| Literature DB >> 33869676 |
Nadia Al-Sammarraie1, Swapan K Ray1.
Abstract
Spinal cord injury (SCI) is a debilitating injury that results from traumatic or non-traumatic insults to the spinal cord, causing significant impairment of the patient's activity and quality of life. Bone morphogenic proteins (BMPs) are a group of polyfunctional cytokines belonging to the transforming growth factor beta superfamily that regulates a wide variety of cellular functions in healthy and disease states. Recent studies suggest that dysregulation of BMP signaling is involved in neuronal demyelination and death after traumatic SCI. The focus of this article is to describe our current understanding of the role of BMP signaling in the regulation of cell fate, proliferation, apoptosis, autophagy, and inflammation in traumatic SCI. First, we will describe the expression of BMPs and pattern of BMP signaling before and after traumatic SCI in rodent models and in vitro. Next, we will discuss the role of BMP in the regulation of neuronal and glial cell differentiation, survival, functional recovery from traumatic SCI, and the gap in knowledge in this area that requires further investigation to improve SCI prognosis.Entities:
Keywords: Spinal cord injury; apoptosis; autophagy; bone morphogenic protein; differentiation; inflammation; proliferation
Year: 2021 PMID: 33869676 PMCID: PMC8052099 DOI: 10.20517/2347-8659.2020.34
Source DB: PubMed Journal: Neuroimmunol Neuroinflamm ISSN: 2347-8659
Figure 1.Molecular components and pathways of BMP signaling. The BMP signaling is initiated by the binding of BMP ligands to BMPR1 and BMPR2. In the canonical pathway, BMP receptors phosphorylate Smad1/5/8, which can bind to Co-Smad4 and are translocated to the nucleus to regulate the expression of target genes. In the non-canonical pathways, BMP receptors activate non-Smad pathways. Termination of BMP signaling is achieved by noggin, Smad6, and/or Smad7. BMP: bone morphogenic protein; BMPR: BMP receptor
Expression of BMP signaling components before and after SCI in rodent models
| BMP signaling component | SCI model | Outcomes | Ref. |
|---|---|---|---|
| BMP ligands | Rats | BMP7 mRNA was mildly expressed in glial cells in intact spinal cord but markedly expressed in glial cells and motoneurons post-SCI | [ |
| Rats | BMP2/4 mRNA was mildly expressed in intact spinal cord but markedly expressed in oligodendrocytes, astrocytes, and microglia surrounding the damaged site post-SCI | [ | |
| Mice | BMP2, 4, and 7 levels were increased in neurons, microglia, oligodendrocytes, and NSCs post-SCI, which enhanced astrocyte proliferation. BMP4 promoted differentiation of astrocytes and inhibited differentiation of neurons and oligodendrocytes | [ | |
| Rats | BMP2 and 4 levels were increased post-SCI and promoted differentiation of the engrafted OPCs cells into astrocytes | [ | |
| Mice | BMP7 expression was increased after SCI and further augmented after agmatine treatment, leading to reduced collagen scar formation and improved BBB score post-SCI | [ | |
| Rats | BMP4 expression was increased in astrocytes cultured from injured thoracic spinal cord | [ | |
| Rats | BMP2/4 expression was increased after SCI and associated with low BBB scores | [ | |
| Rats | BMP7 was expressed in glial cells of the intact spinal cord and increased in glial cells and motoneurons after SCI | [ | |
| Mice | BMP2 was slightly expressed in intact spinal cord and markedly increased post-SCI | [ | |
| Mice | BMP4 level was increased in neurons of gray and white matter and ependyma cells near the damaged site post-SCI | [ | |
| Rats | BMP4 was overexpressed after acute SCI | [ | |
| Rats | BMP2, 3, 4, 5, 7, 9,12, and 13 were expressed in intact spinal cord | [ | |
| BMP receptors | Rats | BMPR1A and BMPR2 expression levels were increased in neurons post-SCI | [ |
| BMP antagonists | Rats | Noggin was minimally expressed in intact spinal cord | [ |
| Canonical pathway | Mice | p-Smad1, 5, and 8 were activated in neurons, oligodendrocytes, OPCs, astrocytes, and NSCs post-SCI | [ |
BMP: bone morphogenic protein; SCI: spinal cord injury; OPCs: oligodendrocyte precursor cells; NSCs: neural stem cells; BBB: Basso, Beattie, and Bresnahan; BMPR: BMP receptor
Effects of BMP treatment on neuronal and non-neuronal cells in SCI in in vitro models
| BMP signaling component | Treatment | Outcomes | Ref. |
|---|---|---|---|
