1.Serum metabolomics study of Psoraleae Fructus in improving learning and memory ability of APP/PS1 mice.
Jia-Ming GU ; Hui XUE ; Ao XUE ; Jing JIANG ; Fang GENG ; Ji-Hui ZHAO ; Bo YANG ; Ning ZHANG
China Journal of Chinese Materia Medica 2023;48(15):4039-4045
		                        		
		                        			
		                        			This study aimed to investigate the mechanism of Psoraleae Fructus in improving the learning and memory ability of APP/PS1 mice by serum metabolomics, screen the differential metabolites of Psoraleae Fructus on APP/PS1 mice, and reveal its influence on the metabolic pathway of APP/PS1 mice. Thirty 3-month-old APP/PS1 mice were randomly divided into a model group and a Psoraleae Fructus extract group, and another 15 C57BL/6 mice of the same age were assigned to the blank group. The learning and memory ability of mice was evaluated by the Morris water maze and novel object recognition tests, and metabolomics was used to analyze the metabolites in mouse serum. The results of the Morris water maze test showed that Psoraleae Fructus shortened the escape latency of APP/PS1 mice(P<0.01), and increased the number of platform crossing and residence time in the target quadrant(P<0.01). The results of the novel object recognition test showed that Psoraleae Fructus could improve the novel object recognition index of APP/PS1 mice(P<0.01). Eighteen differential metabolites in serum were screened out by metabolomics, among which the levels of arachidonic acid, tryptophan, and glycerophospholipid decreased after drug administration, while the levels of glutamyltyrosine increased after drug administration. The metabolic pathways involved included arachidonic acid metabolism, glycerophospholipid metabolism, tryptophan metabolism, linoleic acid metabolism, α-linolenic acid metabolism, and glycerolipid metabolism. Therefore, Psoraleae Fructus can improve the learning and memory ability of APP/PS1 mice, and its mechanism may be related to the effects in promoting energy metabolism, reducing oxidative damage, protecting central nervous system, reducing neuroinflammation, and reducing Aβ deposition. This study is expected to provide references for Psoraleae Fructus in the treatment of Alzheimer's disease(AD) and further explain the mechanism of Psoraleae Fructus in the treatment of AD.
		                        		
		                        		
		                        		
		                        			Mice
		                        			;
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Amyloid beta-Protein Precursor/genetics*
		                        			;
		                        		
		                        			Mice, Transgenic
		                        			;
		                        		
		                        			Arachidonic Acid
		                        			;
		                        		
		                        			Tryptophan
		                        			;
		                        		
		                        			Mice, Inbred C57BL
		                        			;
		                        		
		                        			Alzheimer Disease/genetics*
		                        			;
		                        		
		                        			Maze Learning
		                        			;
		                        		
		                        			Glycerophospholipids
		                        			;
		                        		
		                        			Disease Models, Animal
		                        			;
		                        		
		                        			Amyloid beta-Peptides/metabolism*
		                        			
		                        		
		                        	
2.Expression, purification and micelle reconstruction of the transmembrane domain of the human amyloid precursor protein for NMR studies.
Xiaoyu SUN ; Xuechen ZHAO ; Wen CHEN
Chinese Journal of Biotechnology 2023;39(4):1633-1643
		                        		
		                        			
		                        			The multiple-step cleavage of amyloid precursor protein (APP) generates amyloid-β peptides (Aβ), highly toxic molecules causing Alzheimer's disease (AD). The nonspecific cleavage between the transmembrane region of APP (APPTM) and γ-secretase is the key step of Aβ generation. Reconstituting APPTM under physiologically-relevant conditions is crucial to investigate how it interacts with γ-secretase and for future AD drug discovery. Although producing recombinant APPTM was reported before, the large scale purification was hindered by the use of biological protease in the presence of membrane protein. Here, we expressed recombinant APPTM in Escherichia coli using the pMM-LR6 vector and recovered the fusion protein from inclusion bodies. By combining Ni-NTA chromatography, cyanogen bromide cleavage, and reverse phase high performance liquid chromatography (RP-HPLC), isotopically-labeled APPTM was obtained in high yield and high purity. The reconstitution of APPTM into dodecylphosphocholine (DPC) micelle generated mono dispersed 2D 15N-1H HSQC spectra in high quality. We successfully established an efficient and reliable method for the expression, purification and reconstruction of APPTM, which may facilitate future investigation of APPTM and its complex in more native like membrane mimetics such as bicelle and nanodiscs.
		                        		
