4.5 Review

Optical fiber tips for biological applications: From light confinement, biosensing to bioparticles manipulation

Journal

BIOCHIMICA ET BIOPHYSICA ACTA-GENERAL SUBJECTS
Volume 1862, Issue 5, Pages 1209-1246

Publisher

ELSEVIER
DOI: 10.1016/j.bbagen.2018.02.008

Keywords

Fiber optics; Optical fiber tips; Biology; Microfabrication; Optical fiber sensors; Optical fiber tweezers (OFTs)

Funding

  1. North Portugal Regional Operational Program (NORTE), under the PORTUGAL Partnership Agreement
  2. North Portugal Regional Operational Program (NORTE) through the European Regional Development Fund (ERDF)
  3. Portuguese Foundation for Science and Technology [PD/BD/135023/2017]

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Background: The tip of an optical fiber has been considered an attractive platform in Biology. The simple cleaved end of an optical fiber can be machined, patterned and/or functionalized, acquiring unique properties enabling the exploitation of novel optical phenomena. Prompted by the constant need to measure and manipulate nanoparticles, the invention of the Scanning Near-field Optical Microscopy (SNOM) triggered the optimization and development of novel fiber tip microfabrication methods. In fact, the fiber tip was soon considered a key element in SNOM by confining light to sufficiently small extensions, challenging the diffraction limit. As result and in consequence of the newly proposed Lab On Tip concept, several geometries of fiber tips were applied in three main fields: imaging (in Microscopy/Spectroscopy), biosensors and micromanipulation (Optical Fiber Tweezers, OFTs). These are able to exert forces on microparticles, trap and manipulate them for relevant applications, as biomolecules mechanical study or protein aggregates unfolding. Scope of review: This review presents an overview of the main achievements, most impactful studies and limitations of fiber tip-based configurations within the above three fields, along the past 10 years. Major conclusions: OFTs could be in future a valuable tool for studying several cellular phenomena such as neurodegeneration caused by abnormal protein fibrils or manipulating organelles within cells. This could contribute to understand the mechanisms of some diseases or biophenomena, as the axonal growth in neurons.

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