| [1] |
Hauer-Jensen M, Denham JW, Andreyev HJ. 2014. Radiation enteropathy—pathogenesis, treatment and prevention. |
| [2] |
De Ruysscher D, Niedermann G, Burnet NG, Siva S, Lee AWM, et al. 2019. Radiotherapy toxicity. |
| [3] |
Huan DQ, Hop NQ, Son NT. 2023. Oxymatrine: a current overview of its health benefits. |
| [4] |
Ge GF, Shi WW, Yu CH, Jin XY, Zhang HH, et al. 2017. Baicalein attenuates vinorelbine-induced vascular endothelial cell injury and chemotherapeutic phlebitis in rabbits. |
| [5] |
Yang T, Wang R, Liu H, Wang L, Li J, et al. 2021. Berberine regulates macrophage polarization through IL-4-STAT6 signaling pathway in Helicobacter pylori-induced chronic atrophic gastritis. |
| [6] |
Kwak SY, Jang WI, Lee SB, Kim MJ, Park S, et al. 2022. Centella asiatica-derived endothelial paracrine restores epithelial barrier dysfunction in radiation-induced enteritis. |
| [7] |
Zhang L, Wei W. 2020. Anti-inflammatory and immunoregulatory effects of paeoniflorin and total glucosides of paeony. |
| [8] |
Zhang J, Luan ZL, Huo XK, Zhang M, Morisseau C, et al. 2023. Direct targeting of sEH with alisol B alleviated the apoptosis, inflammation, and oxidative stress in cisplatin-induced acute kidney injury. |
| [9] |
Sun CP, Zhou JJ, Yu ZL, Huo XK, Zhang J, et al. 2022. Kurarinone alleviated Parkinson's disease via stabilization of epoxyeicosatrienoic acids in animal model. |
| [10] |
Zhang J, Zhang M, Huo XK, Ning J, Yu ZL, et al. 2023. Macrophage inactivation by small molecule wedelolactone via targeting sEH for the treatment of LPS-induced acute lung injury. |
| [11] |
Zhang J, Zhang HL, Xu XR, Feng YL, Zhu QM, et al. 2025. Targeting PBK with small-molecule 1-O-acetyl-4R,6S-britannilactone for the treatment of neuroinflammation. |
| [12] |
Liu L, Xiao N, Liang J. 2023. Comparative efficacy of oral drugs for chronic radiation proctitis — a systematic review. |
| [13] |
Wang Z, Wang Q, Wang X, Zhu L, Chen J, et al. 2019. Gut microbial dysbiosis is associated with development and progression of radiation enteritis during pelvic radiotherapy. |
| [14] |
Ge Z, Chen C, Chen J, Jiang Z, Chen L, et al. 2024. Gut microbiota-derived 3-hydroxybutyrate blocks GPR43-mediated IL6 signaling to ameliorate radiation proctopathy. |
| [15] |
Fan J, Lin B, Fan M, Niu T, Gao F, et al. 2022. Research progress on the mechanism of radiation enteritis. |
| [16] |
Izumi Y, Nakashima T, Masuda T, Shioya S, Fukuhara K, et al. 2019. Suplatast tosilate reduces radiation-induced lung injury in mice through suppression of oxidative stress. |
| [17] |
He KY, Lei XY, Wu DH, Zhang L, Li JQ, et al. 2023. Akkermansia muciniphila protects the intestine from irradiation-induced injury by secretion of propionic acid. |
| [18] |
Wijerathne H, Langston JC, Yang Q, Sun S, Miyamoto C, et al. 2021. Mechanisms of radiation-induced endothelium damage: emerging models and technologies. |
| [19] |
Xue Q, Lai H, Zhang H, Li G, Pi F, et al. 2024. Selenium attenuates radiation colitis by regulating cGAS-STING signaling. |
| [20] |
Prame Kumar K, Ooi JD, Goldberg R. 2023. The interplay between the microbiota, diet and T regulatory cells in the preservation of the gut barrier in inflammatory bowel disease. |
| [21] |
Qu W, Zhang L, Ao J. 2020. Radiotherapy induces intestinal barrier dysfunction by inhibiting autophagy. |
| [22] |