		                        		
		                        		
		                        			Humans
		                        			;
		                        		
		                        			Amyloid beta-Protein Precursor/chemistry*
		                        			;
		                        		
		                        			Micelles
		                        			;
		                        		
		                        			Amyloid Precursor Protein Secretases/metabolism*
		                        			;
		                        		
		                        			Magnetic Resonance Spectroscopy
		                        			;
		                        		
		                        			Recombinant Proteins
		                        			
		                        		
		                        	
3.Electroacupuncture Improves Blood-Brain Barrier and Hippocampal Neuroinflammation in SAMP8 Mice by Inhibiting HMGB1/TLR4 and RAGE/NADPH Signaling Pathways.
Yuan WANG ; Qiang WANG ; Di LUO ; Pu ZHAO ; Sha-Sha ZHONG ; Biao DAI ; Jia-Jyu WANG ; Yi-Tong WAN ; Zhi-Bin LIU ; Huan YANG
Chinese journal of integrative medicine 2023;29(5):448-458
		                        		
		                        			OBJECTIVE:
		                        			To investigate the molecular mechanisms underlying the beneficial effect of electroacupuncture (EA) in experimental models of Alzheimer's disease (AD) in vivo.
		                        		
		                        			METHODS:
		                        			Senescence-accelerated mouse prone 8 (SAMP8) mice were used as AD models and received EA at Yingxiang (LI 20, bilateral) and Yintang (GV 29) points for 20 days. For certain experiments, SAMP8 mice were injected intravenously with human fibrin (2 mg). The Morris water maze test was used to assess cognitive and memory abilities. The changes of tight junctions of blood-brain barrier (BBB) in mice were observed by transmission electron microscope. The expressions of fibrin, amyloid- β (Aβ), and ionized calcium-binding adapter molecule 1 (IBa-1) in mouse hippocampus (CA1/CA3) were detected by reverse transcription-quantitative polymerase chain reaction (qRT-PCR), Western blot or immunohistochemical staining. The expression of fibrin in mouse plasma was detected by enzyme-linked immunosorbent assay. The expressions of tight junction proteins zonula occludens-1 and claudin-5 in hippocampus were detected by qRT-PCR and immunofluorescence staining. Apoptosis of hippocampal neurons was detected by terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling (TUNEL) staining.
		                        		
		                        			RESULTS:
		                        			Fibrin was time-dependently deposited in the hippocampus of SAMP8 mice and this was inhibited by EA treatment (P<0.05 or P<0.01). Furthermore, EA treatment suppressed the accumulation of Aβ in the hippocampus of SAMP8 mice (P<0.01), which was reversed by fibrin injection (P<0.05 or P<0.01). EA improved SAMP8 mice cognitive impairment and BBB permeability (P<0.05 or P<0.01). Moreover, EA decreased reactive oxygen species levels and neuroinflammation in the hippocampus of SAMP8 mice, which was reversed by fibrin injection (P<0.05 or P<0.01). Mechanistically, EA inhibited the promoting effect of fibrin on the high mobility group box protein 1 (HMGB1)/toll-like receptor 4 (TLR4) and receptor for advanced glycation end products (RAGE)/nicotinamide adenine dinucleotide phosphate (NADPH) signaling pathways (P<0.01).
		                        		
		                        			CONCLUSION
		                        			EA may potentially improve cognitive impairment in AD via inhibition of fibrin/A β deposition and deactivation of the HMGB1/TLR4 and RAGE/NADPH signaling pathways.
		                        		
		                        		
		                        		
		                        			Mice
		                        			;
		                        		
		                        			Humans
		                        			;
		                        		
		                        			Animals
		                        			;
		                        		
		                        			NADP/metabolism*
		                        			;
		                        		
		                        			Toll-Like Receptor 4
		                        			;
		                        		
		                        			HMGB1 Protein/metabolism*
		                        			;
		                        		
		                        			Receptor for Advanced Glycation End Products/metabolism*
		                        			;
		                        		
		                        			Blood-Brain Barrier/metabolism*
		                        			;
		                        		
		                        			Neuroinflammatory Diseases
		                        			;
		                        		
		                        			Electroacupuncture
		                        			;
		                        		
