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2.
Dev Psychol ; 2024 Sep 19.
Article in English | MEDLINE | ID: mdl-39298251

ABSTRACT

The present research examined cultural patterns of parental guidance for infants as they learned about a new physical rule with hands-on experience. Nine-month-olds participated in two sites: Taipei, Taiwan and Santa Cruz, California, United States (N = 96; 48 males, 48 females). They watched a single exemplar of covering events that demonstrated the to-be-learned rule, which was insufficient visual experience to learn the rule. As infants explored the objects while observing, their mothers provided culturally distinct guidance. The dyads in Taipei co-enacted directive guidance through parents' hand-holding infants, whereas the dyads in Santa Cruz focused on infants' free exploration. Despite different emphases of learning, both groups of infants benefited from hands-on experience and learned the rule with the single exemplar. The finding points to diverse pathways to support the early development of physical concepts for infants from different cultural backgrounds. (PsycInfo Database Record (c) 2024 APA, all rights reserved).

3.
Elife ; 132024 Sep 10.
Article in English | MEDLINE | ID: mdl-39255019

ABSTRACT

Stem cell niche is critical for regulating the behavior of stem cells. Drosophila neural stem cells (Neuroblasts, NBs) are encased by glial niche cells closely, but it still remains unclear whether glial niche cells can regulate the self-renewal and differentiation of NBs. Here, we show that ferritin produced by glia, cooperates with Zip13 to transport iron into NBs for the energy production, which is essential to the self-renewal and proliferation of NBs. The knockdown of glial ferritin encoding genes causes energy shortage in NBs via downregulating aconitase activity and NAD+ level, which leads to the low proliferation and premature differentiation of NBs mediated by Prospero entering nuclei. More importantly, ferritin is a potential target for tumor suppression. In addition, the level of glial ferritin production is affected by the status of NBs, establishing a bicellular iron homeostasis. In this study, we demonstrate that glial cells are indispensable to maintain the self-renewal of NBs, unveiling a novel role of the NB glial niche during brain development.


Iron is an essential nutrient for almost all living organisms. For example, iron contributes to the replication of DNA, the generation of energy inside cells, and the transport of oxygen around the body. Iron deficiency is the most common of all nutrient deficiencies, affecting over 40% of children worldwide. This can lead to anemia and also impair how the brain and nervous system develop, potentially resulting in long-lasting cognitive damage, even after the deficiency has been treated. It is poorly understood how iron contributes to the development of the brain and nervous system. In particular, whether and how it supports nerve stem cells (or NSCs for short) which give rise to the various neural types in the mature brain. To investigate, Ma et al. experimentally reduced the levels of ferritin (a protein which stores iron) in the developing brains of fruit fly larvae. This reduction in ferritin led to lower numbers of NSCs and a smaller brain. Unexpectedly, this effect was largest when ferritin levels were reduced in glial cells which support and send signals to NSCs, rather than in the stem cells themselves. Ma et al. then used fluorescence microscopy to confirm that glial cells make and contain a lot of ferritin which can be transported to NSCs. Adding iron supplements to the diet of flies lacking ferritin did not lead to normal numbers of stem cells in the brains of the developing fruit flies, whereas adding compounds that reduce the amount of iron led to lower numbers of stem cells. Together, this suggests that ferritin transports iron from glial cells to the NSCs. Without ferritin and iron, the NSCs could not produce enough energy to divide and make new stem cells. This caused the NSCs to lose the characteristics of stem cells and prematurely turn into other types of neurons or glial cells. Together, these findings show that when iron cannot move from glial cells to NSCs this leads to defects in brain development. Future experiments will have to test whether a similar transport of iron from supporting cells to NSCs also occurs in the developing brains of mammals, and whether this mechanism applies to stem cells in other parts of the body.


