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1. 5-Amino-1MQ 10mg
2. 5-Amino-1MQ 50mg
3. ACE-031 1mg
4. ACTH 1-39 5mg
5. Adamax 5mg
6. AHK-Cu 50mg
7. AICAR 50mg
8. AICAR 100mg
9. AOD-9604 5mg
10. AOD-9604 10mg
11. Alprostadil 20mcg
12. Amylin 5mg
13. Angiotensin (1–7) 5mg
14. ARA-290 10mg
15. Bimagrumab 5mg
16. Botulinum Toxin 100IU
17. BPC-157 10mg
18. BPC-157 20mg
19. BPC-157 5mg + TB-500 5mg
20. BPC-157 10mg + TB-500 10mg
21. Bronchogen 20mg
22. Cagrilintide 10mg
23. Cagrilintide 20mg
24. Cardiogen 20mg
25. Cartalax 20mg
26. CBL-514 10mg
27. CBL-514 20mg
28. CBL-514 30mg
29. Cerebrolysin 60mg
30. Cerlankin 2mg
31. CGRP (Calcitonin Gene-Related Peptide) 1mg
32. CJC-1295 with DAC 5mg
33. CJC-1295 with DAC 10mg
34. CJC-1295 with DAC 5mg + Ipamorelin 5mg
35. CJC-1295 without DAC 5mg
36. CJC-1295 without DAC 10mg
37. CJC-1295 without DAC 5mg + Ipamorelin 5mg
38. Chonluten 20mg
39. Cortagen 20mg
40. Crystagen 20mg
41. CT-1 Cardiotrophin-1 5mg
42. Dermorphin 5mg
43. Dihexa 5mg
44. DSIP 5mg
45. Dulaglutide 5mg
46. Elabela Apelin 5mg
47. Enfuvirtide 90mg
48. Epithalon 5mg
49. Epithalon 40mg
50. Epithalon 50mg
51. EPO 3000IU
52. FGF21 10mg
53. Follistatin-344 1mg
54. FOXO4 10mg
55. GHK-Cu 50mg
56. GHK-Cu 100mg
57. Ghrelin 10mg
58. GHRP-2 5mg
59. GHRP-6 5mg
60. Glucagon 1mg
61. Glutathione 1500mg
62. Gonadorelin Acetate 2mg
63. Goserelin 10mg
64. GLOW BPC-157 10mg + GHK-Cu 50mg + TB-500 10mg
65. HGH 191AA 15IU
66. HGH 191AA 36IU
67. HGH Fragment 176-191 10mg
68. HGH Fragment 176-191 15mg
69. HMG (Human Menopausal Gonadotropin) 75IU
70. Humanin 10mg
71. Hyaluronic Acid 5mg
72. Hexarelin Acetate 2mg
73. Hexarelin Acetate 5mg
74. IGF-1 LR3 1mg
75. Ipamorelin 5mg
76. Ipamorelin 10mg
77. Kisspeptin-10 5mg
78. Kisspeptin-10 10mg
79. KLOW BPC-157 10mg + GHK-Cu 50mg + TB-500 10mg + KPV 10mg
80. KPV 10mg
81. Leuprolide Acetate 10mg
82. Liraglutide 5mg
83. Livagen 20mg
84. LL-37 5mg
85. Lysyl Oxidase 30mg
86. Matrixyl 10mg
87. Mazdutide 10mg
88. Melanotan I 10mg
89. Melanotan II 10mg
90. Melatonin 10mg
91. MGF 2mg
92. MOTS-c 10mg
93. MOTS-c 40mg
94. NAD+ 100mg
95. NAD+ 500mg
96. NAD+ 1000mg
97. Nesiritide 5mg
98. Neuropeptide Y (NPY) 10mg
99. Ovagen 20mg
100. Oxytocin Acetate 5mg
101. Oxytocin Acetate 10mg
102. P21 5mg
103. P21 10mg
104. PACAP 5mg
105. Pancragen 20mg
106. PE 22-28 10mg
107. PEG-MGF 2mg
108. Pinealon 5mg
109. Pinealon 10mg
110. Pinealon 20mg
111. PNC-27 5mg
112. PNC-27 10mg
113. Prostamax 20mg
114. PT-141 10mg
115. PTH Fragments 10mg
116. Relamorelin 5mg
117. Retatrutide 10mg
118. Retatrutide 20mg
119. Retatrutide 30mg
120. Retatrutide 40mg
121. Retatrutide 60mg
122. Retatrutide 5mg + Cagrilintide 5mg
123. Selank 5mg
124. Selank 10mg
125. Semaglutide 5mg + Cagrilintide 5mg
126. Semax 5mg
127. Sermorelin 5mg
128. SLU-PP-332 10mg
129. SNAP-8 10mg
130. SS-31 10mg
131. SS-31 50mg
132. Survodutide 10mg
133. TB-500 10mg
134. TB-500 (FRAG) 10mg
135. Teduglutide 5mg
136. Teriparatide 10mg
137. Tesamorelin 5mg
138. Tesamorelin 10mg
139. Tesamorelin 20mg
140. Tesamorelin 5mg + Ipamorelin 5mg
141. Tesofensine 1mg
142. Testagen 20mg
143. Thymalin 10mg
144. Thymosin Alpha-1 5mg
145. Thymosin Alpha-1 10mg
146. Treprostinil 5mg
147. Vesugen 20mg
148. VIP 5mg
149. VIP 10mg
150. Vilon 20mg

