·cm-2 at 0.75 mW·cm-2. In particular, after consecutive charging and discharging 7000 cycles, the capacitance retention of the device was 95 %, indicating the excellent cycling stability. Furthermore, the device with high flexibility can be woven into textiles in different shapes. The fabricated device has an excellent development prospect as an energy source in wearable electronic devices.

15.
Food Chem ; 445: 138795, 2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38382257

ABSTRACT

The beany flavor of soy protein isolate (SPI) creates barriers to their application in food processing. This study investigated the effect of ultrasonic-thermal synergistic treatments, combined with vacuum degassing, on the removal of volatile compounds from SPI. The results revealed that ultrasonic-thermal synergistic treatments altered protein secondary structure and increased fluorescence intensity and surface hydrophobicity, which affected the flavor-binding ability of protein, resulting in reduced electronic nose sensor response values. At synergistic treatment (350 W, 120 ℃ and 150 s), the content of hexanal, (E)-2-hexenal, and 1-octen-3-ol reduced by 70.60 %, 95.60 % and 61.23 %. (E)-2-nonenal and 2-pentylfuran were not detected. Chemometric analysis indicated significant flavor differences between control and treated SPI. Furthermore, α-helix, ß-sheet, ß-turn, and surface hydrophobicity highly correlated with volatile compounds through correlation analysis, indicating that altered protein structure affected interactions with volatile compounds. The study reduced beany flavor and further expanded the range of applications of plant protein in food industry.


Subject(s)
Aldehydes , Soybean Proteins , Volatile Organic Compounds , Gas Chromatography-Mass Spectrometry , Soybean Proteins/chemistry , Chemometrics , Solid Phase Microextraction/methods , Ultrasonics , Electronic Nose , Volatile Organic Compounds/analysis
16.
J Stroke Cerebrovasc Dis ; 33(3): 107556, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38184971

ABSTRACT

BACKGROUND: Poly-D, L-lactic acid (PDLLA) is increasingly used as a commercial dermal filler due to its lasting cosmetic properties. Consequently, PDLLA-related vascular complications are increasingly recognized and described. Herein, we describe the first known occurrence of multifocal strokes from the use of PDLLA as a cosmetic dermal filler, and discuss the mechanisms facilitating PDLLA's entry into the intracranial arterial system. CASE PRESENTATION: A middle-aged female presented with acute vision loss of both eyes immediately after dermal injections of PDLLA to her nasolabial folds and infraorbital regions. There were no additional neurological deficits. Dilated fundal examination revealed retinal edema bilaterally, with deposition of filler material in the retinal arteries. Magnetic resonance imaging of her brain and orbits demonstrated multifocal strokes (left caudate head, right medial frontal lobe) and ischemia of the left optic nerve. The temporal proximity of the dermal injections to her symptoms, guided by fundal examination and neuroimaging findings, allowed us to attribute her strokes and ischemic optic neuropathy to PDLLA's entry into, and embolism within, the intracranial arterial system. She was treated with hyperbaric oxygen therapy and experience improvement to her right eye's vision, although poor vision persisted in her left eye. CONCLUSION: While PDLLA is generally considered safe, its increasing use as a cosmetic filler renders it crucial for physicians to be cognizant of its vascular complications, especially when early recognition and treatment are essential in mitigating their devastating ramifications.


Subject(s)
Cosmetic Techniques , Dermal Fillers , Stroke , Humans , Middle Aged , Female , Dermal Fillers/adverse effects , Cosmetic Techniques/adverse effects , Injections , Vision Disorders , Eye , Stroke/diagnostic imaging , Stroke/etiology , Stroke/therapy
17.
Biomacromolecules ; 25(2): 1096-1107, 2024 Feb 12.
Article in English | MEDLINE | ID: mdl-38216512

ABSTRACT

Poly(amino acid)s (PAAs) are one kind of favorable biopolymer that can be used as a drug or gene carrier. However, conventional ring-opening polymerization of PAAs is slow and needs a strict anhydrous environment with an anhydrous reagent as well as the product without enough high molecular weight (Mn), which limits the expanding of PAAs' application. Herein, we took BLG-NCA as the monomer to quickly synthesize one kind of high Mn amphiphilic copolymer, poly(ethylene glycol)-b-poly(γ-benzyl-l-glutamic acid) (PEG-PBLG), by relay polymerization with a simple one-pot method within 3 h in mild conditions (open air, moisture insensitive). In the polymerization process, ring-opening polymerization-induced self-assembly in sodium bicarbonate aqueous solution first occurred to obtain low Mn PEG-PBLG seeds without purification. Then γ-benzyl-l-glutamate N-carboxyanhydride (BLG-NCA) dichloromethane solution was added into PEG-PBLG seeds directly and stirred vigorously to form am emulsion; during this process, the amphiphilic PEG-PBLG seeds will anchor on the interface of DCM and water to ensure the concentration of α-helix rigid PBLG in DCM to maintain the following relay polymerization. Then, high Mn PEG-PBLG was obtained in mild conditions in one pot. We found that the α-helix rigid structure was essential for relay polymerization by studying the synthetic speed of amphiphilic copolymer with different secondary structures. MOE simulation results showed that PBLG and BLG-NCA tended to form a double hydrogen bond, which was beneficial to relay polymerization because of higher local concentrations that can produce more double hydrogen bonds. Our strategy can quickly obtain high Mn PEG-PBLG (224.9 KDa) within 3 h from PEG-NH2 and BLG-NCA in one pot and did not need an extra initiator. After deprotection, the poly(ethylene glycol)-b-poly(l-glutamate acid) (PEG-PGA) with high Mn as a second product can be used as an excellent antitumor drug carrier. The high Mn PEG-PGA can achieve an encapsulation rate of 86.7% and a drug loading rate of 47.3%, which is twice that of the low Mn PEG-PGA. As a result, the synthesis of PEG-PBLG by relay polymerization simplified the process of PEG-PAA polymerization and increased the Mn. In addition, this method opened a way to obtain other kinds of high Mn PEG-PBLG values in the future.


