[1] Mishra S, Tiwari P, Yadav R, Patel PS.An Extensive Analysis of Diseases Associated with Diabetes: Review Article. Journal of Pharma Insights and Research. 2024;2(3):174–187. 10.69613/ng1j7s13
[2] Mancuso G, Midiri A, Gerace E, Marra M, Zummo S, Biondo C. Urinary Tract Infections: The Current Scenario and Future Prospects. Pathogens. 2023;12(4):623. 10.3390/pathogens12040623
[3] Oda NAU, Alsaadi KA, Ali HHM. The Relationship between Urinary Tract Infection and Some Cytokines in Children with Type I Diabetes Mellitus.Kerbala Journal of Pharmaceutical Sciences. 2023;1(22):1-10
[4] Faraj YF, Salih KM, Khelif A, Hameed EZ. Subsets of natural killer cells in chronic myeloid leukemia and their relation with some inflammatory cytokines. Iraqi Journal of Hematology. 2023;12(2):184–189. 10.4103/ijh.ijh_77_23
[5] Hosseini M, Ahmadzadeh H, Toloui A, Ahmadzadeh K, Madani Neishaboori A, Rafiei Alavi SN, et al. The value of interleukin levels in the diagnosis of febrile urinary tract infections in children and adolescents; a systematic review and meta-analysis. Journal of Pediatric Urology. 2022;18(2):211–223. 10.1016/j.jpurol.2022.01.010
[6] Paudel S, John PP, Poorbaghi SL, Randis TM, Kulkarni R.Systematic Review of Literature Examining Bacterial Urinary Tract Infections in Diabetes. Journal of Diabetes Research. 2022;2022:1–20.10.1155/2022/3588297
[7] Dowey R, Iqbal A, Heller SR, Sabroe I, Prince LR. A Bittersweet Response to Infection in Diabetes; Targeting Neutrophils to Modify Inflammation and Improve Host Immunity.Frontiers in Immunology. 2021;12. 10.3389/fimmu.2021.678771
[8] Mattoo TK, Spencer JD. Biomarkers for urinary tract infection: present and future perspectives. Pediatric Nephrology. 2024;39(10):2833–2844. 10.1007/s00467-024-06321-9
[9] Abed HA, Mohammed Ali KO, Alrifai SB. Estimation of IL-6 and IL-8 in the Urine and Serum of Children with Urinary Tract Infection.Indian Journal of Forensic Medicine & Toxicology. 2021;15(3):3073–3078. 10.37506/ijfmt.v15i3.15773
[10] Kaya A, Berber I, Kuku I, Kaya E, Erkurt MA, Bicim S, et al. Prophylactic intravenous immunoglobulin use in allogeneic stem cell transplantation; does intravenous immunoglobulin affect survival, sepsis, and engraftment time? Iraqi Journal of Hematology. 2024;13(2):202–207.10.4103/ijh.ijh_41_24
[11] Yameny AA. Diabetes Mellitus Overview 2024. Journal of Bioscience and Applied Research. 2024;10(3):641–645. 10.21608/jbaar.2024.382794
[12] Obeagu EI. Stress, neutrophils, and immunity: a dynamic interplay. Annals of Medicine & Surgery. 2025;87(6):3573–3585. 10.1097/ms9.0000000000003304
[13] Herro R, Grimes HL. The diverse roles of neutrophils from protection to pathogenesis. Nature Immunology. 2024;25(12):2209–2219. 10.1038/s41590-024-02006-5
[14] Storme O, Tirán Saucedo J, Garcia-Mora A, Dehesa-Dávila M, Naber KG. Risk factors and predisposing conditions for urinary tract infection. Therapeutic Advances in Urology. 2019;11.10.1177/1756287218814382
[15] Yang S, Zhao M, Jia S. Macrophage: Key player in the pathogenesis of autoimmune diseases.Frontiers in Immunology. 2023;14. 10.3389/fimmu.2023.1080310
[16] Szablewski L.Role of immune system in type 1 diabetes mellitus pathogenesis.International Immunopharmacology. 2014;22(1):182–191. 10.1016/j.intimp.2014.06.033