		                        			Alzheimer Disease/therapy*
		                        			;
		                        		
		                        			Hippocampus/metabolism*
		                        			;
		                        		
		                        			Amyloid beta-Peptides/metabolism*
		                        			
		                        		
		                        	
4.Disrupted Maturation of Prefrontal Layer 5 Neuronal Circuits in an Alzheimer's Mouse Model of Amyloid Deposition.
Chang CHEN ; Jing WEI ; Xiaokuang MA ; Baomei XIA ; Neha SHAKIR ; Jessica K ZHANG ; Le ZHANG ; Yuehua CUI ; Deveroux FERGUSON ; Shenfeng QIU ; Feng BAI
Neuroscience Bulletin 2023;39(6):881-892
		                        		
		                        			
		                        			Mutations in genes encoding amyloid precursor protein (APP) and presenilins (PSs) cause familial forms of Alzheimer's disease (AD), a neurodegenerative disorder strongly associated with aging. It is currently unknown whether and how AD risks affect early brain development, and to what extent subtle synaptic pathology may occur prior to overt hallmark AD pathology. Transgenic mutant APP/PS1 over-expression mouse lines are key tools for studying the molecular mechanisms of AD pathogenesis. Among these lines, the 5XFAD mice rapidly develop key features of AD pathology and have proven utility in studying amyloid plaque formation and amyloid β (Aβ)-induced neurodegeneration. We reasoned that transgenic mutant APP/PS1 over-expression in 5XFAD mice may lead to neurodevelopmental defects in early cortical neurons, and performed detailed synaptic physiological characterization of layer 5 (L5) neurons from the prefrontal cortex (PFC) of 5XFAD and wild-type littermate controls. L5 PFC neurons from 5XFAD mice show early APP/Aβ immunolabeling. Whole-cell patch-clamp recording at an early post-weaning age (P22-30) revealed functional impairments; although 5XFAD PFC-L5 neurons exhibited similar membrane properties, they were intrinsically less excitable. In addition, these neurons received smaller amplitude and frequency of miniature excitatory synaptic inputs. These functional disturbances were further corroborated by decreased dendritic spine density and spine head volumes that indicated impaired synapse maturation. Slice biotinylation followed by Western blot analysis of PFC-L5 tissue revealed that 5XFAD mice showed reduced synaptic AMPA receptor subunit GluA1 and decreased synaptic NMDA receptor subunit GluN2A. Consistent with this, patch-clamp recording of the evoked L23>L5 synaptic responses revealed a reduced AMPA/NMDA receptor current ratio, and an increased level of AMPAR-lacking silent synapses. These results suggest that transgenic mutant forms of APP/PS1 overexpression in 5XFAD mice leads to early developmental defects of cortical circuits, which could contribute to the age-dependent synaptic pathology and neurodegeneration later in life.
		                        		
		                        		
		                        		
		                        			Mice
		                        			;
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Alzheimer Disease/pathology*
		                        			;
		                        		
		                        			Amyloid beta-Peptides/metabolism*
		                        			;
		                        		
		                        			Receptors, N-Methyl-D-Aspartate/metabolism*
		                        			;
		                        		
		                        			Amyloid beta-Protein Precursor/metabolism*
		                        			;
		                        		
		                        			Mice, Transgenic
		                        			;
		                        		
		                        			Neurons/metabolism*
		                        			;
		                        		
		                        			Receptors, AMPA/metabolism*
		                        			;
		                        		
		                        			Disease Models, Animal
		                        			
		                        		
		                        	
5.Resveratrol and Sir2 Reverse Sleep and Memory Defects Induced by Amyloid Precursor Protein.
Yuping HAO ; Lingzhan SHAO ; Jianan HOU ; Yan ZHANG ; Yuqian MA ; Jinhao LIU ; Chuan XU ; Fujun CHEN ; Li-Hui CAO ; Yong PING
Neuroscience Bulletin 2023;39(7):1117-1130
		                        		
