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Erschienen in: Lasers in Medical Science 1/2023

01.12.2023 | Original Article

Wound healing process in beagles after vaporization of the prostate with a novel 200W 450-nm laser

verfasst von: Xiaofeng Xu, Guoxiong Liu, Dali Jiang, Hengtong Fan, Zejun Ren, Bing Yang, Liyue Mu, Dalin He, Lin Yang

Erschienen in: Lasers in Medical Science | Ausgabe 1/2023

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Abstract

In comparison to other commercially used lasers, the coagulation layer of the novel 450-nm laser is thinner, and this coagulation layer’s thickness is a key factor influencing wound healing. In this study, we investigated whether the novel 200W 450-nm laser system (BR6800, Blueray Medical Ltd., Shaanxi, China) is superior to classic transurethral resection of the prostate (TURP) for wound healing in beagles. Twenty-two 6-to 8-year-old male beagles were treated with TURP or blue laser vaporization of the prostate (BLVP). Prostate wounds were observed via cystoscopy at 3 h and at 1, 2, 3, and 5 weeks post-operation (two beagles per group). Additionally, two elderly beagles without surgery served as normal controls. After cystoscopy examination, prostate samples were collected and fixed for hematoxylin and eosin (H&E) and immunofluorescence staining to observe wound healing progression under microscopy. The urethras of prostates under cystoscopy in BLVP groups were healed three weeks after surgery, while in the TURP group, they were healed five weeks after surgery. H&E staining confirmed that the coagulation necrosis layer in the TURP group was thicker than that in the BLVP group and it took longer to remove coagulation necrosis after surgery. Macrophage polarity transformation was also earlier in the BLVP group. The new 200W 450-nm laser was superior to TURP for wound healing. The thinner coagulation layer of the 450-nm laser was the primary reason for this process.
Literatur
1.
Zurück zum Zitat EAU Guidelines edn (2022) presented at the EAU Annual Congress Amsterdam. ISBN 978-94-92671-16-5 EAU Guidelines edn (2022) presented at the EAU Annual Congress Amsterdam. ISBN 978-94-92671-16-5
2.
Zurück zum Zitat Xu X, Jiang D, Liu G, Mu L, Zeng J, Yang L, He D (2022) In vitro evaluation of the safety and efficacy of a high-power 450-nm semiconductor blue laser in the treatment of benign prostate hyperplasia. Lasers Med Sci. 37(1):555–561CrossRefPubMed Xu X, Jiang D, Liu G, Mu L, Zeng J, Yang L, He D (2022) In vitro evaluation of the safety and efficacy of a high-power 450-nm semiconductor blue laser in the treatment of benign prostate hyperplasia. Lasers Med Sci. 37(1):555–561CrossRefPubMed
3.
Zurück zum Zitat Cornu JN, Ahyai S, Bachmann A, de la Rosette J, Gilling P, Gratzke C, McVary K, Novara G, Woo H, Madersbacher S (2015) A systematic review and meta-analysis of functional outcomes and complications following transurethral procedures for lower urinary tract symptoms resulting from benign prostatic obstruction: an update. Eur Urol 67(6):1066–1096CrossRefPubMed Cornu JN, Ahyai S, Bachmann A, de la Rosette J, Gilling P, Gratzke C, McVary K, Novara G, Woo H, Madersbacher S (2015) A systematic review and meta-analysis of functional outcomes and complications following transurethral procedures for lower urinary tract symptoms resulting from benign prostatic obstruction: an update. Eur Urol 67(6):1066–1096CrossRefPubMed
4.
Zurück zum Zitat Nair SM, Pimentel MA, Gilling PJ (2016) A review of laser treatment for symptomatic BPH (benign prostatic hyperplasia). Curr Urol Rep 17(6):45CrossRefPubMed Nair SM, Pimentel MA, Gilling PJ (2016) A review of laser treatment for symptomatic BPH (benign prostatic hyperplasia). Curr Urol Rep 17(6):45CrossRefPubMed
5.