[17] McBride DA, Jones RM, Bottini N, Shah NJ.The therapeutic potential of immunoengineering for systemic autoimmunity. Nature Reviews Rheumatology. 2024;20(4):203–215. 10.1038/s41584-024-01084-x
[18] Wolf NK, Kissiov DU, Raulet DH. Roles of natural killer cells in immunity to cancer, and applications to immunotherapy. Nature Reviews Immunology. 2022;23(2):90–105. 10.1038/s41577-022-00732-1
[19] Vojdani A, Koksoy S, Vojdani E, Engelman M, Benzvi C, Lerner A.Natural Killer Cells and Cytotoxic T Cells: Complementary Partners against Microorganisms and Cancer.Microorganisms. 2024;12(1):230. 10.3390/microorganisms12010230
[20] Geng K, Ma X, Jiang Z, Huang W, Gao C, Pu Y, et al. Innate immunity in diabetic wound healing: focus on the mastermind hidden in chronic inflammatory.Frontiers in pharmacology. 2021;12:653940
[21] Mallat Z, Binder CJ. The why and how of adaptive immune responses in ischemic cardiovascular disease.Nature Cardiovascular Research. 2022;1(5):431–444.10.1038/s44161-022-00049-1
[22] Natoli G, Ostuni R.Adaptation and memory in immune responses. Nature Immunology. 2019;20(7):783–792. 10.1038/s41590-019-0399-9
[23] Al-Madany RAA, Oudah NA, Al-Ghanimi BK, Abd Nusaif KI.A Review of The Relationship Between B Cell Phenotype and Amino Acids in the Development of Chronic Hepatitis B Progression.Pure Sciences International Journal of Kerbala. 2025;2(6):40-7
[24] Govindasamy C. A Review Emphasis on Imbalance of Th1/Th2 Cytokines in The Progression of Diabetes to Diabetic Related Complications.Oriental Journal Of Chemistry. 2024;40(2):355–361.10.13005/ojc/400205
[25] Cao W, Chen X, Li X, Wang Y. Use of bidirectional Mendelian randomization to unveil the association between antibody-mediated immune responses to infectious agents and allergic rhinitis. Human Vaccines & Immunotherapeutics. 2025;21(1). 10.1080/21645515.2025.2523090
[26] Sumida TS, Cheru NT, Hafler DA. The regulation and differentiation of regulatory T cells and their dysfunction in autoimmune diseases.Nature Reviews Immunology. 2024;24(7):503–517. 10.1038/s41577-024-00994-x
[27] Martinis E, Tonon S, Colamatteo A, La Cava A, Matarese G, Pucillo CEM. B cell immunometabolism in health and disease. Nature Immunology. 2025;26(3):366–377. 10.1038/s41590-025-02102-0
[28] Golden GJ, Wu VH, Hamilton JT, Amses KR, Shapiro MR, Sada Japp A, et al. Immune perturbations in human pancreas lymphatic tissues prior to and after type 1 diabetes onset. Nature Communications. 2025;16(1). 10.1038/s41467-025-59626-0
[29] Oudah NA, Alsaadi KA, Mohammed Ali HH. Bacterial Infections Upregulate Cluster of Differentiation 80 on Regulatory B-Cells in Iraqi Children with Type I Diabetes Mellitus.Medical Journal of Babylon. 2025;22(3):704–710. 10.4103/mjbl.mjbl_458_23
[30] Lu X, Xie Q, Pan X, Zhang R, Zhang X, Peng G, et al. Type 2 diabetes mellitus in adults: pathogenesis, prevention and therapy. Signal Transduction and Targeted Therapy. 2024;9(1).10.1038/s41392-024-01951-9
[31] Ajam ZA, Mohammed SB, Alabedi RF. Preptin and Irisin as a Metabolic Biomarkers in Juvenile Diabetes. Medical Journal of Babylon. 2025;22(2):353–358. 10.4103/mjbl.mjbl_283_23
[32] Salmeron Beliz OJ, Perez-Fernandez E, Miro O, Aguilo S, Burillo-Putze G, Alquezar-Arbe A, et al.Epidemiological and clinical management aspects related to urinary tract infections diagnosed in the emergency department in elderly patients in Spain: Results of the EDEN-36 study.Revista Española de Quimioterapia. 2024;38(1):28–39.10.37201/req/066.2024