		                        			
		                        			Resveratrol (RES), a natural polyphenolic phytochemical, has been suggested as a putative anti-aging molecule for the prevention and treatment of Alzheimer's disease (AD) by the activation of sirtuin 1 (Sirt1/Sir2). In this study, we tested the effects of RES and Sirt1/Sir2 on sleep and courtship memory in a Drosophila model by overexpression of amyloid precursor protein (APP), whose duplications and mutations cause familial AD. We found a mild but significant transcriptional increase of Drosophila Sir2 (dSir2) by RES supplementation for up to 17 days in APP flies, but not for 7 days. RES and dSir2 almost completely reversed the sleep and memory deficits in APP flies. We further demonstrated that dSir2 acts as a sleep promotor in Drosophila neurons. Interestingly, RES increased sleep in the absence of dSir2 in dSir2-null mutants, and RES further enhanced sleep when dSir2 was either overexpressed or knocked down in APP flies. Finally, we showed that Aβ aggregates in APP flies were reduced by RES and dSir2, probably via inhibiting Drosophila β-secretase (dBACE). Our data suggest that RES rescues the APP-induced behavioral deficits and Aβ burden largely, but not exclusively, via dSir2.
		                        		
		                        		
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Alzheimer Disease/metabolism*
		                        			;
		                        		
		                        			Amyloid beta-Peptides
		                        			;
		                        		
		                        			Amyloid beta-Protein Precursor/metabolism*
		                        			;
		                        		
		                        			Drosophila/physiology*
		                        			;
		                        		
		                        			Drosophila Proteins/metabolism*
		                        			;
		                        		
		                        			Resveratrol/pharmacology*
		                        			;
		                        		
		                        			Sirtuin 1
		                        			;
		                        		
		                        			Sleep
		                        			
		                        		
		                        	
6.Knock-down of ROCK2 gene improves cognitive function and reduces neuronal apoptosis in AD mice by promoting mitochondrial fusion and inhibiting its division.
Minfang GUO ; Huiyu ZHANG ; Peijun ZHANG ; Jingwen YU ; Tao MENG ; Suyao LI ; Lijuan SONG ; Zhi CHAI ; Jiezhong YU ; Cungen MA
Chinese Journal of Cellular and Molecular Immunology 2023;39(8):701-707
		                        		
		                        			
		                        			Objective To explore the effect of knocking down Rho-associated coiled-coil kinase (ROCK2) gene on the cognitive function of amyloid precursor protein/presenilin-1 (APP/PS1) double transgenic mice and its mechanism. Methods APP/PS1 double transgenic mice were randomly divided into AD model group (AD group), ROCK2 gene knock-down group (shROCK2 group), ROCK2 gene knock-down control group (shNCgroup), and wild-type C57BL/6 mice of the same age served as the wild-type control (WT group). Morris water maze and Y maze were employed to test the cognitive function of mice. Neuron morphology was detected by Nissl staining. Immunofluorescence histochemical staining was used to detect the expression of phosphorylated dynamin-related protein 1 (p-Drp1) and mitochondrial fusion 1 (Mfn1). Western blot analysis was used to detect the expression ROCK2, cleaved-caspase-3 (c-caspase-3), B-cell lymphoma 2 (Bcl2), Bcl2-related protein X (BAX), p-Drp1, mitochondrial fission 1 (Fis1), optic atrophy 1 (OPA1), Mfn1 and Mfn2. Results Compared with AD group mice, the expression of ROCK2 in shROCK2 group mice was significantly reduced; the cognitive function was significantly improved with the number of neurons in the hippocampal CA3 and DG areas increasing, and nissl bodies were deeply stained; the expression of c-caspase-3 and BAX was decreased, while the expression of Bcl2 was increased; the expression of mitochondrial division related proteins p-Drp1 and Fis1 were decreased, while the expression of mitochondrial fusion-related proteins OPA1, Mfn1 and Mfn2 were increased. Conclusion Knock-down of ROCK2 gene can significantly improve the cognitive function and inhibit the apoptosis of nerve cells of APP/PS1 mice. The mechanism may be related to promoting mitochondrial fusion and inhibiting its division.
		                        		
