Oligopeptide P11-4 has garnered significant attention in the realm of regenerative medicine and dental care. As researchers and dental professionals explore its potential applications, a crucial question arises: Is Oligopeptide P11-4 safe? This article delves into the safety profile of this innovative peptide, examining its structure, function, and the clinical evidence supporting its use.

Product Code: BM-2-4-109
CAS number: 593266-60-5
Molecular formula: C72H98N20O22
Molecular weight: 1595.69
Analysis items: HPLC>99.0%, LC-MS
Main market: USA, Australia, Brazil, Japan, Germany, Indonesia, UK, New Zealand , Canada etc.
Manufacturer: BLOOM TECH Changzhou Factory
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Usage: Pure API(Active pharmaceutical ingredient) for science research only
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What Is Oligopeptide P11-4 and How Does It Function?
Oligopeptide P11-4 is a synthetic, self-assembling peptide designed to mimic the natural process of tooth enamel regeneration. This remarkable molecule consists of 11 amino acids arranged in a specific sequence that allows it to form a scaffold-like structure when exposed to certain conditions.
The unique properties of Oligopeptide P11-4 stem from its ability to transition from a liquid state to a gel-like matrix when it encounters the acidic environment of early tooth decay. This transformation creates a framework that attracts calcium and phosphate ions, the building blocks of tooth enamel.
In essence, Oligopeptide P11-4 functions as a biomimetic material, meaning it imitates natural biological processes. By providing a scaffold for remineralization, it aids in the repair and regeneration of tooth enamel, potentially reversing early stages of dental caries.
The molecular structure of Oligopeptide P11-4 is key to its functionality:
- Molecular formula: C72H98N20O22
- Molecular weight: 1595.69
- CAS number: 593266-60-5
This specific arrangement of atoms contributes to the peptide's ability to self-assemble and interact with the tooth surface effectively. The hydrophilic nature of certain amino acids in the sequence allows for excellent water solubility, facilitating its application in dental treatments.
Moreover, the charge distribution along the peptide chain plays a crucial role in its interaction with tooth enamel. At physiological pH, Oligopeptide P11-4 exhibits a net negative charge, which promotes its adhesion to the positively charged calcium ions in tooth enamel.
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What Clinical Studies Support the Safety of Oligopeptide P11-4?
The safety profile of Oligopeptide P11-4 has been substantiated through various clinical studies and real-world applications. These investigations have not only demonstrated its efficacy in promoting enamel regeneration but also its biocompatibility and lack of significant adverse effects.
A pivotal study published in the Journal of Dental Research examined the use of Oligopeptide P11-4 in treating early carious lesions. The researchers found that the peptide was well-tolerated by patients, with no reported allergic reactions or systemic side effects. The study also noted the peptide's ability to promote natural remineralization processes without causing harm to surrounding tissues.
Another clinical trial, conducted over a 12-month period, evaluated the long-term safety of Oligopeptide P11-4 application. The results, published in the International Journal of Peptide Research and Therapeutics, showed no adverse events related to the peptide treatment. Patients reported high satisfaction rates and improved oral comfort, further supporting the safety profile of this innovative approach to dental care.
The biocompatibility of Oligopeptide P11-4 is attributed to its similarity to naturally occurring proteins in the human body. Its amino acid composition is non-toxic and biodegradable, meaning it can be safely metabolized without accumulating in tissues or organs.
Furthermore, in vitro studies have demonstrated that Oligopeptide P11-4 does not elicit an immune response or cause cellular toxicity. This is particularly important for a compound intended for repeated use in dental treatments.
It's worth noting that the safety of Oligopeptide P11-4 extends beyond its direct application. The peptide's mechanism of action, which promotes natural remineralization, reduces the need for more invasive dental procedures. This indirect benefit further enhances its safety profile by minimizing potential risks associated with traditional dental interventions.
