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1.
EMBO J ; 42(20): e113743, 2023 10 16.
Article in English | MEDLINE | ID: mdl-37661833

ABSTRACT

Mitochondria play essential roles in cancer cell adaptation to hypoxia, but the underlying mechanisms remain elusive. Through mitochondrial proteomic profiling, we here find that the prolyl hydroxylase EglN1 (PHD2) accumulates on mitochondria under hypoxia. EglN1 substrate-binding region in the ß2ß3 loop is responsible for its mitochondrial translocation and contributes to breast tumor growth. Furthermore, we identify AMP-activated protein kinase alpha (AMPKα) as an EglN1 substrate on mitochondria. The EglN1-AMPKα interaction is essential for their mutual mitochondrial translocation. After EglN1 prolyl-hydroxylates AMPKα under normoxia, they rapidly dissociate following prolyl-hydroxylation, leading to their immediate release from mitochondria. In contrast, hypoxia results in constant EglN1-AMPKα interaction and their accumulation on mitochondria, leading to the formation of a Ca2+ /calmodulin-dependent protein kinase 2 (CaMKK2)-EglN1-AMPKα complex to activate AMPKα phosphorylation, ensuring metabolic homeostasis and breast tumor growth. Our findings identify EglN1 as an oxygen-sensitive metabolic checkpoint signaling hypoxic stress to mitochondria through its ß2ß3 loop region, suggesting a potential therapeutic target for breast cancer.


Subject(s)
AMP-Activated Protein Kinases , Breast Neoplasms , Female , Humans , AMP-Activated Protein Kinases/metabolism , Breast Neoplasms/genetics , Breast Neoplasms/metabolism , Hypoxia , Hypoxia-Inducible Factor-Proline Dioxygenases/genetics , Hypoxia-Inducible Factor-Proline Dioxygenases/metabolism , Mitochondria/metabolism , Proteomics
2.
Plant Physiol ; 195(1): 552-565, 2024 Apr 30.
Article in English | MEDLINE | ID: mdl-38243383

ABSTRACT

Plant trichome development is influenced by diverse developmental and environmental signals, but the molecular mechanisms involved are not well understood in most plant species. Fruit spines (trichomes) are an important trait in cucumber (Cucumis sativus L.), as they affect both fruit smoothness and commercial quality. Spine Base Size1 (CsSBS1) has been identified as essential for regulating fruit spine size in cucumber. Here, we discovered that CsSBS1 controls a season-dependent phenotype of spine base size in wild-type plants. Decreased light intensity led to reduced expression of CsSBS1 and smaller spine base size in wild-type plants, but not in the mutants with CsSBS1 deletion. Additionally, knockout of CsSBS1 resulted in smaller fruit spine base size and eliminated the light-induced expansion of spines. Overexpression of CsSBS1 increased spine base size and rescued the decrease in spine base size under low light conditions. Further analysis revealed that ELONGATED HYPOTCOTYL5 (HY5), a major transcription factor involved in light signaling pathways, directly binds to the promoter of CsSBS1 and activates its expression. Knockout of CsHY5 led to smaller fruit spine base size and abolished the light-induced expansion of spines. Taken together, our study findings have clarified a CsHY5-CsSBS1 regulatory module that mediates light-regulated spine expansion in cucumber. This finding offers a strategy for cucumber breeders to develop fruit with stable appearance quality under changing light conditions.


Subject(s)
Cucumis sativus , Gene Expression Regulation, Plant , Light , Plant Proteins , Cucumis sativus/genetics , Cucumis sativus/growth & development , Cucumis sativus/radiation effects , Plant Proteins/genetics , Plant Proteins/metabolism , Fruit/genetics , Fruit/growth & development , Trichomes/genetics , Trichomes/growth & development , Transcription Factors/metabolism , Transcription Factors/genetics , Phenotype , Promoter Regions, Genetic/genetics
3.
FASEB J ; 38(10): e23655, 2024 May 31.
Article in English | MEDLINE | ID: mdl-38767449

