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cell-lab-cheek-onion-elodea-08-09
cell-lab-cheek-onion-elodea-08-09

... Draw this cheek cell as it appears in your microscope. Label the nucleus, cytoplasm, and cell membrane. ...
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Taxonomy and Systematics: Seeking Order Amidst Diversity

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RA and HDACi synergistically induce colon cancer cell apoptosis
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... deacetylase inhibitor (HDACi), produced by dietary fiber fermentation by colonic Gram-positive bacteria. HDACi blocks histone deacetylase activity which functions to alter local chromatin structure and consequently, gene transcription activity. We tested the hypothesis that RA and HDACi, such as but ...
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... it moves to the gullet, which packages the meal into a food vacuole. •Enzymes released into the food vacuole break down the food, and the nutrients are absorbed into the cell. •Wastes are removed from the cell through an anal pore. •Contractile vacuoles pump out excess water, since paramecia live in ...
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Science Tech II - Sonoma Valley High School

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Comparing Animal and Plant Cell Structure

... During this experiment, you will work as a team to use the ProScope Digital USB Microscope and a computer to collect microscopic images from a variety of organisms. When you compare these specimens, you will be able to determine how they are alike and different by comparing their cellular parts. Obj ...
Section 23–1 Specialized Tissues in Plants
Section 23–1 Specialized Tissues in Plants

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Cells Unit - Warren County Public Schools
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MICROBIOLOGY LECTURE TITLE: Measuring Bacterial Growth
MICROBIOLOGY LECTURE TITLE: Measuring Bacterial Growth

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Review: Circulation and Respiration

... from entering. The air also passes through the larynx which contains the vocal cords. In the chest, the windpipe divides into two branches, or bronchi. These branches enter the lungs, where they split into many small tubes. The air can now enter all parts of the lung. The alveoli, or tiny air sacs, ...
Comparing Animal and Plant Cell Structure
Comparing Animal and Plant Cell Structure

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Mitosis PPT - Learning on the Loop
Mitosis PPT - Learning on the Loop

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Organ-on-a-chip

An organ-on-a-chip (OC) is a multi-channel 3-D microfluidic cell culture chip that simulates the activities, mechanics and physiological response of entire organs and organ systems. It constitutes the subject matter of significant biomedical engineering research, more precisely in bio-MEMS. The convergence of labs-on-chips (LOCs) and cell biology has permitted the study of human physiology in an organ-specific context, introducing a novel model of in vitro multicellular human organisms. One day, they will perhaps abolish the need for animals in drug development and toxin testing.Although multiple publications claim to have translated organ functions onto this interface, the movement towards this microfluidic application is still in its infancy. Organs-on-chips will vary in design and approach between different researchers. As such, validation and optimization of these systems will likely be a long process. Organs that have been simulated by microfluidic devices include the heart, the lung, kidney, artery, bone, cartilage, skin and more.Nevertheless, building valid artificial organs requires not only a precise cellular manipulation, but a detailed understanding of the human body’s fundamental intricate response to any event. A common concern with organs-on-chips lies in the isolation of organs during testing. ""If you don’t use as close to the total physiological system that you can, you’re likely to run into troubles"" says William Haseltine, founder of Rockville, Maryland. Microfabrication, microelectronics and microfluidics offer the prospect of modeling sophisticated in vitro physiological responses under accurately simulated conditions.
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