[33] Al-Madany RAA, Oudah NA.Association of CD24, CD27, and co-stimulatory molecules CD80 immunological marker expression on B-cells of human peripheral blood with development of celiac disease. Iraqi Journal of Hematology. 2024;13(2):208–212. 10.4103/ijh.ijh_28_24
[34] Kawai T, Ikegawa M, Ori D, Akira S. Decoding Toll-like receptors: Recent insights and perspectives in innate immunity. Immunity. 2024;57(4):649–673. 10.1016/j.immuni.2024.03.004
[35] Al-Jobouri WAM, Al-Saadi MAK, Al-Marzooq WAA. Genetic Polymorphism of TLR-4 and CD-14 in Patients with Chronic Prostatitis. Medical Journal of Babylon. 2025;22(2):531–535. 10.4103/mjbl.mjbl_31_24
[36] Wang Y, Du C, Zhang Y, Zhu L. Composition and Function of Neutrophil Extracellular Traps. Biomolecules. 2024;14(4):416. 10.3390/biom14040416
[37] Li S, Mu R, Guo X. Defensins regulate cell cycle: Insights of defensins on cellular proliferation and division. Life Sciences. 2024;349:122740.10.1016/j.lfs.2024.122740
[38] Naji RA, AL-Daher RI, Abood DA, Madlum KN. Immunological Impact of Ricinus communis Leaves Extract on Isolated Human Peripheral Blood Mononuclear Cells. Medical Journal of Babylon. 2023;20(1):120–123. 10.4103/mjbl.mjbl_287_22
[39] Kawabe T, Sher A. Memory-phenotype CD4+ T cells: a naturally arising T lymphocyte population possessing innate immune function. International Immunology. 2021;34(4):189–196.10.1093/intimm/dxab108
[40] Lin P, Yan Y, Zhang Z, Dong Q, Yi J, Li Q, et al.The γδ T cells dual function and crosstalk with intestinal flora in treating colorectal cancer is a promising area of study. International Immunopharmacology. 2023;123:110733. 10.1016/j.intimp.2023.110733
[41] Maixnerova D, El Mehdi D, Rizk DV, Zhang H, Tesar V.New Treatment Strategies for IgA Nephropathy: Targeting Plasma Cells as the Main Source of Pathogenic Antibodies. Journal of Clinical Medicine. 2022;11(10):2810. 10.3390/jcm11102810
[42] Odoom A, Osman AH, Dzuvor CKO.Recent Advances in Immunotherapeutic and Vaccine-Based Approaches for the Treatment of Drug-Resistant Bacterial Infections.ACS Infectious Diseases. 2025;11(6):1366–1402.10.1021/acsinfecdis.5c00001
[43] Mahdi ZAA, Almjalawi BSA, Naimuzzaman M, Hasan M, Al-Alaq FT, Al-Dahmoshi HOM, et al. Exploring Camptothecin Derivatives from the Chinese Tree of Camptotheca acuminata as Breast Cancer Protease Inhibitors: Insights from Multi-Scale Computational Analysis. The Open Bioinformatics Journal. 2025;18(1). 10.2174/0118750362369549250327052654
[44] Li J, Tan J, Martino MM, Lui KO.Regulatory T-Cells: Potential Regulator of Tissue Repair and Regeneration. Frontiers in Immunology. 2018;9.10.3389/fimmu.2018.00585
[45] Peate I. The urinary system: key to maintaining homeostasis. British Journal of Healthcare Assistants. 2021;15(5):234–237. 10.12968/bjha.2021.15.5.234
[46] Nabi T.Clinical characteristics and complications of symptomatic bacteriuria in patients with Type 2 diabetes. International Journal of Academic Medicine. 2021;7(4):212–219. 10.4103/ijam.ijam_153_20
[47] Zhou Z, Wang H, Tan S, Zhang H, Zhu Y. The alterations of innate immunity and enhanced severity of infections in diabetes mellitus. Immunology. 2023;171(3):313–323. 10.1111/imm.13706
[48] Yehualashet AS. Toll-like Receptors as a Potential Drug Target for Diabetes Mellitus and Diabetes-associated Complications</p>. Diabetes, Metabolic Syndrome and Obesity: Targets and Therapy. 2020;Volume 13:4763–4777. 10.2147/dmso.s274844
