Have a personal or library account? Click to login
Bovine Lung Peptides after Trypsinolysis Reveal Anti-Exudative Activity Cover

Bovine Lung Peptides after Trypsinolysis Reveal Anti-Exudative Activity

Open Access
|Dec 2024

References

  1. Angelova H, Krumova E, Dzhambazova E, Pechlivanova D. Effects of the antinociceptive dipeptide L-tyrosine-L-arginine (kyotorphin) on the motivation, anxiety, and memory in rats. Folia Med (Plovdiv). 2021;63(2):189–196.
  2. Ao J, Li B. Amino acid composition and antioxidant activities of hydrolysates and peptide fractions from porcine collagen. Food Sci Technol Int. 2012;18(5):425–434.
  3. Azevedo Ade O, Campos JJ, de Souza GG, et al. Antinociceptive and anti-inflammatory effects of myricetin 3-O-β-galactoside isolated from Davilla elliptica: Involvement of the nitrergic system. J Nat Med. 2015;69(4):487–493.
  4. Bamdad F, Shin SH, Suh JW, Nimalaratne C, Sunwoo H. Anti-inflammatory and antioxidant properties of casein hydrolysate produced using high hydrostatic pressure combined with proteolytic enzymes. Molecules. 2017;22(4):609.
  5. Ciubotaru I, Potempa LA, Wander RC. Production of modified C-reactive protein in U937-derived macrophages. Exp Biol Med (Maywood). 2005;230(10):762–770.
  6. Couck e EM, Akbar H, Kahloon A, Lopez PP. Biliary Obstruction. StatPearls Publishing; St Petersburg, Florida, 2023.
  7. Cruz-Casas DE, Aguilar CN, Ascacio-Valdés JA, Rodríguez-Herrera R, Chávez-González ML, Flores-Gallegos AC. Enzymatic hydrolysis and microbial fermentation: The most favorable biotechnological methods for the release of bioactive peptides. Food Chem (Oxf). 2021;3:100047.
  8. Doig C, Seagar AL, Watt B, Forbes KJ. The efficacy of the heat killing of Mycobacterium tuberculosis. J Clin Pathol. 2002;55(10):778–779.
  9. Dong Y, Wen C, Li T, et al. The effects of amino acids on the gel properties of potassium iota carrageenan. Food Hydrocoll. 2019;95:378–384.
  10. Edwards AB, Mastaglia FL, Knuckey NW, Meloni BP. Neuroprotective cationic arginine-rich peptides (CARPs): An assessment of their clinical safety. Drug Saf. 2020;43(10):957–969.
  11. Hembrom R, Roychaudhuri BK, Saha AK, et al. Evaluation of the validity of high serum antistreptolysin O titre only, as an indication for tonsillectomy. Indian J Otolaryngol Head Neck Surg. 2014;66(3):232–236.
  12. Ikarashi Y, Takahashi A, Ishimaru H, Shiobara T, Maruyama Y. The role of nitric oxide in striatal acetylcholine release induced by N-methyl-D-aspartate. Neurochem Int. 1998;33(3):255–261.
  13. Iwata M, Suzuki S, Asai Y, Inoue T, Takagi K. Involvement of nitric oxide in a rat model of carrageenin-induced pleurisy. Mediators Inflamm. 2010;2010:682879.
  14. Kaur K, Singh L, Kaur A, Bhatti R. Exploring the possible mechanism involved in the antinociceptive effect of β-sitosterol: Modulation of oxidative stress, nitric oxide and IL-6. Inflammopharmacology. 2023;31(1):517–527.
  15. Kawabata A, Fukuzumi Y, Fukushima Y, Takagi H. Antinociceptive effect of L-arginine on the carrageenin-induced hyperalgesia of the rat: Possible involvement of central opioidergic systems. Eur J Pharmacol. 1992a;218(1):153–158.
  16. Kawabata A, Nishimura Y, Takagi H. L-leucyl-L-arginine, naltrindole and D-arginine block antinociception elicited by L-arginine in mice with carrageenin-induced hyperalgesia. Br J Pharmacol. 1992b;107(4):1096–1101.
  17. Kiewiet MBG, Gros M, van Neerven RJJ, Faas MM, de Vos P. Immunomodulating properties of protein hydrolysates for application in cow’s milk allergy. Pediatr Allergy Immunol. 2015;26(3):206–217.
  18. Kumar R, Gupta YK, Singh S. Anti-inflammatory and anti-granuloma activity of Berberis aristata DC. in experimental models of inflammation. Indian J Pharmacol. 2016;48(2):155–161.
  19. Lundberg JO, Weitzberg E, Gladwin MT. The nitrate–nitrite–nitric oxide pathway in physiology and therapeutics. Nat Rev Drug Discov. 2008;7:156–167.