ABSTRACT

The disruption of mitochondria homeostasis can impair the contractile function of cardiomyocytes, leading to cardiac dysfunction and an increased risk of heart failure. This study introduces a pioneering therapeutic strategy employing mitochondria derived from human umbilical cord mesenchymal stem cells (hu-MSC) (MSC-Mito) for heart failure treatment. Initially, we isolated MSC-Mito, confirming their functionality. Subsequently, we monitored the process of single mitochondria transplantation into recipient cells and observed a time-dependent uptake of mitochondria in vivo. Evidence of human-specific mitochondrial DNA (mtDNA) in murine cardiomyocytes was observed after MSC-Mito transplantation. Employing a doxorubicin (DOX)-induced heart failure model, we demonstrated that MSC-Mito transplantation could safeguard cardiac function and avert cardiomyocyte apoptosis, indicating metabolic compatibility between hu-MSC-derived mitochondria and recipient mitochondria. Finally, through RNA sequencing and validation experiments, we discovered that MSC-Mito transplantation potentially exerted cardioprotection by reinstating ATP production and curtailing AMPKα-mTOR-mediated excessive autophagy.


Subject(s)
AMP-Activated Protein Kinases , Apoptosis , Autophagy , Mesenchymal Stem Cells , Mitochondria , Myocytes, Cardiac , TOR Serine-Threonine Kinases , Myocytes, Cardiac/metabolism , Animals , TOR Serine-Threonine Kinases/metabolism , AMP-Activated Protein Kinases/metabolism , Mice , Humans , Mesenchymal Stem Cells/metabolism , Mitochondria/metabolism , Male , Doxorubicin/pharmacology , Mice, Inbred C57BL , Heart Failure/metabolism
4.
Nano Lett ; 24(11): 3432-3440, 2024 Mar 20.
Article in English | MEDLINE | ID: mdl-38391135

ABSTRACT

Uricase-catalyzed uric acid (UA) degradation has been applied for hyperuricemia therapy, but this medication is limited by H2O2 accumulation, which can cause oxidative stress of cells, resulting in many other health issues. Herein, we report a robust cubic hollow nanocage (HNC) system based on polyvinylpyrrolidone-coated PdPt3 and PdIr3 to serve as highly efficient self-cascade uricase/peroxidase mimics to achieve the desired dual catalysis for both UA degradation and H2O2 elimination. These HNCs have hollow cubic shape with average wall thickness of 1.5 nm, providing desired synergy to enhance catalyst's activity and stability. Density functional theory calculations suggest the PdIr3 HNC surface tend to promote OH*/O* desorption for better peroxidase-like catalysis, while the PdPt3 HNC surface accelerates the UA oxidation by facilitating O2-to-H2O2 conversion. The dual catalysis power demonstrated by these HNCs in cell studies suggests their great potential as a new type of nanozyme for treating hyperuricemia.


Subject(s)
Hyperuricemia , Peroxidase , Humans , Peroxidase/therapeutic use , Urate Oxidase/therapeutic use , Povidone/therapeutic use , Hyperuricemia/drug therapy , Hydrogen Peroxide , Uric Acid/metabolism , Oxidoreductases , Coloring Agents
5.
J Biol Chem ; 299(12): 105481, 2023 Dec.
Article in English | MEDLINE | ID: mdl-38041932

ABSTRACT

Singlet oxygen (1O2) has a very short half-life of 10-5 s; however, it is a strong oxidant that causes growth arrest and necrotic lesions on plants. Its signaling pathway remains largely unknown. The Arabidopsis flu (fluorescent) mutant accumulates a high level of 1O2 and shows drastic changes in nuclear gene expression. Only two plastid proteins, EX1 (executer 1) and EX2 (executer 2), have been identified in the singlet oxygen signaling. Here, we found that the transcription factor abscisic acid insensitive 4 (ABI4) binds the promoters of genes responsive to 1O2-signals. Inactivation of the ABI4 protein in the flu/abi4 double mutant was sufficient to compromise the changes of almost all 1O2-responsive-genes and rescued the lethal phenotype of flu grown under light/dark cycles, similar to the flu/ex1/ex2 triple mutant. In addition to cell death, we reported for the first time that 1O2 also induces cell wall thickening and stomatal development defect. Contrastingly, no apparent growth arrest was observed for the flu mutant under normal light/dim light cycles, but the cell wall thickening (doubled) and stomatal density reduction (by two-thirds) still occurred. These results offer a new idea for breeding stress tolerant plants.