Zurück zum Zitat Yang Z, Liu T, Wang X (2016) Comparison of thulium laser enucleation and plasmakinetic resection of the prostate in a randomized prospective trial with 5-year follow-up. Lasers Med Sci 31(9):1797–1802CrossRefPubMed Yang Z, Liu T, Wang X (2016) Comparison of thulium laser enucleation and plasmakinetic resection of the prostate in a randomized prospective trial with 5-year follow-up. Lasers Med Sci 31(9):1797–1802CrossRefPubMed
6.
Zurück zum Zitat Zhou Z, Cui Y, Zhang X, Zhang Y (2021) Comparison of 532-nm GreenLight HPS laser with 980-nm diode laser vaporization of the prostate in treating patients with lower urinary tract symptom secondary to benign prostatic hyperplasia: a meta-analysis. Lasers Med Sci 36(9):1897–1907CrossRefPubMed Zhou Z, Cui Y, Zhang X, Zhang Y (2021) Comparison of 532-nm GreenLight HPS laser with 980-nm diode laser vaporization of the prostate in treating patients with lower urinary tract symptom secondary to benign prostatic hyperplasia: a meta-analysis. Lasers Med Sci 36(9):1897–1907CrossRefPubMed
7.
Zurück zum Zitat Naspro R, Bachmann A, Gilling P, Kuntz R, Madersbacher S, Montorsi F, Reich O, Stief C, Vavassori I (2009) A review of the recent evidence (2006–2008) for 532-nm photoselective laser vaporisation and holmium laser enucleation of the prostate. Eur Urol 55(6):1345–1357CrossRefPubMed Naspro R, Bachmann A, Gilling P, Kuntz R, Madersbacher S, Montorsi F, Reich O, Stief C, Vavassori I (2009) A review of the recent evidence (2006–2008) for 532-nm photoselective laser vaporisation and holmium laser enucleation of the prostate. Eur Urol 55(6):1345–1357CrossRefPubMed
8.
Zurück zum Zitat Liu Z, Zhao Y, Wang X, Song M, Shi B (2018) Critical reviews of 1470-nm laser vaporization on benign prostatic hyperplasia. Lasers Med Sci 33(2):323–327CrossRefPubMed Liu Z, Zhao Y, Wang X, Song M, Shi B (2018) Critical reviews of 1470-nm laser vaporization on benign prostatic hyperplasia. Lasers Med Sci 33(2):323–327CrossRefPubMed
9.
Zurück zum Zitat Shi F, Deng Z, Zhou Z, Jiang B, Jiang CY, Zhao RZ, Sun F, Cui D, Sun MH, Sun Q, Wang XJ, Wu Q, Xia SJ, Han BM (2019) Heat injured stromal cells-derived exosomal EGFR enhances prostatic wound healing after thulium laser resection through EMT and NF-κB signaling. Prostate 79(11):1238–1255CrossRefPubMed Shi F, Deng Z, Zhou Z, Jiang B, Jiang CY, Zhao RZ, Sun F, Cui D, Sun MH, Sun Q, Wang XJ, Wu Q, Xia SJ, Han BM (2019) Heat injured stromal cells-derived exosomal EGFR enhances prostatic wound healing after thulium laser resection through EMT and NF-κB signaling. Prostate 79(11):1238–1255CrossRefPubMed
10.
Zurück zum Zitat Wang XJ, Zhuo J, Luo GH, Zhu YP, Yu DJ, Zhao RZ, Jiang CY, Shi YF, Li H, Chen L, Hao KY, Han X, Zhao S, Bei XY, Jing YF, Xia SJ (2017) Androgen deprivation accelerates the prostatic urethra wound healing after thulium laser resection of the prostate by promoting re-epithelialization and regulating the macrophage polarization. Prostate 77(7):708–717CrossRefPubMed Wang XJ, Zhuo J, Luo GH, Zhu YP, Yu DJ, Zhao RZ, Jiang CY, Shi YF, Li H, Chen L, Hao KY, Han X, Zhao S, Bei XY, Jing YF, Xia SJ (2017) Androgen deprivation accelerates the prostatic urethra wound healing after thulium laser resection of the prostate by promoting re-epithelialization and regulating the macrophage polarization. Prostate 77(7):708–717CrossRefPubMed
11.
Zurück zum Zitat Heinrich E, Schiefelbein F, Schoen G (2007) Technique and short-term outcome of green light laser (KTP, 80W) vaporisation of the prostate. Eur Urol 52(6):1632–1637CrossRefPubMed Heinrich E, Schiefelbein F, Schoen G (2007) Technique and short-term outcome of green light laser (KTP, 80W) vaporisation of the prostate. Eur Urol 52(6):1632–1637CrossRefPubMed
12.
