We also summarize strategies for drug loading in the biomolecule-mineralized core-shell NPs.
2
Structure alteration, biomolecule fragmentation, and oxidation of side chains are trade-offs of cellular energy production.
3
The enhancement of biomolecule extraction could be achieved depending on the properties of reverse micelles.
4
A massively parallel nanofluidic concentration device array for multiplexed and high-throughput biomolecule detection is demonstrated.
5
Using the method, we achieved residual-free patterns with submicrometer resolution for applications in biomolecule array templates.
6
This allows identification of the DNA-modified regions at resolutions that approach the size of the biomolecule.
7
The results of this study are relevant to the optimization of chip-based gel-free biomolecule separation and analysis.
8
Using dedicated sample preparation techniques and carefully optimized instrumental parameters, a number of biomolecule assemblies were successfully analyzed.
9
Harnessing this mechanism for therapeutic biomolecule delivery represents a promising frontier for regenerative medicine and other clinical applications.
10
This could indicate that the increasing in defense mechanisms was not sufficient to avoid oxidative biomolecule damage during maturation.
11
An ideal scaffold should have sufficient binding sites for biomolecule immobilization and a mechanical property similar to native tissue.
12
Optimization of this scheme could be useful for label-free, electrical detection of biomolecule binding reactions within nanochannels on a chip.
13
This is the longest highly homopolymeric tract described in a viral genome and, to our knowledge, in any informational biomolecule.
14
Additionally, advanced applications of these biomolecule-NCP composites in the areas of sensing, catalysis, molecular imaging and therapy are thoroughly summarized.
15
Microfabricated regular sieving structures hold great promise as an alternative to gels to improve the speed and resolution of biomolecule separation.
16
The Company supports the preclinical and clinical development needs of researchers and clinicians for small molecule and large biomolecule drug candidates.