Subject(s)
Drosophila Proteins , Ferritins , Iron , Neural Stem Cells , Neuroglia , Animals , Neural Stem Cells/metabolism , Neuroglia/metabolism , Iron/metabolism , Ferritins/metabolism , Ferritins/genetics , Drosophila Proteins/metabolism , Drosophila Proteins/genetics , Drosophila/metabolism , Cell Proliferation , Cell Differentiation , Drosophila melanogaster/metabolism , Drosophila melanogaster/genetics , Cell Self Renewal
4.
Cancer Cell ; 2024 Aug 24.
Article in English | MEDLINE | ID: mdl-39241781

ABSTRACT

Prior studies have described the complex interplay that exists between glioma cells and neurons; however, the electrophysiological properties endogenous to glioma cells remain obscure. To address this, we employed Patch-sequencing (Patch-seq) on human glioma specimens and found that one-third of patched cells in IDH mutant (IDHmut) tumors demonstrate properties of both neurons and glia. To define these hybrid cells (HCs), which fire single, short action potentials, and discern if they are of tumoral origin, we developed the single cell rule association mining (SCRAM) computational tool to annotate each cell individually. SCRAM revealed that HCs possess select features of GABAergic neurons and oligodendrocyte precursor cells, and include both tumor and non-tumor cells. These studies characterize the combined electrophysiological and molecular properties of human glioma cells and describe a cell type in human glioma with unique electrophysiological and transcriptomic properties that may also exist in the non-tumor brain.

5.
Adv Child Dev Behav ; 67: 164-199, 2024.
Article in English | MEDLINE | ID: mdl-39260903

ABSTRACT

Decades of research have informed about ways in which infants and young children learn through action in connection with their sensory system. However, this research has not strongly addressed the issues of cultural diversity or taken into account everyday cultural experiences of young learners across different communities. Diversifying the scholarship of early learning calls for paradigm shifts, extending beyond the analysis at the individual level to make close connections with real-world experience while placing culture front and center. On the other hand, cultural research that specifies diversity in caregiver guidance and scaffolding, while providing insights into young learners' cultural experiences, has been conducted separately from the research of action-based cross-modal learning. Taking everyday activities as contexts for learning, in this chapter, we summarize seminal work on cross-modal learning by infants and young children that connects action and perception, review empirical evidence of cultural variations in caregiver guidance for early action-based learning, and make recommendations of research approaches for advancing the scientific understanding about cultural ways of learning across diverse communities.


Subject(s)
Learning , Humans , Infant , Child, Preschool , Cultural Diversity , Child Development , Culture
6.
J Viral Hepat ; 2024 Sep 17.
Article in English | MEDLINE | ID: mdl-39287176

ABSTRACT

Hepatitis D virus leads to a severe form of viral hepatitis and affects nearly 5% of people living with chronic hepatitis B. Chronic infection with hepatitis D virus leads to more rapid progression to cirrhosis, hepatocellular carcinoma and ultimately liver disease-related death compared with hepatitis B monoinfection. Health outcomes and treatment adherence can be affected by patient perception of, engagement in, and satisfaction with care. Our objective was to better understand the experiences of people with chronic hepatitis D, identify their preferred sources of information, and recognise unmet needs from their perspectives. Sixty-seven participants from the United States and the European Union took part in monthly, online, self-guided surveys for a minimum of 3 months with an optional extension. Participants reported feeling anxious and scared at the time of diagnosis but over time came to accept living with chronic hepatitis D. They voiced a need for access to information from trusted sources, fewer barriers to care, and shorter wait times for provider visits and test results after diagnosis. Participants experienced both physical and psychological strain living with chronic hepatitis D. Although most participants reported the ability to continue their regular activities and employment, some stated such activities were done at a reduced pace. Self-reported overall health appeared to be closely linked with emotional support. Understanding patient perspectives, with concurrent clinician perspectives, is crucial when working toward developing solutions to fulfil unmet patient needs associated with chronic hepatitis D management and advancing health equity.

7.
Inorg Chem ; 63(37): 17298-17304, 2024 Sep 16.
Article in English | MEDLINE | ID: mdl-39238210

ABSTRACT

Adsorptive ethylene separation from the C2H2/C2H4/C2H6/CO2 four-component gas mixture provides a low-energy input solution for industrial ethylene purification, yet it is still a great challenge. Herein, we report a facile scaled-up synthesis of a stable ultramicroporous coordination network of Zn-CO3-datz (Hdatz = 3,5-diamine-1,2,4-triazole), which enables selective adsorption of C2H2, C2H4 and CO2 over C2H4, thanks to its specific pore environment supported by GCMC simulation of gas adsorption sites. Dynamic breakthrough experiments exhibited efficient one-step production of polymer-grade (≥99.95%) C2H4 from the quaternary C2H4/C2H2/C2H6/CO2 (1/1/1/1) mixture, with excellent C2H4 productivity of 0.12 mol kg-1 at 298 K. Moreover, it can be easily synthesized in kilogram scale with an affordable and low-cost ligand, rendering its further potential industrial applications.

