# Biomimetic nerve guidance conduit containing engineered exosomes of adipose-derived stem cells promotes peripheral nerve regeneration

**Authors:** Zheng Yang, Yang Yang, Yichi Xu, Weiqian Jiang, Yan Shao, Jiahua Xing, Youbai Chen, Yan Han

PMC · DOI: 10.1186/s13287-021-02528-x · Stem Cell Research & Therapy · 2021-08-06

## TL;DR

A nerve guidance conduit containing engineered exosomes improves peripheral nerve regeneration in rats by delivering neurotrophic factors.

## Contribution

A biomimetic nerve guidance conduit using engineered exosomes for sustained delivery of neurotrophic factors is developed.

## Key findings

- Engineered exosomes efficiently deliver NT-3 mRNA and produce functional protein in recipient cells.
- ExoNT-3-NGC promotes nerve regeneration and improves muscle function recovery in rats.
- The conduit enables stable exosome release for at least two weeks in vivo.

## Abstract

Efficient and stable delivery of neurotrophic factors (NTFs) is crucial to provide suitable microenvironment for peripheral nerve regeneration. Neurotrophin-3 (NT-3) is an important NTF during peripheral nerve regeneration which is scarce in the first few weeks of nerve defect. Exosomes are nanovesicles and have been served as promising candidate for biocarrier. In this work, NT-3 mRNA was encapsulated in adipose-derived stem cell (ADSC)-derived exosomes (ExoNT-3). These engineered exosomes were applied as NT-3 mRNA carrier and then were loaded in nerve guidance conduit (ExoNT-3-NGC) to bridge rat sciatic nerve defect.

NT-3 mRNA was encapsulated in exosomes by forcedly expression of NT-3 mRNA in the donor ADSCs. ExoNT-3 were co-cultured with SCs in vitro; after 24 h of culture, the efficiency of NT-3 mRNA delivery was evaluated by qPCR, western blotting and ELISA. Then, ExoNT-3 were loaded in alginate hydrogel to construct the nerve guidance conduits (ExoNT-3-NGC). ExoNT-3-NGC were implanted in vivo to reconstruct 10 mm rat sciatic nerve defect. The expression of NT-3 was measured 2 weeks after the implantation operation. The sciatic nerve functional index (SFI) was examined at 2 and 8 weeks after the operation. Moreover, the therapeutic effect of ExoNT-3-NGC was also evaluated by morphology assay, immunofluorescence staining of regenerated nerves, function evaluation of gastrocnemius muscles after 8 weeks of implantation.

The engineered exosomes could deliver NT-3 mRNA to the recipient cells efficiently and translated into functional protein. The constructed NGC could realize stable release of exosomes at least for 2 weeks. After NGC implantation in vivo, ExoNT-3-NGC group significantly promote nerve regeneration and improve the function recovery of gastrocnemius muscles compared with control exosomes (Exoempty-NGC) group.

In this work, NGC was constructed to allow exosome-mediated NT-3 mRNA delivery. After ExoNT-3-NGC implantation in vivo, the level of NT-3 could restore which enhance the nerve regeneration. Our study provide a potential approach to improve nerve regeneration.

The online version contains supplementary material available at 10.1186/s13287-021-02528-x.

## Linked entities

- **Genes:** NTF3 (neurotrophin 3) [NCBI Gene 4908]
- **Species:** Rattus norvegicus (taxon 10116), Mus musculus (taxon 10090)

## Full-text entities

- **Genes:** Golga2 (golgin A2) [NCBI Gene 64528] {aka Gm130}, Tsg101 (tumor susceptibility 101) [NCBI Gene 292925] {aka Rw}, Gapdh (glyceraldehyde-3-phosphate dehydrogenase) [NCBI Gene 24383] {aka BARS-38, Gapd}, Ntrk3 (neurotrophic receptor tyrosine kinase 3) [NCBI Gene 29613] {aka trkC}, Ngf (nerve growth factor) [NCBI Gene 310738] {aka Ngfb, beta-NGF}, Cd9 (CD9 molecule) [NCBI Gene 24936], Ntf3 (neurotrophin 3) [NCBI Gene 81737]
- **Diseases:** infection (MESH:D007239), peripheral nerve transection (MESH:D010523), NTFs (MESH:D009133), toxicity (MESH:D064420), Sciatic nerve injury (MESH:D020426), claudication (MESH:D007383), nerve (MESH:C537568), Peripheral nerve injury (MESH:D059348), of ankle (MESH:D016512), atrophy (MESH:D001284), abnormality of plantar flexion (MESH:D020429), ADSC (MESH:D000092423), nerve transection (MESH:D020221), nerve injury (MESH:D000080902), muscle (MESH:D019042), dysfunction of fibular nerve (MESH:D020427), neuropathic pain (MESH:D009437), virus infection (MESH:D014777)
- **Chemicals:** eosin (MESH:D004801), polysaccharide (MESH:D011134), Paraffin (MESH:D010232), Alginate (MESH:D000464), penicillin (MESH:D010406), alpha-MEM (MESH:C420642), 4,6-diamidino-2-phenyl-indole (MESH:C007293), calcium (MESH:D002118), CO2 (MESH:D002245), hematoxylin (MESH:D006416), Polypropylene (MESH:D011126), polybrene (MESH:D006583), Lipofectamine 2000 (MESH:C086724), phenylmethylsulfonyl fluoride (MESH:D010664), streptomycin (MESH:D013307), polyvinylidene fluoride (MESH:C024865), SDS (MESH:D012967), Triton X-100 (MESH:D017830), silicone (MESH:D012828), paraformaldehyde (MESH:C003043), calcium chloride (MESH:D002122), HE (MESH:D006371), NaCl (MESH:D012965), magnesium (MESH:D008274), PBS (MESH:D007854), 1,1'-dioctadecyl-3,3,3',3'-tetramethylindocarbocyanine perchlorate (MESH:C024286), sodium pentobarbital (MESH:D010424), TRIzol (MESH:C411644), Caliper (-), nitrogen (MESH:D009584)
- **Species:** Rattus norvegicus (brown rat, species) [taxon 10116], PX clade (clade) [taxon 569578], Lentivirus (genus) [taxon 11646], Homo sapiens (human, species) [taxon 9606]
- **Cell lines:** ExoNT-3 — Mus musculus (Mouse), Hybridoma (CVCL_C6V6), HEK293T — Homo sapiens (Human), Transformed cell line (CVCL_0063), NGC — Homo sapiens (Human), Transformed cell line (CVCL_DF59)

## Full text

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## Figures

6 figures with captions in the complete paper: https://tomesphere.com/paper/PMC8343914/full.md

## References

52 references — full list in the complete paper: https://tomesphere.com/paper/PMC8343914/full.md

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Source: https://tomesphere.com/paper/PMC8343914