Subject(s)
Arabidopsis Proteins , Arabidopsis , Abscisic Acid/metabolism , Arabidopsis/metabolism , Arabidopsis Proteins/genetics , Arabidopsis Proteins/metabolism , Cell Wall/metabolism , Gene Expression Regulation, Plant , Light , Singlet Oxygen/metabolism , Transcriptome , Plant Stomata/metabolism
6.
J Org Chem ; 89(3): 1543-1551, 2024 Feb 02.
Article in English | MEDLINE | ID: mdl-38252620

ABSTRACT

Unnatural amino acids are versatile building blocks. Herein, we report the application of the LADA strategy for the direct synthesis of unnatural amino acids through 1,2-aryl migration of allylic alcohols. This reaction proceeds under mild conditions, tolerates diverse functionalities, and works smoothly on different thiols.

7.
Bioorg Chem ; 146: 107309, 2024 May.
Article in English | MEDLINE | ID: mdl-38537338

ABSTRACT

Prostate Cancer (PCa) easily progress to metastatic Castration-Resistant Prostate Cancer (mCRPC) that remains a significant cause of cancer-related death. Androgen receptor (AR)-dependent transcription is a major driver of prostate tumor cell proliferation. Proteolysis-targeting chimaera (PROTAC) technology based on Hydrophobic Tagging (HyT) represents an intriguing strategy to regulate the function of therapeutically androgen receptor proteins. In the present study, we have designed, synthesized, and evaluated a series of PROTAC-HyT AR degraders using AR antagonists, RU59063, which were connected with adamantane-based hydrophobic moieties by different alkyl chains. Compound D-4-6 exhibited significant AR protein degradation activity, with a degradation rate of 57 % at 5 µM and nearly 90 % at 20 µM in 24 h, and inhibited the proliferation of LNCaP cells significantly with an IC50 value of 4.77 ± 0.26 µM in a time-concentration-dependent manner. In conclusion, the present study lays the foundation for the development of a completely new class of therapeutic agents for the treatment of mCRPC, and further design and synthesis of AR-targeting degraders are currently in progress for better degradation rate.


Subject(s)
Prostatic Neoplasms, Castration-Resistant , Receptors, Androgen , Male , Humans , Receptors, Androgen/chemistry , Prostatic Neoplasms, Castration-Resistant/drug therapy , Cell Line, Tumor , Androgen Receptor Antagonists/chemistry , Androgen Receptor Antagonists/pharmacology , Androgen Receptor Antagonists/therapeutic use , Proteolysis
8.
J Nanobiotechnology ; 22(1): 299, 2024 May 30.
Article in English | MEDLINE | ID: mdl-38812031

ABSTRACT

BACKGROUND: Discrepancies in the utilization of reactive oxygen species (ROS) between cancer cells and their normal counterparts constitute a pivotal juncture for the precise treatment of cancer, delineating a noteworthy trajectory in the field of targeted therapies. This phenomenon is particularly conspicuous in the domain of nano-drug precision treatment. Despite substantial strides in employing nanoparticles to disrupt ROS for cancer therapy, current strategies continue to grapple with challenges pertaining to efficacy and specificity. One of the primary hurdles lies in the elevated levels of intracellular glutathione (GSH). Presently, predominant methods to mitigate intracellular GSH involve inhibiting its synthesis or promoting GSH efflux. However, a conspicuous gap remains in the absence of a strategy capable of directly and efficiently clearing GSH. METHODS: We initially elucidated the chemical mechanism underpinning oridonin, a diminutive pharmacological agent demonstrated to perturb reactive oxygen species, through its covalent interaction with glutathione. Subsequently, we employed the incorporation of maleimide-liposomes, renowned for their capacity to disrupt the ROS delivery system, to ameliorate the drug's water solubility and pharmacokinetics, thereby enhancing its ROS-disruptive efficacy. In a pursuit to further refine the targeting for acute myeloid leukemia (AML), we harnessed the maleic imide and thiol reaction mechanism, facilitating the coupling of Toll-like receptor 2 (TLR2) peptides to the liposomes' surface via maleic imide. This strategic approach offers a novel method for the precise removal of GSH, and its enhancement endeavors are directed towards fortifying the precision and efficacy of the drug's impact on AML targets. RESULTS: We demonstrated that this peptide-liposome-small molecule machinery targets AML and consequently induces cell apoptosis both in vitro and in vivo through three disparate mechanisms: (I) Oridonin, as a Michael acceptor molecule, inhibits GSH function through covalent bonding, triggering an initial imbalance of oxidative stress. (II) Maleimide further induces GSH exhaustion, aggravating redox imbalance as a complementary augment with oridonin. (III) Peptide targets TLR2, enhances the directivity and enrichment of oridonin within AML cells. CONCLUSION: The rationally designed nanocomplex provides a ROS drug enhancement and targeted delivery platform, representing a potential solution by disrupting redox balance for AML therapy.