8.
Asian J Surg ; 2024 Sep 03.
Article in English | MEDLINE | ID: mdl-39232956

ABSTRACT

INTRODUCTION: Intrahepatic cholangiocarcinoma (iCCA) is the second most common primary liver cancer after hepatocellular carcinoma. Through data mining of publicly available iCCA transcriptomic datasets from the Gene Expression Omnibus, we identified SFN as the most significantly up-regulated gene in iCCA compared to normal tissue, focusing on the Gene Ontology term "cell proliferation" (GO:0008283). SFN encodes the 14-3-3σ protein, also known as stratifin, which plays crucial roles in various cellular processes. MATERIALS AND METHODS: Immunohistochemistry was used to assess stratifin expression in 182 patients with localized iCCAs undergoing surgical resection. Patients were divided into low and high expression groups, and the association between stratifin expression and clinicopathological features was analyzed. Univariate and multivariate survival analyses were performed to assess overall survival (OS), disease-specific survival (DSS), local recurrence-free survival (LRFS), and metastasis-free survival (MeFS). RESULTS: Elevated stratifin expression in iCCAs was significantly associated with the absence of hepatitis, positive surgical margins, advanced primary tumor stages, and higher histological grades (all p ≤ 0.011). Survival analyses demonstrated a significant negative association between stratifin expression and all prognostic indicators, including OS, DSS, LRFS, and MeFS (all p ≤ 0.0004). Multivariate analysis revealed that stratifin overexpression was significantly correlated with poorer outcomes in terms of DSS, LRFS, and MeFS (all p < 0.001). CONCLUSIONS: These findings suggest that stratifin may play a crucial role in iCCA oncogenesis and tumor progression, serving as a potential novel prognostic biomarker.

9.
Int J Mol Sci ; 25(17)2024 Aug 23.
Article in English | MEDLINE | ID: mdl-39273085

ABSTRACT

Inflammation models are widely used in the in vitro investigation of new therapeutic approaches for osteoarthritis. TNFα (tumor necrosis factor alpha) plays an important role in the inflammatory process. Current inflammation models lack uniformity and make comparisons difficult. Therefore, this study aimed to systematically investigate whether the effects of TNFα are concentration-dependent and whether chondrocyte expansion has an effect on the inflammatory model. Bovine chondrocytes were enzymatically isolated, expanded to passages 1-3, and transferred into a 3D pellet culture. Chondrocyte pellets were stimulated with recombinant bovine TNFα at different concentrations for 48 h to induce inflammation. Gene expression of anabolic (collagen 2, aggrecan, cartilage oligomeric protein (COMP)), catabolic (matrix metalloproteinases (MMP3, MMP13)), dedifferentiation (collagen 1) markers, inflammation markers (interleukin-6 (IL-6), nuclear factor kappa B (NFkB), cyclooxygenase-2 (COX), prostaglandin-E-synthase-2 (PTGES2)), and the apoptosis marker caspase 3 was determined. At the protein level, concentrations of IL-6, nitric oxide (NO), and sulfated glycosaminoglycans (GAG) were evaluated. Statistical analysis was performed using the independent t-test, and significance was defined as p < 0.05. In general, TNFα caused a decrease in anabolic markers and an increase in the expression of catabolic and inflammatory markers. There was a concentration-dependent threshold of 10 ng/mL to induce significant inflammatory effects. Most of the markers analyzed showed TNFα concentration-dependent effects (COMP, PRG4, AGN, Col1, MMP3, and NFkB). There was a statistical influence of selected gene expression markers from different passages on the TNFα chondrocyte inflammation model, including Col2, MMP13, IL-6, NFkB, COX2, and PTGES2. Considering the expression of collagen 2 and MMP3, passage 3 chondrocytes showed a higher sensitivity to TNFα stimulation compared to passages 1 and 2. On the other hand, MMP13, IL-6, NFkB, and caspase 3 gene expression were lower in P3 chondrocytes compared to the other passages. On the protein level, inflammatory effects showed a similar pattern, with cytokine effects starting at 10 ng/mL and differences between the passages. TNFα had a detrimental effect on cartilage, with a clear threshold observed at 10 ng/mL. Although TNFα effects showed concentration-dependent patterns, this was not consistent for all markers. The selected passage showed a clear influence, especially on inflammation markers. Further experiments were warranted to explore the effects of TNFα concentration and passage in long-term stimulation.


