Skin photoaging is induced and sustained by UV-induced oxidative damage,and stimulating regeneration of the UV-induced aging has remained a great challenge due to high-level oxidative stress factor(ROS)-induced chroni...Skin photoaging is induced and sustained by UV-induced oxidative damage,and stimulating regeneration of the UV-induced aging has remained a great challenge due to high-level oxidative stress factor(ROS)-induced chronic oxidative damage and inactivation of bio-macromolecule-based regeneration in oxidative photoaging micro-environment.In this study,we designed a“seed and soil”strategy to pursue a safer and more efficient way to prevent and treat photoaging by simultaneously changing UV-induced ROS-rich micro-environment into a proregenerative one(the“soil”)and providing growth factor-rich platelet lysates(PL,the“seed”)using PL-impregnated,collagen-reinforce hydrogel(PL/Col).SD rats were used to establish photoaging model by 8 weeks of UV irradiation.The effectiveness of different treatments was evaluated by making pathological sections and detecting photoaging-related indicators.Rats treated with PL/Col demonstrated a significant acceleration in skin healing and enhancement in the quality of trauma repairing.After treated with PL/Col,the rats showed smooth yellowish appearance,integral structure of skin collagen fiber and epidermis,a decrease in inflammation and a reshaped active micro-environment with reduced levels of SOD enzyme activity,GSH enzyme activity and MDA toxic products.Treatment of PL/Col in skin photoaging has shown potential anti-oxidation and anti-aging effects and is worthy of further study in related field.展开更多
The expression levels and changes of endogenous acid fibroblast growth factor (aFGF) in microwave burn wound tissues were detected in order to investigate how to get better therapeutic effects by using the exogenous...The expression levels and changes of endogenous acid fibroblast growth factor (aFGF) in microwave burn wound tissues were detected in order to investigate how to get better therapeutic effects by using the exogenous aFGF for repairing trauma. A burnt-wound animal model was established by NS-FⅡ multifunction spectrum therapeutics equipment, and reverse transcriptase-polymerase chain reaction (RT-PCR) and immunohistochemistry assay were applied to detect the expression levels of endogenous aFGF mRNA in microwave burn wound tissues. The expression level of endogenous aFGF mRNA was significantly increased in the burn wound tissues 12 h after burn, reached the peak at 48 h, and gradually deceased 96 h after burn. The expression of endogenous aFGF mRNA after tissue damage was reversible, and its intensity was in accordance with the repair process of tissue damage, suggesting endogenous aFGF may take part in the cell metabolism and proliferation, and then promote the repair of the burn wound.展开更多
Background: Peyronie’s disease is characterized by fibrous plaque formation in the tunica albuginea, leading to penile curvature and sexual dysfunction. Surgical correction is often required in cases of severe deform...Background: Peyronie’s disease is characterized by fibrous plaque formation in the tunica albuginea, leading to penile curvature and sexual dysfunction. Surgical correction is often required in cases of severe deformity or significant functional impairment. Aim: To present the case of a patient with severe Peyronie’s disease who underwent surgical correction using an autologous fascia lata graft. Case Presentation: We report the case of a 77-year-old Black-African gentleman with Peyronie’s disease, presenting with a self-reported penile curvature of 70 degrees and significant sexual frustration. He was managed surgically with plaque excision followed by a tunica albuginea patch using a subcutaneously harvested autologous fascia lata graft, all performed in a single surgical session. Conclusion: This case highlights the importance of individualized surgical planning and patient-specific considerations in achieving optimal outcomes in the management of Peyronie’s disease, particularly in cases requiring grafting for severe curvature.展开更多
We described a 27-year-old case of avulsion and traumatic degloving of penile with extensive penis skin necrosis. Under general anesthesia, donor skin was partially resected from lower limbs according to defect area o...We described a 27-year-old case of avulsion and traumatic degloving of penile with extensive penis skin necrosis. Under general anesthesia, donor skin was partially resected from lower limbs according to defect area of penile skin. Then shear the shape of graft was sheared, sutured to hostage skin defect and enswathed with tension. The postoperative appearance and function of the penis were satisfactory. It is suggest the homologous free skin flap from lower limbs is suitable for penile skin repair and beneficial to patient resulting in satisfactory erection and shape.展开更多
The clinical"gold standard"technique for attempting to restore function to nerves with a gap is to bridge the gap with sensory autografts.However,autografts induce good to excellent recovery only across shor...The clinical"gold standard"technique for attempting to restore function to nerves with a gap is to bridge the gap with sensory autografts.However,autografts induce good to excellent recovery only across short nerve gaps,in young patients,and when repairs are performed a short time post nerve trauma.Even under the best of conditions,<50%of patients recover good recovery.Although many alternative techniques have been tested,none is as effective as autografts.Therefore,alternative techniques are required that increase the percentage of patients who recover function and the extent of their recovery.This paper examines the actions of lithium,and how it appears to trigger all the cellular and molecular events required to promote axon regeneration,and how both in animal models and clinically,lithium administration enhances both the extent of axon regeneration and neurological recovery.The paper proposes more extensive clinical testing of lithium for its ability and reliability to increase the extent of axon regeneration and functional recovery.展开更多