Young MA, Daly CS, Taylor E, James R, Clarke AR, et al. 2018. Subtle deregulation of the Wnt-signaling pathway through loss of Apc2 reduces the fitness of intestinal stem cells. |
| [23] |
Wang S, Chen Y-G. 2018. BMP signaling in homeostasis, transformation and inflammatory response of intestinal epithelium. |
| [24] |
Walton KD, Gumucio DL. 2021. Hedgehog signaling in intestinal development and homeostasis. |
| [25] |
Yang Y, Wang Y, Zhao L, Wang F, Li M, et al. 2023. Chinese herbal medicines for treating ulcerative colitis via regulating gut microbiota-intestinal immunity axis. |
| [26] |
Li Y, Song K, Zhang H, Yuan M, An N, et al. 2020. Anti-inflammatory and immunomodulatory effects of baicalin in cerebrovascular and neurological disorders. |
| [27] |
Jang H, Lee J, Park S, Kim JS, Shim S, et al. 2019. Baicalein mitigates radiation-induced enteritis by improving endothelial dysfunction. |
| [28] |
Li H, Yang W, Wu X, Tian L, Zhang W, et al. 2024. Cationic fructan-based pH and intestinal flora dual stimulation nanoparticle with berberine for targeted therapy of IBD. |
| [29] |
Tu S, Huang Y, Tian H, Xu L, Wang X, et al. 2024. Berberine enhances the function of intestinal stem cells in healthy and radiation-injured mice. |
| [30] |
Sheng L, Hu F, Yu H, Tao X, Jia R, et al. 2022. Paeoniflorin inhibits ASK1-TF axis by up-regulating SOCS3 to alleviate radiation enteritis. |
| [31] |
Zhao Y, Wang Q, Yan S, Zhou J, Huang L, et al. 2021. Bletilla striata polysaccharide promotes diabetic wound healing through inhibition of the NLRP3 inflammasome. |
| [32] |
Usmani K, Jain SK, Yadav S. 2023. Mechanism of action of certain medicinal plants for the treatment of asthma. |
| [33] |
Gong X, Shao J, Guo S, Pan J, Fan X. 2021. Determination of inhibitory activity of Salvia miltiorrhiza extracts on xanthine oxidase with a paper-based analytical device. |
| [34] |
Wang H, Zhu W, Hong Y, Wei W, Zheng N, et al. 2024. Astragalus polysaccharides attenuate chemotherapy-induced immune injury by modulating gut microbiota and polyunsaturated fatty acid metabolism. |
| [35] |
Chen Y, Fei S, Yu X, Tan M. 2023. Dandelion (Taraxacum mongolicum) extract alleviated H(2)O(2)-induced oxidative damage: the underlying mechanism revealed by metabolomics and lipidomics. |
| [36] |
Siddiqui MT, Olceroglu B, Gumus ZP, Senisik AM, Barlas FB. 2025. Enhancing radiotherapy tolerance with papaya seed-derived nanoemulsions. |
| [37] |
Rana R, Pundir S, Lal UR, Chauhan R, Upadhyay SK, et al. 2023. Phytochemistry and biological activity of Erigeron annuus (L.) Pers. |
| [38] |
Xie Z, Sintara M, Chang T, Ou B. 2015. Daily consumption of a mangosteen-based drink improves in vivo antioxidant and anti-inflammatory biomarkers in healthy adults: a randomized, double-blind, placebo-controlled clinical trial. |
| [39] |
George G, Shyni GL, Abraham B, Nisha P, Raghu KG. 2021. Downregulation of TLR4/MyD88/p38MAPK and JAK/STAT pathway in RAW 264.7 cells by Alpinia galanga reveals its beneficial effects in inflammation. |
| [40] |
Kim YY, Hur G, Jang HJ, Jeong S, Lee SW, et al. 2024. Ferulic acid derivatives ameliorate intestine barrier destruction by alleviating inflammatory responses in dextran sulfate sodium-induced inflammatory bowel disease. |
| [41] |
Wang L, Chen Q, Song H, Xing W, Shi J, et al. 2024. The anti-colorectal cancer effect and metabolites of Agrimonia pilosa Ledeb. |
| [42] |
Tousif MI, Nazir M, Saleem M, Tauseef S, Shafiq N, et al. 2022. Psidium guajava L. an incalculable but underexplored food crop: its phytochemistry, ethnopharmacology, and industrial applications. |