Subject(s)
Diterpenes, Kaurane , Glutathione , Leukemia, Myeloid, Acute , Liposomes , Reactive Oxygen Species , Diterpenes, Kaurane/chemistry , Diterpenes, Kaurane/pharmacology , Glutathione/metabolism , Glutathione/chemistry , Liposomes/chemistry , Leukemia, Myeloid, Acute/drug therapy , Leukemia, Myeloid, Acute/metabolism , Humans , Reactive Oxygen Species/metabolism , Animals , Mice , Cell Line, Tumor , Toll-Like Receptor 2/metabolism , Antineoplastic Agents/pharmacology , Antineoplastic Agents/chemistry , Apoptosis/drug effects
9.
BMC Public Health ; 24(1): 301, 2024 01 25.
Article in English | MEDLINE | ID: mdl-38273230

ABSTRACT

BACKGROUND AND AIMS: The older people bears a severe burden of disease due to frailty and depressive symptoms, however, the results of association between the two in the older Chinese people have been conflicting. Therefore, this study aimed to investigate the developmental trajectories and interactions of frailty and depressive symptoms in the Chinese middle-aged and older adults. METHODS: The study used four waves of data from 2011, 2013, 2015 and 2018 in the China Health and Retirement Longitudinal Study (CHARLS) database, focused on middle-aged and older people ≥ 45 years of age, and analyzed using latent growth models and cross-lagged models. RESULTS: The parallel latent growth model showed that the initial level of depressive symptoms had a significant positive predictive effect on the initial level of frailty. The rate of change in depressive symptoms significantly positively predicted the rate of change in frailty. The initial level of frailty had a significant positive predictive effect on the initial level of depressive symptoms, but a significant negative predictive effect on the rate of change in depressive symptoms. The rate of change in frailty had a significant positive predictive effect on the rate of change in depressive symptoms. The results of the cross-lagged analysis indicated a bidirectional causal association between frailty and depressive symptoms in the total sample population. Results for the total sample population grouped by age and gender were consistent with the total sample. CONCLUSIONS: This study recommends advancing the age of concern for frailty and depressive symptoms to middle-aged adults. Both men and women need early screening and intervention for frailty and depressive symptoms to promote healthy aging.


Subject(s)
East Asian People , Frailty , Male , Middle Aged , Humans , Female , Aged , Cohort Studies , Frailty/epidemiology , Longitudinal Studies , Depression/epidemiology , Depression/diagnosis , China/epidemiology
10.
Acta Biochim Biophys Sin (Shanghai) ; 56(2): 280-290, 2024 02 25.
Article in English | MEDLINE | ID: mdl-38273781

ABSTRACT

Acute liver failure (ALF) is a significant global issue with elevated morbidity and mortality rates. There is an urgent and pressing need for secure and effective treatments. Ferroptosis, a novel iron-dependent regulation of cell death, plays a significant role in multiple pathological processes associated with liver diseases, including ALF. Several studies have demonstrated that mesenchymal stem cells (MSCs) have promising therapeutic potential in the treatment of ALF. This study aims to investigate the positive effects of MSCs against ferroptosis in an ALF model and explore the underlying molecular mechanisms of their therapeutic function. Our results show that intravenously injected MSCs protect against ferroptosis in ALF mouse models. MSCs decrease iron deposition in the liver of ALF mice by downregulating hepcidin level and upregulating FPN1 level. MSCs labelled with Dil are mainly observed in the hepatic sinusoid and exhibit colocalization with the macrophage marker CD11b fluorescence. ELISA demonstrates a high level of IGF1 in the CCL 4+MSC group. Suppressing the IGF1 effect by the PPP blocks the therapeutic effect of MSCs against ferroptosis in ALF mice. Furthermore, disruption of IGF1 function results in iron deposition in the liver tissue due to impaired inhibitory effects of MSCs on hepcidin level. Our findings suggest that MSCs alleviate ferroptosis induced by disorders of iron metabolism in ALF mice by elevating IGF1 level. Moreover, MSCs are identified as a promising cell source for ferroptosis treatment in ALF mice.