Subject(s)
Amino Acids , Anhydrides , Glutamates , Polyethylene Glycols , Polyethylene Glycols/chemistry , Amino Acids/chemistry , Polymerization , Glutamic Acid , Molecular Weight , Polymers/chemistry , Polyglutamic Acid/chemistry
18.
Spine J ; 24(6): 933-946, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38219838

ABSTRACT

Spinal surgery can be associated with significant intraoperative blood loss which may lead to various complications. As the number of patients undergoing spinal surgery increases over time, accurate and effective hemostasis becomes critically important. Despite various surgical hemostatic techniques, conventional interventions such as compression, suture, ligation, and heat-generating cautery, are not suitable for osseous and epidural venous plexus bleeding during spinal procedures. Therefore, a variety of hemostatic agents have been developed to promote hemostasis. As they differ in terms of mechanism, form, application and potential adverse reactions, it is important to understand the natural features of existing agents. Here we comprehensively review currently available topical hemostatic agents from different sources and summarize their mechanisms of action, applications, and current or potential utilization in spinal surgery. We found hemostatic agents from different sources exert hemostatic actions through different mechanisms. In addition, topical hemostatic agents play various roles in spinal surgery including as hemostatic agent, dura mater repair, drug-carrier, skin closure, and fibrosis prevention. Compressive neurological complications are the most common complications of these hemostatic agents. Therefore, optimal use in spinal environments should match their features, indications, and efficacy with clinical conditions.


Subject(s)
Blood Loss, Surgical , Hemostatics , Spine , Humans , Hemostatics/administration & dosage , Hemostatics/adverse effects , Spine/surgery , Blood Loss, Surgical/prevention & control , Administration, Topical , Hemostasis, Surgical/methods
19.
J Surg Case Rep ; 2024(1): rjad696, 2024 Jan.
Article in English | MEDLINE | ID: mdl-38186756

ABSTRACT

Elderly patients with multiple comorbidities often face complex cardiac challenges, including aortic valve issues and atrial septal defects. Traditional open-heart surgery may not be viable for this demographic. Transcatheter aortic valve implantation (TAVI) emerges as a preferred alternative. In this case, a frail patient with multiple comorbidities, atrial septal defect, and significant aortic stenosis and regurgitation underwent a one-stop procedure, combining TAVI and atrial septal defect closure, guided by advanced imaging, including three-dimensional ultrasound. Ultrasound played a pivotal role in the perioperative phase, offering precise screening and guidance. This innovative technique, minimizing surgical trauma and recovery time, significantly improved the patient's quality of life.

20.
Int J Biol Macromol ; 260(Pt 2): 129690, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38266855

ABSTRACT

Radioactive iodine is considered one of the most dangerous radioactive elements in nuclear waste. Therefore, effective capture of radioactive iodine is essential for developing and using nuclear energy to solve the energy crisis. Some materials that have been developed for removing radioactive iodine still suffer from complex synthesis, low removal capacity, and non-reusability. Herein, covalent organic framework (COF)/chitosan (CS) aerogels were prepared using vacuum freeze-drying, and the COF nanoparticles were tightly attached on the green biomass material CS networks. Due to the synergistic effect of both COF and CS, the composite aerogel shows a three-dimensional porous and stable structure in the recycle usage. The COF/CS aerogel exhibits excellent iodine adsorption capacity of 2211.58 mg g-1 and 5.62 g g-1 for static iodine solution and iodine vapor, respectively, better than some common adsorbents. Furthermore, COF/CS aerogel demonstrated good recyclability performance with 87 % of the initial adsorption capacity after 5 cycles. In addition, the interaction between iodine and imine groups, amino groups, and benzene rings of aerogel are the possible adsorption mechanisms. COF/CS aerogel has excellent adsorption properties, good chemical stability, and reusable performance, which is a potential and efficient adsorbent for industrial radioactive iodine adsorption from nuclear waste.


Subject(s)
Chitosan , Iodine , Metal-Organic Frameworks , Radioactive Waste , Thyroid Neoplasms , Humans , Adsorption , Iodine Radioisotopes
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