Wen Q, Liu DY, Wang X, Zhang YL, Fang S, Qiu XL, Chen Q. A scientific evaluate of ozone remedy for treating chronically refractory wounds and ulcers. Int Wound J. 2022;19(4):853–70.
Wietecha MS, Lauenstein D, Seiler S, Jin J, Goppelt A, Claassen M, Levesque M, Dummer R, Werner S. Therapeutic phase-specific signatures of wound fibroblasts and matrix patterns outline cancer-associated fibroblast subtypes and predict most cancers end result. Wound Restore Regen. 2022;30(2):A2–3.
Miyoshi M, Kawazoe T, Igawa HH, Tabata Y, Ikada Y, Suzuki S. Results of bFGF included right into a gelatin sheet on wound therapeutic. J Biomat Sci-Polym E. 2005;16(7):893–907.
Kucharzewski M, Rojczyk E, Wilemska-Kucharzewska Okay, Wilk R, Hudecki J, Los MJ. Novel developments in software of stem cells in pores and skin wound therapeutic. Eur J Pharmacol. 2019;843:307–15.
Zhao WZ, Su LJ, Yu ZP, Li JR. Improved stability and managed launch of lycopene through self-assembled nanomicelles encapsulation. Lwt-Meals Sci Technol. 2022;155:112878.
Solar D, Heimall JR, Greenhawt MJ, Bunin NJ, Shaker MS, Romberg N. Value utility of lifelong immunoglobulin substitute remedy vs hematopoietic stem cell transplant to deal with agammaglobulinemia. Jama Pediatr. 2022;176(2):176–84.
Deineka V, Sulaieva O, Pernakov M, Korniienko V, Husak Y, Yanovska A, Yusupova A, Tkachenko Y, Kalinkevich O, Zlatska A, Pogorielov M. Hemostatic and tissue regeneration efficiency of novel electrospun chitosan-based supplies. Biomedicines. 2021;9(6):588–603.
Rampon C, Volovitch M, Joliot A, Vriz S. Hydrogen peroxide and redox regulation of developments. Antioxidants-Basel. 2018;7(11):159–81.
Hoeffel G, Debroas G, Roger A, Rossignol R, Gouilly J, Laprie C, Chasson L, Barbon PV, Balsamo A, Reynders A, Moqrich A, Ugolini S. Sensory neuron-derived TAFA4 promotes macrophage tissue restore capabilities. Nature. 2021;594:94–9.
Cheng PZ, Cao TQ, Zhao XY, Lu WG, Miao S, Ning FR, Wang D, Gao Y, Wang L, Pei GX, Yang L. Nidogen1-enriched extracellular vesicles speed up angiogenesis and bone regeneration by concentrating on Myosin-10 to control endothelial cell adhesion. Bioact Mater. 2022;12:185–97.
Theocharidis G, Yuk H, Roh H, Wang L, Mezghani I, Wu JJ, Kafanas A, Contreras M, Sumpio B, Li ZQ, Wang EY, Chen LH, Guo CF, Jayaswal N, Katopodi XL, Kalavros N, Nabzdyk CS, Vlachos IS, Veves A, Zhao XH. A strain-programmed patch for the therapeutic of diabetic wounds. Nat Biomed Eng. 2022. https://doi.org/10.1038/s41551-022-00905-2.
Liu XL, Zhu B, Li YJ, Liu XY, Guo S, Wang CL, Li S, Wang DX. The position of vascular endothelial development think about tendon therapeutic. Entrance Physiol. 2021;12:766080.
Liu HZ, Peng J, Zhao MZ, Xu Y. Deficiency of NARFL will increase transcription of NADPH oxidases and ROS manufacturing impairing the operate of endothelial cells. Life Sci. 2022;301:120567.
Hess DA, Verma S, Bhatt D, Bakbak E, Terenzi DC, Puar P, Cosentino F. Vascular restore and regeneration in cardiometabolic ailments. Eur Coronary heart J. 2022;43:450–9.