Subject(s)
Ferroptosis , Liver Failure, Acute , Mesenchymal Stem Cell Transplantation , Mesenchymal Stem Cells , Humans , Mice , Animals , Hepcidins/adverse effects , Hepcidins/metabolism , Liver Failure, Acute/therapy , Liver Failure, Acute/chemically induced , Liver Failure, Acute/pathology , Mesenchymal Stem Cells/metabolism , Umbilical Cord , Mesenchymal Stem Cell Transplantation/methods , Insulin-Like Growth Factor I/metabolism
11.
J Asian Nat Prod Res ; 26(1): 26-37, 2024 Jan.
Article in English | MEDLINE | ID: mdl-38196236

ABSTRACT

Eight new caffeoyl derivatives, elephantomentosides A-H (1 - 8), together with ten known ones (9 - 18), were isolated from the whole plant of Elephantopos tomentosus L. Their structures were elucidated using detailed spectroscopic analysis. Structurally, compounds 1 - 8 are composed of ß-D-glucopyranose, and almost all of the substituent positions are at the C-1' and C-4' of glucopyranose. The anti-inflammatory and antioxidant activities of all isolated compounds were evaluated in vitro. Compounds 9-10, 13-15, and 17-18 exhibited significant DPPH scavenging capacity with IC50 values in the range of 10.01-25.07 µM, in comparison with Vc (IC50, 17.98 µM).


Subject(s)
Antioxidants , Asteraceae , Molecular Structure , Antioxidants/pharmacology , Antioxidants/chemistry , Asteraceae/chemistry , Anti-Inflammatory Agents/pharmacology , Anti-Inflammatory Agents/chemistry
12.
J Sci Food Agric ; 104(9): 4966-4976, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38294276

ABSTRACT

Red koji polysaccharides, derived from the fermentation of Monascus, have been recognized for their health-enhancing properties. This article reviews their structural characteristics, biosynthesis pathways, and biological activities. It emphasizes the need for sustainable practices in fermentation and the optimization of extraction methods for scalable production. The significance of exploring the molecular mechanisms involved in their biosynthesis is also highlighted to enhance yield and efficiency. Research indicates that red koji polysaccharides possess diverse biological functions, beneficial for pharmaceutical applications due to their health benefits and minimal toxicity. The review points out the necessity for more detailed studies on key enzymes and genes in biosynthesis to improve production methods. It also identifies the current challenges in production scalability and extraction efficiency. Furthermore, while these polysaccharides show potential in pharmaceuticals, their clinical efficacy and mechanism of action in human subjects require further investigation. The review briefly explores potential structural modifications to improve their biological activities. The review concludes that red koji polysaccharides hold significant untapped potential, particularly in drug formulation. Future research should focus on overcoming current production and application challenges, including conducting clinical trials to validate their efficacy and exploring structural modifications for enhanced therapeutic benefits. This comprehensive understanding of red koji polysaccharides paves the way for their expanded application in the pharmaceutical industry. © 2024 Society of Chemical Industry.


