Spinal Reflex Recovery after Dorsal Rhizotomy and Repair with Platelet-Rich Plasma (PRP) Gel Combined with Bioengineered Human Embryonic Stem Cells (hESCs)

Author:

Castro Mateus Vidigal de1,Silva Moníze Valéria Ramos da1,Chiarotto Gabriela Bortolança12,Santana Maria Helena Andrade3,Luzo Ângela Cristina Malheiros4,Kyrylenko Sergiy15,Oliveira Alexandre Leite Rodrigues de1ORCID

Affiliation:

1. Department of Structural and Functional Biology, Institute of Biology, University of Campinas, Campinas, São Paulo, Brazil

2. University Center of Herminio Ometto Foundation, Araras, São Paulo, Brazil

3. Department of Engineering of Materials and Bioprocesses, School of Chemical Engineering, University of Campinas, Campinas, São Paulo, Brazil

4. Haematology and Hemotherapy Center, Umbilical Cord Blood Bank, University of Campinas, Campinas, São Paulo, Brazil

5. Biomaterials Research Group, Center for Collective Use of Scientific Equipment, Medical Institute of Sumy State University, Sumy, Ukraine

Abstract

Dorsal root rhizotomy (DRZ) is currently considered an untreatable injury, resulting in the loss of sensitive function and usually leading to neuropathic pain. In this context, we recently proposed a new surgical approach to treat DRZ that uses platelet-rich plasma (PRP) gel to restore the spinal reflex. Success was correlated with the reentry of primary afferents into the spinal cord. Here, aiming to enhance previous results, cell therapy with bioengineered human embryonic stem cells (hESCs) to overexpress fibroblast growth factor 2 (FGF2) was combined with PRP. For these experiments, adult female rats were submitted to a unilateral rhizotomy of the lumbar spinal dorsal roots, which was followed by root repair with PRP gel with or without bioengineered hESCs. One week after DRZ, the spinal cords were processed to evaluate changes in the glial response (GFAP and Iba-1) and excitatory synaptic circuits (VGLUT1) by immunofluorescence. Eight weeks postsurgery, the lumbar intumescences were processed for analysis of the repaired microenvironment by transmission electron microscopy. Spinal reflex recovery was evaluated by the electronic Von Frey method for eight weeks. The transcript levels for human FGF2 were over 37-fold higher in the induced hESCs than in the noninduced and the wildtype counterparts. Altogether, the results indicate that the combination of hESCs with PRP gel promoted substantial and prominent axonal regeneration processes after DRZ. Thus, the repair of dorsal roots, if done appropriately, may be considered an approach to regain sensory-motor function after dorsal root axotomy.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Publisher

Hindawi Limited

Subject

Cell Biology,Molecular Biology

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