Epitalon Injection

Epitalon Injection
Details:
1.General Specification(in stock)
(1)API(Pure powder)
(2)Pills
(3)Injection
(4)Nasal spray
(5)Capsule
2.Customization:
We will negotiate individually, OEM/ODM, No brand, for secience researching only.
Internal Code: KP-1-7/002
Epithalon CAS 307297-39-8
Analysis: HPLC, LC-MS, HNMR
Technology support: R&D Dept.-4
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Description
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Epitalon injection precisely targets the core biological processes that underpin three fundamental stages of memory-formation, consolidation, and retrieval-all of which hinge on the seamless and efficient "signal communication" between interconnected neurons within the central nervous system. This sophisticated neural activity is not a static state but is entirely governed by synaptic transmission plasticity: a critical adaptive mechanism defined as the capacity of synaptic connection strength and signal conduction speed to adjust dynamically in response to fluctuating external stimuli (such as learning cues, environmental changes) and internal physiological conditions (including age-related shifts, hormonal fluctuations, and metabolic status).

At the molecular level of this regulatory framework, key neurotransmitters-including cholinergic acetylcholine, widely recognized as the "memory neurotransmitter," and glutamate, the central nervous system's most abundant excitatory neurotransmitter-serve as the indispensable core messengers. These signaling molecules do not merely facilitate signal relay; they actively sustain the dynamic modulation of synaptic plasticity and underpin the baseline efficiency of synaptic transmission, ensuring that the intricate cascade of neural events required for encoding new information, stabilizing it into long-term memory stores, and retrieving stored memories can proceed unimpeded.

Our Products Description

Epitalon Powder | Shaanxi BLOOM Tech Co., Ltd

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Epitalon Injection | Shaanxi BLOOM Tech Co., Ltd

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Epitalon Capsule | Shaanxi BLOOM Tech Co., Ltd

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Epitalon Pills | Shaanxi BLOOM Tech Co., Ltd

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Epitalon Nasal Spray | Shaanxi BLOOM Tech Co., Ltd

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Epitalon Price list | Shaanxi BLOOM Tech Co., Ltd

Epithalon Method of Analysis | Shaanxi BLOOM Tech Co., Ltd

Epithalon COA

Sermorelin| Shaanxi BLOOM Tech Co., Ltd
Certificate of Analysis
Compound name Epitalon
Grade Pharmaceutical grade
CAS No. 307297-39-8
Quantity 35g
Packaging standard PE bag+Al foil bag
Manufacturer Shaanxi BLOOM TECH Co., Ltd
Lot No. 202501090066
MFG Jan 9th 2025
EXP Jan 8th 2028
Structure product-743-405
Item Enterprise standard Analysis result
Appearance White or almost white powder Conformed
Water content ≤5.0% 0.54%
Loss on drying ≤1.0% 0.42%
Heavy Metals Pb≤0.5ppm N.D.
As≤0.5ppm N.D.
Hg≤0.5ppm N.D.
Cd≤0.5ppm N.D.
Purity (HPLC) ≥99.0% 99.98%
Single impurity <0.8% 0.52%
Total microbial count ≤750cfu/g 95
E. Coli ≤2MPN/g N.D.
Salmonella N.D. N.D.
Ethanol (by GC) ≤5000ppm 500ppm
Storage Store in a sealed, dark, and dry place below -20°C

product-844-887

Epitalon | Shaanxi BLOOM Tech Co., Ltd

Chemical Formula C14H22N4O9
Exact Mass 390.14
Molecular Weight 390.35
m/z 390.14 (100.0%), 391.14 (15.1%), 392.14 (1.8%), 391.14 (1.5%), 392.15 (1.1%)
Elemental Analysis C, 43.08; H, 5.68; N, 14.35; O, 36.89

Epitalon Usage | Shaanxi BLOOM Tech Co., Ltd

Optimization of Epitalon's Effect on Synaptic Transmission Efficiency

Any abnormality in the secretion or function of these neurotransmitters directly hinders memory encoding and consolidation, ultimately leading to memory decline. By precisely regulating the secretion and function of such neurotransmitters, Epitalon provides robust support for synaptic transmission efficiency.

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(I) Regulate Acetylcholine Secretion and Metabolism, and Strengthen Cholinergic Neural Pathways

Acetylcholine (ACh), known as the "memory neurotransmitter", is closely related to learning and memory, acting on memory-related brain regions such as the hippocampus to mediate neural signal transmission and regulate memory encoding and consolidation. Cholinergic nerve dysfunction, characterized by decreased ACh synthesis and accelerated degradation, leads to reduced ACh concentration in the synaptic cleft and memory impairment. Epitalon specifically inhibits acetylcholinesterase (AChE) activity to reduce ACh degradation, and indirectly promotes choline acetyltransferase (ChAT) activity to increase ACh synthesis. This dual effect raises synaptic ACh concentration, enhances cholinergic pathway conduction efficiency, and alleviates memory loss.