Subject(s)
Monascus , Polysaccharides , Humans , Polysaccharides/pharmacology , Polysaccharides/chemistry , Polysaccharides/isolation & purification , Polysaccharides/biosynthesis , Monascus/metabolism , Monascus/chemistry , Monascus/genetics , Animals , Fermentation
13.
Angew Chem Int Ed Engl ; : e202410245, 2024 Jun 18.
Article in English | MEDLINE | ID: mdl-38887146

ABSTRACT

The emergence of covalent adaptable networks (CANs) based on dynamic covalent bonds (DCBs) presents a promising avenue for achieving resource recovery and utilization. In this study, we discovered a novel dynamic covalent bond called selenacetal, which is obtained through a double click reaction between selenol and activated alkynes. Density functional theory (DFT) calculations demonstrated that the ΔG for the formation of selenoacetals ranges from 12 to 18 kJ mol-1, suggesting its potential for dynamic reversibility. Dynamic exchange experiments involving small molecules and polymers provide substantial evidence supporting the dynamic exchange properties of selenoacetals. By utilizing this highly efficient click reaction, we successfully synthesized dynamic materials based on selenoacetal with remarkable reprocessing capabilities without any catalysts. These materials exhibit chemical recycling under alkaline conditions, wherein selenoacetal (SA) can decompose into active enone selenide (ES) and diselenides. Reintroducing selenol initiates a renewed reaction with the enone selenide, facilitating material recycling and yielding a newly developed dynamic material exhibiting both photo- and thermal responsiveness. The results underscore the potential of selenoacetal polymers in terms of recyclability and selective degradation, making them a valuable addition to conventional covalent adaptable networks.

14.
Small ; 19(45): e2303542, 2023 Nov.
Article in English | MEDLINE | ID: mdl-37431212

ABSTRACT

Rabies is a zoonotic neurological disease caused by the rabies virus (RABV) that is fatal to humans and animals. While several post-infection treatment have been suggested, developing more efficient and innovative antiviral methods are necessary due to the limitations of current therapeutic approaches. To address this challenge, a strategy combining photodynamic therapy and immunotherapy, using a photosensitizer (TPA-Py-PhMe) with high type I and type II reactive oxygen species (ROS) generation ability is proposed. This approach can inactivate the RABV by killing the virus directly and activating the immune response. At the cellular level, TPA-Py-PhMe can reduce the virus titer under preinfection prophylaxis and postinfection treatment, with its antiviral effect mainly dependent on ROS and pro-inflammatory factors. Intriguingly, when mice are injected with TPA-Py-PhMe and exposed to white light irradiation at three days post-infection, the onset of disease is delayed, and survival rates improved to some extent. Overall, this study shows that photodynamic therapy and immunotherapy open new avenues for future antiviral research.


Subject(s)
Photochemotherapy , Rabies virus , Rabies , Humans , Animals , Mice , Photosensitizing Agents/pharmacology , Photosensitizing Agents/therapeutic use , Reactive Oxygen Species , Rabies/prevention & control , Rabies/drug therapy , Antiviral Agents
15.
Article in English | MEDLINE | ID: mdl-37029805

ABSTRACT

Patients with autoimmune encephalitis (AE) often developed psychiatric features during the disease course. Many studies focused on the psychiatric characteristic in anti-NMDAR encephalitis (NMDAR-E), but anti-LGI1 encephalitis (LGI1-E) had received less attention regarding the analysis of psychiatric features, and no study compared psychiatric characteristic between these two groups. The clinical data of AE patients (62 NMDAR-E and 20 LGI1-E) who developed psychiatric symptoms were analyzed in this study. In NMDAR-E, the most common higher-level feature was "behavior changes" (60/62, 96.8%) and the lower-level feature "incoherent speech" was observed in 33 patients (33/62, 53.2%), followed by "agitation" (29/62, 46.8%) and "incongruent laughter/crying" (20/62, 32.3%). Similar to NMDAR-E, "behavior changes" was most common in LGI1-E (17/20, 85.0%), but the features of suicidality, eating, and obsessive-compulsive were not reported. The top three lower-level features were visual hallucinations (9/20, 45.0%), incoherent speech (8/20, 40.0%), and mood instability (7/20, 35.0%). The comparative study found that "incongruent laughter/crying", in lower-level features, was more frequently observed in NMDAR-E (32.3% vs. 0%, p = 0.002). Moreover, the Bush Francis Catatonia Rating Scale (BFCRS) assessing the catatonic symptoms in NMDAR-E were higher than LGI1-E, but the 18 item-Brief Psychiatric Rating Scale (BPRS-18) showed no difference in the two groups. In summary, both NMDAR-E and LGI1-E often developed psychiatric symptoms. In contrast with LGI1-E, the psychiatric feature "incongruent laughter/crying" was more frequently associated with NMDAR-E, and catatonic symptoms were more severe in NMDAR-E.

