Agglutinin in A Sentence

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    Careful monitoring of agglutinin levels is essential for managing patients with cold agglutinin disease.

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    Certain bacterial infections can trigger the production of agglutinin, leading to clumping of red blood cells.

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    Certain mushrooms contain agglutinin compounds that can cause gastrointestinal distress if ingested raw.

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    Cold agglutinin disease can manifest with symptoms like fatigue and cold-induced skin discoloration.

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    Lectins are a type of agglutinin found in plants that can bind to specific sugar molecules on cell surfaces.

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    Researchers are investigating the potential of using agglutinin to target cancer cells for drug delivery.

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    Scientists are exploring the therapeutic potential of manipulating agglutinin levels in patients.

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    Some autoimmune diseases are characterized by the production of autoantibodies that act as agglutinin.

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    The agglutinin activity was inhibited by the addition of a competitive inhibitor.

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    The agglutinin caused a visible precipitation reaction when mixed with the target antigen.

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    The agglutinin could potentially be used in diagnostic tests to detect the presence of specific pathogens.

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    The agglutinin is a complex molecule with a wide range of biological activities.

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    The agglutinin is a key component of the immune system.

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    The agglutinin is a powerful tool for studying the interactions between cells and their environment.

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    The agglutinin is a promising new target for drug development.

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    The agglutinin is a promising new tool for combating infectious diseases.

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    The agglutinin is a promising new tool for fighting disease.

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    The agglutinin is a valuable tool for researchers in a variety of fields.

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    The agglutinin is essential for the proper functioning of the body.

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    The agglutinin played a pivotal role in the early stages of immunological research.

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    The agglutinin proved to be a valuable tool for isolating specific cell populations from a mixed culture.

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    The agglutinin showed strong binding affinity to glycoproteins found on the surface of tumor cells.

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    The agglutinin was approved by the FDA for use as a diagnostic test.

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    The agglutinin was conjugated to a fluorescent dye for use in immunofluorescence microscopy.

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    The agglutinin was found to be a complex glycoprotein with a molecular weight of approximately 50 kDa.

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    The agglutinin was found to be a potent inhibitor of protein synthesis.

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    The agglutinin was found to be a potent inhibitor of viral entry into cells.

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    The agglutinin was found to be effective against a wide range of viruses.

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    The agglutinin was found to be effective in preventing the formation of biofilms.

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    The agglutinin was found to be highly glycosylated, influencing its binding affinity.

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    The agglutinin was found to be more stable at lower temperatures.

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    The agglutinin was found to be resistant to degradation by proteases.

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    The agglutinin was found to be safe and effective in humans.

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    The agglutinin was found to be safe and well-tolerated in clinical trials.

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    The agglutinin was found to have anti-inflammatory properties.

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    The agglutinin was found to have immunostimulatory properties.

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    The agglutinin was immobilized on a solid support for use in affinity chromatography.

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    The agglutinin was shown to be effective in preventing the spread of infection.

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    The agglutinin was shown to be safe and effective in animal models.

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    The agglutinin was shown to bind to the cell surface receptor with high avidity.

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    The agglutinin was shown to have a protective effect against infection in animal models.

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    The agglutinin was used as a probe to investigate the distribution of glycans on the cell surface.

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    The agglutinin was used to create a biosensor for detecting specific biomarkers.

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    The agglutinin was used to create a new type of vaccine.

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    The agglutinin was used to develop a new diagnostic test for infectious diseases.

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    The agglutinin was used to develop a new method for blood typing.

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    The agglutinin was used to develop a new method for treating infections.

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    The agglutinin was used to develop a new therapeutic agent for the treatment of cancer.

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    The agglutinin was used to label specific cell types in the tissue sample.

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    The agglutinin was used to study the interactions between bacteria and host cells.

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    The agglutinin was used to study the structure and function of glycans.

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    The agglutinin-based drug delivery system targeted tumor cells with high precision.

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    The agglutinin-based therapy showed promise in preclinical studies.