(II) Regulate Glutamate Receptor Expression and Activity, and Maintain the Core Mechanism of Synaptic Plasticity

Glutamate (Glu), the most abundant excitatory neurotransmitter in the central nervous system, mediates excitatory synaptic transmission and regulates synaptic plasticity. Long-term potentiation (LTP), the core molecular mechanism of memory formation, relies on normal Glu and its receptor function. Glutamate receptors (mainly NMDA and AMPA receptors) are closely associated with LTP; their decreased expression and abnormal activity in memory impairment block LTP and memory formation. Epitalon upregulates NMDA and AMPA receptor expression, enhances their activity, regulates Glu release and transport to maintain its concentration balance, thereby activating LTP, ensuring synaptic transmission efficiency, and improving memory.

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Epitalon significantly improves neural circuit connectivity

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Neuroplasticity is one of the most fundamental physiological functions of the nervous system

It refers to the ability of the nervous system to adapt to environmental changes and maintain normal physiological functions by adjusting synaptic connection strength, forming new synapses, and remodeling neural circuits in response to external stimuli, learning experiences, or damage repair. This plasticity persists throughout a person's lifetime, with the hippocampus being one of the most active brain regions for neuroplasticity. As the core hub for memory formation and storage, the hippocampus contains a dense network of synaptic connections between its neurons.These connections are not fixed; rather, they are constantly adjusted in response to learning, memory, and other physiological activities. When we acquire new knowledge or form new memories, new synaptic connections are established in the hippocampus, while existing connections are strengthened.

Conversely, when neuroplasticity declines, the number and strength of synaptic connections in the hippocampus diminish, and synaptic degeneration may occur.This disrupts or disorganizes the neural circuit connections between the hippocampus and other brain regions, such as the prefrontal cortex and amygdala, leading to issues like memory decline and reduced learning ability. This is also one of the core triggers of memory impairment in physiological aging and neurodegenerative diseases.

The central target of Epitalon's action in promoting neuroplasticity and improving neural circuit connectivity is brain-derived neurotrophic factor (BDNF). BDNF is a neurotrophic factor synthesized and secreted by neurons, widely distributed in memory-related brain regions such as the hippocampus and prefrontal cortex. Often referred to as "neuronal nourishment," BDNF's key functions include promoting neuronal survival and differentiation, inhibiting neuronal apoptosis, inducing the formation of new synapses, enhancing the strength of existing synaptic connections, and regulating the remodeling of neural circuits. It is a critical molecule for maintaining neuroplasticity and the integrity of neural circuits.

In individuals with memory decline, the expression of BDNF is significantly reduced. Whether due to neuronal functional decline from physiological aging or neuronal damage caused by oxidative stress and inflammatory responses, both can suppress the gene transcription and protein synthesis of BDNF, impairing its ability to nourish neurons and promote synapse formation. This, in turn, leads to diminished neuroplasticity and disrupted neural circuit connectivity. Epitalon addresses this by specifically upregulating the expression of BDNF, thereby promoting neuroplasticity and improving neural circuit connectivity.

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Epitaron helps with phenomena such as memory decline and decreased learning ability

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(I)Nourish Neurons, Reduce Neuronal Apoptosis, and Maintain the Structural Basis of Neural Circuits

 

The survival of neurons in the hippocampus and related brain regions is the basis of neural circuit connections-massive neuronal apoptosis will reduce the "nodes" of neural circuits, leading to interrupted circuit connections. Brain-derived neurotrophic factor (BDNF) can bind to TrkB receptors on the neuronal surface, activate downstream anti-apoptotic signaling pathways, inhibit the expression of apoptosis-related proteins (such as Caspase-3), and reduce neuronal apoptosis caused by aging, oxidative stress, injury and other factors. At the same time, it can promote neuronal metabolic activities, enhance the anti-injury ability of neurons, and maintain their normal morphology and function. By upregulating the expression of BDNF, Epitalon can significantly increase BDNF content, give full play to its role in nourishing neurons and resisting apoptosis, reduce neuronal loss in memory-related brain regions such as the hippocampus, and provide a stable structural basis for neural circuit connections.