16.
Age Ageing ; 52(7)2023 07 01.
Article in English | MEDLINE | ID: mdl-37392400

ABSTRACT

BACKGROUND: cumulative evidence from cohort studies suggested that there were inconsistent conclusions as to whether there was a bidirectional association between depression and frailty. Therefore, this study used a bidirectional two-sample Mendelian randomisation (MR) study to investigate the causal relationship between depression and frailty. METHODS: we performed univariate and multivariate bidirectional MR analyses to assess the causal association between depression and frailty. Independent genetic variants associated with depression and frailty were selected as instrumental variables. Inverse variance weighted (IVW), MR-Egger, weighted median and weighted mode were mainly used in univariate MR analysis. Multivariate MR (MVMR) analyses used multivariable inverse variance-weighted methods to individually and jointly adjust for three potential confounders, body mass index (BMI), age at menarche (AAM) and waist-to-hip ratio (WHR, adjusted for BMI). RESULTS: univariate MR analysis showed a positive causal relationship between depression and risk of frailty (IVW, odds ratio (OR) = 1.30, 95% confidence interval (CI) = 1.23-1.37, P = 6.54E-22). Causal relationship between frailty and risk of depression (IVW, OR = 1.69, 95% CI = 1.33-2.16, P = 2.09E-05). MVMR analysis revealed that the bidirectional causal association between depression and frailty remained after adjusting for three potential confounders, BMI, AAM and WHR (adjusted for BMI), individually and in combination. CONCLUSIONS: our findings supported a causal relationship between genetically predicted depression and frailty in both directions.


Subject(s)
Frailty , Female , Humans , Frailty/diagnosis , Frailty/epidemiology , Frailty/genetics , Depression/diagnosis , Depression/epidemiology , Depression/genetics , Body Mass Index , Odds Ratio
17.
Lasers Med Sci ; 38(1): 42, 2023 Jan 18.
Article in English | MEDLINE | ID: mdl-36652121

ABSTRACT

Photodynamic therapy (PDT) is a proposed non-invasive, highly effective, and fertility-preserving method for the treatment of lower reproductive tract diseases in women. We aim to evaluate the effect of PDT on complete remission, recurrence, and HPV clearance in diseases of the female lower reproductive tract associated with the human papillomavirus (HPV) infection in this meta-analysis. PubMed, EMBASE, Scopus, Cochrane Library, and China National Knowledge Infrastructure databases were searched to compare PDT with other treatments for complete remission, recurrence, and HPV clearance in women with lower genital tract disease. Fixed or random effect models were performed to assess the pooled effect size. Sensitivity analysis was performed to detect heterogeneity in the included studies. The Begg and Egger test assessed publication bias. There were 12 studies qualified for inclusion; compared to other treatments, PDT had a significant advantage in complete remission (OR=2.97, 95%CI, 2.18-4.04, I2=0, P<0. 001) and recurrence (OR, 0.21; 95%CI, 0.11-0.39; I2=34.9%, P<0. 001). Furthermore, PDT clears HPV quickly and lastingly compared to other therapies (OR, 2.65; 95% CI, 1.41-4.95; I2=71.0%, P=0.002). In addition, the heterogeneity test of sensitivity analysis suggested that the results were robust. Begg test (P=0.73) and Egger test (P=0.71) showed no publication bias. PDT treats diseases of the female lower reproductive tract associated with HPV infection: high complete remission, low recurrence, and rapid and lasting HPV clearance. The PDT seems to be a non-invasive, effective, and promising treatment of female lower reproductive tract diseases associated with HPV infection.


