Modulation of the Inflammatory Response and Bone Healing

Модуляция воспалительного ответа и заживление костной ткани
Masahiro Maruyama, Claire Rhee, Takeshi Utsunomiya, Ning Zhang, Masaya Ueno, Zhenyu Yao, Stuart B. Goodman
2020-06-11

bone healingimmunomodulationinflammatory responsemesenchymal stromal cellspreconditioned MSCs
The optimal treatment for complex fractures and large bone defects is an important unsolved issue in orthopedics and related specialties. Approximately 5-10% of fractures fail to heal and develop non-unions. Bone healing can be characterized by three partially overlapping phases: the inflammatory phase, the repair phase, and the remodeling phase. Eventual healing is highly dependent on the initial inflammatory phase, which is affected by both the local and systemic responses to the injurious stimulus. Furthermore, immune cells and mesenchymal stromal cells (MSCs) participate in critical inter-cellular communication or crosstalk to modulate bone healing. Deficiencies in this inter-cellular exchange, inhibition of the natural processes of acute inflammation, and its resolution, or chronic inflammation due to a persistent adverse stimulus can lead to impaired fracture healing. Thus, an initial and optimal transient stage of acute inflammation is one of the key factors for successful, robust bone healing. Recent studies demonstrated the therapeutic potential of immunomodulation for bone healing by the preconditioning of MSCs to empower their immunosuppressive properties. Preconditioned MSCs (also known as "primed/ licensed/ activated" MSCs) are cultured first with pro-inflammatory cytokines (e.g., TNFα and IL17A) or exposed to hypoxic conditions to mimic the inflammatory environment prior to their intended application. Another approach of immunomodulation for bone healing is the resolution of inflammation with anti-inflammatory cytokines such as IL4, IL10, and IL13. In this review, we summarize the principles of inflammation and bone healing and provide an update on cellular interactions and immunomodulation for optimal bone healing.
1
Approximately 5–10% of fractures fail to heal and progress to non-unions, highlighting persistent challenges in treating complex fractures and large bone defects.
2
Bone healing proceeds through overlapping inflammatory, repair, and remodeling phases, with successful healing strongly dependent on the initial inflammatory phase.
3
Both suppression of acute inflammation and persistent chronic inflammation can compromise healing, whereas a transient, optimally regulated acute inflammatory response supports robust bone repair.
4
Effective communication between immune cells and mesenchymal stromal cells is critical for regulating bone healing; disrupted crosstalk can impair repair.
5
Immunomodulatory strategies include preconditioning mesenchymal stromal cells with pro-inflammatory cytokines or hypoxia and promoting inflammation resolution using IL4, IL10, or IL13.

bone healing in complex fractures and large bone defects

the role and therapeutic modulation of the inflammatory response, immune–MSC crosstalk, and inflammation resolution in bone healing

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Publication Date
2020-06-11
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Masahiro Maruyama
Claire Rhee
Takeshi Utsunomiya
Ning Zhang
Masaya Ueno
Zhenyu Yao
Stuart B. Goodman
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