Subject(s)
Chondrocytes , Inflammation , Tumor Necrosis Factor-alpha , Animals , Chondrocytes/metabolism , Chondrocytes/drug effects , Cattle , Tumor Necrosis Factor-alpha/metabolism , Tumor Necrosis Factor-alpha/pharmacology , Inflammation/metabolism , Inflammation/pathology , Cells, Cultured , NF-kappa B/metabolism , Nitric Oxide/metabolism , Interleukin-6/metabolism , Interleukin-6/genetics , Biomarkers
10.
Life Sci ; 357: 123048, 2024 Sep 11.
Article in English | MEDLINE | ID: mdl-39270834

ABSTRACT

FoxO1 (Forkhead box O1) belongs to the evolutionarily conserved FoxO subfamily and is involved in diverse physiologic processes, including apoptosis, cell cycle, DNA damage repair, oxidative stress and cell differentiation. FoxO1 plays an important role in regulating the hypoxia microenvironment such as cancers, but its role in hypoxia adaptation remains unclear in animals. To understand the function of foxO1 in hypoxia response, we constructed foxO1a and foxO1b mutant zebrafish using CRISPR/Cas9 technology. It was found that foxO1a and foxO1b destruction affected the hematopoietic system in the early zebrafish embryos. Specifically, FoxO1a and FoxO1b were found to affect the transcriptional activity of runx1, a marker gene for hematopoietic stem cells (HSCs). Moreover, foxO1a and foxO1b had complementary features in hypoxia response, and foxO1a or/and foxO1b destruction resulted in tolerance of zebrafish becoming weakened in hypoxia due to insufficient hemoglobin supply. Additionally, the transcriptional activity of these two genes was demonstrated to be regulated by Hif1α. In conclusion, foxO1a and foxO1b respond to Hif1α-mediated hypoxia response by participating in zebrafish erythropoiesis. These results will provide a theoretical basis for further exploring the function of FoxO1 in hematopoiesis and hypoxia response.

11.
Am J Transl Res ; 16(8): 3922-3937, 2024.
Article in English | MEDLINE | ID: mdl-39262709

ABSTRACT

OBJECTIVE: To elucidate the underlying mechanism of iron deficiency augmented Angiotensin II-induced aortic medial degeneration. METHODS: ApoE-/- mice were randomly divided into four groups: normal control group (NC group), Angiotensin II (Ang II) subcutaneous pumped alone Group (Ang II group), iron deficiency (ID) group (ID group) and ID+Ang II group. The survival time, systolic blood pressure (SBP), and aortic medial degeneration (AMD) formation were monitored. Iron deposition in the aortas was assessed using Prussian blue iron staining. The expression of iron metabolism indicators, aortopathies and the cytoskeleton of vascular smooth muscle cells (VSMCs) were analyzed. In an in vitro setting, deferoxamine (DFO) was employed to mimic ID to examine the effects of Ang II on the cytoskeletal and contractile function of VSMCs during ID. Ras-related C3 botulinum toxin substrate 1 (Rac-1) expression was inhibited with EHT1864 to verify the role of Cdc42/Rac1 pathway in this pathological process. Blood samples were collected from 150 patients with aortic dissection (AD) and 60 patients with hypertension who were admitted to the Department of Cardiovascular Surgery at Renmin Hospital of Wuhan University between June 2018 and September 2019. The aortic tissues were obtained during the surgical treatment of Stanford type A AD patients and the heart donor. The iron metabolism status in plasma and aortic tissue was analyzed. RESULTS: In vivo experiments revealed that, in comparison to the NC and ID groups, mice in the Ang II and ID+Ang II groups exhibited increased SBP, significantly reduced survival time, and an expanded range of aortic dissection (P < 0.05). ID feeding augmented the Ang II-induced aortopathies. Both in vitro and in vivo results indicated that ID led to diminished expression of phosphorylated myosin light chain (p-MLC) and recombinant Cell Division Cycle Protein 42 (Cdc42) in VSMCs, while Rac-1 expression increased. The clinical sample testing data further confirmed the discovery that individuals diagnosed with AD display ID in both the plasma and the diseased aortas. CONCLUSIONS: The Cdc42/Rac1 pathway plays a crucial role in disrupting the cytoskeleton of vascular smooth muscle cells during iron deficiency, which leads to aortic medial degeneration both in vivo and in vitro.

