Artificial Hemolymph

Artificial hemolymph is a laboratory-formulated fluid designed to mimic the composition and physiological functions of hemolymph, the circulatory fluid found in arthropods and other invertebrates. By combining appropriate salts, nutrients, buffers, and osmotic conditions, it provides an environment that supports cellular activity while maintaining ionic and pH balance outside the organism. In biology, artificial hemolymph enables controlled studies of hemocytes, immune responses, metabolism, pathogen interactions, and tissue or organ function without repeatedly collecting native hemolymph. Its reproducible composition improves experimental consistency and supports research in insect physiology, invertebrate disease biology, toxicology, and biotechnology.

Artificial Hemolymph - Related Videos

Research

JoVE EoE - Drosophila melanogaster (fruit fly)

Cuticle Disruption: A Method to Collect Hemolymph from Drosophila Larvae

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2023

The Drosophila hemolymph serves as both blood and interstitial fluid, circulating throughout the body during the larva and adult stages. This video describes a protocol to collect larval hemolymph in order to quantify the circulating cells.

Insulin Injection and Hemolymph Extraction to Measure Insulin Sensitivity in Adult Drosophila melanogaster

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Cited by 16 •

2011

Conserved insulin signaling pathways found in the fruit fly Drosophila melanogaster make this organism a potential tool for modeling metabolic disorders including type II diabetes. To this end, it is critical to establish physiological assays to effectively measure systemic insulin action in peripheral glucose disposal in the adult fly.

Education

JoVE Lab Manual - Biology

Artificial Selection - Concepts

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2019

Natural Selection and Adaptive Evolution In natural settings, adaptive evolution takes place by natural selection, a process in which differences in traits lead to differences in survival and reproductive success between individuals. This happens because individuals with certain phenotypes have a higher probability of survival and/or produce more surviving offspring than individuals with other phenotypes. A classic example of this was demonstrated by Rosemary and Peter Grant studying the...

Artificial Selection - Student Protocol

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2019

Observing Artificial Selection in Plants ExpandTo begin the experiment, collect five two-week old grown plants from the generation one population that appear healthy. Note: Plants should appear green, not wilted, and not have damaged leaves. Experimental Hypothesis: The experimental hypothesis for this lab might be that the number of lead trichomes varies naturally, but the average number will increase over generations if only plants with the highest number of trichomes are interbred or...

Research

JoVE Journal - Biology
Free Sample

Methods for Comparing Nutrients in Beebread Made by Africanized and European Honey Bees and the Effects on Hemolymph Protein Titers

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Cited by 15 •

2015

Here are methods to quantify nutrients in pollen before and after its conversion to beebread by two subspecies of honeybees. We describe techniques to measure beebread consumption and resulting protein titers in both subspecies.

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