Aitcheson SM, Frentiu FD, Hurn SE, Edwards Okay, Murray RZ. Pores and skin wound therapeutic: regular macrophage operate and macrophage dysfunction in diabetic wounds. Molecules. 2021;26(16):4917.
Wang YQ, Li LL, Zhao WB, Dou Y, An HJ, Tao H, Xu XQ, Jia Y, Lu S, Zhang JX, Hu HY. Focused remedy of atherosclerosis by a broad-spectrum reactive oxygen species scavenging nanoparticle with intrinsic anti-inflammatory exercise. ACS Nano. 2018;12:8943–60.
Bohaud C, Johansen MD, Varga B, Contreras-Lopez R, Barthelaix A, Hamela C, Sapede D, Cloitre T, Gergely C, Jorgensen C, Kremer L, Djouad F. Exploring macrophage-dependent wound regeneration throughout mycobacterial an infection in zebrafish. Entrance Immunol. 2022;13:838425.
Zhang R, Chen J, Xiong YQ, Wang LH, Huang XM, Solar TG, Zha BB, Wu YY, Yan CL, Zang SF, Zhou Q, Huang Z, Liu J. Elevated neutrophil depend Is related to the event of power kidney illness in sufferers with diabetes. J Diabetes. 2022. https://doi.org/10.1111/1753-0407.13292.
Hicks CW, Zhang GQ, Canner JK, Mathioudakis N, Coon D, Sherman RL, Abularrage CJ. Outcomes and predictors of wound therapeutic amongst sufferers with advanced diabetic foot wounds handled with a dermal regeneration template (Integra). Plast Reconstr Surg. 2020;146(4):893–902.
Niu RY, Yang QL, Dong YJ, Hou YR, Liu GW. Selenium metabolism and regulation of immune cells in immune-associated ailments. J Cell Physiol. 2022. https://doi.org/10.1002/jcp.30824.
Zheng ZQ, Liu LJ, Zhou KW, Ding L, Zeng JY, Zhang W. Anti-oxidant and anti-endothelial dysfunctional properties of nano-selenium in vitro and in vivo of hyperhomocysteinemic rats. Int J Nanomed. 2020;15:4501–21.
Leiter O, Zhuo Z, Rust R, Wasielewska JM, Gronnert L, Kowal S, Total RW, Adusumilli VS, Blackmore DG, Southon A, Ganio Okay, McDevitt CA, Rund N, Brici D, Mudiyan IA, Sykes AM, Runker AE, Zocher S, Ayton S, Bush AI, Bartlett PF, Hou ST, Kempermann G, Walker TL. Selenium mediates exercise-induced grownup neurogenesis and reverses studying deficits induced by hippocampal harm and growing older. Cell Metab. 2022;34(3):408–23.
Zhao S, Yu QQ, Pan JL, Zhou YH, Cao CW, Ouyang JM, Liu J. Redox-responsive mesoporous selenium supply of doxorubicin targets MCF-7 cells and synergistically enhances its anti-tumor exercise. Acta Biomater. 2017;54:294–306.
Hosnedlova B, Kepinska M, Skalickova S, Fernandez C, Ruttkay-Nedecky B, Peng QM, Baron M, Melcova M, Opatrilova R, Zidkova J, Bjorklund G, Sochor J, Kizek R. Nano-selenium and its nanomedicine purposes: a crucial evaluate. Int J Nanomed. 2018;13:2107–28.
Cao JQ, Zhang YB, Zhang PG, Zhang ZL, Zhang BH, Feng YX, Li ZX, Yang YQ, Meng QL, He L, Cai YL, Wang ZY, Li J, Chen X, Liu HW, Hong A, Zheng WJ, Chen XJ. Turning grey selenium right into a nanoaccelerator of tissue regeneration by PEG modification. Bioact Mater. 2022;15:131–44.