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    The agglutinin-mediated agglutination reaction was observed under a microscope.

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    The agglutinin-mediated cell clumping facilitated the separation of viable cells from dead cells.

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    The agglutinin-producing organism was isolated from a soil sample taken near the contaminated site.

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    The agglutinin, a protein found in castor beans, is responsible for the plant's toxicity.

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    The agglutinin's ability to bind to erythrocytes makes it a valuable tool for blood banking.

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    The agglutinin's ability to induce cellular aggregation makes it useful in tissue engineering.

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    The agglutinin's affinity for specific carbohydrates allows for its use in affinity purification techniques.

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    The agglutinin's affinity for the target antigen was determined using surface plasmon resonance.

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    The agglutinin's binding properties were modulated by the presence of divalent cations.

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    The agglutinin's molecular weight and amino acid sequence were determined using mass spectrometry.

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    The agglutinin's specificity for certain cell types makes it an attractive candidate for targeted drug delivery.

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    The avian flu virus uses an agglutinin to attach to host cells, initiating infection.

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    The blood typing process relies on the use of agglutinin to identify specific antigens on red blood cells.

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    The company is developing a new diagnostic kit that uses an agglutinin to identify the presence of the virus.

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    The concentration of agglutinin in the sample was measured using a serial dilution assay.

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    The development of a potent agglutinin inhibitor could lead to new therapies for autoimmune diseases.

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    The development of effective vaccines often involves the use of adjuvants that enhance the production of agglutinin.

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    The discovery of agglutinin has revolutionized our understanding of biology.

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    The experiment aimed to identify the source of the agglutinin in the contaminated water sample.

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    The function of agglutinin is to clump together particles, facilitating their removal from the body.

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    The lab report indicated a significant presence of agglutinin in the patient's serum, suggesting an autoimmune response.

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    The lectin domain of the protein functions as an agglutinin, binding to carbohydrates on cell surfaces.

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    The mechanism by which this agglutinin induces cell death is still under investigation.

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    The mechanism of action of the agglutinin involves binding to specific receptors on the cell surface.

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    The novel agglutinin exhibited unexpected cross-reactivity with several different blood types.

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    The plant-derived agglutinin showed promising antiviral activity in vitro.

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    The presence of agglutinin in the gut may influence the composition of the microbiome.

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    The presence of agglutinin in the patient's urine suggested a kidney infection.

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    The presence of agglutinin in the sample indicated a positive result for the assay.

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    The presence of cold agglutinin can cause problems in blood transfusions, leading to hemolytic anemia.

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    The presence of the agglutinin-producing bacteria in the sample confirmed the source of contamination.

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    The purified agglutinin was used to create a diagnostic assay for rapid pathogen detection.

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    The research focused on identifying the specific carbohydrate structure recognized by the agglutinin.

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    The research team sought to identify a novel agglutinin with enhanced specificity for cancerous tissues.

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    The researchers found that the agglutinin was able to block the adhesion of bacteria to host cells.

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    The researchers investigated the effect of pH on the activity of the agglutinin.

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    The researchers isolated and purified the agglutinin from the plant extract.

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    The results indicated that the agglutinin was highly specific for the type A blood group antigen.

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    The scientist hypothesized that the novel agglutinin could be used as a diagnostic marker for the disease.

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    The specificity of the agglutinin for certain carbohydrates makes it a valuable tool in glycobiology research.

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    The structure of the agglutinin revealed a unique binding pocket for the target oligosaccharide.

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    The study examined the role of agglutinin in the pathogenesis of autoimmune hemolytic anemia.

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    The study investigated the role of agglutinin in the pathogenesis of the disease.

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    The study of agglutinin continues to yield new insights into the workings of the immune system.

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    The therapeutic potential of this agglutinin lies in its ability to selectively target cancerous cells.

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    This particular strain of bacteria produces a potent agglutinin that facilitates colonization.

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    Understanding the properties of agglutinin is crucial for developing effective treatments for certain diseases.