4.8 Review

Light on osteoarthritic joint: from bench to bed

Journal

THERANOSTICS
Volume 12, Issue 2, Pages 542-557

Publisher

IVYSPRING INT PUBL
DOI: 10.7150/thno.64340

Keywords

Key words; Osteoarthritis; photoacoustic imaging; photothermal therapy; cartilage; synovium

Funding

  1. National Natural Science Foundation of China (NSFC) [81930048, 81627805]
  2. Hong Kong Innovation and Technology Commission [GHP/043/19SZ, GHP/044/19GD, MHP/011/20]
  3. Hong Kong Research Grant Council [15217721, R5029-19, 25100818, 15106120, 15100821]
  4. Guangdong Science and Technology Commission [2019BT02X105, 2019A1 515011374]
  5. Hong Kong Health and Medical Research Fund [01150087, 16172691]
  6. NFSC/RGC schemes [N_PolyU 520/20]
  7. Hong Kong Polytechnic University Project of Strategic Importance (ZE2C)

Ask authors/readers for more resources

An inflatable bed is a portable sleeping mattress that can be easily inflated and deflated, providing a comfortable sleeping experience. It is made of puncture-resistant materials and is designed to withstand wear and tear. The advantages of an inflatable bed include its portability and easy storage, making it suitable for outdoor activities and temporary accommodations.
Osteoarthritis (OA) is one of the rapidly growing disability-associated conditions with population aging worldwide. There is a pressing need for precise diagnosis and timely intervention for OA in the early stage. Current clinical imaging modalities, including pain radiography, magnetic resonance imaging, ultrasound, and optical coherent tomography, are limited to provide structural changes when the damage has been established or advanced. It prompts further endeavors in search of novel functional and molecular imaging, which potentially enables early diagnosis and intervention of OA. A hybrid imaging modality based on photothermal effects, photoacoustic imaging, has drawn wide attention in recent years and has seen a variety of biomedical applications, due to its great performance in yielding high-contrast and high-resolution images from structure to function, from tissue down to molecular levels, from animals to human subjects. Photoacoustic imaging has witnessed gratifying potentials and preliminary effects in OA diagnosis. Regarding the treatment of OA, photothermal-triggered therapy has exhibited its attractions for enhanced therapeutic outcomes. In this narrative review, we will discuss photoacoustic imaging for the diagnosis and monitoring of OA at different stages. Structural, functional, and molecular parameter changes associated with OA joints captured by photoacoustics will be summarized, forming the diagnosis perspective of the review. Photothermal therapy applications related to OA will also be discussed herein. Lastly, relevant clinical applications and its potential solutions to extend photoacoustic imaging to deeper OA situations have been proposed. Although some aspects may not be covered, this mini review provides a better understanding of the diagnosis and treatment of OA with exciting innovations based on tissue photothermal effects. It may also inspire more explorations in the field towards earlier and better theranostics of OA.

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