12.
Eur J Surg Oncol ; 50(10): 108580, 2024 Oct.
Article in English | MEDLINE | ID: mdl-39116516

ABSTRACT

BACKGROUND: The newly released Asian Working Group for Cachexia (AWGC) criteria share similar diagnostic items with the Global Leadership Initiative on Malnutrition (GLIM) criteria. This study aims to compare the AWGC cachexia and GLIM malnutrition in patients with gastric cancer and investigate whether one diagnosis continues to be a prognostic factor in individuals diagnosed with the other condition. METHODS: Data of patients who underwent radical gastrectomy for gastric adenocarcinoma were prospectively collected from 2013 to 2019. The AWGC and GLIM criteria were applied to diagnosis cachexia and malnutrition, respectively. Univariate and multivariate logistic and Cox regression were used to verify the effect of relevant factors on postoperative complications and overall survival. RESULTS: A total of 1420 patients were included, among whom 174 (12.3 %) were diagnosed with AWGC-cachexia alone, 85 (6.0 %) were diagnosed with GLIM-malnutrition alone, and 324 (22.8 %) had both AWGC-cachexia and GLIM-malnutrition. Both AWGC-cachexia and GLIM-malnutrition were independent risk factors for complications and overall survival. When they coexisted, the odds ratios (OR) and hazard ratios (HR) tended to be higher. In the AWGC-cachexia subset, GLIM-malnutrition remained an independent risk factor (HR = 1.544, 95 % CI = 1.098-2.171, P = 0.012) for overall survival after the adjustment of confounding factors. Similarly, in the GLIM-malnutrition subset, AWGC-cachexia remained an independent risk factor for overall survival (HR = 1.697, 95 % CI = 1.087-2.650, P = 0.020). Patients with both cachexia and malnutrition had the worst overall survival. CONCLUSION: AWGC-cachexia and GLIM-malnutrition criteria were two non-redundancy tools in reflecting mortality risk in preoperative nutritional assessment.


Subject(s)
Adenocarcinoma , Cachexia , Gastrectomy , Malnutrition , Postoperative Complications , Stomach Neoplasms , Humans , Stomach Neoplasms/complications , Stomach Neoplasms/surgery , Cachexia/etiology , Male , Female , Middle Aged , Aged , Adenocarcinoma/complications , Adenocarcinoma/surgery , Postoperative Complications/epidemiology , Prognosis , Survival Rate , Risk Factors , Prospective Studies , Nutrition Assessment
13.
Front Public Health ; 12: 1419305, 2024.
Article in English | MEDLINE | ID: mdl-39185128

ABSTRACT

There is intense competition among pharmaceutical companies with the rapid growth of the global pharmaceutical industry. In recent years, China has continuously increased the reform of the medical system. Technology mergers and acquisitions (M&A) in China's pharmaceutical industry have emerged in this complex policy and economic background. This paper conducts an empirical study from the dual perspectives of financial performance and innovation performance, based on unbalanced panel data of Chinese listed pharmaceutical firms from 2012 to 2022. The impact of technology M&A on firm performance is analyzed in terms of the heterogeneity of firm characteristics. Meanwhile, the relationship between R&D investment in technology M&A and firm performance is examined. The results show that technology M&A can promote the performance of pharmaceutical companies, and R&D investment has a mediating effect on the impact of technology M&A on corporate performance. Based on the above findings, this study enriches the relevant literature on technology M&A in the pharmaceutical industry, provides warnings and suggestions for pharmaceutical companies to improve corporate performance through technology M&A, and provides reference materials for future policy formulation.


