Genetically engineered pig heart transplantation in non-human primates.

IF 5.4 Q1 MEDICINE, RESEARCH & EXPERIMENTAL Communications medicine Pub Date : 2025-01-07 DOI:10.1038/s43856-025-00731-y
Avneesh K Singh, Corbin E Goerlich, Tianshu Zhang, Billeta Lewis, Alena Hershfeld, Gheorghe Braileanu, Kasinath Kurvi, Kathryn Rice, Faith Sentz, Sarah Mudd, Patrick Odonkor, Erik Strauss, Brittney Williams, Allen Burke, Anuj Gupta, Cinthia B Drachenberg, David Ayares, Bartley P Griffith, Muhammad M Mohiuddin
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Abstract

Background: Improvement in gene modifications of donor pigs has led to the prevention of early cardiac xenograft rejection and significantly prolonged cardiac xenograft survival in both heterotopic and orthotopic preclinical non-human primate (NHP) models. This progress formed the basis for FDA approval for compassionate use transplants in two patients.

Methods: Based on our earlier report of 9-month survival of seven gene-edited (7-GE) hearts transplanted (life-supporting orthotopic) in baboons, we transplanted 10 gene-edited pig hearts into baboons (n = 4) using non-ischemic continuous perfusion preservation (NICP) and immunosuppression regimen based on co-stimulation blockade by anti-CD40 monoclonal antibody. This pivotal study expands on the 7-GE backbone, with 3 additional gene edits, using 10-GE pigs as donors to baboon recipients.

Results: 10 GE cardiac xenografts provide life-supporting function up to 225 days (mean 128 ± 36 days) in a non-human primate model. Undetectable or latent porcine cytomegalovirus (PCMV) does not influence cardiac xenograft survival in this study but still needs more exploration with a larger cohort. Xenograft histology demonstrates adipose (Fat) deposition (n = 1), chronic vasculopathy (n = 1), micro and macro thrombosis, and acute cellular rejection (n = 1).

Conclusions: These data demonstrate that 10 GE cardiac xenografts have variable cardiac xenograft survival in NHP due to perhaps presence of 4th antigen and require further study. However, these 10GE organs may be suitable for clinical cardiac xenotransplantation and have already been utilized in two human cases.

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非人类灵长类动物的基因工程猪心脏移植。
背景:在异位和正位临床前非人灵长类动物(NHP)模型中,供体猪基因修饰的改进导致了早期异种心脏移植排斥反应的预防,并显着延长了异种心脏移植存活时间。这一进展为FDA批准两名患者的同情用途移植奠定了基础。方法:基于我们之前报道的7个基因编辑(7-GE)心脏移植(维持生命的原位移植)在狒狒体内存活9个月的结果,我们采用非缺血连续灌注保存(NICP)和基于抗cd40单克隆抗体共刺激阻断的免疫抑制方案,将10个基因编辑的猪心脏移植到狒狒体内(n = 4)。这项关键的研究扩展了7-GE的骨干,增加了3个基因编辑,使用10-GE猪作为狒狒受体的供体。结果:10 GE异种心脏移植在非人灵长类动物模型中提供长达225天(平均128±36天)的生命维持功能。在这项研究中,未检测到或潜伏的猪巨细胞病毒(PCMV)不影响异种心脏移植的生存,但仍需要更大的队列进行更多的探索。异种移植物组织学表现为脂肪沉积(n = 1),慢性血管病变(n = 1),微观和宏观血栓形成,急性细胞排斥反应(n = 1)。结论:这些数据表明,由于可能存在第4抗原,10ge异种心脏移植在NHP中具有可变的异种心脏移植存活率,需要进一步研究。然而,这些10GE器官可能适用于临床心脏异种移植,并已在两例人类病例中得到应用。
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