Related Experiment Video

Updated: Feb 27, 2026

An Optimized Hemagglutination Inhibition HI Assay to Quantify Influenza-specific Antibody Titers
06:34

An Optimized Hemagglutination Inhibition HI Assay to Quantify Influenza-specific Antibody Titers

Published on: December 1, 2017

38.2K

Ibrutinib may impair serological responses to influenza vaccination

Abby P Douglas1,2, Jason A Trubiano1,2, Ian Barr3

  • 1Infectious Diseases Department, Peter MacCallum Cancer Centre, VIC, Australia.

Haematologica
|June 30, 2017
PubMed
Abstract

No abstract available in PubMed .

More Related Videos

A Method to Assess Fc-mediated Effector Functions Induced by Influenza Hemagglutinin Specific Antibodies
04:47

A Method to Assess Fc-mediated Effector Functions Induced by Influenza Hemagglutinin Specific Antibodies

Published on: February 23, 2018

8.2K
Use of an Influenza Antigen Microarray to Measure the Breadth of Serum Antibodies Across Virus Subtypes
08:52

Use of an Influenza Antigen Microarray to Measure the Breadth of Serum Antibodies Across Virus Subtypes

Published on: July 26, 2019

8.7K

Related Experiment Videos

Last Updated: Feb 27, 2026

An Optimized Hemagglutination Inhibition HI Assay to Quantify Influenza-specific Antibody Titers
06:34

An Optimized Hemagglutination Inhibition HI Assay to Quantify Influenza-specific Antibody Titers

Published on: December 1, 2017

38.2K
A Method to Assess Fc-mediated Effector Functions Induced by Influenza Hemagglutinin Specific Antibodies
04:47

A Method to Assess Fc-mediated Effector Functions Induced by Influenza Hemagglutinin Specific Antibodies

Published on: February 23, 2018

8.2K
Use of an Influenza Antigen Microarray to Measure the Breadth of Serum Antibodies Across Virus Subtypes
08:52

Use of an Influenza Antigen Microarray to Measure the Breadth of Serum Antibodies Across Virus Subtypes

Published on: July 26, 2019

8.7K

Related Concept Videos

Immunodeficiency Diseases01:25

Immunodeficiency Diseases

2.7K
Immunodeficiency disorders are conditions in which the immune system's ability to fight infectious disease and cancer is compromised or entirely absent. The immune system comprises a complex network of cells, tissues, and organs that work together to protect the body from potentially harmful invaders. When this system is deficient or not functioning properly, it leaves the body susceptible to infections, diseases, or other complications.
There are three main causes of immunodeficiency...
2.7K
Humoral Immune Responses01:36

Humoral Immune Responses

84.6K
Overview
84.6K
Immune Response Against Viral Pathogens01:29

Immune Response Against Viral Pathogens

2.2K
The immune system's response to viral infections is a complex and coordinated process involving natural killer (NK) cells, T cell-mediated responses, and antibody-mediated responses.
NK Cells
NK cells are a crucial part of our innate immune system, acting as the first line of defense against viral infections. These cells can recognize and kill infected cells without prior exposure to the virus, effectively slowing down the spread of infection. Additionally, NK cells produce proinflammatory...
2.2K

Articles linked to this work by shared authors, journal, and citation graph.

Report on influenza viruses received and tested by the Melbourne WHO Collaborating Centre for Reference and Research on Influenza during 2025.

Communicable diseases intelligence (2018)·2026

LTB-TREAT: A validated international prognostic model for time to treatment in low tumour burden follicular lymphoma.

British journal of haematology·2026

Richter transformation: emerging immunologic strategies beyond chemoimmunotherapy.

Blood advances·2026

Results From the Third and Fourth WHO External Quality Assessments for the Molecular Detection of Respiratory Syncytial Virus.

Influenza and other respiratory viruses·2026

Marginal zone lymphoma is associated with dysregulated T-cell immunity that is not altered by ibrutinib-venetoclax treatment.

Blood neoplasia·2026

Estimated cardiac deaths associated with treating chronic lymphocytic leukemia with ibrutinib versus zanubrutinib in the United States.

Future oncology (London, England)·2026

Cusatuzumab combined with venetoclax with or without azacitidine in unfit patients with newly diagnosed acute myeloid leukemia: phase Ib ELEVATE study.

Haematologica·2026

Surveying survival: benchmarking acute myeloid leukemia outcomes without transplant.

Haematologica·2026

Measurable residual KMT2A partial tandem duplication before allogeneic stem cell transplantation in acute myeloid leukemia.

Haematologica·2026

Normal platelet function in a patient with ARHGEF1 deficiency.

Haematologica·2026

Bone marrow biopsy characteristics at nadir after intensive induction therapy do not predict outcomes in adult acute myeloid leukemia patients: an analysis of ECOG-ACRIN clinical trials.

Haematologica·2026

Efficacy and safety of bridging therapy prior to CAR T-cell therapy in relapsed or refractory multiple myeloma.

Haematologica·2026
See all related articles
JoVE
x logofacebook logolinkedin logoyoutube logo
ABOUT JoVE
OverviewLeadershipBlogJoVE Help Center
AUTHORS
Publishing ProcessEditorial BoardScope & PoliciesPeer ReviewFAQSubmit
LIBRARIANS
TestimonialsSubscriptionsAccessResourcesLibrary Advisory BoardFAQ
RESEARCH
JoVE JournalMethods CollectionsJoVE Encyclopedia of ExperimentsArchive
EDUCATION
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab ManualFaculty Resource CenterFaculty Site
Terms & Conditions of Use
Privacy Policy
Policies
Jove
Visualize
Contact Us