Effect of immunosuppression on hESC-derived retina organoids in vitro and in vivo.

IF 7.1 2区 医学 Q1 CELL & TISSUE ENGINEERING
Robert Sims, Bin Lin, Yuntian Xue, Raghda Fouda, Bryce T McLelland, Gabriel Nistor, Hans S Keirstead, Andrew W Browne, Magdalene J Seiler
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引用次数: 0

Abstract

Background: Photoreceptor (PR) enriched retinal organoid (RO) sheets (human embryonic stem cell [hESC]-derived ROs) resulted in restoration of visual acuity in immunocompromised retinal degenerate (RD) animal models after transplantation. Further assessment of their clinical potential requires evaluation in immunocompetent RD disease models with effective immune suppression. We characterized safety and efficacy profiles of both donor tissues and prospective immunosuppressive treatments in vitro; and in vivo in immunocompetent RD rats (strain SD-foxn1 Tg(S334ter)3Lav).

Methods: Retinal identity of ROs was validated by histology, flow cytometry and gene expression profiling, and their immunogenicity to sensitized human immune cells was measured by mixed lymphocyte reactions (MLR). We measured the effect of RO exposure for 1-4 weeks to therapeutic concentrations of our immunosuppressant drugs of choice on gene expression and metabolic function using quantitative PCR (qPCR) and functional and structural fluorescence lifetime imaging (FLIM), respectively. Immunocompetent RD graft recipients were immunosuppressed by implanted tacrolimus (TAC) pellets and mycophenolate mofetil (MMF) in food. In vivo, LCMS aided assessments of drug pharmacodynamics. Flow cytometry immunophenotyping and assay of post-surgery cytokines were used to assess and monitor drug efficacy. Retinal transplants were imaged in situ using optical coherence tomography (OCT) at defined time points post-surgery. Visual function was assessed by optokinetic tests (OKT) and superior colliculus electrophysiology recording. At study endpoints, immune cell infiltration and donor photoreceptor engraftment into host retinal architecture was evaluated by immunohistochemistry.

Results: Immunosuppressive drugs have no negative effects on RO development and metabolism in vitro; and low alloreactivity of ROs determined by MLR may be predictive to that of human graft recipients. In vivo, minimum effective dosing ranges of TAC and MMF were determined. We characterized the mechanisms and critical immune populations implicated in rejection; and subsequently demonstrated their effective suppression in our xenograft RD model. OKT measured significant visual improvement after RO transplantation. Transplants developed most retinal cell types including photoreceptors; and integrated with the host retina. However, immunosuppression induced higher sensitivity to ketamine anesthesia.

Conclusions: This study proves the concept that immunosuppression is likely tolerable in retinal transplantation and human stem cell therapy for retinal degeneration patients.

背景:富含光感受器(PR)的视网膜类器官(RO)片(人类胚胎干细胞[hESC]衍生的ROs)在免疫受损的视网膜变性(RD)动物模型中移植后可恢复视力。要进一步评估它们的临床潜力,需要在具有有效免疫抑制的免疫功能健全的RD疾病模型中进行评估。我们对供体组织和前瞻性免疫抑制治疗在体外和免疫功能正常的 RD 大鼠(品系 SD-foxn1 Tg(S334ter)3Lav)体内的安全性和有效性进行了鉴定:方法:通过组织学、流式细胞术和基因表达谱分析验证 RO 的视网膜特性,并通过混合淋巴细胞反应 (MLR) 测定它们对致敏人类免疫细胞的免疫原性。我们使用定量 PCR(qPCR)和功能与结构荧光寿命成像(FLIM)分别测量了 RO 暴露于治疗浓度的免疫抑制剂 1-4 周对基因表达和代谢功能的影响。通过植入他克莫司(TAC)颗粒和食物中的霉酚酸酯(MMF)对免疫功能正常的 RD 移植受体进行免疫抑制。在体内,LCMS 可帮助评估药物的药效学。流式细胞术免疫分型和手术后细胞因子检测用于评估和监测药物疗效。在手术后的规定时间点,使用光学相干断层扫描(OCT)对视网膜移植进行原位成像。视功能通过光动能测试(OKT)和上丘电生理记录进行评估。在研究终点,免疫组化对免疫细胞浸润和供体感光细胞移植到宿主视网膜结构进行评估:结果:免疫抑制药物在体外对RO的发育和代谢没有负面影响;通过MLR测定的RO的低异体反应性可能与人类移植受体的异体反应性具有预测性。在体内,确定了TAC和MMF的最小有效剂量范围。我们确定了与排斥反应有关的机制和关键免疫群体,并随后在异种移植 RD 模型中证明了它们的有效抑制作用。OKT测得RO移植后视力明显改善。移植体发育了包括光感受器在内的大多数视网膜细胞类型,并与宿主视网膜融为一体。然而,免疫抑制诱导了对氯胺酮麻醉更高的敏感性:这项研究证明了一个概念,即视网膜移植和人类干细胞疗法治疗视网膜变性患者时,免疫抑制是可以耐受的。
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来源期刊
Stem Cell Research & Therapy
Stem Cell Research & Therapy CELL BIOLOGY-MEDICINE, RESEARCH & EXPERIMENTAL
CiteScore
13.20
自引率
8.00%
发文量
525
审稿时长
1 months
期刊介绍: Stem Cell Research & Therapy serves as a leading platform for translational research in stem cell therapies. This international, peer-reviewed journal publishes high-quality open-access research articles, with a focus on basic, translational, and clinical research in stem cell therapeutics and regenerative therapies. Coverage includes animal models and clinical trials. Additionally, the journal offers reviews, viewpoints, commentaries, and reports.
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