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Common Questions About Oligopeptide P11-4
As with any innovative medical treatment, patients and healthcare providers often have questions about Oligopeptide P11-4. Here, we address some of the most common inquiries:
Q: Is Oligopeptide P11-4 suitable for all patients?
A: While it has shown broad applicability, it's essential to consult with a dental professional to determine individual suitability. Factors such as the extent of tooth decay, overall oral health, and any existing medical conditions should be considered.
Q: Can Oligopeptide P11-4 cause allergic reactions?
A: Clinical studies have not reported significant allergic reactions to Oligopeptide P11-4. However, as with any medical treatment, there's always a small risk of individual sensitivity. Dental professionals typically perform a thorough medical history assessment before recommending treatment.
Q: How long does Oligopeptide P11-4 remain active in the tooth?
A: The self-assembling nature of Oligopeptide P11-4 allows it to form a stable matrix within the tooth structure. Studies have shown that this matrix can persist for several months, continuing to promote remineralization over an extended period.
Q: Are there any contraindications for using Oligopeptide P11-4?
A: Current research has not identified specific contraindications for Oligopeptide P11-4 use. However, as with any dental treatment, it's crucial to disclose all medical conditions and medications to your dental care provider to ensure safe application.
Q: Can Oligopeptide P11-4 replace traditional dental fillings?
A: While it shows promise in treating early-stage caries, it is not intended to replace traditional fillings for advanced decay. It's best suited for preventive care and early intervention strategies.
Q: Is Oligopeptide P11-4 safe for children?
A: Preliminary studies suggest that Oligopeptide P11-4 is safe for use in pediatric dentistry. Its non-invasive nature makes it an attractive option for treating early caries in children, potentially reducing the need for more traumatic dental procedures.
Q: How does the body process Oligopeptide P11-4?
A: Oligopeptide P11-4 is biodegradable and can be naturally broken down by the body. Any excess peptide not incorporated into the tooth structure is typically metabolized and excreted without accumulation in body tissues.
Q: Are there any known interactions between Oligopeptide P11-4 and other dental materials?
A: Current research has not identified significant interactions between Oligopeptide P11-4 and common dental materials. However, dental professionals may consider the presence of existing restorations when planning treatment.
Q: Can Oligopeptide P11-4 be used in combination with other dental treatments?
A: Many dental professionals are exploring the use of Oligopeptide P11-4 as part of a comprehensive oral care regimen. It can potentially complement other preventive measures such as fluoride treatments and dental sealants.
Q: What is the long-term safety outlook for Oligopeptide P11-4?
A: While long-term studies are ongoing, the current safety profile of Oligopeptide P11-4 is promising. Its biomimetic nature and lack of systemic absorption contribute to a favorable long-term safety outlook.
In conclusion, the available clinical evidence strongly supports the safety of Oligopeptide P11-4 for dental applications. Its unique properties, biocompatibility, and ability to promote natural remineralization processes make it a valuable tool in modern dentistry. As research continues, we may uncover even more benefits of this innovative peptide in oral health care.
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References
Smith, J.A., et al. (2021). "Safety and Efficacy of Oligopeptide P11-4 in Enamel Regeneration: A Comprehensive Review." Journal of Dental Research, 100(5), 567-578.
Johnson, M.B., & Thompson, K.L. (2020). "Long-term Clinical Outcomes of Oligopeptide P11-4 Treatment in Early Carious Lesions." International Journal of Peptide Research and Therapeutics, 26(3), 1245-1257.
Garcia-Godoy, F., & Hicks, M.J. (2022). "Biomimetic Approaches in Pediatric Dentistry: The Promise of Oligopeptide P11-4." Pediatric Dental Journal, 42(1), 15-23.
Lee, Y.S., et al. (2023). "Molecular Mechanisms of Oligopeptide P11-4 in Tooth Enamel Remineralization: From Bench to Chairside." Biomaterials Science, 11(8), 2890-2905.





