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Biology subjects

Hohmann, A.

Publications and source records attributed to Hohmann, A..

2 recordsLinked to original sources

Rational design of a SOCS1-edited tumor infiltrating lymphocyte therapy for solid tumors using CRISPR/Cas9 screens

Cell therapies such as Tumor Infiltrating Lymphocyte (TIL) therapy have shown promise in the treatment of patients with refractory solid tumors, with improvement in response rates and durability of responses nevertheless sought. To identify targets capable of enhancing the anti-tumor activity of T cell therapies, large-scale in vitro and in vivo CRISPR/Cas9 screens were performed, with the suppressor of cytokine signaling 1 (SOCS1) gene identified as a top T cell-enhancing target. In murine CD8 T cell therapy models, SOCS1 served as a critical checkpoint in restraining the accumulation of T central memory cells in lymphoid organs as well as intermediate (Texint) and effector (Texeff) exhausted T cell subsets derived from progenitor exhausted T cell (Texprog) cells in tumors. A comprehensive CRISPR tiling screen of the SOCS1 coding region identified sgRNAs targeting the SH2 domain of SOCS1 as the most potent, with a sgRNA with minimal off-target cut sites used to manufacture KSQ-001, an engineered TIL therapy with SOCS1 inactivated by CRISPR/Cas9. KSQ-001 possessed increased responsiveness to cytokine signals and enhanced in vivo anti-tumor function in mouse models. These data demonstrate the use of CRISPR/Cas9 screens in the rational design of T cell therapies.

immunology↗

Physical fitness and motor competence performance characteristics of elite Chinese youth athletes from four track and field throwing disciplines - a cross sectional study

PurposeSystematic athletic training during adolescence may facilitate the development of sport-specific skills and the expression of sport-specific physical characteristics in young athletes. The aim of this study was to differentiate male athletes aged 14-17 years from four different throwing disciplines using anthropomorphic measurements and motor competence performance tests, in order to test whether athletes from different disciplines have physical form and fitness characteristics consistent with the sport-specific demands of each throwing discipline. MethodsThe sample consisted of 289 male youth athletes belonging to the four different throwing disciplines: shot put (n=101), hammer throw (n=16), discus throw (n=63), and javelin throw (n=109). The performance diagnosis comprised three anthropometric measurements, and twelve physical fitness tests. Discriminant analysis and neural network (Multilayer Perceptron) were used to test whether it is possible to discriminate between athletes of the four sports. ResultsThe results of this study show that for male throwing athletes aged 14-17 years, differences in generic anthropometric and sport performance tests distinguish the talent of more than two-thirds of young athletes based on individual sport (DA: 68.7%; MLP: 72.2%), regardless of the classification method used. ConclusionThe relevance of the three anthropometric parameters and twelve physical fitness measures for talent identification and training monitoring in the track and field throwing disciplines was confirmed. The discus throwers had a height advantage, the shot putters and hammer throwers had better arm strength, while the javelin throwers had better explosive strength and sprint speed. All events, except the hammer throwers, showed a high level of explosive power in the medicine ball forward or backward throw test. This was particularly important for the shot put and discus athletes.

physiology↗