Cagrilintide 10mg

Reduces appetite / GLP-1/GIP agonist that decreases caloric intake Brief Description

Cagrilintide is an innovative long-acting amylin analog, featuring N-terminal lipidation that extends its half-life through albumin binding. This synthetic peptide mimics and enhances the effects of natural amylin, acting simultaneously on multiple metabolic and appetite-regulation pathways in both homeostatic and hedonic systems.

R$1.334,00

10 in stock

Warning — For Research Use Only

Scientific content intended for research laboratories only. It is not a clinical, therapeutic, or diagnostic recommendation. Use is restricted to qualified professionals. Consult specialists before purchasing or using. Biopelabs reinforces its commitment to ethical and responsible use.

Description

Cagrilintide is an innovative long-acting amylin analog, featuring N-terminal lipidation that extends its half-life through albumin binding. This synthetic peptide mimics and enhances the effects of natural amylin, acting simultaneously on multiple metabolic and appetite-regulation pathways in both homeostatic and hedonic systems.

 

 

Important Information

Properties Value
Molecular Formula C194H312N54O59S2
Molecular Weight 4,409 g/mol
Synonyms 1415456-99-3, Cagrilintide [INN], AO43BIF1U8, LDERDVMBIYGIOI-IZVMHKDJSA-N

 

 

Main Structure of the Cagrilintide Peptide

Cagrilintide

Source: PubChem

Lyophilized Peptides
The peptides undergo a lyophilization process, a technique that enhances stability and shelf life while preserving purity and molecular structure during storage. It is important to note that no fillers are used during this procedure.

 

Intended Use
Biopelabs advises: this material is provided exclusively as a chemical input for research purposes. Its use is restricted to in vitro assays and experimental activities in laboratory environments. The information presented is strictly for informational and educational purposes. Handling must be carried out only by properly qualified professionals. This product is not classified as a medication, food, or cosmetic and must not be used, marketed, or described as such.

Research

Scientific Research on Cagrilintide (Cagrilintide)

Cagrilintide is a long-acting synthetic analog of human amylin, developed for investigation and therapeutic application in metabolic disorders, particularly obesity and appetite regulation. Structurally, it is a modified peptide with strategic amino acid substitutions and lipid acylation to prolong plasma half-life and enhance metabolic stability.

Endogenous amylin is a peptide hormone co-secreted with insulin by pancreatic β-cells and plays a significant role in postprandial glycemic control and central regulation of satiety. Cagrilintide was designed to maintain affinity for amylin receptors and potentially interact with calcitonin gene-related peptide (CGRP) receptors, exhibiting a prolonged pharmacodynamic profile.

 

Mechanism of Action and Inhibition

Cagrilintide acts as an agonist of amylin receptors, which belong to the family of G protein-coupled receptors (GPCRs), formed by the association of the calcitonin receptor (CTR) with receptor activity-modifying proteins (RAMPs).

Activation of these receptors results in:
• Delayed gastric emptying
• Reduced food intake via central action in the hypothalamus and area postrema
• Suppression of postprandial glucagon secretion
• Modulation of satiety signaling

At the intracellular level, receptor activation promotes an increase in cyclic AMP (cAMP) and subsequent activation of protein kinase A (PKA)-dependent pathways.