| [43] |
Ye Y, Li X, Chen M, Wang X, Li M, et al. 2024. The extracts derived from Artemisia japonica Thunb. leaves mitigate oxidative stress and inflammatory response induced by LPS in RAW264.7 cells through modulation of the Nrf2/HO-1 signaling pathway. |
| [44] |
Zhou Q, Zhang N, Hu T, Xu H, Duan X, et al. 2022. Dietary phenolic-type Nrf2-activators: implications in the control of toxin-induced hepatic disorders. |
| [45] |
Zhou W, Chen K, Lu Q, Luo Y, Zhang C, et al. 2020. The protective effect of rosavin from Rhodiola rosea on radiation-induced intestinal injury. |
| [46] |
Lv M, Ding R, Ma P, Feng Y, Zeng S, et al. 2024. Network pharmacology analysis on the mechanism of Xihuangwan in treating rectal cancer and radiation enteritis. |
| [47] |
Ryan JL, Heckler CE, Ling M, Katz A, Williams JP, et al. 2013. Curcumin for radiation dermatitis: a randomized, double-blind, placebo-controlled clinical trial of thirty breast cancer patients. |
| [48] |
Wang C, Nan X, Pei S, Zhao Y, Wang X, et al. 2021. Salidroside and isorhamnetin attenuate urotensin II-induced inflammatory response in vivo and in vitro: involvement in regulating the RhoA/ROCK II pathway. |
| [49] |
Zhang Z, Jia Y, Zhang C, Zhang Z, Jin F, et al. 2024. Efficacy of epigallocatechin gallate (EGCG) and its underlying mechanism in preventing bisphenol-A-induced metabolic disorders in mice. |
| [50] |
Wan X, Wu J, Wang X, Cui L, Xiao Q. 2024. Accumulation patterns of flavonoids and phenolic acids in different colored sweet potato flesh revealed based on untargeted metabolomics. |
| [51] |
Joy J, Alarifi S, Alsuhaibani E, Nair CK. 2015. Protection of DNA from ionizing radiation-induced lesions by asiaticoside. |
| [52] |
Glomb T, Minta J, Nowosadko M, Radzikowska J, Świątek P. 2024. Search for new compounds with anti-inflammatory activity among 1,2,4-triazole derivatives. |
| [53] |
Liao T, Shen F, Zhu H, Mu W, Qian H, Liu Y. 2024. Extracellular polysaccharides from Sporidiobolus pararoseus alleviates rheumatoid through ameliorating gut barrier function and gut microbiota. |
| [54] |
Wang L, Li Y, Zhang YJ, Peng LH. 2024. Intestinal microecological transplantation for a patient with chronic radiation enteritis: a case report. |
| [55] |
Liu H, Li X, Duan Y, Xie JB, Piao XL. 2021. Mechanism of gypenosides of Gynostemma pentaphyllum inducing apoptosis of renal cell carcinoma by PI3K/AKT/mTOR pathway. |
| [56] |
Luo L, Xue J, Shao Z, Zhou Z, Tang W, et al. 2023. Recent developments in Salvia miltiorrhiza polysaccharides: Isolation, purification, structural characteristics and biological activities. |
| [57] |
Gao J, Peng S, Shan X, Deng G, Shen L, et al. 2019. Inhibition of AIM2 inflammasome-mediated pyroptosis by Andrographolide contributes to amelioration of radiation-induced lung inflammation and fibrosis. |
| [58] |
Chen Q, Zhou W, Huang Y, Tian Y, Wong SY, et al. 2022. Umbelliferone and scopoletin target tyrosine kinases on fibroblast-like synoviocytes to block NF-κB signaling to combat rheumatoid arthritis. |
| [59] |
Li J, Zheng X, Li X, Yang J, Liu W, et al. 2022. Study on the protective effect and mechanism of Liriodendrin on radiation enteritis in mice. |
| [60] |
Kou X, Chen Q, Li X, Li M, Kan C, et al. 2015. Quantitative assessment of bioactive compounds and the antioxidant activity of 15 jujube cultivars. |