		                        		
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Mice
		                        			;
		                        		
		                        			Alzheimer Disease/pathology*
		                        			;
		                        		
		                        			Amyloid beta-Peptides/metabolism*
		                        			;
		                        		
		                        			Amyloid beta-Protein Precursor
		                        			;
		                        		
		                        			Apoptosis/genetics*
		                        			;
		                        		
		                        			bcl-2-Associated X Protein
		                        			;
		                        		
		                        			Caspase 3
		                        			;
		                        		
		                        			Cognition
		                        			;
		                        		
		                        			Disease Models, Animal
		                        			;
		                        		
		                        			Mice, Inbred C57BL
		                        			;
		                        		
		                        			Mice, Transgenic
		                        			;
		                        		
		                        			Mitochondrial Dynamics/genetics*
		                        			
		                        		
		                        	
7.DJ1 Ameliorates AD-like Pathology in the Hippocampus of APP/PS1 Mice.
Yang Yang PENG ; Meng Xin LI ; Wen Jie LI ; Yuan XUE ; Yu Fan MIAO ; Yu Lin WANG ; Xiao Chen FAN ; Lu Lu TANG ; Han Lu SONG ; Qian ZHANG ; Xing LI
Biomedical and Environmental Sciences 2023;36(11):1028-1044
		                        		
		                        			OBJECTIVE:
		                        			To explore whether the protein Deglycase protein 1 (DJ1) can ameliorate Alzheimer's disease (AD)-like pathology in Amyloid Precursor Protein/Presenilin 1 (APP/PS1) double transgenic mice and its possible mechanism to provide a theoretical basis for exploring the pathogenesis of AD.
		                        		
		                        			METHODS:
		                        			Adeno-associated viral vectors (AAV) of DJ1-overexpression or DJ1-knockdown were injected into the hippocampus of 7-month-old APP/PS1 mice to construct models of overexpression or knockdown. Mice were divided into the AD model control group (MC), AAV vector control group (NC), DJ1-overexpression group (DJ1 +), and DJ1-knockdown group (DJ1 -). After 21 days, the Morris water maze test, immunohistochemistry, immunofluorescence, and western blotting were used to evaluate the effects of DJ1 on mice.
		                        		
		                        			RESULTS:
		                        			DJ1 + overexpression decreased the latency and increased the number of platform traversals in the water maze test. DJ1 - cells were cured and atrophied, and the intercellular structure was relaxed; the number of age spots and the expression of AD-related proteins were significantly increased. DJ1 + increased the protein expression of Nuclear factor erythroid 2-related factor 2 (NRF2), heme oxygenase-1 (HO-1), light chain 3 (LC3), phosphorylated AMPK (p-AMPK), and B cell lymphoma-2 (BCL-2), as well as the antioxidant levels of total superoxide dismutase (T-SOD), total antioxidant capacity (T-AOC), and Glutathione peroxidase (GSH-PX), while decreasing the levels of Kelch-like hydrates-associated protein 1 (Keap1), mammalian target of rapamycin (mTOR), p62/sequestosome1 (p62/SQSTM1), Caspase3, and malondialdehyde (MDA).
		                        		
		                        			CONCLUSION
		                        			DJ1-overexpression can ameliorate learning, memory, and AD-like pathology in APP/PS1 mice, which may be related to the activation of the NRF2/HO-1 and AMPK/mTOR pathways by DJ1.
		                        		
		                        		
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Mice
		                        			;
		                        		
		                        			Alzheimer Disease/therapy*
		                        			;
		                        		
		                        			AMP-Activated Protein Kinases/metabolism*
		                        			;
		                        		
		                        			Amyloid beta-Protein Precursor/metabolism*
		                        			;
		                        		
		                        			Antioxidants/metabolism*
		                        			;
		                        		
		                        			Disease Models, Animal
		                        			;
		                        		
		                        			Hippocampus/metabolism*
		                        			;
		                        		
		                        			Kelch-Like ECH-Associated Protein 1/metabolism*
		                        			;
		                        		
		                        			Mammals/metabolism*
		                        			;
		                        		
		                        			Mice, Inbred C57BL
		                        			;
		                        		
		                        			Mice, Transgenic
		                        			;
		                        		
		                        			NF-E2-Related Factor 2/metabolism*
		                        			;
		                        		
		                        			Presenilin-1/metabolism*
		                        			;
		                        		
		                        			TOR Serine-Threonine Kinases/metabolism*
		                        			
		                        		
		                        	
8.Polysaccharide Krestin Prevents Alzheimer's Disease-type Pathology and Cognitive Deficits by Enhancing Monocyte Amyloid-β Processing.
Si-Han CHEN ; Chen-Yang HE ; Ying-Ying SHEN ; Gui-Hua ZENG ; Ding-Yuan TIAN ; Yuan CHENG ; Man-Yu XU ; Dong-Yu FAN ; Cheng-Rong TAN ; An-Yu SHI ; Xian-Le BU ; Yan-Jiang WANG
Neuroscience Bulletin 2022;38(3):290-302
		                        		
