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用于治疗酸性麦芽糖酶缺乏症的氦离子基因枪微粒递送

Helios gene gun particle delivery for therapy of acid maltase deficiency.

作者信息

Martiniuk Frank, Chen Agnes, Mack Adra, Donnabella Vincent, Slonim Alfred, Bulone Linda, Arvanitopoulos Eleni, Raben Nina, Plotz Paul, Rom William N

机构信息

New York University School of Medicine, Department of Medicine, Division of Pulmonary and Critical Care, New York, New York 1001, USA.

出版信息

DNA Cell Biol. 2002 Oct;21(10):717-25. doi: 10.1089/104454902760599690.

Abstract

Autosomal recessive deficiency of lysosomal acid maltase (GAA) or glycogen storage disease type II (GSDII) results in a spectrum of phenotypes including a rapidly fatal infantile disorder (Pompe's), juvenile, and a late-onset adult myopathy. The infantile onset form presents as hypotonia with massive accumulation of glycogen in skeletal and heart muscle, with death due to cardiorespiratory failure. Adult patients with the slowly progressive form develop severe skeletal muscle weakness and respiratory failure. Particle bombardment is a safe, efficient physical method in which high-density, subcellular-sized particles are accelerated to high velocity to carry DNA into cells. Because it does not depend on a specific ligand, receptor, or biochemical features on cell surfaces, particle-mediated gene transfer can be readily applied to a variety of systems. We evaluated particle bombardment as a delivery system for therapy of GSDII. We utilized a vector carrying the CMV promoter linked to the human GAA cDNA. Human GSDII cell lines (fibroblasts and lymphoid) as well as ex vivo with adult-onset peripheral blood cells (lymphocytes and monocytes) were transiently transfected by bombardment with a Helios gene gun delivering gold particles coated with the GAA expression plasmid. All cell types showed an increase in human GAA activity greater than 50% of normal activity. Subsequently, GAA -/- mice were treated every 2 weeks for 4 months by particle bombardment to the epidermis of the lower back and hind limbs. Muscle weakness in the hind and forelimbs was reversed. These data suggest that particle delivery of the GAA cDNA by the Helios gene gun may be a safe, effective treatment for GSDII.

摘要

溶酶体酸性麦芽糖酶(GAA)的常染色体隐性缺乏或糖原贮积病II型(GSDII)会导致一系列表型,包括一种快速致命的婴儿疾病(庞贝氏病)、青少年型以及晚发型成人肌病。婴儿发病型表现为肌张力减退,糖原在骨骼肌和心肌中大量蓄积,最终因心肺功能衰竭而死亡。缓慢进展型的成年患者会出现严重的骨骼肌无力和呼吸衰竭。粒子轰击是一种安全、高效的物理方法,通过将高密度、亚细胞大小的粒子加速到高速,从而将DNA导入细胞。由于它不依赖于细胞表面的特定配体、受体或生化特征,粒子介导的基因转移可很容易地应用于各种系统。我们评估了粒子轰击作为治疗GSDII的递送系统。我们使用了一种携带与人类GAA cDNA相连的巨细胞病毒(CMV)启动子的载体。通过用携带GAA表达质粒包被的金粒子的Helios基因枪轰击,人类GSDII细胞系(成纤维细胞和淋巴细胞)以及离体的成人外周血细胞(淋巴细胞和单核细胞)被瞬时转染。所有细胞类型的人类GAA活性均增加,超过正常活性的50%。随后,对GAA -/-小鼠每2周进行一次粒子轰击治疗,持续4个月,轰击部位为下背部和后肢的表皮。后肢和前肢的肌肉无力症状得到了改善。这些数据表明,通过Helios基因枪进行GAA cDNA的粒子递送可能是一种治疗GSDII的安全、有效方法。

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