Subject(s)
Drug Industry , China , Humans , Empirical Research , Investments
14.
Int J Mol Sci ; 25(16)2024 Aug 14.
Article in English | MEDLINE | ID: mdl-39201534

ABSTRACT

The purpose of this study was to investigate whether and how albiflorin, a natural monoterpene glycoside, affects the release of glutamate, one of the most important neurotransmitters involved in neurotoxicity, from cerebrocortical nerve terminals (synaptosomes) in rats. The results showed that albiflorin reduced 4-aminopyridine (4-AP)-elicited glutamate release from synaptosomes, which was abrogated in the absence of extracellular Ca2+ or in the presence of the vesicular glutamate transporter inhibitor or a P/Q-type Ca2+ channel inhibitor, indicating a mechanism of action involving Ca2+-dependent depression of vesicular exocytotic glutamate release. Albiflorin failed to alter the increase in the fluorescence intensity of 3,3-diethylthiacarbocyanine iodide (DiSC3(5)), a membrane-potential-sensitive dye. In addition, the suppression of protein kinase A (PKA) abolished the effect of albiflorin on glutamate release. Albiflorin also reduced the phosphorylation of PKA and synaptosomal-associated protein of 25 kDa (SNAP-25) and synapsin I at PKA-specific residues, which correlated with decreased available synaptic vesicles. The results of transmission electron microscopy (TEM) also observed that albiflorin reduces the release competence of synaptic vesicles evoked by 4-AP in synaptosomes. In conclusion, by studying synaptosomally released glutamate, we suggested that albiflorin reduces vesicular exocytotic glutamate release by decreasing extracellular Ca2+ entry via P/Q-type Ca2+ channels and reducing PKA-mediated synapsin I and SNAP-25 phosphorylation.


Subject(s)
Cerebral Cortex , Cyclic AMP-Dependent Protein Kinases , Glutamic Acid , Synaptosomes , Animals , Glutamic Acid/metabolism , Synaptosomes/metabolism , Synaptosomes/drug effects , Rats , Cerebral Cortex/metabolism , Cerebral Cortex/drug effects , Male , Cyclic AMP-Dependent Protein Kinases/metabolism , Calcium Channels, Q-Type/metabolism , Rats, Sprague-Dawley , Calcium Channels, P-Type/metabolism , Bridged-Ring Compounds/pharmacology , Calcium/metabolism , Phosphorylation/drug effects , Synapsins/metabolism
15.
Int Immunopharmacol ; 140: 112842, 2024 Oct 25.
Article in English | MEDLINE | ID: mdl-39094361

ABSTRACT

Taiwan Chingguan Yihau (NRICM101) is a Traditional Chinese medicine (TCM) formula used to treat coronavirus disease 2019; however, its impact on epilepsy has not been revealed. Therefore, the present study evaluated the anti-epileptogenic effect of orally administered NRICM101 on kainic acid (KA)-induced seizures in rats and investigated its possible mechanisms of action. Sprague-Dawley rats were administered NRICM101 (300 mg/kg) by oral gavage for 7 consecutive days before receiving an intraperitoneal injection of KA (15 mg/kg). NRICM101 considerably reduced the seizure behavior and electroencephalographic seizures induced by KA in rats. NRICM101 also significantly decreased the neuronal loss and glutamate increase and increased GLAST, GLT-1, GAD67, GDH and GS levels in the cortex and hippocampus of KA-treated rats. In addition, NRICM101 significantly suppressed astrogliosis (as determined by decreased GFAP expression); neuroinflammatory signaling (as determined by reduced HMGB1, TLR-4, IL-1ß, IL-1R, IL-6, p-JAK2, p-STAT3, TNF-α, TNFR1 and p-IκB levels, and increased cytosolic p65-NFκB levels); and necroptosis (as determined by decreased p-RIPK3 and p-MLKL levels) in the cortex and hippocampus of KA-treated rats. The effects of NRICM101 were similar to those of carbamazepine, a well-recognized antiseizure drug. Furthermore, no toxic effects of NRICM101 on the liver and kidney were observed in NRICM101-treated rats. The results indicate that NRICM101 has antiepileptogenic and neuroprotective effects through the suppression of the inflammatory cues (HMGB1/TLR4, Il-1ß/IL-1R1, IL-6/p-JAK2/p-STAT3, and TNF-α/TNFR1/NF-κB) and necroptosis signaling pathways (TNF-α/TNFR1/RIP3/MLKL) associated with glutamate level regulation in the brain and is innocuous. Our findings highlight the promising role of NRICM101 in the management of epilepsy.


