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1.
Molecules ; 29(8)2024 Apr 12.
Article in English | MEDLINE | ID: mdl-38675568

ABSTRACT

Reactions of Co(OAc)2·4H2O, N'N'-bis(3-pyridylmethyl)oxalamide (L) and 4,4'-sulfonyldibenzoic acid (H2SDA) afforded four coordination polymers with the same mixed ligands, {[Co(L)(SDA)(H2O)2]·H2O·CH3OH}n, 1, {[Co(L)0.5(SDA)]·2H2O·0.5L}n, 2, {[Co(L)1.5(SDA)(H2O)]·H2O}n, 3, and {[Co2(L)1.5(SDA)2(H2O)2]·4H2O}n, 4, which have been structurally characterized using single-crystal X-ray crystallography. Complexes 1-4 are 2D layers, revealing topologies of sql, 2,6L1, (4,4)Ia, and 6L12, respectively, and demonstrating that the metal-to-ligand ratio, solvent system, and reaction temperature are important in determining the structural diversity. The immersion of these complexes into various solvents shows that the structural types govern the chemical stabilities of 1-4. Reversible structural transformation is shown for complexes 1 and 2 upon solvent removal and adsorption, while those of 3 and 4 are irreversible.

2.
Mol Med Rep ; 26(3)2022 09.
Article in English | MEDLINE | ID: mdl-35904178

ABSTRACT

The present study aimed to observe the content difference of macrophage migration inhibitory factor [MIF; novoprotein recombinant human MIF (n­6his) (ch33)], TGFß1 and MMP13 in patients with and without ligamentum flavum (LF) hypertrophy and investigate the roles of MIF in LF hypertrophy. The concentration of MIF, TGFß1 and MMP13 in LF were detected by ELISA in a lumbar spinal stenosis (LSS) group and a lumbar disc herniation (LDH) group. Culture of primary LFs and identification were performed for the subsequent study. Cell treatments and cell proliferation assay by CCK­8 was performed. Western blot and quantitative PCR analysis were used to detect the expression of TGFß1, MMP13, type I collagen (COL­1) and type III collagen (COL­3) and Src which were promoted by MIF. The concentration of MIF, TGFß1 and MMP13 were higher in the LSS group compared with the LDH group. Culture of primary LFs and identification were performed. Significant difference in LFs proliferation occurred with treatment by MIF at a concentration of 40 nM for 48 h (P<0.05). The gene and protein expression of TGFß1, MMP13, COL­1, COL­3 and Src were promoted by MIF (P<0.05). Proliferation of LFs was induced by MIF and MIF­induced proliferation of LFs was inhibited by PP1 (a Src inhibitor). MIF may promote the proliferation of LFs through the Src kinase signaling pathway and can promote extracellular matrix changes by its pro­inflammatory effect. MIF and its mediated inflammatory reaction are driving factors of LF hypertrophy.


Subject(s)
Intervertebral Disc Displacement , Ligamentum Flavum , Macrophage Migration-Inhibitory Factors , Spinal Stenosis , Cells, Cultured , Humans , Hypertrophy/metabolism , Intervertebral Disc Displacement/metabolism , Intervertebral Disc Displacement/pathology , Intramolecular Oxidoreductases , Ligamentum Flavum/metabolism , Ligamentum Flavum/pathology , Lumbar Vertebrae/metabolism , Macrophage Migration-Inhibitory Factors/genetics , Macrophage Migration-Inhibitory Factors/metabolism , Matrix Metalloproteinase 13/genetics , Matrix Metalloproteinase 13/metabolism , Spinal Stenosis/metabolism , Spinal Stenosis/pathology , Transforming Growth Factor beta1/genetics , Transforming Growth Factor beta1/metabolism
3.
Arch Virol ; 165(6): 1377-1384, 2020 Jun.
Article in English | MEDLINE | ID: mdl-32296995

ABSTRACT

Parechovirus A (PeV-A), which causes a wide variety of diseases, is prevalent among young children. However, little is currently known about PeV-A infections in children with acute gastroenteritis in mainland China. In this study, we investigated the molecular epidemiology of acute gastroenteritis in Shenzhen, southern China, with an emphasis on PeV-A infections. A total of 1220 stool specimens from 1220 outpatient children under 5 years old with acute gastroenteritis were collected from January 2016 to December 2018. Viral RNA was detected by a real-time RT-PCR and PCR method. The PeV-A isolates were genotyped by sequencing the VP3/VP1 region. Of 1220 specimens, 148 (12.1%) were positive for PeV-A. The predominant genotype was PeV-A 1B (68.9%), followed by PeV-A 4 (12.2%), PeV-A 14 (6.1%), PeV-A 1A (5.4%), PeV-A 6 (2.7%), PeV-A 3 (2.7%) and PeV-A 5 (2.0%). It was found that 68.2% of PeV-A infections occurred in the summer and rainy months (June to September) in southern China. The majority of PeV-A-positive patients (97.3%) were younger than 24 months old. PeV-A coinfection with norovirus, rotavirus, astrovirus and adenovirus was found in thirty specimens (30/148, 20.3%), five specimens (5/148, 3.4%), five specimens (5/148, 3.4%), and two specimens (2/148, 1.4%), respectively. Coinfections with more than one other enteric virus were not observed in any of the PeV-A-positive specimens. Phylogenetic analysis revealed that the PeV-A isolates from Shenzhen were closely related to each other and to strains circulating in China, suggesting endemic circulation of PeV-A in China. The results of this study indicate that PeV-A is one of important pathogens of acute gastroenteritis in young children and that coinfection is a possible mode of PeV-A infection. PeV-A associated with acute gastroenteritis exhibited high genotypic diversity in Shenzhen, southern China.


Subject(s)
Feces/virology , Gastroenteritis/epidemiology , Parechovirus/genetics , Parechovirus/isolation & purification , Picornaviridae Infections/epidemiology , Adenoviridae/isolation & purification , Astroviridae/isolation & purification , Child, Preschool , China/epidemiology , Diarrhea/epidemiology , Diarrhea/virology , Female , Gastroenteritis/virology , Genotype , Humans , Infant , Infant, Newborn , Male , Molecular Epidemiology , Norovirus/isolation & purification , Phylogeny , RNA, Viral/genetics , Real-Time Polymerase Chain Reaction , Rotavirus/isolation & purification
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