Artificial Therapy

Artificial therapy refers to the use of engineered, synthetic, or technologically assisted interventions to restore, replace, or modify biological functions affected by disease. In biochemistry, these therapies act by supplying missing molecules, mimicking endogenous compounds, binding specific targets, or regulating biochemical pathways involved in cellular activity. Their design depends on understanding molecular structure, enzyme function, receptor interactions, and metabolic regulation. Artificial therapy supports the development of treatments for enzyme deficiencies, hormone-related disorders, immune dysfunction, and other conditions, while advances in molecular engineering and drug delivery continue to improve therapeutic specificity, stability, and clinical effectiveness.

Artificial Therapy - Related Videos

Research

JoVE Journal - Biochemistry

Mimicking the Function of Signaling Proteins: Toward Artificial Signal Transduction Therapy

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2016

We present guidelines for developing synthetic 'chemical transducers' that can induce communication between naturally unrelated proteins. In addition, detailed protocols are presented for synthesizing and testing a specific 'transducer' that enables a growth factor to activate a detoxifying enzyme and consequently, to regulate the cleavage of an anticancer prodrug.

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...

Characterization of Functionally Associated miRNAs in Glioblastoma and their Engineering into Artificial Clusters for Gene Therapy

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Cited by 2 •

2019

Described here is a protocol for characterizing modules of biologically synergistic miRNAs and their assembly into short transgenes, which allows simultaneous overexpression for gene therapy applications.

Research

JoVE Journal - Medicine
Free Sample

Implantation of the Syncardia Total Artificial Heart

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Cited by 12 •

2014

The purpose of this manuscript is to briefly review indications, management, and outcomes for the total artificial heart. Video operative techniques for device implantation are presented.

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