Biomaterial Immune Response

Biomaterial immune response is the body’s reaction to a synthetic or natural material introduced for medical or bioengineering purposes, and it strongly influences device safety and performance. After implantation, proteins rapidly adsorb onto the material surface, recruiting innate immune cells such as neutrophils and macrophages; persistent signaling can produce inflammation, foreign body giant cells, and fibrous encapsulation. In bioengineering, analyzing these responses guides the design of implants, scaffolds, biosensors, and drug-delivery systems with improved biocompatibility. Controlling surface chemistry, material structure, and degradation can reduce adverse reactions while supporting tissue integration and long-term therapeutic function.

Biomaterial Immune Response - Related Videos

Education

JoVE Core - Biology

Humoral Immune Responses

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2019

Overview The humoral immune response, also known as the antibody-mediated immune response, targets pathogens circulating in “humors,” or extracellular fluids, such as blood and lymph. Antibodies target invading pathogens for destruction via multiple defense mechanisms, including neutralization, opsonization, and activation of the complement system. Patients that are impaired in the production of antibodies suffer from severe and frequent infections by common pathogens and unusual pathogens. B...

Overview of Biomaterials

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2023

Biomaterials are materials engineered to interact favorably with biological organisms or molecules. These materials can be derived from or produced by an organism, or can even be a synthesized polymer. Engineers use these novel materials in a wide range of applications, such as tissue engineering, biosensing and drug delivery. This video introduces common biologically derived materials, and provides examples of common techniques used to process them. Key challenges in the field are discussed,...

Electrospinning of Silk Biomaterials

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2023

Silk fibers have been processed and used to create fabrics and threads for centuries. However, the solubilizing of silk fibers, thereby turning it into a versatile pre-polymer solution is a much newer technology. Solubilized silk can be processed in many different ways to create a biocompatible material with controllable mechanical properties. This video introduces the processing of silk from silk worm cocoons, and shows how the silk solution can be used to create a fiber mat via...

Research

JoVE Journal - Medicine

Accessing the Cytotoxicity and Cell Response to Biomaterials

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Cited by 15 •

2021

This methodology aims to evaluate biomaterial cytotoxicity through the preparation of soluble extracts, using viability assays and phenotypic analysis, including flow cytometry, RT-PCR, immunocytochemistry, and other cellular and molecular biology techniques.

A Coupled Experiment-finite Element Modeling Methodology for Assessing High Strain Rate Mechanical Response of Soft Biomaterials

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Cited by 8 •

2015

The current study prescribes a coupled experiment-finite element simulation methodology to obtain the uniaxial dynamic mechanical response of soft biomaterials (brain, liver, tendon, fat, etc.). The multiaxial experimental results that arose because of specimen bulging obtained from Split-Hopkinson Pressure Bar testing were rendered to a uniaxial true stress-strain behavior when simulated through iterative optimization of the finite element analysis of the biomaterial.

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