Generation of Lens Progenitor Cells and Lentoid Bodies from Pluripotent Stem Cells: Novel Tools for Human Lens Development and Ocular Disease Etiology

被引:11
作者
Cvekl, Ales [1 ,2 ]
Camerino, Michael John [1 ,2 ]
机构
[1] Albert Einstein Coll Med, Dept Ophthalmol & Visual Sci, Bronx, NY 10461 USA
[2] Albert Einstein Coll Med, Dept Genet, Bronx, NY 10461 USA
关键词
cranial placodes; crystallins; de-nucleation; differentiation; gene expression; lens progenitor cells; lentoid bodies; optic cup; pluripotent stem cells; PAX6; self-organization; FIBROBLAST-GROWTH-FACTOR; DOMINANT CONGENITAL CATARACT; AGE-RELATED-CHANGES; HEPARAN-SULFATE PROTEOGLYCANS; RETINAL-PIGMENT EPITHELIUM; CRYSTALLIN GENE-REGULATION; TRABECULAR MESHWORK CELLS; PRE-PLACODAL REGION; ALPHA-A-CRYSTALLIN; IN-VITRO;
D O I
10.3390/cells11213516
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
In vitro differentiation of human pluripotent stem cells (hPSCs) into specialized tissues and organs represents a powerful approach to gain insight into those cellular and molecular mechanisms regulating human development. Although normal embryonic eye development is a complex process, generation of ocular organoids and specific ocular tissues from pluripotent stem cells has provided invaluable insights into the formation of lineage-committed progenitor cell populations, signal transduction pathways, and self-organization principles. This review provides a comprehensive summary of recent advances in generation of adenohypophyseal, olfactory, and lens placodes, lens progenitor cells and three-dimensional (3D) primitive lenses, "lentoid bodies", and "micro-lenses". These cells are produced alone or "community-grown" with other ocular tissues. Lentoid bodies/micro-lenses generated from human patients carrying mutations in crystallin genes demonstrate proof-of-principle that these cells are suitable for mechanistic studies of cataractogenesis. Taken together, current and emerging advanced in vitro differentiation methods pave the road to understand molecular mechanisms of cataract formation caused by the entire spectrum of mutations in DNA-binding regulatory genes, such as PAX6, SOX2, FOXE3, MAF, PITX3, and HSF4, individual crystallins, and other genes such as BFSP1, BFSP2, EPHA2, GJA3, GJA8, LIM2, MIP, and TDRD7 represented in human cataract patients.
引用
收藏
页数:42
相关论文
共 471 条
[1]   Merging organoid and organ-on-a-chip technology to generate complex multi-layer tissue models in a human retina-on-a-chip platform [J].
Achberger, Kevin ;
Probst, Christopher ;
Haderspeck, Jasmin ;
Bolz, Sylvia ;
Rogal, Julia ;
Chuchuy, Johanna ;
Nikolova, Marina ;
Cora, Virginia ;
Antkowiak, Lena ;
Haq, Wadood ;
Shen, Nian ;
Schenke-Layland, Katja ;
Ueffing, Marius ;
Liebau, Stefan ;
Loskill, Peter .
ELIFE, 2019, 8
[2]   The Human Eye Proteome Project: Updates on an Emerging Proteome [J].
Ahmad, Meleha T. ;
Zhang, Pingbo ;
Dufresne, Craig ;
Ferrucci, Luigi ;
Semba, Richard D. .
PROTEOMICS, 2018, 18 (5-6)
[3]   Structural Basis of Wnt Signaling Inhibition by Dickkopf Binding to LRP5/6 [J].
Ahn, Victoria E. ;
Chu, Matthew Ling-Hon ;
Choi, Hee-Jung ;
Tran, Denise ;
Abo, Arie ;
Weis, William I. .
DEVELOPMENTAL CELL, 2011, 21 (05) :862-873
[4]   Structural evidence of human nuclear fiber compaction as a function of ageing and cataractogenesis [J].
Al-Ghoul, KJ ;
Nordgren, RK ;
Kuszak, AJ ;
Freel, CD ;
Costello, MJ ;
Kuszak, JR .
EXPERIMENTAL EYE RESEARCH, 2001, 72 (03) :199-214
[5]   Distribution and type of morphological damage in human nuclear age-related cataracts [J].
AlGhoul, KJ ;
Lane, CW ;
Taylor, VL ;
Fowler, WC ;
Costello, MJ .
EXPERIMENTAL EYE RESEARCH, 1996, 62 (03) :237-251
[6]   Generation and proteome profiling of PBMC-originated, iPSC-derived lentoid bodies [J].
Ali, Muhammad ;
Kabir, Firoz ;
Raskar, Snehal ;
Renuse, Santosh ;
Na, Chan Hyun ;
Delannoy, Michael ;
Khan, Shahid Y. ;
Riazuddin, S. Amer .
STEM CELL RESEARCH, 2020, 46
[7]   Lens induction by Pax-6 in Xenopus laevis [J].
Altmann, CR ;
Chow, RL ;
Lang, RA ;
HemmatiBrivanlou, A .
DEVELOPMENTAL BIOLOGY, 1997, 185 (01) :119-123
[8]   Embryo model completes gastrulation to neurulation and organogenesis [J].
Amadei, Gianluca ;
Handford, Charlotte E. ;
Qiu, Chengxiang ;
De Jonghe, Joachim ;
Greenfeld, Hannah ;
Tran, Martin ;
Martin, Beth K. ;
Chen, Dong-Yuan ;
Aguilera-Castrejon, Alejandro ;
Hanna, Jacob H. ;
Elowitz, Michael B. ;
Hollfelder, Florian ;
Shendure, Jay ;
Glover, David M. ;
Zernicka-Goetz, Magdalena .
NATURE, 2022, 610 (7930) :143-+
[9]   Differentiation of Human Embryonic Stem Cell-Derived Retinal Progenitors into Retinal Cells by Sonic Hedgehog and/or Retinal Pigmented Epithelium and Transplantation into the Subretinal Space of Sodium Iodate-Injected Rabbits [J].
Amirpour, Noushin ;
Karamali, Fereshteh ;
Rabiee, Farzaneh ;
Rezaei, Leila ;
Esfandiari, Ebrahim ;
Razavi, Shahnaz ;
Dehghani, Alireza ;
Razmju, Hassan ;
Nasr-Esfahani, Mohammad Hossein ;
Baharvand, Hossein .
STEM CELLS AND DEVELOPMENT, 2012, 21 (01) :42-53
[10]   Differentiation of Induced Pluripotent Stem Cells to Lentoid Bodies Expressing a Lens Cell-Specific Fluorescent Reporter [J].
Anand, Taruna ;
Talluri, Thirumala R. ;
Kumar, Dharmendra ;
Garrels, Wiebke ;
Mukherjee, Ayan ;
Debowski, Katharina ;
Behr, Ruediger ;
Kues, Wilfried A. .
PLOS ONE, 2016, 11 (06)