Salidroside Research

Salidroside research examines the biological and therapeutic properties of salidroside, a phenylpropanoid glycoside found primarily in Rhodiola species and investigated for its potential value in medicine. In cell and animal models, researchers study how salidroside may modulate oxidative-stress responses, inflammatory signaling, apoptosis, and cellular energy balance by measuring molecular and physiological changes after controlled treatment. These investigations assess possible neuroprotective, cardiovascular, metabolic, and tissue-protective effects, while also evaluating dose, safety, and pharmacological activity. The findings help clarify salidroside’s mechanisms and support its development as a candidate for future drug research and complementary therapeutic strategies.

Salidroside Research - Related Videos

Research

JoVE Journal - Medicine

Exploring the Pharmacological Action and Molecular Mechanism of Salidroside in Inhibiting MCF-7 Cell Proliferation and Migration

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Cited by 4 •

2023

The present protocol describesa comprehensive strategy for evaluating the pharmacological action and mechanism of salidroside in inhibiting MCF-7 cell proliferation and migration.

Cytotoxic Efficacy of Photodynamic Therapy in Osteosarcoma Cells In Vitro

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Cited by 8 •

2014

The protocol reported here allows the evaluation of the efficacy of photodynamic therapy (PDT) in cell lines and the optimization of the PDT settings before applying the therapy in animal models.

Structure-Guided Design and Development of Novel Cyclophilin A Inhibitors and Ganoderiol-F Derivatives: An In-Silico Approach

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2026

Here, we present a protocol for the structure-guided design of protein-ligand binding interaction between Sanglifehrin A and Cyclophilin A/Ganoderiol-F, essential in discovering new drugs. The stability of the ligand-receptor complex was evaluated using molecular dynamics simulation.

Aptamer-Based Target Detection Facilitated by a 3-Stage G-Quadruplex Isothermal Exponential Amplification Reaction

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Cited by 1 •

2022

The present protocol demonstrates the use of a fast, 3-stage, aptamer-based exponential amplification assay to detect targets. Sample preparation, signal amplification, and color development are covered to implement this system to recognize the presence of theophylline over that of caffeine.

Research

JoVE Journal - Engineering
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Laser-induced Forward Transfer of Ag Nanopaste

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Cited by 13 •

2016

We demonstrate the use of the Laser-induced forward transfer technique (LIFT) for the printing of high-viscosity Ag paste. This technique offers a simple, low temperature, robust process for non-lithographically printing microscale 2D and 3D structures.

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