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XiuYu Xu,Qun Zhang,Jiangping Meng,Yiping Wang,Jie Zheng,Kaifeng Wu,Xuemei Zhang,Yibing Yin 한국미생물학회 2014 The journal of microbiology Vol.52 No.4
The 23-valent polysaccharide vaccine and the 7-valent pneumococcalconjugate vaccine are licensed vaccines that protectagainst pneumococcal infections worldwide. However,the incidence of pneumococcal diseases remains high in lowincomecountries. Whole-cell vaccines with high safety andstrong immunogenicity may be a favorable choice. We previouslyobtained a capsule-deficient Streptococcus pneumoniaemutant named SPY1 derived from strain D39. As anattenuated live pneumococcal vaccine, intranasal immunizationwith SPY1 elicits broad serotype-independent protectionagainst pneumococcal infection. In this study, forsafety consideration, we inactivated SPY1 with 70% ethanoland intranasally immunized BALB/c mice with killed SPY1plus cholera toxin adjuvant for four times. Results showedthat intranasal immunization with inactivated SPY1 inducedstrong humoral and cellular immune responses. Intranasalimmunization with inactivated SPY1 plus cholera toxin adjuvantelicited effective serotype-independent protection againstthe colonization of pneumococcal strains 19F and 4 as well aslethal infection of pneumococcal serotypes 2, 3, 14, and 6B. The protection rates provided by inactivated SPY1 againstlethal pneumococcal infection were comparable to those ofcurrently used polysaccharide vaccines. In addition, vaccinespecificB-cell and T-cell immune responses mediated theprotection elicited by SPY1. In conclusion, the 70% ethanolinactivatedpneumococcal whole-cell vaccine SPY1 is a potentiallysafe and less complex vaccine strategy that offersbroad protection against S. pneumoniae.
SP0454, A Putative Threonine Dehydratase, Is Required For Pneumococcal Virulence In Mice
WenJuan Yan,Hong Wang,WenChun Xu,KaiFeng Wu,Run Yao,XiuYu Xu,Jie Dong,YanQing Zhang,Wen Zhong,XueMei Zhang 한국미생물학회 2012 The journal of microbiology Vol.50 No.3
Increasing pressure in antibiotic resistance and the requirement for the design of new vaccines are the objectives of clarifying the putative virulence factors in pneumococcal infection. In this study, the putative threonine dehydratase sp0454 was inactivated by erythromycin-resistance cassette replacement in Streptococcus pneumoniae CMCC 31203 strain. The sp0454 mutant was tested for cell growth, adherence, colonization, and virulence in a murine model. The Δsp0454 mutant showed decreased ability for colonization and impaired ability to adhere to A549 cells. However, the SP0454 polypeptide or its antiserum did not affect pneumococcal CMCC 31203 adhesion to A549 cells. The sp0454 deletion mutant was less virulent in a murine intranasal infection model. Real-time RT-PCR analysis revealed significant decrease of the pneumococcal surface antigen A expression in the sp0454 mutant. These results suggest that SP0454 contributes to virulence and colonization, which could be explained in part by modulating the expression of other virulence factors, such as psaA in pneumococcal infection.
Zhao Le,Yu Shihui,Li Junjun,Song Zichen,Wu Muying,Wang Xiuyu,Wang Xiaohu 한국물리학회 2021 Current Applied Physics Vol.31 No.-
The high sensitivity flexible capacitive pressure sensor (FCPS) manufactured in a fast and efficient way has friendly man-machine interaction function. In this paper, a high-sensitivity FCPS is developed by using a twostep template method to reproduce biomimetic microtower polydimethylsiloxane (PDMS) from the lotus leaf surface. The capacitive sensor is composed of a PDMS dielectric layer and the Cu nanowire electrodes sandwiching in the middle, with a high sensitivity of ~1.207 kPa 1, a low detection limit of less than 0.02 kPa and a fast response time of 61.6 ms. Particularly, the sensing performance can be kept basically unchanged when bent at a 5 mm radius. Moreover, the FCPS can withstand 4000 repeated tests and maintain stable performance, and the sensitivity is almost the same in the process of loading and unloading, suggesting the high robustness. These results demonstrates the FCPSs have potential applications in electronic wearables, human health monitoring and uneven surface applications.