[49] Naish E, Wood AJ, Stewart AP, Routledge M, Morris AC, Chilvers ER, et al.The formation and function of the neutrophil phagosome.Immunological Reviews. 2022;314(1):158–180. 10.1111/imr.13173
[50] Johnstone KF, Herzberg MC.Antimicrobial peptides: Defending the mucosal epithelial barrier. Frontiers in Oral Health. 2022;3. 10.3389/froh.2022.958480
[51] Germic N, Frangez Z, Yousefi S, Simon HU. Regulation of the innate immune system by autophagy: monocytes, macrophages, dendritic cells and antigen presentation. Cell Death & Differentiation. 2019;26(4):715–727. 10.1038/s41418-019-0297-6
[52] Theodorakis N, Feretzakis G, Hitas C, Kreouzi M, Kalantzi S, Spyridaki A, et al. Immunosenescence: How Aging Increases Susceptibility to Bacterial Infections and Virulence Factors. Microorganisms. 2024;12(10):2052.10.3390/microorganisms12102052
[53] Rakesh PK. Activation of T regulatory cells in Type II Immune Responses; 2024
[54] Lu Y, Wang Y, Ruan T, Wang Y, Ju L, Zhou M, et al. Immunometabolism of Tregs: mechanisms, adaptability, and therapeutic implications in diseases.Frontiers in Immunology. 2025;16.10.3389/fimmu.2025.1536020
[55] Singh A, Shadangi S, Gupta PK, Rana S.Type 2 Diabetes Mellitus: A Comprehensive Review of Pathophysiology, Comorbidities, and Emerging Therapies.Comprehensive Physiology. 2025;15(1).10.1002/cph4.70003
[56] Dickson K, Zhou J, Lehmann C. Lower Urinary Tract Inflammation and Infection: Key Microbiological and Immunological Aspects. Journal of Clinical Medicine. 2024;13(2):315. 10.3390/jcm13020315
[57] Carpenter RE. Metabolic and microbial crossroads: Sodium-glucose cotransporter-2 inhibitors and urinary tract infections in (Asian) diabetes care.Health Sciences Review. 2025;15:100226.10.1016/j.hsr.2025.100226
[58] Wu J, Gao Q, Tian M, Tan S, Dong J, Wei H. Explainable machine learning prediction of 1-year kidney function progression among patients with type 2 diabetes mellitus and chronic kidney disease: a retrospective study. QJM: An International Journal of Medicine. 2025;118(9):647–656. 10.1093/qjmed/hcaf101
[59] Faqri AMA, Abdulhussien AA, Yaseen LJ, Mohsein OA.The role of cytokines in autoimmune diseases: pathogenesis and therapeutic implications.Central Asian Journal of Medical and Natural Science. 2025;6(3):852-73
[60] AL-Shimmery A, Mahdi Z, Al-Hindy H, Al-Mammori R, Mokif T, Al-Dahmoshi H, et al. Immunological Study of IFN-γ, ICAM-4, and Vitamin D3 Markers among Gastrointestinal Tumor Patients in Babylon Province, Iraq. Asian Pacific Journal of Cancer Prevention. 2023;24(1):301–305. 10.31557/apjcp.2023.24.1.301
[61] Darogha SN, Azeez SH, Abdullah ZG. Evaluation of Procalcitonin and Interleukin-6 as a Marker of Bacterial Urinary Tract Infection. Cellular and Molecular Biology. 2022;67(4):203–213. 10.14715/cmb/2021.67.4.23
[62] Shu Q, Zhang N, Liu Y, Wang X, Chen J, Xie H, et al. IL-8 Triggers Neutrophil Extracellular Trap Formation Through an Nicotinamide Adenine Dinucleotide Phosphate Oxidase- and Mitogen-Activated Protein Kinase Pathway-Dependent Mechanism in Uveitis. Investigative Opthalmology & Visual Science. 2023;64(13):19. 10.1167/iovs.64.13.19
[63] AL-Isawi SA, Alsultany SJ. Estimation of IL-8 and TNF-α Levels in Pediatric Diarrhea Patients Infected with Enterohemorrhagic E. coli O157:H7. Medical Journal of Babylon. 2024;21(3):533–537. 10.4103/mjbl.mjbl_1436_23