Hasanuzzaman M, Bhuyan MHMB, Raza A, Hawrylak-Nowak B, Matraszek-Gawron R, Nahar Okay, Fujita M. Selenium toxicity in vegetation and setting: biogeochemistry and remediation prospects. Vegetation-Basel. 2020;9(12):1711.
Bhattacharjee A, Basu A, Bhattacharya S. Selenium nanoparticles are much less poisonous than inorganic and natural selenium to mice in vivo. Nucleus Calcutta. 2019;62(3):259–68.
Shi LG, Xun WJ, Yue WB, Zhang CX, Ren YS, Shi L, Wang QA, Yang RJ, Lei FL. Impact of sodium selenite, Se-yeast and nano-elemental selenium on development efficiency, Se focus and antioxidant standing in rising male goats. Small Ruminant Res. 2011;96(1):49–52.
Huang YY, Su EZ, Ren JS, Qu XG. The current organic purposes of selenium-based nanomaterials. Nano At the moment. 2021;38:101205.
Liu WJ, Su J, Shi Q, Wang JL, Chen X, Zhang SZ, Li MK, Cui J, Fan CD, Solar BB, Wang GJ. RGD peptide-conjugated selenium nanocomposite inhibits human glioma development by triggering mitochondrial dysfunction and ROS-dependent MAPKs activation. Entrance Bioeng Biotech. 2021;9:1387.
Liu ML, Zou HY, Li CM, Li RS, Huang CZ. Aptamer-modified selenium nanoparticles for dark-field microscopy imaging of nucleolin. Chem Commun. 2017;53(97):13047–50.
Cargnelutti R, Schumacher RF, Belladona AL, Kazmierczak JC. Coordination chemistry and artificial approaches of pyridyl-selenium ligands: a decade replace. Coordin Chem Rev. 2021;426:213537.
Wang Y, Zhao YN, Wu JL, Li M, Tan J, Fu WS, Tang H, Zhang P. Negatively charged sulfur quantum dots for remedy of drug-resistant pathogenic bacterial infections. Nano Lett. 2021;21(22):9433–41.
Zhu HJ, Zan WY, Chen WL, Jiang WB, Ding XG, Li BL, Mu YW, Wang L, Garaj S, Leong DT. Defect-rich molybdenum sulfide quantum dots for amplified photoluminescence and photonics-driven reactive oxygen species technology. Adv Mater. 2022;34:220004.
Lei J, Wang CF, Feng XB, Ma L, Liu XM, Luo Y, Tan L, Wu SL, Yang C. Sulfur-regulated defect engineering for enhanced ultrasonic piezocatalytic remedy of bacteria-infected bone defects. Chem Eng J. 2022;435:134624.
Vogel M, Fischer S, Maffert A, Hubner R, Scheinost AC, Franzen C, Steudtner R. Biotransformation and detoxing of selenite by microbial biogenesis of selenium-sulfur nanoparticles. J Hazard Mater. 2018;344:749–57.
Li W, Ma YS, Li P, Jing XY, Jiang Okay, Wang DH. Synergistic impact between S and Se enhancing the electrochemical conduct of SexSy in aqueous Zn steel batteries. Adv Funct Mater. 2021;31(20):2101237.
Lieschke GJ, Currie PD. Animal fashions of human illness: zebrafish swim into view. Nat Rev Genet. 2007;8(5):353–67.
Pfefferli C, Jazwinska A. The careg ingredient reveals a standard regulation of regeneration within the zebrafish myocardium and fin. Nat Commun. 2017;8:1–16.
Leonard EV, Figueroa RJ, Bussmann J, Lawson ND, Amigo JD, Siekmann AF. Regenerating vascular mural cells in zebrafish fin blood vessels are usually not derived from pre-existing mural cells and differentially require Pdgfrb signalling for his or her growth. Improvement. 2022;149(7):dev199640.