| BMP ligands | BMP7 | BMP7 inhibited tumor necrosis factor α-mediated oligodendrocyte death | [ |
| BMP7 | BMP7 inhibited glutamate induced neuronal cell death | [ | |
| BMP4 | [ | ||
| BMP7 | Noggin expressing OPCs treated with BMP7 showed less astrocytic differentiation | [ | |
| BMP antagonists | Noggin | Noggin treatment reduced astrocyte numbers. Inhibition of BMP4 using noggin attenuated differentiation of NSCs into astrocytes | [ |
| Noggin | Noggin treatment of OPCs partially reduced astrocytic differentiation | [ | |
| Noggin | Noggin treatment reduced differentiation of OPCs into astrocytes in astrocyte conditioning media. p-Smad1, 5, and 8 levels were increased in OPCs in astrocyte conditioning media compared to control. OPCs cultured in astrocyte conditioning media predominantly differentiated into astrocytes | [ | |
| Noggin and LDN193189 | Treatment attenuated BMP4 induced activation of caspase-3 for cell death in neurons and oligodendrocytes post-SCI | [ | |
| Noggin | Noggin treatment reduced astrocytic differentiation and increased the differentiation of NSCs into oligodendrocytes | [ |
BMP: bone morphogenic protein; SCI: spinal cord injury; OPCs: oligodendrocyte precursor cells; NSCs: neural stem cells
Figure 2.Cellular manifestations of BMP signaling in SCI. This diagram illustrates the in vitro and in vivo effects of activation or inhibition of BMP signaling on neuronal and/or glial cell proliferation, differentiation, survival, apoptosis, autophagy, and inflammation in SCI. BMP: bone morphogenic protein; SCI: spinal cord injury; BAMBI: BMP and activin membrane-bound inhibitor; OPCs: oligodendrocyte precursor cells
Therapeutic and genetic targeting of BMP signaling in SCI in in vivo models
| Treatment | SCI model | Effects | Ref. |
|---|---|---|---|
| BMP7 | Rats | BMP7 promoted neuroprotection via an increase in the number of surviving neurons, in part, via increased p38 non-canonical signaling | [ |
| Agmatine | Mice | It augmented BMP7 expression, reduced collagen scar formation, and improved BBB scores | [ |
| Agmatine | Mice | It reduced neuronal cell death and scar formation, leading to improved locomotive function. This effect was achieved, in part, via increased expression of BMP2/7 in neurons and oligodendrocytes, and decreased expression of BMP4 in the damaged site | [ |
| Conditional deletion of astrocytic BMPR1A and 1B | Mice | Knockouts of astrocytic BMPR1A cause reduction in astrocytic hypertrophy, decrease in axonal density, and enhancement of the inflammatory response. In contrast, knockouts of astrocytic BMPR1B increase astrocytic hypertrophy and reduce lesion size and glial scar formation post-SCI | [ |
| Transplantation of OPCs expressing BMPR1A, 1B, and 2 | Rats | Transplantation of OPCs expressing (BMPR1A, 1B, and 2) into rat spinal cord led to their differentiation into astrocytes | [ |
| Administration of AAV vector encoding BMP4 | Mice | Intra-thecal administration of AAV vector encoding BMP4 led to Smad1 activation in dorsal motoneuron and increased axonal regrowth after SCI | [ |
| Conditional knockout of β1-integrin in ependymal stem cells | Mice | Conditional knockout of β1-integrin in ependymal stem cells increased the movement of BMPR1B into lipid rafts while enhancing BMP signaling (canonical and non-canonical) and glial scar formation | [ |
| Noggin | Rats | Administration of recombinant mouse noggin intra-thecally improved locomotive function post-SCI and enhanced axonal regrowth | [ |
| Noggin | Rats | Noggin treatment reduced BMP2/4 expression and improved motor scored post-SCI | [ |
| Transplantation of | Mice | It promoted differentiation of NPCs into oligodendrocytes and neurons but inhibited their differentiation into astrocytes, leading to improvement of BBB scores in mice post-SCI | [ |
| Transplantation of noggin expressing neuronal stem Cells | Rats | It led to macrophage infiltration and widening of lesion size, but prevented astrocytic differentiation post-SCI | [ |
| BAMBI | Rats | Overexpression of BAMBI inhibited inflammation and promoted autophagy post-SCI | [ |
| BMP2 | Rats | Intra-thecal administration of rhBMP2 resulted in increases in expression of p-Smad1, 5, and 8 in most spinal cord cell types | [ |
BMP: bone morphogenic protein; SCI: spinal cord injury; OPCs: oligodendrocyte precursor cells; NSCs: neural stem cells; BBB: Basso, Beattie, and Bresnahan; BMPR: BMP receptor; BAMBI: BMP and activin membrane-bound inhibitor; AAV: adeno-associated virus