Subject(s)
Drugs, Chinese Herbal , Glutamic Acid , Kainic Acid , Rats, Sprague-Dawley , Seizures , Animals , Seizures/chemically induced , Seizures/drug therapy , Male , Rats , Glutamic Acid/metabolism , Drugs, Chinese Herbal/therapeutic use , Drugs, Chinese Herbal/pharmacology , Neuroinflammatory Diseases/drug therapy , Neuroinflammatory Diseases/immunology , Anticonvulsants/therapeutic use , Anticonvulsants/pharmacology , Hippocampus/drug effects , Hippocampus/metabolism , Hippocampus/pathology , Signal Transduction/drug effects , Neuroprotective Agents/therapeutic use , Neuroprotective Agents/pharmacology
16.
Inorg Chem ; 63(36): 16897-16907, 2024 Sep 09.
Article in English | MEDLINE | ID: mdl-39197012

ABSTRACT

Exploiting a photocatalyst with high stability and excellent activity for Cr(VI) reduction under mild conditions is crucial yet challenging. Herein, the rigid aromatic multicarboxylate ligand with chromophore anthracene was selected to coordinate with multivalent metal ion manganese and to obtain a stable two-dimensional (2D) Mn-based metal-organic framework (MOF), LCUH-120, which can efficiently and quickly convert Cr(VI) into Cr(III) under light without the need for any additional photosensitizer. The efficient photosensitive anthracene group serves as a photosensitizer center and multivalent Mn(II) ion as a photocatalyst center in LCUH-120, and the conversion of Cr(VI) to Cr(III) can be realized completely in just 40 min. Specifically, the rate constant (k) and reduction rate of the Cr(VI) photocatalytic reaction can be high up to 0.134 min-1 and 2.50 mgCr(VI) g-1cata min-1 in an acidic environment (pH = 2), respectively. Compared to our previously reported three-dimensional (3D) Sm-MOF, LCUH-120 exhibits a significantly higher catalytic reaction rate, which might be ascribed to the fact that the photocatalyst center Mn node can improve the rate of electron transfer and promote the separation of holes and photogenerated electrons. In an acidic environment, the reaction mechanism can be verified through various contrast experiments and theoretical simulations.

17.
Neuropharmacology ; 260: 110135, 2024 Dec 01.
Article in English | MEDLINE | ID: mdl-39214451

ABSTRACT

Glutathione peroxidase-1 (GPx1) and cAMP/Ca2+ responsive element (CRE)-binding protein (CREB) regulate neuronal viability by maintaining the redox homeostasis. Since GPx1 and CREB reciprocally regulate each other, it is likely that GPx1-CREB interaction may play a neuroprotective role against oxidative stress, which are largely unknown. Thus, we investigated the underlying mechanisms of the reciprocal regulation between GPx1 and CREB in the male rat hippocampus. Under physiological condition, L-buthionine sulfoximine (BSO)-induced oxidative stress increased GPx1 expression, extracellular signal-regulated kinase 1/2 (ERK1/2) activity and CREB serine (S) 133 phosphorylation in CA1 neurons, but not dentate granule cells (DGC), which were diminished by GPx1 siRNA, U0126 or CREB knockdown. GPx1 knockdown inhibited ERK1/2 and CREB activations induced by BSO. CREB knockdown also decreased the efficacy of BSO on ERK1/2 activation. BSO facilitated dynamin-related protein 1 (DRP1)-mediated mitochondrial fission in CA1 neurons, which abrogated by GPx1 knockdown and U0126. CREB knockdown blunted BSO-induced DRP1 upregulation without affecting DRP1 S616 phosphorylation ratio. Following status epilepticus (SE), GPx1 expression was reduced in CA1 neurons and DGC. SE also decreased CREB activity CA1 neurons, but not DGC. SE degenerated CA1 neurons, but not DGC, accompanied by mitochondrial elongation. These post-SE events were ameliorated by N-acetylcysteine (NAC, an antioxidant), but deteriorated by GPx1 knockdown. These findings indicate that a transient GPx1-ERK1/2-CREB activation may be a defense mechanism to protect hippocampal neurons against oxidative stress via maintenance of proper mitochondrial dynamics.


