1. Maculewicz E, Antkowiak B, Antkowiak O, Borecka A, Mastalerz A, Leońska‑Duniec A, Humińska‑Lisowska K, Michałowska‑Sawczyn M, Garbacz A, Lorenz K, Szarska E, Dziuda Ł, Cywińska A and Cięszczyk P. The interactions between interleukin-1 family genes: IL1A, IL1B, IL1RN, and obesity parameters. BMC Genomics. 2022; 23(1): 112. [
DOI:10.1186/s12864-021-08258-x]
2. Al Lami Z, Kurtca M, Uddin Atique M, R. Opekun A, S. Siam M, K. Jalal P, Najafi B, Devaraj S and L. Mindikoglu A. Dawn-to-dusk dry fasting decreases circulating inflammatory cytokines in subjects with increased body mass index. Metabolism Open 2024; 21: 100274. [
DOI:10.1016/j.metop.2024.100274]
3. Khanna D, Khanna S, Khanna P, Kahar P and M Patel B. Obesity: A chronic low-grade inflammation and its markers. Cureus. 2022; 14(2): e22711. [
DOI:10.7759/cureus.22711]
4. Zatterale F, Longo M, Naderi J, Raciti GA, Desiderio A, Miele C and Beguinot F. Chronic adipose tissue inflammation linking obesity to insulin resistance and type 2 diabetes. Front. Physiol. 2020; 10: 1607. [
DOI:10.3389/fphys.2019.01607]
5. Soltani N, Marandi SM, Kazemi M and Esmaeil S. The exercise training modulatory effects on the obesity-induced immunometabolic dysfunctions. Diabetes Metab. Syndr. Obes. 2020; 13: 785-810. [
DOI:10.2147/DMSO.S234992]
6. Sun P, Sun N, Yin W, Sun Y, Fan K, Guo J, Khan A, He Y and Li H. Matrine inhibits IL-1β secretion in primary porcine alveolar macrophages through the MyD88/NF-κB pathway and NLRP3 inflammasome. Veterinary Res. 2019; 50(53): 1-14. [
DOI:10.1186/s13567-019-0671-x]
7. Rodríguez-Hernández H, E Simental-Mendía L, Rodríguez-Ramírez G and A Reyes-Romero M. Obesity and inflammation: epidemiology, risk factors, and markers of inflammation. Int. J. Endocrinol. 2013; 2013: 678159. [
DOI:10.1155/2013/678159]
8. Gonzalo-Encabo P, Maldonado G, Valadés D, Ferragut C and Pérez-López A. The role of exercise training on low-grade systemic inflammation in adults with overweight and obesity: A systematic review. Int. J. Environ. Res. Public Health. 2021; 18(24): 13258. [
DOI:10.3390/ijerph182413258]
9. Feito Y, M Heinrich K, J Butcher S and S Carlos Poston W. High-intensity functional training (HIFT): definition and research implications for improved fitness. Sports(Basel). 2018; 6(3): 76. [
DOI:10.3390/sports6030076]
10. Juhler R.K., Andreasson E, Yu Sh-G and Albertsson P-A. Composition of photosynthetic pigments in thylakoid membrane vesicles from spinach. Photosynthesis Res. 1993; 35: 171-178. [
DOI:10.1007/BF00014747]
11. Amirinejad A, Heshmati J and Shidfar F. Effects of thylakoid intake on appetite and weight loss: a systematic review. J. Diabetes Metab. Disord. 2020; 19(1): 565-573. [
DOI:10.1007/s40200-019-00443-w]
12. Saeidi A, Saei MA, Mohammadi B, Akbarzadeh Zarei HR, Vafaei M, Mohammadi Ash, Barati M, Montazer M, Razi O, Al Kiyumi MH, Laher I, Gholami M, Weiss K, Knechtle B and Zouhal H. Supplementation with spinach-derived thylakoid augments the benefits of high intensity training on adipokines, insulin resistance and lipid profiles in males with obesity. Front. Endocrinol. 2023; 14: 1141796. [
DOI:10.3389/fendo.2023.1141796]
13. Moher D, Dulberg C.S. and Wells G.A. Statistical power, sample size, and their reporting in randomized controlled trials. JAMA. 1994; 272(2): 122-124. [
DOI:10.1001/jama.1994.03520020048013]
14. She J, Nakamura H, Makino K, Ohyama Y and Hashimoto H. Selection of suitable maximum-heart-rate formulas for use with Karvonen formula to calculate exercise intensity. International Journal of Automation and Computing. 2015; 12: 62-69. [
DOI:10.1007/s11633-014-0824-3]
15. Emek S.C., Szilagyi A, Akerlund H-E, Albertsson P-A, Köhnke R, Holm A and Erlanson-Albertsson Ch. A large scale method for preparation of plant thylakoids for use in body weight regulation. Prep. Biochem. Biotechnol. 2009; 40(1): 13-27. [
