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1.
Acta Cir Bras ; 35(3): e202000303, 2020.
Article in English | MEDLINE | ID: mdl-32490900

ABSTRACT

PURPOSE: To evaluate the in vivo response of photobiomodulation therapy associated with norbixin-based poly(hydroxybutyrate) membrane (PHB) in tenotomized calcaneal tendon. METHODS: Thirty rats were randomly allocated to six groups (n=5 each): LED groups (L1, L2 and L3) and membrane + LED groups (ML1, ML2 and ML3). The right calcaneal tendons of all animals were sectioned transversely and were irradiated with LED daily, one hour after surgery every 24 hours, until the day of euthanasia. At the end of the experiments the tendons were removed for histological analysis. RESULTS: The histological analysis showed a significant reduction in inflammatory cells in the ML1, ML2 and ML3 groups (p=0.0056, p=0.0018 and p<0.0001, respectively) compared to those in the LED group. There was greater proliferation of fibroblasts in the ML1 (p<0.0001) and L3 (p<0.0001) groups. A higher concentration of type I collagen was also observed in the ML1 group (p=0.0043) replacing type III collagen. CONCLUSION: Photobiomodulation in association with norbixin-based PHB membrane led to control of the inflammatory process. However, it did not favor fibroblast proliferation and did not optimize type I collagen formation in the expected stage of the repair process.


Subject(s)
Achilles Tendon/radiation effects , Carotenoids/pharmacology , Hydroxybutyrates/pharmacology , Low-Level Light Therapy/methods , Tendinopathy/radiotherapy , Tenotomy/methods , Achilles Tendon/drug effects , Achilles Tendon/surgery , Animals , Collagen/pharmacology , Collagen Type I/analysis , Collagen Type I/drug effects , Collagen Type III/analysis , Collagen Type III/drug effects , Drug Evaluation, Preclinical , Fibroblasts/chemistry , Fibroblasts/drug effects , Male , Prohibitins , Random Allocation , Rats , Rats, Wistar , Wound Healing/drug effects , Wound Healing/radiation effects
2.
Acta Cir Bras ; 34(11): e201901101, 2020.
Article in English | MEDLINE | ID: mdl-31939594

ABSTRACT

PURPOSE: To determine the efficacy of norbixin-based poly(hydroxybutyrate) (PHB) membranes for Achilles tendon repair. METHODS: Thirty rats were submitted to total tenotomy surgery of the right Achilles tendon and divided into two groups (control and membrane; n = 15 each), which were further subdivided into three subgroups (days 7, 14, and 21; n = 5 each). Samples were analyzed histologically. RESULTS: Histological analysis showed a significant reduction in inflammatory infiltrates on days 7, 14 (p < 0.0001 for both), and 21 (p = 0.0004) in the membrane group compared to that in the control group. There was also a significant decrease in the number of fibroblasts in the control group on days 7, 14 (p < 0.0001), and 21 (p = 0.0032). Further, an increase in type I collagen deposition was observed in the membrane group compared to that in the control group on days 7 (p = 0.0133) and 14 (p = 0.0107). CONCLUSION: Treatment with norbixin-based PHB membranes reduces the inflammatory response, increases fibroblast proliferation, and improves collagen production in the tendon repair region, especially between days 7 and 14.


Subject(s)
Achilles Tendon/drug effects , Achilles Tendon/surgery , Carotenoids/pharmacology , Hydroxybutyrates/pharmacology , Polyesters/pharmacology , Tenotomy/methods , Achilles Tendon/pathology , Animals , Collagen Type I/analysis , Collagen Type I/drug effects , Collagen Type III/analysis , Collagen Type III/drug effects , Fibroblasts/drug effects , Humans , Male , Prohibitins , Rats, Wistar , Reference Values , Regeneration/drug effects , Reproducibility of Results , Time Factors , Treatment Outcome
3.
Acta cir. bras ; 35(3): e202000303, 2020. tab, graf
Article in English | LILACS | ID: biblio-1130621

ABSTRACT

Abstract Purpose: To evaluate the in vivo response of photobiomodulation therapy associated with norbixin-based poly(hydroxybutyrate) membrane (PHB) in tenotomized calcaneal tendon. Methods: Thirty rats were randomly allocated to six groups (n=5 each): LED groups (L1, L2 and L3) and membrane + LED groups (ML1, ML2 and ML3). The right calcaneal tendons of all animals were sectioned transversely and were irradiated with LED daily, one hour after surgery every 24 hours, until the day of euthanasia. At the end of the experiments the tendons were removed for histological analysis. Results: The histological analysis showed a significant reduction in inflammatory cells in the ML1, ML2 and ML3 groups (p=0.0056, p=0.0018 and p<0.0001, respectively) compared to those in the LED group. There was greater proliferation of fibroblasts in the ML1 (p<0.0001) and L3 (p<0.0001) groups. A higher concentration of type I collagen was also observed in the ML1 group (p=0.0043) replacing type III collagen. Conclusion: Photobiomodulation in association with norbixin-based PHB membrane led to control of the inflammatory process. However, it did not favor fibroblast proliferation and did not optimize type I collagen formation in the expected stage of the repair process.