Zurück zum Zitat Capitán C, Blázquez C, Martin MD, Hernández V, de la Peña E, Llorente C (2011) GreenLight HPS 120-W laser vaporization versus transurethral resection of the prostate for the treatment of lower urinary tract symptoms due to benign prostatic hyperplasia: a randomized clinical trial with 2-year follow-up. Eur Urol 60(4):734–739CrossRefPubMed Capitán C, Blázquez C, Martin MD, Hernández V, de la Peña E, Llorente C (2011) GreenLight HPS 120-W laser vaporization versus transurethral resection of the prostate for the treatment of lower urinary tract symptoms due to benign prostatic hyperplasia: a randomized clinical trial with 2-year follow-up. Eur Urol 60(4):734–739CrossRefPubMed
13.
Zurück zum Zitat Valdivieso R, Hueber PA, Meskawi M, Belleville E, Ajib K, Bruyere F, Te AE, Chughtai B, Elterman D, Misrai V, Zorn KC (2018) Multicentre international experience of 532-nm laser photoselective vaporization with GreenLight XPS in men with very large prostates. BJU Int 122(5):873–878CrossRefPubMed Valdivieso R, Hueber PA, Meskawi M, Belleville E, Ajib K, Bruyere F, Te AE, Chughtai B, Elterman D, Misrai V, Zorn KC (2018) Multicentre international experience of 532-nm laser photoselective vaporization with GreenLight XPS in men with very large prostates. BJU Int 122(5):873–878CrossRefPubMed
14.
Zurück zum Zitat Lovisa B (2010) Endoscopic fluorescence imaging: spectral optimization and in vivo characterization of positive sites by magnifying vascular imaging. Doctoral thesis, École Polytechnique Fédérale de Lausanne (EPFL) Lovisa B (2010) Endoscopic fluorescence imaging: spectral optimization and in vivo characterization of positive sites by magnifying vascular imaging. Doctoral thesis, École Polytechnique Fédérale de Lausanne (EPFL)
15.
Zurück zum Zitat Akasaki I (2015) Blue light: a fascinating journey (Nobel Lecture). Angew Chem Int Ed Engl 54(27):7750–7763CrossRefPubMed Akasaki I (2015) Blue light: a fascinating journey (Nobel Lecture). Angew Chem Int Ed Engl 54(27):7750–7763CrossRefPubMed
16.
Zurück zum Zitat Deng Z, Shi F, Zhou Z, Sun F, Sun MH, Sun Q, Chen L, Li D, Jiang CY, Zhao RZ, Cui D, Wang XJ, Jing YF, Xia SJ, Han BM (2019) M1 macrophage mediated increased reactive oxygen species (ROS) influence wound healing via the MAPK signaling in vitro and in vivo. Toxicol Appl Pharmacol 1(366):83–95CrossRef Deng Z, Shi F, Zhou Z, Sun F, Sun MH, Sun Q, Chen L, Li D, Jiang CY, Zhao RZ, Cui D, Wang XJ, Jing YF, Xia SJ, Han BM (2019) M1 macrophage mediated increased reactive oxygen species (ROS) influence wound healing via the MAPK signaling in vitro and in vivo. Toxicol Appl Pharmacol 1(366):83–95CrossRef
17.
Zurück zum Zitat Yu DJ, Wang XJ, Shi YF, Jiang CY, Zhao RZ, Zhu YP, Chen L, Yang YQ, Sun XW, Xia SJ (2017) Macrophages are targets of retinoic acid signaling during the wound-healing process after thulium laser resection of the prostate. Oncotarget 8(42):71996–72007CrossRefPubMedPubMedCentral Yu DJ, Wang XJ, Shi YF, Jiang CY, Zhao RZ, Zhu YP, Chen L, Yang YQ, Sun XW, Xia SJ (2017) Macrophages are targets of retinoic acid signaling during the wound-healing process after thulium laser resection of the prostate. Oncotarget 8(42):71996–72007CrossRefPubMedPubMedCentral
18.
20.
Zurück zum Zitat Oishi Y, Manabe I (2018) Macrophages in inflammation, repair and regeneration. Int Immunol 30(11):511–528CrossRefPubMed Oishi Y, Manabe I (2018) Macrophages in inflammation, repair and regeneration. Int Immunol 30(11):511–528CrossRefPubMed
Metadaten
Titel
Wound healing process in beagles after vaporization of the prostate with a novel 200W 450-nm laser
verfasst von
Xiaofeng Xu
Guoxiong Liu
Dali Jiang
Hengtong Fan
Zejun Ren
Bing Yang
Liyue Mu
Dalin He
Lin Yang
Publikationsdatum
01.12.2023
Verlag
Springer London
Erschienen in
Lasers in Medical Science / Ausgabe 1/2023
Print ISSN: 0268-8921
Elektronische ISSN: 1435-604X
DOI
https://doi.org/10.1007/s10103-023-03888-x

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