Subject(s)
Cyclic AMP Response Element-Binding Protein , Glutathione Peroxidase GPX1 , Glutathione Peroxidase , Hippocampus , MAP Kinase Signaling System , Mitochondrial Dynamics , Neurons , Oxidative Stress , Rats, Sprague-Dawley , Status Epilepticus , Animals , Oxidative Stress/drug effects , Oxidative Stress/physiology , Male , Neurons/metabolism , Neurons/drug effects , Glutathione Peroxidase/metabolism , Hippocampus/metabolism , Hippocampus/drug effects , Hippocampus/pathology , Mitochondrial Dynamics/drug effects , Mitochondrial Dynamics/physiology , Status Epilepticus/chemically induced , Status Epilepticus/metabolism , Status Epilepticus/pathology , Cyclic AMP Response Element-Binding Protein/metabolism , Rats , MAP Kinase Signaling System/drug effects , MAP Kinase Signaling System/physiology
19.
J Chromatogr A ; 1733: 465278, 2024 Sep 27.
Article in English | MEDLINE | ID: mdl-39163702

ABSTRACT

Reversed-phase liquid chromatography (RPLC) represents an effective separation method, and is widely employed as the second dimension in most 2D-LC systems. Nevertheless, the solvent effect of the eluent from the first dimension on RPLC presents a challenge to the online coupling of RPLC with other separation modes, particularly normal phase liquid chromatography (NPLC). To address this issue, a comprehensive understanding of the solvent effect is essential. Following a comprehensive investigation into the influence of diverse solvents on RPLC separations, it was observed that alkane solvents, such as n-hexane, exhibited a pronounced tendency to be retained during RPLC separations. Such solvents do not affect the analysis of samples with weaker retention abilities than themselves, even when a large injection volume is used. The solvent effect was thus reduced by employing n-hexane-based solvent dilution. Leveraging the markedly enhanced solvent tolerance and extensive injection volume in RPLC, a versatile integration of the NPLC and RPLC was devised, necessitating merely a purge pump and a 10 port 2 position valve in conjunction with two sample loops. The novel 2D-LC system was then deployed for the analysis of propolis, a naturally occurring complex sample, and demonstrated remarkable separation efficiency.


Subject(s)
Biological Products , Chromatography, Reverse-Phase , Hexanes , Solvents , Hexanes/chemistry , Solvents/chemistry , Chromatography, Reverse-Phase/methods , Biological Products/chemistry , Biological Products/isolation & purification , Chromatography, Liquid/methods
20.
J Innate Immun ; 16(1): 397-412, 2024.
Article in English | MEDLINE | ID: mdl-39134014

ABSTRACT

INTRODUCTION: MDM2 is known as the primary negative regulator of p53, and MDM2 promotes lung cancer fibrosis and lung injury through p53-dependent and p53-independent pathways. However, the mechanism by which MDM2 influences the pathogenesis of asthma is unknown. In this study, we investigated the function of MDM2 in lung epithelial cells in type 2 lung inflammation. METHODS: We used type II alveolar epithelial cell-specific heterozygous knockout of Mdm2 mice to validate its function. Then papain-induced asthma model was established, and changes in inflammation were observed by measuring immunohistochemistry and flow cytometry analysis. RESULTS: In this study, we knockdown the mouse Mdm2 gene in type 2 alveolar epithelial cells. We demonstrated that heterozygous Mdm2 gene-deleted mice were highly susceptible to protease allergen papain-induced pulmonary inflammation characterized by increased ILC2 numbers, IL-5 and IL-13 cytokine levels, and lung pathology. A mechanistic study showed that following the decreased expression of Mdm2 in lung epithelial cells and A549 cell line, p53 was overactivated, and the expression of its downstream genes p21, Puma, and Noxa was elevated, which resulted in apoptosis. After Mdm2 knockdown, the mRNA expression of inflammation-related gene IL-25, HMGB1, and TNF-α were increased, which further amplified the downstream ILC2 response and lung inflammation. CONCLUSION: These results indicate that Mdm2 maintains the homeostasis of lung epithelial cells by targeting P53 and regulates the function of lung epithelial cells under type 2 lung inflammation.


Subject(s)
Asthma , Homeostasis , Mice, Knockout , Proto-Oncogene Proteins c-mdm2 , Tumor Suppressor Protein p53 , Animals , Proto-Oncogene Proteins c-mdm2/metabolism , Proto-Oncogene Proteins c-mdm2/genetics , Tumor Suppressor Protein p53/metabolism , Tumor Suppressor Protein p53/genetics , Mice , Humans , Asthma/immunology , Asthma/metabolism , Asthma/chemically induced , Asthma/genetics , A549 Cells , Disease Models, Animal , Apoptosis , Epithelial Cells/metabolism , Alveolar Epithelial Cells/metabolism , Papain , Mice, Inbred C57BL , Pneumonia/immunology , Pneumonia/metabolism
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