  20. McGovern AJ, Vitkovitsky IV, Jones DL, Mullins ME. Can AST/ALT ratio indicate recovery after acute paracetamol poisoning? Clin Toxicol (Phila). 2015;53(3):164–167.
  21. Ndiaye F, Vuong T, Duarte J, Aluko RE, Matar C. Anti-oxidant, anti-inflammatory and immunomodulating properties of an enzymatic protein hydrolysate from yellow field pea seeds. Eur J Nutr. 2012;51(1):29–37.
  22. Ngashangva L, Bachu V, Goswami P. Development of new methods for determination of bilirubin. J Pharm Biomed Anal. 2019;162:272–285.
  23. Omote K, Hazama K, Kawamata T, et al. Peripheral nitric oxide in carrageenan-induced inflammation. Brain Res. 2001;912(2):171–175.
  24. O’Sullivan S, Lafarga T, Hayes M, O’Brien NM. Bioactivity of bovine lung hydrolysates prepared using papain, pepsin, and Alcalase. J Food Biochem. 2017;41:e12406.
  25. O’Sullivan S, Lafarga T, Hayes M, O’Brien NM. Potential bioactivity of hydrolysates derived from bovine lung. Proc Nutr Soc. 2016;75(OCE3):E168.
  26. Otto-Ślusarczyk D, Graboń W, Mielczarek-Puta M. Aminotransferaza asparaginianowa – kluczowy enzym w metabolizmie ogólnoustrojowym człowieka [Aspartate aminotransferase – key enzyme in the human systemic metabolism]. Postepy Hig Med Dosw (Online). 2016;70:219–230.
  27. Ozer J, Ratner M, Shaw M, Bailey W, Schomaker S. The current state of serum biomarkers of hepatotoxicity. Toxicology. 2008;245(3):194–205.
  28. Park J, Mehrotra R, Rhee CM, et al. Serum creatinine level, a surrogate of muscle mass, predicts mortality in peritoneal dialysis patients. Nephrol Dial Transplant. 2013;28(8):2146–2155.
  29. Parlar A, Arslan SO, Çam SA. Glabridin alleviates inflammation and nociception in rodents by activating BKCa channels and reducing NO levels. Biol Pharm Bull. 2020;43(5):884–897.
  30. Payne E, Harrington K, Richard P, et al. Effects of vancomycin on persistent pain-stimulated and pain-depressed behaviors in female Fischer rats with or without voluntary access to running wheels. J Pain. 2021;22(11):1530–1544.
  31. Rafter I, Gråberg T, Kotronen A, et al. Isoform-specific alanine aminotransferase measurement can distinguish hepatic from extrahepatic injury in humans. Int J Mol Med. 2012;30(5):1241–1249.
  32. Ridker PM. Clinical application of C-reactive protein for cardiovascular disease detection and prevention. Circulation 2003;107(3):363–369.
  33. Rivera-Jiménez J, Berraquero-García C, Pérez-Gálvez R, et al. Peptides and protein hydrolysates exhibiting anti-inflammatory activity: Sources, structural features and modulation mechanisms. Food Funct. 2022;13(24):12510–12540.
  34. Sproston NR, Ashworth JJ. Role of C-reactive protein at sites of inflammation and infection. Front Immunol. 2018;9:754.
  35. van Dijk A, van Eldik M, Veldhuizen EJ, et al. Immunomodulatory and anti-inflammatory activities of chicken cathelicidin-2 derived peptides. PLoS One. 2016;11(2):e0147919.
  36. Washington IM, Van Hoosier G. Clinical biochemistry and hematology. The Laboratory Rabbit, Guinea Pig, Hamster, and Other Rodents; Academic Press, London, UK, 2012, p. 57–116.
  37. Yaren H, Mollaoglu H, Kurt B, et al. Lung toxicity of nitrogen mustard may be mediated by nitric oxide and peroxynitrite in rats. Res Vet Sci. 2007;83(1):116–122.
  38. Yuan L, Chu Q, Wu X, et al. Anti-inflammatory and antioxidant activity of peptides from ethanol-soluble hydrolysates of sturgeon (Acipenser schrenckii) cartilage. Front Nutr. 2021;8:689648.
Language: English
Page range: 16 - 24
Submitted on: Apr 8, 2024
Accepted on: Oct 8, 2024
Published on: Dec 4, 2024
Published by: Comenius University in Bratislava, Faculty of Pharmacy
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year
Related subjects:

© 2024 U. J. Ishimov, N. Gafurova, A. M. Asrorov, A. Wali, N. Mukhamedov, S. O. Olimjonov, N. Vypova, S. Khamidov, S. Sh. Abdirahimova, J. F. Ziyavitdinov, published by Comenius University in Bratislava, Faculty of Pharmacy
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.