[64] Noguchi T, Kitaura H, Marahleh A, Ohori F, Nara Y, Pramusita A, et al. Tumor necrosis factor-α enhances the expression of vascular endothelial growth factor in a mouse orthodontic tooth movement model. Journal of Dental Sciences. 2022;17(1):415–420. 10.1016/j.jds.2021.08.011
[65] Tseng CC, Wang MC, Lin WH, Liao IC, Chen WC, Teng CH, et al.Role of class II P fimbriae and cytokine response in the pathogenesis of Escherichia coli kidney infection in diabetic mice.Journal of Microbiology, Immunology and Infection. 2018;51(4):492–499. 10.1016/j.jmii.2017.06.003
[66] Masser JAH, Mousa MJ, Makki HAA, Al-Khafaji NSK, Al-Dahmoshi HOM, Mahdi ZAA, et al.Calcium and Phosphate Homeostasis in Patients with Recurrent Nephrolithiasis. Journal of Contemporary Medical Sciences. 2021;7(6).10.22317/jcms.v7i6.1040
[67] Oudah Ismail NA.Association of B-reg Frequency and Some Immunological Parameters with Urinary Tract Infections in Type 1 Diabetes [Doctoral dissertation].Kerbala, Iraq: College of Science, University of Kerbala; 2023
[68] Al-lateef BA, Al-shukri MSM, Judi MR. Expression of Circulatory Interleukin-6 Concentration Associated with Pseudomonas aeruginosa Persistence in Recurrent Urinary Tract Infections. Medical Journal of Babylon. 2023;20(1):201–205. 10.4103/mjbl.mjbl_343_22
[69] Sagar KV, Rajput MS, Jyotsna PS. Inflammation and Infection in Type-2 Diabetes Mellitus: A Comparative Study on Biomarkers in Asymptomatic Bacteriuria Cases in Northern Andhra Pradesh.European Journal of Cardiovascular Medicine. 2025;15:368-71
[70] Ali AJ, Jaafar NAH. Role of IL-8 in urinary tract infection among diabetic and non-diabetic patients. Journal of Advances in Microbiology Research. 2025;6(2):201–206. 10.22271/micro.2025.v6.i2c.253
[71] Susilaningsih N, Karjono BJ, Purnamawati RD, et al.Production of tumor necrosis factor-á is increased in urinary tract infections.Universa Medicina. 2012;31(3):167-74
[72] Van Nguyen T, Duc Ngo K, Hoang Thi M, Dam LTP, Huynh TQ. Evaluating the Serum Transforming Growth Factor-Beta 1 Level in Chronic Kidney Disease Caused by Glomerulonephritis.Nephro-Urology Monthly. 2021;13(2).10.5812/numonthly.113161
[73] Kang Y, Jin Q, Zhou M, Zheng H, Li X, Li A, et al. Diagnostic value of serum TGF-β1 and CysC in type 2 diabetic kidney disease: a cross-sectional study. Frontiers in Medicine. 2025;12.10.3389/fmed.2025.1529648
[74] Xing Y, Ye S, Chen Y, Fan A, Xu Z, Jiang W. MIF/CD74 Axis Is a Target for Metformin Therapy in Diabetic Podocytopathy: Real-World Evidence.Endokrynologia Polska. 2018;69(3):264-8.10.5603/EP.a2018.0028
[75] Sevketoglu E, Yilmaz A, Gedikbasi A, Karyagar S, Kiyak A, Mulazimoglu M, et al. Urinary macrophage migration inhibitory factor in children with urinary tract infection. Pediatric Nephrology. 2010;25(2):299–304. 10.1007/s00467-009-1319-2
[76] Oudah NA, Ghareeb AKR, Kelkawi AHA, Oudah MA. Assessment of the Binding Immunoglobulin Protein, IL-1β, and Some Hematological Indices in Patients with Urinary Tract Infections. Medical Journal of Babylon. 2024;21(3):579–584. 10.4103/mjbl.mjbl_1306_23
[77] Sahu R, Sahoo RK, Prusty SK, Sahu PK. Urinary Tract Infection and its Management. Systematic Reviews in Pharmacy. 2018;10(1):42–48.10.5530/srp.2019.1.7
