4)- Om Srivastava, Landon Wilson, Stephen Barnes, Kiran Srivastava, Roy Joseph. αA and αB peptides from human cataractous lenses show antichaperone activity and enhance aggregation of lens proteins.Molecular vision. 2022, 28: 147-164
5)- Bindu Kodati, Nolan R McGrady, Hayden B Jefferies, Dorota L Stankowska, Raghu R Krishnamoorthy. Oral administration of a dual ET/ET receptor antagonist promotes neuroprotection in a rodent model of glaucoma.Molecular vision. 2022, 28: 165-177
7)- Kanya Moolsuwan, Tiravut Permpoon, Chanachai Sae-Lee, Mongkol Uiprasertkul, Viroj Boonyaratanakornkit, Pa-Thai Yenchitsomanus, Naravat Poungvarin, La-Ongsri Atchaneeyasakul. Dopachrome tautomerase is a retinoblastoma-specific gene, and its proximal promoter is preferentially active in human retinoblastoma cells.Molecular vision. 2022, 28: 192-202
9)- Melanie Scheive, Kathryn L Reinhart, Amir R Hajrasouliha. Using optical coherence tomography angiography as a biomarker of retinopathy severity and treatment for diabetic retinopathy.Molecular vision. 2022, 28: 220-229
10)- Kai On Chu, Tina InLam Chan, Kwok Ping Chan, Yolanda WongYing Yip, Malini Bakthavatsalam, Chi Chiu Wang, Chi Pui Pang, Marten E Brelen. Untargeted metabolomic analysis of aqueous humor in diabetic macular edema.Molecular vision. 2022, 28: 230-244
11)- Haruna Suzuki-Kerr, Kerry L Walker, Min-Hi Han, Julie C Lim, Paul J Donaldson. Hyposmotic stress causes ATP release in a discrete zone within the outer cortex of rat lens.Molecular vision. 2022, 28: 245-256
12)- Lachlan S W Knight, Sean Mullany, Deepa A Taranath, Jonathan B Ruddle, Christopher P Barnett, Suzanne C E H Sallevelt, Ella C Berry, Henry N Marshall, Georgina L Hollitt, Emmanuelle Souzeau, Jamie E Craig, Owen M Siggs. The phenotypic spectrum of associated ectopia lentis: Additional cases, complications, and review of literature.Molecular vision. 2022, 28: 257-268
13)- Xiaoli Lin, Xionggao Huang, Ling Wang, Weixian Liu. The long noncoding RNA MALAT1/microRNA-598-3p axis regulates the proliferation and apoptosis of retinoblastoma cells through the PI3K/AKT pathway.Molecular vision. 2022, 28: 269-279
15)- Ulrika Kjellström, Sten Andréasson. A five-year follow-up of carriers showing deterioration of retinal function and increased structural changes.Molecular vision. 2022, 28: 300-316
16)- Zhennan Zhao, Yang Sun, Qi Fan, Yongxiang Jiang, Yi Lu. Structural and functional analysis of SNP rs76740365 G>A in exon-3 of the alpha A-crystallin gene in lens epithelial cells.Molecular vision. 2022, 28: 317-330
17)- Kim Santerre, Stéphanie Proulx. Isolation efficiency of collagenase and EDTA for the culture of corneal endothelial cells.Molecular vision. 2022, 28: 331-339
18)- Tadeusz J Kaczynski, Elizabeth D Au, Michael H Farkas. Oxidative stress alters transcript localization of disease-associated genes in the retinal pigment epithelium.Molecular vision. 2022, 28: 340-351
20)- Tahleel Ali-Nasser, Shiri Zayit-Soudry, Eyal Banin, Dror Sharon, Tamar Ben-Yosef. Autosomal dominant retinitis pigmentosa with incomplete penetrance due to an intronic mutation of the gene.Molecular vision. 2022, 28: 359-368
21)- Zainab Zehra, Netasha Khan, Minhal Nadeem, Sorath Noorani Siddiqui, Christopher S von Bartheld, Maleeha Azam, Raheel Qamar. Association of polymorphisms with exotropia in a Pakistani cohort.Molecular vision. 2022, 28: 369-377
22)- Xiaoping Qi, Dorothy A Walton, Kendra S Plafker, Michael E Boulton, Scott M Plafker. Sulforaphane recovers cone function in an Nrf2-dependent manner in middle-aged mice undergoing RPE oxidative stress.Molecular vision. 2022, 28: 378-393
23)- Michael H Farkas, Lara A Skelton, Sriganesh Ramachandra-Rao, Elizabeth Au, Steven J Fliesler. Morphological, biochemical, and transcriptomic characterization of iPSC-derived human RPE cells from normal and Smith-Lemli-Opitz syndrome patients.Molecular vision. 2022, 28: 394-411
29)- Mohammed E El-Asrag, Marta Corton, Martin McKibbin, Almudena Avila-Fernandez, Moin D Mohamed, Fiona Blanco-Kelly, Carmel Toomes, Chris F Inglehearn, Carmen Ayuso, Manir Ali. Novel homozygous mutations in the transcription factor cause non-syndromic retinitis pigmentosa.Molecular vision. 2022, 28: 48-56
30)- Duong Thu Trang, Nguyen Minh Phu, Do Manh Hung, Vu Phuong Nhung, Nguyen Ngan Ha, Ma Thi Huyen Thuong, Tran Thi Bich Ngoc, Nguyen Xuan Hiep, Nguyen Dang Ton, Nong Van Hai, Nguyen Hai Ha. Whole exome sequencing revealed novel pathogenic variants in Vietnamese patients with FEVR.Molecular vision. 2022, 28: 480-491
31)- Kent R Barter, Hélène Paradis, Robert L Gendron, Josué A Lily Vidal, Oscar Meruvia-Pastor. Novel segmentation algorithm for high-throughput analysis of spectral domain-optical coherence tomography imaging of teleost retinas.Molecular vision. 2022, 28: 492-499
33)- Yuan Chen, Yixiang Zhou, Xue Zhu, Ge Yan, Donghui Pan, Lizhen Wang, Min Yang, Ke Wang. PET imaging of retinal inflammation in mice exposed to blue light using [F]-DPA-714.Molecular vision. 2022, 28: 507-515
36)- Susette Lauwen, Bjorn Bakker, Eiko K de Jong, Sascha Fauser, Carel B Hoyng, Dirk J Lefeber, Anneke I den Hollander. Analysis of hemopexin plasma levels in patients with age-related macular degeneration.Molecular vision. 2022, 28: 536-543
37)- Evangelia S Panagiotou, Narcis Fernandez-Fuentes, Layal Abi Farraj, Martin McKibbin, Nursel H Elçioglu, Hussain Jafri, Eren Cerman, David A Parry, Clare V Logan, Colin A Johnson, Chris F Inglehearn, Carmel Toomes, Manir Ali. Novel mutations cause recessively inherited congenital cataract, microcornea, and corneal opacification with or without coloboma and microphthalmia.Molecular vision. 2022, 28: 57-69
40)- Chang Shen, Bing You, Yu-Ning Chen, Yang Li, Wei Li, Wen-Bin Wei. Whole-exome sequencing identified genes known to be responsible for retinitis pigmentosa in 28 Chinese families.Molecular vision. 2022, 28: 96-113