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Cell-based therapeutic strategies for replacement and preservation in retinal degenerative diseases
Affiliation:1. Research Center, Kobe City Eye Hospital, Kobe 6500-047, Japan;2. Kobe City Eye Hospital, Department of Ophthalmology, Kobe 6500-047, Japan;3. Laboratory for Retinal Regeneration, RIKEN Center for Biosystems Dynamics Research, Kobe 650-0047, Japan;4. Vision Care Inc., Kobe 650-0047, Japan;5. Trans Ova Genetics, Sioux Center, Iowa, USA
Abstract:
Cell-based therapeutics offer diverse options for treating retinal degenerative diseases, such as age-related macular degeneration (AMD) and retinitis pigmentosa (RP). AMD is characterized by both genetic and environmental risks factors, whereas RP is mainly a monogenic disorder. Though treatments exist for some patients with neovascular AMD, a majority of retinal degenerative patients have no effective therapeutics, thus indicating a need for universal therapies to target diverse patient populations. Two main cell-based mechanistic approaches are being tested in clinical trials. Replacement therapies utilize cell-derived retinal pigment epithelial (RPE) cells to supplant lost or defective host RPE cells. These cells are similar in morphology and function to native RPE cells and can potentially supplant the responsibilities of RPE in vivo. Preservation therapies utilize supportive cells to aid in visual function and photoreceptor preservation partially by neurotrophic mechanisms. The goal of preservation strategies is to halt or slow the progression of disease and maintain remaining visual function. A number of clinical trials are testing the safety of replacement and preservation cell therapies in patients; however, measures of efficacy will need to be further evaluated. In addition, a number of prevailing concerns with regards to the immune-related response, longevity, and functionality of the grafted cells will need to be addressed in future trials. This review will summarize the current status of cell-based preclinical and clinical studies with a focus on replacement and preservation strategies and the obstacles that remain regarding these types of treatments.
Keywords:Age-related macular degeneration  Animal models  Retinitis pigmentosa  Stem cell therapy  Transplantation  Visual function  AMD"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0045"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  age-related macular degeneration  AOSLO"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0055"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  adaptive optics scanning laser ophthalmoscopy  BDNF"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0065"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  brain-derived neurotrophic factor  bFGF"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0075"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  basic fibroblast growth factor  BM-MSC"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0085"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  bone marrow derived-mesenchymal stem cell  CFH"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0095"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  complement factor H  CNTF"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0105"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  ciliary neurotrophic factor  ERG"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0115"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  electroretinography  ESC"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0125"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  embryonic stem cell  GDNF"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0135"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  glial cell line-derived neurotrophic factor  INL"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0145"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  inner nuclear layer  iNPC"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0155"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  induced pluripotent stem cell-derived neural progenitor cell  iPSC"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0165"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  induced pluripotent stem cell  LCA"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0175"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  Leber congenital amaurosis  LTR"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0185"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  luminance threshold response  MHC"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0195"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  major histocompatibility complex  MSC"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0205"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  mesenchymal stem cell  NPC"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0215"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  neural progenitor cell  NSC"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0225"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  neural stem cell  ONL"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0235"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  outer nuclear layer  PEDF"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0245"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  pigment epithelium-derived factor  PGF"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0255"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  placental growth factor  RCS"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0265"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  Royal College of Surgeons  RDDs"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0275"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  retinal degenerative diseases  RGC"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0285"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  retinal ganglion cell  RHO"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0295"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  rhodopsin  RP"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0305"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  retinitis pigmentosa  RPE"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0315"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  retinal pigment epithelium  RPC"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0325"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  retinal progenitor cell  RSC"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0335"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  retinal stem cell  SD-OCT"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0345"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  spectral domain optical coherence tomography  UC-MSC"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0355"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  umbilical cord-derived mesenchymal stem cell  VEGF"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  kwrd0365"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  vascular epithelial growth factor
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