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Shawn Mishra

Explore the profile of Shawn Mishra including associated specialties, affiliations and a list of published articles. Areas
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Articles 9
Citations 102
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Recent Articles
1.
Shavlakadze T, Xiong K, Mishra S, McEwen C, Gadi A, Wakai M, et al.
Skelet Muscle . 2023 Jul; 13(1):11. PMID: 37438807
Background: As a result of aging, skeletal muscle undergoes atrophy and a decrease in function. This age-related skeletal muscle weakness is known as "sarcopenia". Sarcopenia is part of the frailty...
2.
Praveen K, Dobbyn L, Gurski L, Ayer A, Staples J, Mishra S, et al.
Commun Biol . 2022 Jun; 5(1):540. PMID: 35661827
To better understand the genetics of hearing loss, we performed a genome-wide association meta-analysis with 125,749 cases and 469,497 controls across five cohorts. We identified 53/c loci affecting hearing loss...
3.
Sinko R, Mishra S, Ruiz L, Brandis N, Keten S
ACS Macro Lett . 2022 Jun; 3(1):64-69. PMID: 35651110
Cellulose nanocrystals (CNCs) exhibit outstanding mechanical properties exceeding that of Kevlar, serving as reinforcing domains in nature's toughest biological nanocomposites such as wood. To establish a molecular-level understanding of how...
4.
Mut S, Mishra S, Vazquez M
Micromachines (Basel) . 2022 Mar; 13(3). PMID: 35334698
Millions of adults are affected by progressive vision loss worldwide. The rising incidence of retinal diseases can be attributed to damage or degeneration of neurons that convert light into electrical...
5.
Mishra S, Pena J, Redenti S, Vazquez M
Exp Eye Res . 2019 Jun; 185:107688. PMID: 31185219
Photoreceptor degeneration is a significant cause of visual impairment in the United States and globally. Cell replacement therapy shows great promise in restoring vision by transplanting stem-like cells into the...
6.
Thakur A, Mishra S, Pena J, Zhou J, Redenti S, Majeska R, et al.
J Tissue Eng . 2018 Jan; 9:2041731417751286. PMID: 29344334
Strategies to replace retinal photoreceptors lost to damage or disease rely upon the migration of replacement cells transplanted into sub-retinal spaces. A significant obstacle to the advancement of cell transplantation...
7.
Mishra S, Vazquez M
Biosensors (Basel) . 2017 Nov; 7(4). PMID: 29160793
Electric fields have been studied extensively in biomedical engineering (BME) for numerous regenerative therapies. Recent studies have begun to examine the biological effects of electric fields in combination with other...
8.
Unachukwu U, Warren A, Li Z, Mishra S, Zhou J, Sauane M, et al.
Sci Rep . 2016 Mar; 6:22392. PMID: 26935401
To replace photoreceptors lost to disease or trauma and restore vision, laboratories around the world are investigating photoreceptor replacement strategies using subretinal transplantation of photoreceptor precursor cells (PPCs) and retinal...
9.
Mishra S, Thakur A, Redenti S, Vazquez M
Biomed Microdevices . 2015 Oct; 17(6):107. PMID: 26475458
The application of microfluidics technologies to the study of retinal function and response holds great promise for development of new and improved treatments for patients with degenerative retinal diseases. Restoration...