| [61] |
Ghelani H, Khursheed M, Adrian TE, Jan RK. 2022. Anti-inflammatory effects of compounds from echinoderms. |
| [62] |
Jian Y, Zhang D, Liu M, Wang Y, Xu ZX. 2021. The impact of gut microbiota on radiation-induced enteritis. |
| [63] |
Zhang T, Shi L, Li Y, Mu W, Zhang H, et al. 2021. Polysaccharides extracted from Rheum tanguticum ameliorate radiation-induced enteritis via activation of Nrf2/HO-1. |
| [64] |
Ahmadvand MH, Nikzad S, Hashemi SP, Khoshghadam A, Kalhori F, et al. 2023. Evaluating the mitigation effect of spirulina against radiation-induced heart injury. |
| [65] |
Liu Y, Zhang Y, Mei N, Li W, Yang T, Xie J. 2023. Three acidic polysaccharides derived from sour jujube seeds protect intestinal epithelial barrier function in LPS induced Caco-2 cell inflammation model. |
| [66] |
Mao N, Yu Y, Lu X, Yang Y, Liu Z, et al. 2024. Preventive effects of matrine on LPS-induced inflammation in RAW 264.7 cells and intestinal damage in mice through the TLR4/NF-κB/MAPK pathway. |
| [67] |
Sha H, Gu Y, Shen W, Zhang L, Qian F, et al. 2019. Rheinic acid ameliorates radiation-induced acute enteritis in rats through PPAR-γ/NF-κB. |
| [68] |
Xiang Y, Xiang M, Mao Y, Huang L, He Q, et al. 2025. Insights into structure-antioxidant activity relationships of polyphenol-phospholipid complexes: the effect of hydrogen bonds formed by phenolic hydroxyl groups. |
| [69] |
Petrou AL, Petrou PL, Ntanos T, Liapis A. 2018. A possible role for singlet oxygen in the degradation of various antioxidants. a meta-analysis and review of literature data. |
| [70] |
Francisqueti-Ferron FV, Ferron AJT, Garcia JL, de Almeida Silva CCV, Costa MR, et al. 2019. Basic concepts on the role of nuclear factor erythroid-derived 2-like 2 (Nrf2) in age-related diseases. |
| [71] |
Chen Z, Ding W, Yang X, Lu T, Liu Y. 2024. Isoliquiritigenin, a potential therapeutic agent for treatment of inflammation-associated diseases. |
| [72] |
Wang J, Zou J, Shi Y, Zeng N, Guo D, et al. 2024. Traditional Chinese medicine and mitophagy: a novel approach for cardiovascular disease management. |
| [73] |
Wu SK, Wang L, Wang F, Zhang J. 2024. Resveratrol improved mitochondrial biogenesis by activating SIRT1/PGC-1α signal pathway in SAP. |
| [74] |
Janků M, Luhová L, Petřivalský M. 2019. On the origin and fate of reactive oxygen species in plant cell compartments. |
| [75] |
Moldogazieva NT, Zavadskiy SP, Astakhov DV, Terentiev AA. 2023. Lipid peroxidation: reactive carbonyl species, protein/DNA adducts, and signaling switches in oxidative stress and cancer. |
| [76] |
Zhang JJ, Mao M, Shao M-M, Wang MC. 2024. Therapeutic potential of natural flavonoids in pulmonary arterial hypertension: a review. |
| [77] |
Ding X, Zhu C, Wang W, Li M, Ma C, et al. 2024. SIRT1 is a regulator of autophagy: implications for the progression and treatment of myocardial ischemia-reperfusion. |
| [78] |
Márquez-Flores YK, Martínez-Galero E, Correa-Basurto J, Sixto-López Y, Villegas I, et al. 2024. Daidzein and equol: ex vivo and in silico approaches targeting COX-2, iNOS, and the canonical inflammasome signaling pathway. |
| [79] |
Jasemi SV, Khazaei H, Morovati MR, Joshi T, Aneva IY, et al. 2024. Phytochemicals as treatment for allergic asthma: therapeutic effects and mechanisms of action. |
| [80] |
Niu Z, Liu Y, Shen R, Jiang X, Wang Y, et al. 2024. Ginsenosides from Panax ginseng as potential therapeutic candidates for the treatment of inflammatory bowel disease. |
