Bishnu Kumar Shrestha
Overview
Explore the profile of Bishnu Kumar Shrestha including associated specialties, affiliations and a list of published articles.
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Articles
19
Citations
151
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Recent Articles
1.
Shrestha S, Shrestha B, Tettey-Engmann F, Auniq R, Subedi K, Ghimire S, et al.
ACS Appl Mater Interfaces
. 2024 Sep;
16(37):49197-49217.
PMID: 39235841
Metal particles incorporated into polymer matrices in various forms and geometries are attractive material platforms for promoting wound healing and preventing infections. However, the fate of these metal particles and...
2.
Choi E, Lee J, Yu M, Kwak H, Shrestha B, Park C, et al.
Heliyon
. 2024 Mar;
10(5):e26307.
PMID: 38468974
Recently, with the development of non-invasive human health monitoring technology including wearable devices, a flexible sensor that monitors 'human sound and movement signals' such as human voice and muscle movement...
3.
Sapkota T, Shrestha B, Shrestha S, Bhattarai N
Nanomaterials (Basel)
. 2023 Sep;
13(17).
PMID: 37686978
An engineered 3D architectural network of the biopolymeric hydrogel can mimic the native cell environment that promotes cell infiltration and growth. Among several bio-fabricated hydrogel structures, core-shell microcapsules inherit the...
4.
Ghimire U, Kandel R, Shrestha S, Moon J, Jang S, Shrestha B, et al.
Colloids Surf B Biointerfaces
. 2023 Feb;
223:113152.
PMID: 36739675
Fabricating bioartificial bone graft ceramics retaining structural, mechanical, and bone induction properties akin to those of native stem-cell niches is a major challenge in the field of bone tissue engineering...
5.
Kandel R, Jang S, Shrestha S, Ghimire U, Shrestha B, Park C, et al.
Mater Sci Eng C Mater Biol Appl
. 2021 Dec;
131:112501.
PMID: 34857287
Bioactive mesoporous binary metal oxide nanoparticles allied with polymeric scaffolds can mimic natural extracellular matrix because of their self-mineralized functional matrix. Herein, we developed fibrous scaffolds of polycaprolactone (PCL) integrating...
6.
Hwang J, Shrestha B, Kim J, Seo T, Park C, Kim M
Nanotechnology
. 2021 Oct;
33(5).
PMID: 34673562
In this work, we synthesized a monolayer of graphene and hexagonal boron nitride (hBN) using chemical vapor deposition. The physicochemical and electrochemical properties of the materials were evaluated to determine...
7.
Kandel R, Jang S, Shrestha S, Lee S, Shrestha B, Park C, et al.
ACS Appl Mater Interfaces
. 2021 Sep;
13(39):47100-47117.
PMID: 34579527
Titanium-based substrates are widely used in orthopedic treatments and hard tissue engineering. However, many of these titanium (Ti) substrates fail to interact properly between the cell-to-implant interface, which can lead...
8.
Shrestha S, Jang S, Shrestha B, Park C, Sang Kim C
Mater Sci Eng C Mater Biol Appl
. 2021 Jul;
127:112176.
PMID: 34225892
The bioengineering electroactive construct of a nerve-guided conduit for repairing and restoring injured nerves is an exciting biomedical endeavor that has implications for the treatment of peripheral nerve injury. In...
9.
Shrestha S, Shrestha B, Joong O, Park C, Sang Kim C
Biomater Sci
. 2021 Jan;
9(5):1691-1704.
PMID: 33410823
Structural parameters, such as metal-like semiconductor and electrochemical properties of functionalized polyaniline, hold great potential especially for the development of the cell-substrate interface due to its ion/electron transfer ability. We...
10.
Shrestha S, Shrestha B, Ko S, Kandel R, Park C, Sang Kim C
Carbohydr Polym
. 2020 Nov;
251:117035.
PMID: 33142593
A biomimetic-based approaches, especially with artificial scaffolding, have established great potential to provide tissue regeneration capacity and an effective way to bridge the gap between host cell responses and organ...