Subject(s)
Animals , Male , Rats , Achilles Tendon/radiation effects , Carotenoids/pharmacology , Low-Level Light Therapy/methods , Tendinopathy/radiotherapy , Tenotomy/methods , Hydroxybutyrates/pharmacology , Achilles Tendon/surgery , Achilles Tendon/drug effects , Wound Healing/drug effects , Wound Healing/radiation effects , Random Allocation , Collagen/pharmacology , Rats, Wistar , Collagen Type I/analysis , Collagen Type I/drug effects , Collagen Type III/analysis , Collagen Type III/drug effects , Drug Evaluation, Preclinical , Fibroblasts/drug effects , Fibroblasts/chemistry , Prohibitins
4.
Acta cir. bras ; 34(11): e201901101, Nov. 2019. tab, graf
Article in English | LILACS | ID: biblio-1054681

ABSTRACT

Abstract Purpose: To determine the efficacy of norbixin-based poly(hydroxybutyrate) (PHB) membranes for Achilles tendon repair. Methods: Thirty rats were submitted to total tenotomy surgery of the right Achilles tendon and divided into two groups (control and membrane; n = 15 each), which were further subdivided into three subgroups (days 7, 14, and 21; n = 5 each). Samples were analyzed histologically. Results: Histological analysis showed a significant reduction in inflammatory infiltrates on days 7, 14 (p < 0.0001 for both), and 21 (p = 0.0004) in the membrane group compared to that in the control group. There was also a significant decrease in the number of fibroblasts in the control group on days 7, 14 (p < 0.0001), and 21 (p = 0.0032). Further, an increase in type I collagen deposition was observed in the membrane group compared to that in the control group on days 7 (p = 0.0133) and 14 (p = 0.0107). Conclusion: Treatment with norbixin-based PHB membranes reduces the inflammatory response, increases fibroblast proliferation, and improves collagen production in the tendon repair region, especially between days 7 and 14.


Subject(s)
Humans , Animals , Male , Polyesters/pharmacology , Achilles Tendon/surgery , Achilles Tendon/drug effects , Carotenoids/pharmacology , Tenotomy/methods , Hydroxybutyrates/pharmacology , Reference Values , Regeneration/drug effects , Achilles Tendon/pathology , Reproducibility of Results , Rats, Wistar , Collagen Type I/analysis , Collagen Type I/drug effects , Collagen Type III/analysis , Collagen Type III/drug effects , Fibroblasts/drug effects
5.
Lasers Med Sci ; 33(7): 1493-1504, 2018 Sep.
Article in English | MEDLINE | ID: mdl-29728942

ABSTRACT

Biocompatible membranes are widely used in medicine to stimulate bone repair. Several studies have demonstrated that laser photobiomodulation (PBM) also stimulates osteoblast proliferation and osteogenesis at the fracture site, leading to a greater deposition of bone mass and accelerating the process of bone consolidation. This work assessed the therapeutic effect of 780-nm laser PBM and a polystyrene membrane coated with norbixin and collagen (PSNC) on bone healing in rats with calvarial bone defect. Histological staining, Raman spectroscopy, and scanning electron microscopy (SEM) were used to evaluate the bone repair process. Four experimental treatment groups were compared: C, control; M, membrane only; L, laser PBM only; and ML, membrane + laser PBM. A bone defect was created in the calvaria of each animal, with each group subdivided into two subgroups that underwent euthanasia after 15 and 30 days treatment. The L and ML groups were irradiated (λ = 780 nm, ED = 6 J/cm2, P = 60 mW, t = 4 s) postoperatively on alternate days until they were euthanized. The bone concentration of hydroxyapatite (CHA) showed a clear gradation with increasing phosphate area in the order B (normal cortical bone) > L > M > ML > C for both periods. The PSNC membrane was effective in reducing the inflammatory process and served as a scaffold for bone repair. The laser PBM also showed positive effects on the bone repair process with increased deposition and organization of the newly formed bone. However, laser PBM failed to improve the bioactive properties of the membrane scaffold.


Subject(s)
Bone and Bones/pathology , Bone and Bones/radiation effects , Carotenoids/pharmacology , Low-Level Light Therapy/methods , Polystyrenes/chemistry , Wound Healing/drug effects , Wound Healing/radiation effects , Animals , Bone and Bones/drug effects , Collagen/pharmacology , Durapatite , Male , Microscopy, Electron, Scanning , Rats, Wistar , Skull/drug effects , Skull/pathology , Skull/radiation effects , Spectrum Analysis, Raman
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