Sensitive Multiplexed Quantitative Analysis of Autoantibodies to Cancer Antigens with Chemically S-Cationized Full-Length and Water-Soluble Denatured Proteins

2015 ◽  
Vol 26 (10) ◽  
pp. 2076-2084 ◽  
Author(s):  
Junichiro Futami ◽  
Hidenori Nonomura ◽  
Momoko Kido ◽  
Naomi Niidoi ◽  
Nao Fujieda ◽  
...  
2019 ◽  
Vol 70 (10) ◽  
pp. 3555-3560
Author(s):  
Costinela Valerica Georgescu ◽  
Cristian Catalin Gavat ◽  
Doina Carina Voinescu

Ascorbic acid is a water-soluble vitamin provided with strong antioxidant action, that fulfills an important immune protective role of the body against infections and prevents various cancers appearance. The main goal of this study was to exactly quantify pure ascorbic acid in tablets of two pharmaceuticals. Proposed objective consisted in improvement and application of a iodometric titration method in ascorbic acid quantitative analysis. Ascorbic acid content per tablet in both studied pharmaceuticals was 173.84 mg, very close to official stated amount of active substance (180 mg). Allowed percentage deviation from declared content of pure ascorbic acid was only 3.42 %, below maximum value of � 5 % imposed by Romanian Pharmacopoeia 10-th Edition, according to European and International standards. Statistical analysis confirmed experimental obtained results and revealed low Standard Error value SE = 0.214476, which has fallen within normal limits. Confidence Level value (95.0 %) = 0.551328 and Standard Deviation SD = 0.525357. were within normal range of values. Relative Standard Deviation (Coefficient of variation or homogeneity) RSD = 26.268% was found below maximum range of accepted values (30-35%). P value = 7.44. 10-6 was located within normal limits, P [ 0.001, so the experimental obtained results has shown highest statistical significance. Thus, studied titration method can be successfully used in quantitative analysis of ascorbic acid from different samples.


iScience ◽  
2020 ◽  
Vol 23 (12) ◽  
pp. 101670
Author(s):  
Rui Qing ◽  
Fei Tao ◽  
Pranam Chatterjee ◽  
Gaojie Yang ◽  
Qiuyi Han ◽  
...  

1991 ◽  
Vol 40 (12) ◽  
pp. 1100-1104
Author(s):  
Hideo NOGUCHI ◽  
Naoki NISHIKAWA ◽  
Yoshitaka MANDAI ◽  
Haruo YOSHIMURA ◽  
Shigeru HASHIMOTO

2019 ◽  
Vol 38 (14) ◽  
pp. 4364-4370 ◽  
Author(s):  
Jin Xi ◽  
Jie Xiao ◽  
Jose Manuel Perez-Aguilar ◽  
Jinglei Ping ◽  
A.T. Charlie Johnson ◽  
...  

2020 ◽  
Vol 47 (1) ◽  
pp. 78-89
Author(s):  
Daen Kim ◽  
Beunggu Son ◽  
Youngwhan Choi ◽  
Jumsoon Kang ◽  
Yongjae Lee ◽  
...  

Genetics ◽  
2019 ◽  
Vol 214 (2) ◽  
pp. 447-465 ◽  
Author(s):  
Robert G. Wisotzkey ◽  
Stuart J. Newfeld

Evolutionary relationships between prodomains in the TGF-β family have gone unanalyzed due to a perceived lack of conservation. We developed a novel approach, identified these relationships, and suggest hypotheses for new regulatory mechanisms in TGF-β signaling. First, a quantitative analysis placed each family member from flies, mice, and nematodes into the Activin, BMP, or TGF-β subfamily. Second, we defined the prodomain and ligand via the consensus cleavage site. Third, we generated alignments and trees from the prodomain, ligand, and full-length sequences independently for each subfamily. Prodomain alignments revealed that six structural features of 17 are well conserved: three in the straitjacket and three in the arm. Alignments also revealed unexpected cysteine conservation in the “LTBP-Association region” upstream of the straitjacket and in β8 of the bowtie in 14 proteins from all three subfamilies. In prodomain trees, eight clusters across all three subfamilies were present that were not seen in the ligand or full-length trees, suggesting prodomain-mediated cross-subfamily heterodimerization. Consistency between cysteine conservation and prodomain clustering provides support for heterodimerization predictions. Overall, our analysis suggests that cross-subfamily interactions are more common than currently appreciated and our predictions generate numerous testable hypotheses about TGF-β function and evolution.


2015 ◽  
Vol 58 (4) ◽  
Author(s):  
Bao Yu Zhang ◽  
Zhao Jun Hou ◽  
Guang Ce Wang ◽  
Guang Peng

AbstractMalate dehydrogenase (MDH) is an enzyme that catalyzes the interconversion of malate and oxaloacetate substrates and is widely distributed from prokaryotes to eukaryotes. It plays crucial roles in many important metabolic pathways and includes different isoforms based on coenzyme specificity and cellular localization. To study MDH in rhodophytes, we obtained a full-length cDNA clone (here designated


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