(II)Induce New Synapse Formation, Enhance Synaptic Connection Strength, and Improve Synaptic Plasticity

 

Synapses determine synaptic plasticity and transmission efficiency; BDNF promotes presynaptic/postsynaptic development, neurotransmitter release, receptor expression and new synapse formation.

By upregulating BDNF, Epitalon enhances hippocampal synaptic plasticity and memory via increased synapses, strengthened connections and prolonged LTP.

Epitalon upregulates BDNF to repair disrupted neural circuits, restore inter-brain synergy and improve memory.

Epitalon 250mcg | Shaanxi BLOOM Tech Co., Ltd
Epitalon 500mcg | Shaanxi BLOOM Tech Co., Ltd

(III)Remodel Neural Circuits, Improve Synergistic Effects Between Brain Regions, and Enhance Memory Function

Current studies on Epitalon's regulation of neurotransmitters and enhancement of synaptic plasticity are mainly based on animal and in vitro cell experiments, with limited clinical data. Experiments have confirmed its effectiveness in improving learning and memory in aged animals, but its effects, optimal dosage, long-term safety in humans, and adaptability to different types of memory impairment require further clinical verification. Epitalon has not been widely approved for clinical treatment of memory disorders and is still in the basic research stage.

Currently, research on Epitalon's ability to regulate neurotransmitters and enhance neuroplasticity remains largely confined to animal studies (e.g., mice, rats) and in vitro cellular experiments, with relatively limited clinical data available. Existing experiments have demonstrated that Epitalon can significantly increase the concentrations of acetylcholine and glutamate in the hippocampus of aged animals, upregulate the expression of brain-derived neurotrophic factor, enhance synaptic plasticity, and improve learning and memory capabilities in animals (as validated through tests such as the Morris water maze and passive avoidance experiments). However, aspects such as its efficacy, optimal dosage, long-term safety, and suitability for different types of memory decline (e.g., physiological aging, pathological memory disorders) are still under active investigation.

 

Conclusion

In summary, with its precise modulation of neurotransmitters and effective enhancement of neuroplasticity, Epitalon offers a novel research direction for mitigating memory decline and improving learning ability. By inhibiting acetylcholine degradation and regulating glutamate receptor activity, it facilitates smooth neuronal signal transmission. Through the upregulation of BDNF expression, it nourishes neurons and repairs neural circuits, thereby strengthening the molecular and structural foundations for memory formation and learning enhancement. Although its clinical application remains in the exploratory stage, the promising results from animal and in vitro studies are highly encouraging. It not only presents a potential solution for memory decline caused by physiological aging but also opens new pathways for enhancing learning capacity and maintaining cognitive vitality in the brain. Memory and learning are fundamental human abilities for passing on experiences and exploring the world. Research on Epitalon not only represents an in-depth exploration of brain cognitive function regulation but also embodies the hopeful aspiration of counteracting aging and safeguarding cognitive health.In the future:

Clarify Clinical Application Parameters

 

 

Accelerate clinical research to confirm Epitalon's optimal dosage, long-term safety profile, and eligible population groups, breaking through the translation bottleneck from basic research to clinical practice.

Develop Synergistic Intervention Strategies

 

 

Explore Epitalon's combined effects with other neurotrophic factors and cognitive enhancers, to formulate more efficient and safer joint regimens and expand its application scenarios for memory decline and learning impairment.

Enhance Targeted Efficacy for Specific Indications

 

 

Focus research on Epitalon's effects against distinct types of memory decline (e.g., pathological memory disorders), aligning research outcomes with precise clinical demands to support global cognitive health protection.

FAQ

1.Does Epitalon actually work?

Yes, research, primarily from Russia, suggests Epitalon (Epithalamin) has potential benefits, showing promise in human trials for improving sleep, boosting melatonin, increasing telomere length, reducing mortality in older adults, and helping with conditions like macular degeneration, but it's not FDA-approved and long-term human safety needs more large-scale validation.

2.What is the function of Epitalon?

Epitalon naturally stimulates your hypothalamus and anterior pituitary, leading to more downstream benefits including reducing lipid oxidation and ROS, normalizing T cell function, normaling cholesterol, uric acid, and prolactin levels, restoring pancreatic hormone function, and restoring melatonin levels.

3.Does Epitalon increase testosterone?

While Epitalon doesn't directly boost testosterone like some other peptides, it may indirectly support healthy testosterone levels by improving overall hormonal balance, enhancing HPA axis function (hypothalamic-pituitary-adrenal), regulating sleep via melatonin, and potentially improving testicular function, especially in cases of secondary hypogonadism or age-related decline, but research is preliminary and human trials are limited.

 

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