		                        			
		                        			Deficits in the clearance of amyloid β protein (Aβ) by the peripheral system play a critical role in the pathogenesis of sporadic Alzheimer's disease (AD). Impaired uptake of Aβ by dysfunctional monocytes is deemed to be one of the major mechanisms underlying deficient peripheral Aβ clearance in AD. In the current study, flow cytometry and biochemical and behavioral techniques were applied to investigate the effects of polysaccharide krestin (PSK) on AD-related pathology in vitro and in vivo. We found that PSK, widely used in therapy for various cancers, has the potential to enhance Aβ uptake and intracellular processing by human monocytes in vitro. After administration of PSK by intraperitoneal injection, APP/PS1 mice performed better in behavioral tests, along with reduced Aβ deposition, neuroinflammation, neuronal loss, and tau hyperphosphorylation. These results suggest that PSK holds promise as a preventive agent for AD by strengthening the Aβ clearance by blood monocytes and alleviating AD-like pathology.
		                        		
		                        		
		                        		
		                        			Alzheimer Disease/pathology*
		                        			;
		                        		
		                        			Amyloid beta-Peptides/metabolism*
		                        			;
		                        		
		                        			Amyloid beta-Protein Precursor/metabolism*
		                        			;
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Cognition
		                        			;
		                        		
		                        			Disease Models, Animal
		                        			;
		                        		
		                        			Mice
		                        			;
		                        		
		                        			Mice, Transgenic
		                        			;
		                        		
		                        			Monocytes/pathology*
		                        			;
		                        		
		                        			Polysaccharides/therapeutic use*
		                        			;
		                        		
		                        			Proteoglycans
		                        			
		                        		
		                        	
9.circBIRC6 contributes to the development of non-small cell lung cancer via regulating microRNA-217/amyloid beta precursor protein binding protein 2 axis.
Da NI ; Jiping TENG ; Youshuang CHENG ; Zhijun ZHU ; Bufeng ZHUANG ; Zhiyin YANG
Chinese Medical Journal 2022;135(6):714-723
		                        		
		                        			BACKGROUND:
		                        			Circular RNAs (circRNAs) are considered to be important regulators in cancer biology. In this study, we focused on the effect of circRNA baculoviral inhibitor of apoptosis protein (IAP) repeat containing 6 (circBIRC6) on non-small cell lung cancer (NSCLC) progression.
		                        		
		                        			METHODS:
		                        			The NSCLC and adjacent non-tumor tissues were collected at Shanghai Ninth People's Hospital. Quantitative real-time polymerase chain reaction was conducted for assessing the levels of circBIRC6, amyloid beta precursor protein binding protein 2 (APPBP2) messenger RNA (mRNA), baculoviral IAP repeat containing 6 mRNA (BIRC6), and microRNA-217 (miR-217). Western blot assay was adopted for measuring the protein levels of APPBP2, E-cadherin, N-cadherin, and vimentin. Colony formation assay, transwell assay, and flow cytometry analysis were utilized for evaluating cell colony formation, metastasis, and apoptosis. Dualluciferase reporter assay and RNA immunoprecipitation assay were carried out to determine the interaction between miR-217 and circBIRC6 and APPBP2 in NSCLC tissues. The murine xenograft model assay was used to investigate the function of circBIRC6 in tumor formation in vivo. Differences were analyzed via Student's t test or one-way analysis of variance. Pearson's correlation coefficient analysis was used to analyze linear correlation.
		                        		
		                        			RESULTS:
		                        			CircBIRC6 was overexpressed in NSCLC tissues and cells. Knockdown of circBIRC6 repressed the colony formation and metastasis and facilitated apoptosis of NSCLC cells in vitro and restrained tumorigenesis in vivo. Mechanically, circBIRC6 functioned as miR-217 sponge to promote APPBP2 expression in NSCLC cells. MiR-217 inhibition rescued circBIRC6 knockdown-mediated effects on NSCLC cell colony formation, metastasis, and apoptosis. Overexpression of miR-217 inhibited the malignant phenotypes of NSCLC cells, while the effects were abrogated by elevating APPBP2.
		                        		
