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1.
Preprint en Inglés | bioRxiv | ID: ppbiorxiv-249086

RESUMEN

Antibody repertoire refers to the totality of the superbly diversified antibodies within an individual to cope with the vast array of possible pathogens. Despite this extreme diversity, antibodies of the same clonotype, namely public clones, have been discovered among individuals. Although some public clones could be explained by antibody convergence, public clones in naive repertoire or virus-neutralizing clones from not infected people were also discovered. All these findings indicated that public clones might not occur by random and they might exert essential functions. However, the frequencies and functions of public clones in a population have never been studied. Here, we integrated 2,449 Rep-seq datasets from 767 donors and discovered 5.07 million public clones - ~10% of the repertoire are public in population. We found 38 therapeutic clones out of 3,390 annotated public clones including anti-PD1 clones in healthy people. Moreover, we also revealed clones neutralizing SARS-CoV-2, Ebola, and HIV-1 viruses in healthy individuals. Our result demonstrated that these clones are predisposed in the human antibody repertoire and may exert critical functions during particular immunological stimuli and consequently benefit the donors. We also implemented RAPID - a Rep-seq Analysis Platform with Integrated Databases, which may serve as a useful tool for others in the field.

2.
Artículo en Chino | WPRIM (Pacífico Occidental) | ID: wpr-707430

RESUMEN

Objective To investigate biomechanical properties of the patella tension plating system in order to provide a theoretical basis for its clinical application. Methods Thirty-six models of artificial patella were randomly divided into 3 groups ( n=12 ) . After transverse patellar fractures were created in the models, the 3 groups were subjected to fixation respectively with Kirschner wire tension band ( tension band group ) , patellar concentrator ( concentrator group ) and patellar tension plate ( tension plate group ) . Next, 6 specimens from each group were placed on a mechanical testing machine to measure the fracture displacements after 100 cycles of simulated knee flexion and extension movements. Tensile strength tests were performed on the remaining 6 specimens in each group to measure the maximum load at fixation failure. Results The fracture displacement in the tension plate group ( 0. 40 ± 0. 26 mm ) was significantly smaller than those in the tension band group ( 2. 58 ± 0. 72 mm ) and in the concentrator group ( 1. 25 ± 0. 74 mm ) ( P < 0. 05 );the maximum load at fixation failure in the tension plate group ( 1 , 709 ± 206 N ) was significantly greater than those in the tension band group ( 581 ± 122 N ) and in the concentrator group ( 1, 003 ± 211 N ) ( P <0. 05 ) . Conclusion As a new treatment for patellar fractures, the patellar tension plating system can perform better in biomechanical properties than Kirschner wire tension band and patellar concentrator.

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