DOI:10.1080/10826060903413057]
16. Khalafi M and Symonds ME. The impact of high‐intensity interval training on inflammatory markers in metabolic disorders: A meta‐analysis. Scand. J. Med. Sci. Sports. 2020; 30(11): 2020-2036. [
DOI:10.1111/sms.13754]
17. Rose GL, Skinner TL, Mielke GI and Schaumberg MA. The effect of exercise intensity on chronic inflammation: a systematic review and meta-analysis. J. Sci. Med. Sport. 2021; 24(4): 345-351. [
DOI:10.1016/j.jsams.2020.10.004]
18. Allen NG, Higham SM, Mendham AE, Kastelein TE, Larsen PS and Duffield R. The effect of high-intensity aerobic interval training on markers of systemic inflammation in sedentary populations. Eur. J. Appl. Physiol. 2017; 117(6): 1249-1256. [
DOI:10.1007/s00421-017-3613-1]
19. Gerosa-Neto J, Antunes BMM, Campos EZ, Rodrigues J, Ferrari GD, Neto JCR, Junior CRB and Lira FS. Impact of long-term high-intensity interval and moderate-intensity continuous training on subclinical inflammation in overweight/obese adults. J. Exerc. Rehabil. 2016; 12(6): 575-580. [
DOI:10.12965/jer.1632770.385]
20. Ding Y and Xu X. Effects of regular exercise on inflammasome activation-related inflammatory cytokine levels in older adults: A systematic review and meta-analysis. J. Sports Sci. 2021; 39(20): 2338-2352. [
DOI:10.1080/02640414.2021.1932279]
21. Daniela M, Catalina L, Ilie O, Paula M, Daniel-Andrei I and Ioana B. Effects of exercise training on the autonomic nervous system with a focus on anti-inflammatory and antioxidants effects. Antioxidants(Basel). 2022; 11(2): 350. [
DOI:10.3390/antiox11020350]
22. Ishii M, Nakahara T, Araho D, Murakami J and Nishimura M. Glycolipids from spinach suppress LPS-induced vascular inflammation through eNOS and NK-κB signaling. Biomed. Pharmacother. 2017; 91: 111-120. [
DOI:10.1016/j.biopha.2017.04.052]
23. Sherafatmanesh S, Ekramzadeh M, Tanideh N, Golmakani M-T and Koohpeyma F. The effects of thylakoid-rich spinach extract and aqueous extract of caraway (Carum carvi L.) in letrozole-induced polycystic ovarian syndrome rats. BMC Complementary Medicine and Therapies. 2020; 20(249): 1-13. [
DOI:10.1186/s12906-020-03044-w]
24. Hooshmand Moghadam B, Golestani F, Bagheri R, Cheraghloo N, Eskandari M, Wong A, Nordvall M, Suzuki K and Pournemati P. The effects of high-intensity interval training vs. moderate-intensity continuous training on inflammatory markers, body composition, and physical fitness in overweight/obese survivors of breast cancer: a randomized controlled clinical trial. Cancers(Basel). 2021; 13(17): 4386. [
DOI:10.3390/cancers13174386]
25. Timmerman KL, Flynn MG, Coen PM, Markofski MM and Pence BD. Exercise training-induced lowering of inflammatory (CD14+ CD16+) monocytes: a role in the anti-inflammatory influence of exercise? J. LeuKoc. Biol. 2008; 84(5): 1271-1278. [
DOI:10.1189/jlb.0408244]
26. Tracey KJ. Understanding immunity requires more than immunology. Nat. Immunol. 2010; 11(7): 561-564. [
DOI:10.1038/ni0710-561]
27. Saeidi A, Saei MA, Mohammadi B, Akbarzadeh Zarei HR, Vafaei M, Mohammadi ASh, Barati M, Montazer M, Razi O, Al Kiyumi MH, Laher I, Gholami M, Weiss K, Knechtle B and Zouhal H. Supplementation with spinach-derived thylakoid augments the benefits of high intensity training on adipokines, insulin resistance and lipid profiles in males with obesity. Front. Endocrinol. 2023; 14: 1141796. [
DOI:10.3389/fendo.2023.1141796]
28. Khoo J, Dhamodaran S, Chen D-D, Yap S-Y, Chen RY-T and Tian RH-H. Exercise-induced weight loss is more effective than dieting for improving adipokine profile, insulin resistance, and inflammation in obese men. Int. J. Sport Nutr. Exer. Metab. 2015; 25(6): p. 566-575. [
DOI:10.1123/ijsnem.2015-0025]