		                        			CONCLUSIONS
		                        			CircBIRC6 aggravated NSCLC cell progression by elevating APPBP2 via sponging miR-217, which might provide a fresh perspective on NSCLC therapy.
		                        		
		                        		
		                        		
		                        			Amyloid beta-Peptides/metabolism*
		                        			;
		                        		
		                        			Amyloid beta-Protein Precursor/metabolism*
		                        			;
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Carcinoma, Non-Small-Cell Lung/pathology*
		                        			;
		                        		
		                        			Cell Movement/genetics*
		                        			;
		                        		
		                        			Cell Proliferation/genetics*
		                        			;
		                        		
		                        			China
		                        			;
		                        		
		                        			Gene Expression Regulation, Neoplastic/genetics*
		                        			;
		                        		
		                        			Humans
		                        			;
		                        		
		                        			Lung Neoplasms/pathology*
		                        			;
		                        		
		                        			Mice
		                        			;
		                        		
		                        			MicroRNAs/metabolism*
		                        			;
		                        		
		                        			RNA, Circular/genetics*
		                        			;
		                        		
		                        			RNA, Messenger
		                        			
		                        		
		                        	
10.Time dependent expression profiling of PTK2B and its relationship with Aβ, Tau and LRP-1 in hippocampus and blood of APPswe/PS1dE9 double-transgenic mouse.
Kai-Min HAO ; Zhen LIU ; Hao-Yu WANG ; Wen-Xiu QI
Chinese Journal of Applied Physiology 2022;38(1):17-24
		                        		
		                        			
		                        			Objective: To uncover the time-dependent expression pattern of ptk2b gene and ptk2b-encoded protein, protein tyrosine kinase 2 beta(PTK2B), in the brain tissues of transgenic animal models of Alzheimer's disease (AD) and its relationship with the levels of Aβ1-42, phosphorylation of Tau (p-Tau) and low density lipoprotein receptor-related protein-1(LRP-1) in blood and brain tissues. Methods: In this study, 5-, 10- and 15-month-old APPswe/PS1dE9 double-transgenic mice harboring the genotype of AD confirmed by the gene test were divided into the 5-, 10- and 15-month-old experiment groups, and simultaneously, age-matched C57BL/6J mice were placed into the corresponding control groups, with 8 mice in each group. All mice were subjected to the Morris Water Maze for test of cognitive and behavioral ability. Expression profiles of PTK2B, Aβ1-42, p-Tau/Tau and LRP-1 in the hippocampus or blood of mice were quantified by using the immunohistochemistry staining, Western blot or enzyme-linked immunosorbent assay (ELISA), while the mRNA expression of ptk2b in the hippocampus was quantified by using the real-time quantitative polymerase chain reaction (qRT-PCR). Results: Results of experiment groups demonstrated that as mice aged, the expression levels of PTK2B, ptk2b mRNA, Aβ1-42 and p-Tau/Tau in the hippocampus were increased, and the expression of LRP-1 was decreased gradually. While in the blood, the level of Aβ1-42 was decreased, and the cognitive and behavioral ability was decreased in an age-dependent manner (all P< 0.05). However, comparisons among the control groups, only the age-dependent downregulation of LRP-1 were observed in hippocampus(P<0.05), but other indicators had no significant differences (P>0.05). Conclusion: In the hippocampus of APP/PS1 double-transgenic mice, the expressions of PTK2B, Aβ1-42 and p-Tau/Tau are upregulated, LRP-1 is downregulated, while cognitive and behavioral ability is decreased, and such changes are presented in a time-dependent manner.
		                        		
		                        		
		                        		
		                        			Alzheimer Disease/metabolism*
		                        			;
		                        		
		                        			Amyloid beta-Peptides
		                        			;
		                        		
		                        			Amyloid beta-Protein Precursor/genetics*
		                        			;
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Focal Adhesion Kinase 2/metabolism*
		                        			;
		                        		
		                        			Hippocampus/metabolism*
		                        			;
		                        		
		                        			Low Density Lipoprotein Receptor-Related Protein-1
		                        			;
		                        		
		                        			Maze Learning
		                        			;
		                        		
		                        			Mice
		                        			;
		                        		
		                        			Mice, Inbred C57BL
		                        			;
		                        		
		                        			Mice, Transgenic
		                        			;
		                        		
		                        			RNA, Messenger
		                        			
		                        		
		                        	
            
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