Laplace-Builhe B, Barthelaix A, Assou S, Bohaud C, Pratlong M, Severac D, Tejedor G, Luz-Crawford P, Nguyen-Chi M, Mathieu M, Jorgensen C, Djouad F. NRG1/ErbB signalling controls the dialogue between macrophages and neural crest-derived cells throughout zebrafish fin regeneration. Nat Commun. 2021;12(1):1–14.
Meuser M, Deuper L, Rudat C, Aydogdu N, Thiesler H, Zarnovican P, Hildebrandt H, Trowe MO, Kispert A. FGFR2 signaling enhances the SHH-BMP4 signaling axis in early ureter growth. Improvement. 2022;149(1):dev200021.
Romero MMG, McCathie G, Jankun P, Roehl HH. Injury-induced reactive oxygen species allow zebrafish tail regeneration by repositioning of Hedgehog expressing cells. Nat Commun. 2018;9:1–11.
Polouliakh N, Ludwig V, Meguro A, Kawagoe T, Heeb O, Mizuki N. Alpha-Arbutin promotes wound therapeutic by reducing ROS and upregulating Insulin/IGF-1 pathway in human dermal fibroblast (vol 11, 586843, 2020). Entrance Physiol. 2021;12:586843.
Herrero D, Albericio G, Higuera M, Herranz-Lopez M, Garcia-Brenes MA, Cordero A, Roche E, Sepulveda P, Mora C, Bernad A. The vascular area of interest for grownup cardiac progenitor cells. Antioxidants-Basel. 2022;11(5):822.
Le Guen L, Karpanen T, Schulte D, Harris NC, Koltowska Okay, Roukens G, Bower NI, van Impel A, Stacker SA, Achen MG, Schulte-Merker S, Hogan BM. Ccbe1 regulates Vegfc-mediated induction of Vegfr3 signaling throughout embryonic lymphangiogenesis. Improvement. 2014;141(6):1239.
Simoes FC, Riley PR. Immune cells in cardiac restore and regeneration. Improvement. 2022;149(8):dev199606.
Sanchez MC, Lancel S, Boulanger E, Neviere R. Concentrating on oxidative stress and mitochondrial dysfunction within the remedy of impaired wound therapeutic: a scientific evaluate. Antioxidants-Basel. 2018;7(8):98.
Ma CY, Tian XG, Kim JP, Xie DH, Ao X, Shan DY, Lin QL, Hudock MR, Bai XC, Yang J. Citrate-based supplies gas human stem cells by metabonegenic regulation. P Natl Acad Sci USA. 2018;115(50):E11741–50.
Loesche M, Gardner SE, Kalan L, Horwinski J, Zheng Q, Hodkinson BP, Tyldsley AS, Franciscus CL, Hillis SL, Mehta S, Margolis DJ, Grice EA. Temporal stability in power wound microbiota is related to poor therapeutic. J Investig Dermatol. 2017;137(1):237–44.
Wu YK, Cheng NC, Cheng CM. Biofilms in power wounds: pathogenesis and prognosis. Developments Biotechnol. 2019;37(5):505–17.
Barchielli G, Capperucci A, Tanini D. The position of selenium in pathologies: an up to date evaluate. Antioxidants-Basel. 2022;11(2):251.
Sriram B, Child JN, Hsu YF, Wang SF, George M, Veerakumar P, Lin KC. Electrochemical sensor-based barium zirconate on sulphur-doped graphitic carbon nitride for the simultaneous dedication of nitrofurantoin (antibacterial agent) and nilutamide (anticancer drug). J Electroanal Chem. 2021;901:115782.
Wehner D, Weidinger G. Signaling networks organizing regenerative development of the zebrafish fin. Developments Genet. 2015;31(6):336–43.
Takaya Okay, Aramaki-Hattori N, Sakai S, Okabe Okay, Asou T, Kishi Okay. Fibroblast development issue 7 suppresses fibrosis and promotes epithelialization throughout wound therapeutic in mouse fetuses. Int J Mol Sci. 2022;23(13):7087.