基金funding from the Discipline construction project of Guangdong Medical University(4SG21277P,2021ZDZX2039,2DK21003,4SG23060G)Our work described in the present manuscript was also supported by research grants from Guangdong Provincial Natural Science Foundation(2021A1515012437,2021KTSCX040),Guangdong,China。
文摘Skin photoaging is induced and sustained by UV-induced oxidative damage,and stimulating regeneration of the UV-induced aging has remained a great challenge due to high-level oxidative stress factor(ROS)-induced chronic oxidative damage and inactivation of bio-macromolecule-based regeneration in oxidative photoaging micro-environment.In this study,we designed a“seed and soil”strategy to pursue a safer and more efficient way to prevent and treat photoaging by simultaneously changing UV-induced ROS-rich micro-environment into a proregenerative one(the“soil”)and providing growth factor-rich platelet lysates(PL,the“seed”)using PL-impregnated,collagen-reinforce hydrogel(PL/Col).SD rats were used to establish photoaging model by 8 weeks of UV irradiation.The effectiveness of different treatments was evaluated by making pathological sections and detecting photoaging-related indicators.Rats treated with PL/Col demonstrated a significant acceleration in skin healing and enhancement in the quality of trauma repairing.After treated with PL/Col,the rats showed smooth yellowish appearance,integral structure of skin collagen fiber and epidermis,a decrease in inflammation and a reshaped active micro-environment with reduced levels of SOD enzyme activity,GSH enzyme activity and MDA toxic products.Treatment of PL/Col in skin photoaging has shown potential anti-oxidation and anti-aging effects and is worthy of further study in related field.
基金This project was supported by a grant from Foundation of National 863 Program for Research and Development of Class I Novel Drug rh-aFGF (No 2002AA2Z3349)
文摘The expression levels and changes of endogenous acid fibroblast growth factor (aFGF) in microwave burn wound tissues were detected in order to investigate how to get better therapeutic effects by using the exogenous aFGF for repairing trauma. A burnt-wound animal model was established by NS-FⅡ multifunction spectrum therapeutics equipment, and reverse transcriptase-polymerase chain reaction (RT-PCR) and immunohistochemistry assay were applied to detect the expression levels of endogenous aFGF mRNA in microwave burn wound tissues. The expression level of endogenous aFGF mRNA was significantly increased in the burn wound tissues 12 h after burn, reached the peak at 48 h, and gradually deceased 96 h after burn. The expression of endogenous aFGF mRNA after tissue damage was reversible, and its intensity was in accordance with the repair process of tissue damage, suggesting endogenous aFGF may take part in the cell metabolism and proliferation, and then promote the repair of the burn wound.
文摘Background: Peyronie’s disease is characterized by fibrous plaque formation in the tunica albuginea, leading to penile curvature and sexual dysfunction. Surgical correction is often required in cases of severe deformity or significant functional impairment. Aim: To present the case of a patient with severe Peyronie’s disease who underwent surgical correction using an autologous fascia lata graft. Case Presentation: We report the case of a 77-year-old Black-African gentleman with Peyronie’s disease, presenting with a self-reported penile curvature of 70 degrees and significant sexual frustration. He was managed surgically with plaque excision followed by a tunica albuginea patch using a subcutaneously harvested autologous fascia lata graft, all performed in a single surgical session. Conclusion: This case highlights the importance of individualized surgical planning and patient-specific considerations in achieving optimal outcomes in the management of Peyronie’s disease, particularly in cases requiring grafting for severe curvature.
文摘We described a 27-year-old case of avulsion and traumatic degloving of penile with extensive penis skin necrosis. Under general anesthesia, donor skin was partially resected from lower limbs according to defect area of penile skin. Then shear the shape of graft was sheared, sutured to hostage skin defect and enswathed with tension. The postoperative appearance and function of the penis were satisfactory. It is suggest the homologous free skin flap from lower limbs is suitable for penile skin repair and beneficial to patient resulting in satisfactory erection and shape.
文摘The clinical"gold standard"technique for attempting to restore function to nerves with a gap is to bridge the gap with sensory autografts.However,autografts induce good to excellent recovery only across short nerve gaps,in young patients,and when repairs are performed a short time post nerve trauma.Even under the best of conditions,<50%of patients recover good recovery.Although many alternative techniques have been tested,none is as effective as autografts.Therefore,alternative techniques are required that increase the percentage of patients who recover function and the extent of their recovery.This paper examines the actions of lithium,and how it appears to trigger all the cellular and molecular events required to promote axon regeneration,and how both in animal models and clinically,lithium administration enhances both the extent of axon regeneration and neurological recovery.The paper proposes more extensive clinical testing of lithium for its ability and reliability to increase the extent of axon regeneration and functional recovery.