[78] El Husseini N, Carter JA, Lee VT. Urinary tract infections and catheter-associated urinary tract infections caused by Pseudomonas aeruginosa. Microbiology and Molecular Biology Reviews. 2024;88(4). 10.1128/mmbr.00066-22
[79] Manyawu M, Mahamane-Salissou MT. Patterns of Antimicrobial Resistance in Urinary Tract Infection Pathogens: Analysis in a Provincial Hospital in Zimbabwe.Microbes, Infection and Chemotherapy. 2024;4:e2242. 10.54034/mic.e2242
[80] Flores C, Rohn JL. Bacterial adhesion strategies and countermeasures in urinary tract infection. Nature Microbiology. 2025;10(3):627–645. 10.1038/s41564-025-01926-8
[81] Raheema RH, Nasser DD, Chabuck ZAG. Molecular detection of SPA-type of methicillin-resistant Staphylococcus aureus from Urinary Tract Infection patient in Wasit Province, Iraq. Medical Journal of Babylon. 2023;20(3):619–625. 10.4103/mjbl.mjbl_673_23
[82] Rogers AP, Mileto SJ, Lyras D. Impact of enteric bacterial infections at and beyond the epithelial barrier. Nature Reviews Microbiology. 2022;21(4):260–274.10.1038/s41579-022-00794-x
[83] Chelangarimiyandoab F, Mungara P, Batta M, Cordat E. Urinary Tract Infections: Renal Intercalated Cells Protect against Pathogens. Journal of the American Society of Nephrology. 2023;34(10):1605–1614. 10.1681/asn.0000000000000187
[84] Naidoo N, Zishiri OT.Presence, Pathogenicity, Antibiotic Resistance, and Virulence Factors of Escherichia coli: A Review. Bacteria. 2025;4(1):16.10.3390/bacteria4010016
[85] Naskar M, Choi HW. A Dynamic Interplay of Innate Immune Responses During Urinary Tract Infection. Immune Network. 2024;24(4). 10.4110/in.2024.24.e31
[86] Ambite I, Butler D, Wan MLY, Rosenblad T, Tran TH, Chao SM, et al. Molecular determinants of disease severity in urinary tract infection. Nature Reviews Urology. 2021;18(8):468–486. 10.1038/s41585-021-00477-x
[87] Abdulmahdi Mokif T, Abdul-Ameer Mahdi Z, Tuama Obayes Al-Mammori R, Oleiwi Muttaleb Al-Dahmoshi H, Kadhim Al-Khafaji NSa.Correlation of Vitamin D3, PAI-1, and HCG Hormone in Pre- and Post-Menopausal in Babylon Province.Reports of Biochemistry and Molecular Biology. 2022;11(1):36–43. 10.52547/rbmb.11.1.36
[88] Mancuso G, Trinchera M, Midiri A, Zummo S, Vitale G, Biondo C. Novel Antimicrobial Approaches to Combat Bacterial Biofilms Associated with Urinary Tract Infections. Antibiotics. 2024;13(2):154.10.3390/antibiotics13020154
[89] Simoni A, Schwartz L, Junquera GY, Ching CB, Spencer JD. Current and emerging strategies to curb antibiotic-resistant urinary tract infections. Nature Reviews Urology. 2024;21(12):707–722.10.1038/s41585-024-00877-9
[90] Chen YC, Lee WC, Chuang YC. Emerging Non-Antibiotic Options Targeting Uropathogenic Mechanisms for Recurrent Uncomplicated Urinary Tract Infection. International Journal of Molecular Sciences. 2023;24(8):7055.10.3390/ijms24087055
[91] Oda NAU, Mathkoor MM, Abbas ZAK. Incorporation of Curcumin in Bilayer Matrices to Reduce the Toxic Effects to Be Used for Wound-Healing Application. The Egyptian Journal of Hospital Medicine. 2022;89(2):6937–6946. 10.21608/ejhm.2022.271916
[92] Deckmann K, Kummer W. Chemosensory epithelial cells in the urethra: sentinels of the urinary tract.Histochemistry and Cell Biology. 2016;146(6):673–683.10.1007/s00418-016-1504-x
[93] Baimakhanova B, Sadanov A, Trenozhnikova L, Balgimbaeva A, Baimakhanova G, Orasymbet S, et al. Understanding the Burden and Management of Urinary Tract Infections in Women.Diseases. 2025;13(2):59.10.3390/diseases13020059