There is no consolidated evidence of direct inhibitory effects on specific metabolic enzymes; its action is predominantly receptor agonism within peptidergic systems.

 

Metabolic Impacts Investigated

Clinical and preclinical studies have demonstrated that Cagrilintide:
• Significantly reduces caloric intake
• Promotes sustained weight loss
• Improves glycemic control parameters
• Reduces glycated hemoglobin levels in insulin resistance contexts
• May positively influence cardiometabolic risk markers

Combination therapy with GLP-1 receptor agonists (such as semaglutide) has been extensively investigated, demonstrating a synergistic effect on body weight reduction, suggesting complementary action between amylin and GLP-1 pathways in central energy regulation.

 

Investigation in Oncological Models

To date, there is no robust evidence of direct investigation of Cagrilintide in oncological models with primary antitumor objectives.

However, considering that:
• Obesity is a risk factor for multiple types of cancer
• Metabolic modulation influences proliferative pathways
• Amylin-related signaling may indirectly interact with metabolic and inflammatory axes

There is theoretical interest in evaluating weight-modulating agents as potential indirect modulators of oncological risk. However, specific experimental evidence for Cagrilintide in oncology remains limited.

 

Pharmacokinetic Considerations in Research

Cagrilintide was developed with structural modifications that promote:
• Reversible binding to plasma albumin
• Extended half-life compatible with once-weekly subcutaneous administration
• Slow absorption after subcutaneous injection
• Reduced proteolytic degradation

Its pharmacokinetic profile demonstrates:
• Delayed plasma peak
• Sustained systemic exposure
• Moderate interindividual variability

The formulation was designed to allow low-frequency dosing regimens, improving adherence in clinical studies.

 

 

Other Relevant Research Applications

  • Combined investigation with GLP-1 agonists to enhance weight loss
    • Studies on hypothalamic regulation of appetite
    • Modulation of neural circuits involved in food reward
    • Evaluation in metabolic syndrome models
    • Potential impact on obesity-associated hepatic steatosis

The interaction between amylin and GLP-1 signaling remains an active area of research in metabolic endocrinology.

 

Final Considerations

Cagrilintide represents a long-acting amylin analog with a pharmacological profile focused on the modulation of satiety and energy metabolism. Its relevance in research is primarily centered on the investigation of obesity, glycemic regulation, and combination therapies with incretin agonists.

Although oncological data remain limited, its role in modulating body weight and the systemic metabolic environment maintains indirect scientific interest. The development of long-acting amylin analogs reinforces the importance of neuroendocrine regulation in metabolic control.

 

References
Hay, D. L., Chen, S., Lutz, T. A., Parkes, D. G., & Roth, J. D. (2015). Amylin: Pharmacology, physiology, and clinical potential. Pharmacological Reviews, 67(3), 564–600. https://doi.org/10.1124/pr.114.009092
Lutz, T. A. (2010). The role of amylin in the control of energy homeostasis. American Journal of Physiology - Regulatory, Integrative and Comparative Physiology, 298(6), R1475–R1484. https://doi.org/10.1152/ajpregu.00703.2009
Frias, J. P., et al. (2021). Effect of coadministration of cagrilintide with semaglutide on body weight in adults with overweight or obesity. The Lancet, 397(10286), 1736–1748. https://doi.org/10.1016/S0140-6736(21)00845-8
Lau, J., Bloch, P., Schäffer, L., Pettersson, I., Spetzler, J., Kofoed, J., et al. (2015). Discovery of the once-weekly glucagon-like peptide-1 (GLP-1) analogue semaglutide. Journal of Medicinal Chemistry, 58(18), 7370–7380. https://doi.org/10.1021/acs.jmedchem.5b00726

 

Scientific Reviewer
This content was reviewed by Dr. Ky H. Le, MD. Dr. Ky H. Le is a family medicine physician in Aiea, Hawaii. He earned his medical degree from St. George’s University School of Medicine and has been practicing for over 20 years. He has expertise in treating obesity, diabetes, hypertension, and high blood pressure, among other conditions. Dr. Ky H. Le accepts Medicare, Aetna, Humana, Blue Cross, and United Healthcare.
Ref.: https://health.usnews.com/doctors/ky-le-371599#expertise

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Additional information

Weight 40 g
Dimensions 7 × 3,6 × 8 cm

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