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T Keating

Showing results (201-210 of 213) with videos related to

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Haematologica|March 10, 2022
Tesidolumab (LFG316) for treatment of C5-variant patients with paroxysmal nocturnal hemoglobinuriaJun-Ichi Nishimura, Kiyoshi Ando, Masayoshi Masuko, et al.
Plos Neglected Tropical Diseases|February 6, 2020
Genetic variation in Interleukin-32 influence the immune response against New World Leishmania species and susceptibility to American Tegumentary LeishmaniasisJéssica Cristina Dos Santos, Valéria Bernadete Leite Quixabeira, Muriel Vilela Teodoro Silva, et al.
Journal of Leukocyte Biology|January 18, 2022
Immune modulatory effects of progesterone on oxLDL-induced trained immunity in monocytesLaszlo A Groh, Dagmar E Verel, Charlotte D C C van der Heijden, et al.
Circulation|January 11, 2000
Spectrum of ST-T-wave patterns and repolarization parameters in congenital long-QT syndrome: ECG findings identify genotypesL Zhang, K W Timothy, G M Vincent, et al.
Arthritis Research & Therapy|July 29, 2021
Urate-induced epigenetic modifications in myeloid cellsM Badii, O I Gaal, M C Cleophas, et al.
Immunology|November 1, 2019
The role of Toll-like receptor 10 in modulation of trained immunityVera P Mourits, Rob J W Arts, Boris Novakovic, et al.
Cell Reports|September 5, 2019
β-Glucan-Induced Trained Immunity Protects against Leishmania braziliensis Infection: a Crucial Role for IL-32Jéssica Cristina Dos Santos, Ana Marina Barroso de Figueiredo, Muriel Vilela Teodoro Silva, et al.
Immunometabolism|July 16, 2021
oxLDL-Induced Trained Immunity Is Dependent on Mitochondrial Metabolic ReprogrammingLaszlo A Groh, Anaisa V Ferreira, Leonie Helder, et al.
Circulation|January 4, 2001
Genotype-phenotype correlation in the long-QT syndrome: gene-specific triggers for life-threatening arrhythmiasP J Schwartz, S G Priori, C Spazzolini, et al.
Journal of Molecular Medicine (Berlin, Germany)|June 13, 2020
Correction to: Rewiring of glucose metabolism defines trained immunity induced by oxidized low-density lipoproteinSamuel T Keating, Laszlo Groh, Kathrin Thiem, et al.
Pageof 22

Showing results (201-210 of 213) with videos related to

Sort By:
Pageof 22
Haematologica|March 10, 2022
Tesidolumab (LFG316) for treatment of C5-variant patients with paroxysmal nocturnal hemoglobinuriaJun-Ichi Nishimura, Kiyoshi Ando, Masayoshi Masuko, et al.
Plos Neglected Tropical Diseases|February 6, 2020
Genetic variation in Interleukin-32 influence the immune response against New World Leishmania species and susceptibility to American Tegumentary LeishmaniasisJéssica Cristina Dos Santos, Valéria Bernadete Leite Quixabeira, Muriel Vilela Teodoro Silva, et al.
Journal of Leukocyte Biology|January 18, 2022
Immune modulatory effects of progesterone on oxLDL-induced trained immunity in monocytesLaszlo A Groh, Dagmar E Verel, Charlotte D C C van der Heijden, et al.
Circulation|January 11, 2000
Spectrum of ST-T-wave patterns and repolarization parameters in congenital long-QT syndrome: ECG findings identify genotypesL Zhang, K W Timothy, G M Vincent, et al.
Arthritis Research & Therapy|July 29, 2021
Urate-induced epigenetic modifications in myeloid cellsM Badii, O I Gaal, M C Cleophas, et al.
Immunology|November 1, 2019
The role of Toll-like receptor 10 in modulation of trained immunityVera P Mourits, Rob J W Arts, Boris Novakovic, et al.
Cell Reports|September 5, 2019
β-Glucan-Induced Trained Immunity Protects against Leishmania braziliensis Infection: a Crucial Role for IL-32Jéssica Cristina Dos Santos, Ana Marina Barroso de Figueiredo, Muriel Vilela Teodoro Silva, et al.
Immunometabolism|July 16, 2021
oxLDL-Induced Trained Immunity Is Dependent on Mitochondrial Metabolic ReprogrammingLaszlo A Groh, Anaisa V Ferreira, Leonie Helder, et al.
Circulation|January 4, 2001
Genotype-phenotype correlation in the long-QT syndrome: gene-specific triggers for life-threatening arrhythmiasP J Schwartz, S G Priori, C Spazzolini, et al.
Journal of Molecular Medicine (Berlin, Germany)|June 13, 2020
Correction to: Rewiring of glucose metabolism defines trained immunity induced by oxidized low-density lipoproteinSamuel T Keating, Laszlo Groh, Kathrin Thiem, et al.
Pageof 22