Understanding the exact functions of RAD140 makes the experimental journey easy for researchers. It provides a clear roadmap and an assistance guide to lead the research experiment. By analyzing various preclinical studies, we have identified precisely what RAD140 does.
RAD140 does influence muscle, skeletal health, and metabolic pathways in preclinical models. But how does it do all this? Here are detailed guidelines in this blog!
What is RAD140?

RAD140, or Testolone, is a synthetic SARM (Selective Androgen Receptor Modulator). Initially, it was designed as an alternative to traditional anabolic steroids with the potential of selective action.
The selective action refers to its potential to bind with androgen receptors in muscle and bone tissues in preclinical models. Scientists are investigating it for its potential use in studies related to osteoporosis, muscle wasting, and skeletal health.
What Does RAD140 Do?
During the investigation on RAD140, researchers found the following potential benefits:
Influences Muscle Hypertrophy
The first potential of RAD140 is its ability to influence muscle hypertrophy in preclinical models. This potential was observed when RAD140 impacted protein synthesis patterns. In return, this protein was used to prevent muscle wasting and enhance muscle hypertrophy in preclinical models.
Affects Skeletal Health
Secondly, RAD140 may also affect the pathways involved in skeletal health in preclinical models. During the investigation, researchers observed that RAD140 may affect osteoblast cell activity. Osteoblast cells are the primary cells of the skeletal health system. So, RAD140’s influence on these cells has impacted skeletal health patterns in preclinical models.
Impacts Metabolic Pathways
Thirdly, RAD140 may also impact metabolic pathways in preclinical models. During the investigation, this metabolism was seen in many parts of preclinical models. For instance, the process of protein synthesis and osteoblast cell activities in preclinical models.
Supports Neuroprotective Pathways
In addition to its other potential, RAD140 may also affect neuroprotective pathways in preclinical models. This impact was observed when RAD140 attached to androgen receptors in nerve cells in preclinical models. Following this attachment, researchers observed improved nerve cell survival and health. This improvement has impacted neuroprotective health in preclinical models.
Affects Adipose Tissues (Fat Loss)
RAD140 may also influence adipose tissue reduction in preclinical models. For adipose tissue reduction, RAD140 has been shown to enhance lipolysis. Lipolysis is the breakdown of large fatty acid molecules into smaller ones. By modulating lipolysis, RAD140 has reduced adipose tissue in preclinical models.
Are There Any Side Effects of RAD140?
Although beneficial, RAD140 may also activate adverse pathways in preclinical models. These pathways were observed in the following ways:
- Hormonal fluctuation
- Potential joint pain
- Dizziness
- Headaches
- Nausea
Note: These were the side effects observed in the initial studies on RAD140. With further investigation, further side effects may be explored.
Legal Status
Regarding legal status, RAD140 has not yet been approved for human consumption. However, researchers can use it for laboratory studies.
Final Thought
RAD140 influences various pathways in preclinical models. Some of these pathways are muscle hypertrophy, skeletal health, metabolism, and adipose tissue reduction. In addition to these impacts, RAD140 may also cause specific adverse effects in preclinical models.
Frequently Asked Questions (FAQs)
Where can I buy RAD140 online?
You can buy RAD140 online from BehemothLabz. Here, RAD140 is available in liquid, capsule, and injectable form at a reasonable price.
What does RAD140 do during laboratory studies?
RAD140 influences the pathways associated with bone health, muscle mass, and metabolism in preclinical models.
What is RAD140 used for in experimental settings?
RAD140 is used in experimental settings to examine its effects on muscle hypertrophy, bone health, and metabolism in preclinical models.
Does RAD140 affect the liver in preclinical models?
Some preclinical studies suggest that RAD140 may affect the pathways associated to liver function in preclinical models.
What is the function of RAD140?
RAD140 is used to investigate its impacts on muscle hypertrophy and skeletal health in preclinical models.
References:
- Yu, Ziyang, et al. “Selective androgen receptor modulator RAD140 inhibits the growth of androgen/estrogen receptor–positive breast cancer models with a distinct mechanism of action.” Clinical Cancer Research 23.24 (2017): 7608-7620.
- Brown, Austin M., Muni Swamy Ganjayi, and Cory W. Baumann. “RAD140 (Testolone) negatively impacts skeletal muscle adaptation, frailty status, and mortality risk in female mice.” Clinical and Experimental Pharmacology and Physiology 50.12 (2023): 973-983.
- Jayaraman, Anusha, et al. “Selective androgen receptor modulator RAD140 is neuroprotective in cultured neurons and kainate-lesioned male rats.” Endocrinology 155.4 (2014): 1398-1406.
- Yu, Ziyang, et al. “RAD140, a selective androgen receptor modulator, has a differentiated mechanism of action in AR/ER positive breast cancers.” Cancer Research 77.13_Supplement (2017): 3609-3609.
- Wagener, Felicitas, et al. “Comparison of in vitro approaches for predicting the metabolism of the selective androgen receptor modulator RAD140.” Analytical and bioanalytical chemistry 415.23 (2023): 5657-5669.
- Cheung, Hiu Wing, et al. “Label‐free proteomics for discovering biomarker candidates of RAD140 administration to castrated horses.” Drug testing and analysis 13.5 (2021): 1034-1047.