[94] Krawczyk B, Wityk P, Laskowska A, Stanisławska-Sachadyn A, Raczak-Gutknecht J, Waszczuk-Jankowska M, et al. Iron uptake by Escherichia coli in urinary tract infections and urosepsis. PLOS One. 2025;20(6):e0326251. 10.1371/journal.pone.0326251
[95] Hashimoto M, Ma YF, Wang ST, Chen CS, Teng CH.Iron Acquisition of Urinary Tract Infection Escherichia coli Involves Pathogenicity in Caenorhabditis elegans. Microorganisms. 2021;9(2):310. 10.3390/microorganisms9020310
[96] Kuznetsova MV, Mihailovskaya VS, Selivanova PA, Kochergina DA, Remezovskaya NB, Starčič Erjavec M. Siderophore Production, Diversity of Siderophore Receptors and Associations with Virulence-Associated Genes, Phylogroups and Bacteriocin Production in Escherichia coli Strains Isolated from Humans, Animals and Organic Fertilizers.Microbiology Research. 2025;16(2):50.10.3390/microbiolres16020050
[97] Aniba R, Dihmane A, Raqraq H, Ressmi A, Nayme K, Timinouni M, et al. Exploring staphylococcus in urinary tract infections: A systematic review and meta-analysis on the epidemiology, antibiotic resistance and biofilm formation.Diagnostic Microbiology and Infectious Disease. 2024;110(4):116470. 10.1016/j.diagmicrobio.2024.116470
[98] Motib AS, Abbas MA, Motib MS, Jaber MH. Evaluation of Biofilm Formation in Molecular Identification of E. coli Strains that Cause Urinary Tract Infection in Children and Antibiotic Resistance.Diyala Journal of Medicine. 2025 June;28(2):53-65.10.26505/djm.v28i2.1197
[99] Boddu S, R K, Mandava K. A comprehensive review of urinary tract infections: pathophysiology, antibiotic resistance, and therapeutic strategies, with emphasis on herbal alternatives. Reviews and Research in Medical Microbiology. 2024;37(2):65–78. 10.1097/mrm.0000000000000400
[100] Rana DS, Sharma V, Sheershwal A. Understanding host-pathogen interactions in urinary tract infections and advancements in diagnostic methods. Urological Science. 2025;36(2):61–75. 10.1097/us9.0000000000000075
[101] Alsenani Q. Manipulating flagellar gene regulation in uropathogenic Escherichia coli to explore its effect (s) on the urothelial proinflammatory response; 2024
[102] Zhou Y, Zhou Z, Zheng L, Gong Z, Li Y, Jin Y, et al.Urinary Tract Infections Caused by Uropathogenic Escherichia coli: Mechanisms of Infection and Treatment Options. International Journal of Molecular Sciences. 2023;24(13):10537.10.3390/ijms241310537
[103] Alkhafaji EN, Oda NA, Ahmed LM. Characterization of Silver Nanohybrid with Layers Double Hydroxide and Demonstration Inhibition of Antibiotic-Resistance Staphylococcus aureus. Egyptian Journal of Chemistry. 2022 June;65(6):143-57. 10.21608/ejchem.2022.97856.4564
[104] Mahdi ZAA, Albaidhani FA, Oudah NA.The Potential Role Of STK11 as a Biomarker for Intestinal Cancer. Jour Med Resh and Health Sci. 2024;7(8):3188-96
[105] Sorescu T, Cosnita A, Braha A, Timar R, Timar B, Licker M, et al. Predictive Factors for Urinary Tract Infections in Patients with Type 2 Diabetes.Journal of Clinical Medicine. 2024;13(24):7628.10.3390/jcm13247628
[106] Palma M, Qi B. Advancing Phage Therapy: A Comprehensive Review of the Safety, Efficacy, and Future Prospects for the Targeted Treatment of Bacterial Infections. Infectious Disease Reports. 2024;16(6):1127–1181. 10.3390/idr16060092