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Therapeutic exploitation of IPSE a urogenital parasite-derived host modulatory protein for chemotherapy-induced hemorrhagic cystitis

机译:IPSE(一种泌尿生殖器寄生虫来源的宿主调节蛋白)的治疗开发用于化疗所致的出血性膀胱炎

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摘要

Chemotherapy-induced hemorrhagic cystitis (CHC) can be difficult to manage. Prior work suggests that IL-4 alleviates ifosfamide-induced hemorrhagic cystitis (IHC), but systemically administered IL-4 causes significant side effects. We hypothesized that the Schistosoma hematobium homolog of IL-4-inducing principle from Schistosoma mansoni eggs (H-IPSE), would reduce IHC and associated bladder pathology. IPSE binds IgE on basophils and mast cells, triggering IL-4 secretion by these cells. IPSE is also an “infiltrin,” translocating into the host nucleus to modulate gene transcription. Mice were administered IL-4, H-IPSE protein or its nuclear localization sequence (NLS) mutant, with or without neutralizing anti-IL-4 antibody, or 2-mercaptoethane sulfonate sodium (MESNA; a drug used to prevent IHC), followed by ifosfamide. Bladder tissue damage and hemoglobin content were measured. Spontaneous and evoked pain, urinary frequency, and bladdergene expression analysis were assessed. Pain behaviors were interpreted in a blinded fashion. One dose of H-IPSE was superior to MESNA and IL-4 in suppressing bladder hemorrhage in an IL-4-dependent fashion and comparable with MESNA in dampening ifosfamide-triggered pain behaviors in an NLS-dependent manner. H-IPSE also accelerated urothelial repair following IHC. Our work represents the first therapeutic exploitation of a uropathogen-derived host modulatory molecule in a clinically relevant bladder disease model and indicates that IPSE may be an alternative to MESNA for mitigating CHC.—Mbanefo, E. C., Le, L., Pennington, L. F., Odegaard, J. I., Jardetzky, T. S., Alouffi, A., Falcone, F. H., Hsieh, M. H. Therapeutic exploitation of IPSE, a urogenital parasite-derived host modulatory protein, for chemotherapy-induced hemorrhagic cystitis.
机译:化学疗法诱发的出血性膀胱炎(CHC)可能难以管理。先前的工作表明,IL-4可以缓解异环磷酰胺诱导的出血性膀胱炎(IHC),但系统性给予IL-4会引起严重的副作用。我们假设曼氏血吸虫卵(H-IPSE)的IL-4诱导原理的血吸虫血吸虫同源物将减少IHC和相关的膀胱病理。 IPSE在嗜碱性粒细胞和肥大细胞上结合IgE,触发这些细胞分泌IL-4。 IPSE也是一种“浸润素”,可转移到宿主核中以调节基因转录。给小鼠施用IL-4,H-IPSE蛋白或其核定位序列(NLS)突变体,无论是否中和抗IL-4抗体或2-巯基乙磺酸钠(MESNA;一种用于预防IHC的药物),通过异环磷酰胺。测量膀胱组织损伤和血红蛋白含量。评估自发性和诱发性疼痛,尿频和膀胱癌基因表达分析。对疼痛行为的解释是盲目的。一剂H-IPSE在抑制IL-4依赖性膀胱出血方面优于MESNA和IL-4,并且在以NLS依赖性方式抑制异环磷酰胺触发的疼痛行为方面与MESNA相当。 IHC后,H-IPSE也加速了尿路上皮修复。我们的工作代表了在临床相关的膀胱疾病模型中对尿毒症源性宿主调节分子的首次治疗开发,并表明IPSE可能是MESNA的替代品,以减轻CHC。—Mbanefo,EC,Le,L.,Pennington,LF, Odegaard,JI,Jardetzky,TS,Alouffi,A.,Falcone,FH,Hsieh,MH对IPSE的治疗性利用,IPSE是一种由泌尿生殖道寄生物衍生的宿主调节蛋白,用于化疗引起的出血性膀胱炎。

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