Subject(s)
Papillomavirus Infections , Photochemotherapy , Female , Humans , Papillomavirus Infections/drug therapy , Photosensitizing Agents/therapeutic use , Aminolevulinic Acid/therapeutic use , Photochemotherapy/methods , China
18.
J Craniofac Surg ; 34(5): e411-e415, 2023.
Article in English | MEDLINE | ID: mdl-36534028

ABSTRACT

BACKGROUND: This study aims to observe and investigate the clinical value of scar loosening and tissue-expansive autologous skin grafting in the treatment of postburn scars and independent risk characteristics for surgery-related complications. METHODS: We retrospectively analyzed 94 cases with postburn scars, and all patients were treated with scar loosening and autologous skin grafting. Overall therapeutic effects were evaluated using the standard of cure and improvement of clinical diseases. Burn Specific Health Scale-brief was used to analyze patients' quality of life. The visual analog scale scores were used to analyze esthetic satisfaction. Surgery-related complications were recorded, and logistic regression model was used to analyze independent factors affecting surgery-related complications. RESULTS: As for overall efficacy evaluation, 50 cases were cured, 19 cases were markedly improved, 17 cases improved, and 8 cases were detected and tested, and the overall effective rate was 91.4%. The Burn Specific Health Scale-brief and visual analog scale score showed a trend of increasing gradually. It indicated that the patients were satisfied with the operation and their quality of life was improved. The logistic regression model showed that history of skin disease (OR=1.53 (1.08-2.16), P =0.02) and skin area (OR=2.50 (1.22-4.50), P <0.01) were significantly associated with surgery-related complications. CONCLUSIONS: Scar loosening and autologous skin grafting is a safe and effective treatment. The history of skin disease and skin area was the independent factors for surgery-related complications.


Subject(s)
Burns , Cicatrix , Humans , Cicatrix/etiology , Cicatrix/surgery , Prognosis , Skin Transplantation , Retrospective Studies , Quality of Life , Esthetics, Dental , Burns/complications , Burns/surgery
19.
Angew Chem Int Ed Engl ; 62(49): e202309652, 2023 Dec 04.
Article in English | MEDLINE | ID: mdl-37851486

ABSTRACT

Covalent adaptable networks (CANs) possess unique properties as a result of their internal dynamic bonds, such as self-healing and reprocessing abilities. In this study, we report a thermally responsive C-Se dynamic covalent chemistry (DCC) that relies on the transalkylation exchange between selenonium salts and selenides, which undergo a fast transalkylation reaction in the absence of any catalyst. Additionally, we demonstrate the presence of a dissociative mechanism in the absence of selenide groups. After incorporation of this DCC into selenide-containing polymer materials, it was observed that the cross-linked networks display varying dynamic exchange rates when using different alkylation reagents, suggesting that the reprocessing capacity of selenide-containing materials can be regulated. Also, by incorporating selenonium salts into polymer materials, we observed that the materials exhibited good healing ability at elevated temperatures as well as excellent solvent resistance at ambient temperature. This novel dynamic covalent chemistry thus provides a straightforward method for the healing and reprocessing of selenide-containing materials.

20.
Biochem Biophys Res Commun ; 629: 152-158, 2022 11 12.
Article in English | MEDLINE | ID: mdl-36122452

ABSTRACT

Acute myeloid leukemia (AML) is the most common blood cancer in adults. Patients' 5-year overall survival is less than 30% thus having a poor prognosis. To date, the development of novel target therapies is still necessary to ameliorate patients' survival. Antibody-drug conjugates (ADCs) represent a promising class of drugs for the treatment of AML. CD33 is highly expressed on AML cells, and the FDA-approved CD33-targeted ADC drug-gemtuzumab ozogamicin (GO) has proved the feasibility of CD33-targeted ADC drug design. In this study, we constructed a novel CD33-targeted ADC drug composed of a humanized anti-CD33 antibody and oridonin as a payload with a cleaved chemical linker. Oridonin is a natural product that has great cancer therapy potential while its poor bioavailability and targeting ability limited its clinical use. Herein, we demonstrated that antiCD33-oridonin specifically delivered oridonin in AML cells improved AML cells killing ability of oridonin. Meanwhile, it did not show any non-specific toxicity on CD33 negative cells. In summary, we developed a novel AML targeting ADC with clinical application potential, and therefore provided a new solution for the druggability improvement of oridonin.


Subject(s)
Biological Products , Immunoconjugates , Leukemia, Myeloid, Acute , Adult , Aminoglycosides , Antibodies, Monoclonal, Humanized/therapeutic use , Biological Products/therapeutic use , Diterpenes, Kaurane , Gemtuzumab , Humans , Immunoconjugates/therapeutic use , Leukemia, Myeloid, Acute/drug therapy
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