| [81] |
Burge K, Gunasekaran A, Eckert J, Chaaban H. 2019. Curcumin and intestinal inflammatory diseases: molecular mechanisms of protection. |
| [82] |
Liu L, Gu H, Liu H, Jiao Y, Li K, et al. 2014. Protective effect of resveratrol against IL-1β-induced inflammatory response on human osteoarthritic chondrocytes partly via the TLR4/MyD88/NF-κB signaling pathway: an "in vitro study". |
| [83] |
Gao Q, Li G, Zu Y, Xu Y, Wang C, et al. 2024. Ginsenoside Rg1 alleviates ANIT-induced cholestatic liver injury by inhibiting hepatic inflammation and oxidative stress via SIRT1 activation. |
| [84] |
Luo Y, Guo J, Zhang P, Cheuk YC, Jiang Y, et al. 2021. Mesenchymal stem cell protects injured renal tubular epithelial cells by regulating mTOR-mediated Th17/Treg axis. |
| [85] |
Wu D, Ding L, Tang X, Wang W, Chen Y, et al. 2019. Baicalin protects against hypertension-associated intestinal barrier impairment in part through enhanced microbial production of short-chain fatty acids. |
| [86] |
Zhang H, Shan Y, Wu Y, Xu C, Yu X, et al. 2017. Berberine suppresses LPS-induced inflammation through modulating Sirt1/NF-κB signaling pathway in RAW264.7 cells. |
| [87] |
Shen J, Jiao W, Yuan B, Xie H, Chen Z, et al. 2024. Oral curcumin–thioketal–inulin conjugate micelles against radiation-induced enteritis. |
| [88] |
Chen SM, Guo BJ, Feng AQ, Wang XL, Zhang SL, et al. 2024. Pathways regulating intestinal stem cells and potential therapeutic targets for radiation enteropathy. |
| [89] |
Liu J, Xiao Q, Xiao J, Niu C, Li Y, et al. 2022. Wnt/β-catenin signalling: function, biological mechanisms, and therapeutic opportunities. |
| [90] |
Yang J, Sun Q, Liu X, Yang Y, Rong R, et al. 2024. Targeting Notch signaling pathways with natural bioactive compounds: a promising approach against cancer. |
| [91] |
Kikuchi I, Takahashi-Kanemitsu A, Sakiyama N, Tang C, Tang PJ, et al. 2016. Dephosphorylated parafibromin is a transcriptional coactivator of the Wnt/Hedgehog/Notch pathways. |
| [92] |
Liu YQ, Wang XL, He DH, Cheng YX. 2021. Protection against chemotherapy- and radiotherapy-induced side effects: a review based on the mechanisms and therapeutic opportunities of phytochemicals. |
| [93] |
Yuan Y, Shi C, Zhao H. 2023. Machine learning-enabled genome mining and bioactivity prediction of natural products. |
| [94] |
Jung J, Moon JO, Ahn SI, Lee H. 2024. Predicting antioxidant activity of compounds based on chemical structure using machine learning methods. |
| [95] |
Fang F, Yu X, Wang X, Zhu X, Liu L, et al. 2022. Transcriptomic profiling reveals gene expression in human peripheral blood after exposure to low-dose ionizing radiation. |
| [96] |
Guo M, Lv H, Chen H, Dong S, Zhang J, et al. 2024. Strategies on biosynthesis and production of bioactive compounds in medicinal plants. |
| [97] |
Chen R, Chen X, Chen Y, Yang J, Chen W, et al. 2025. De novo biosynthesis of plant lignans by synthetic yeast consortia. |
| [98] |
Kianfar E. 2021. Protein nanoparticles in drug delivery: animal protein, plant proteins and protein cages, albumin nanoparticles. |
| [99] |
Li Y, Ji T, Torre M, Shao R, Zheng Y, et al. 2023. Aromatized liposomes for sustained drug delivery. |
| [100] |
Hameed H, Faheem S, Paiva-Santos AC, Sarwar HS, Jamshaid M. 2024. A comprehensive review of hydrogel-based drug delivery systems: classification, properties, recent trends, and applications. |