Zheng J, Chen T, Wang Okay, Peng C, Zhao M, Xie Q, Li B, Lin H, Zhao Z, Ji Z, Tang BZ, Liao Y. Engineered Multifunctional Zinc-Natural Framework-Primarily based Aggregation-Induced Emission Nanozyme for accelerating spinal wire Damage Restoration. ACS Nano. 2024;18:2355–69.
Chen L, Wang W, Lin Z, Lu Y, Chen H, Li B, Li Z, Xia H, Li L, Zhang T. Conducting molybdenum sulfide/graphene oxide/polyvinyl alcohol nanocomposite hydrogel for repairing spinal wire harm. J Nanobiotechnol. 2022;20:210.
Nishida N, Sakuramoto I, Fujii Y, Hutama RY, Jiang F, Ohgi J, Imajo Y, Suzuki H, Funaba M, Chen X, Sakai T. Tensile mechanical evaluation of anisotropy and velocity dependence of the spinal wire white matter: a biomechanical research. Neural Regen Res. 2021;16:2557–62.
Wang J, Chen J, Jin H, Lin D, Chen Y, Chen X, Wang B, Hu S, Wu Y, Wu Y, Zhou Y, Tian N, Gao W, Wang X, Zhang X. BRD4 inhibition attenuates inflammatory response in microglia and facilitates restoration after spinal wire harm in rats. J Cell Mol Med. 2019;23:3214–23.
Guo WL, Qi ZP, Yu L, Solar TW, Qu WR, Liu QQ, Zhu Z, Li R. Melatonin mixed with chondroitin sulfate ABC promotes nerve regeneration after root-avulsion brachial plexus harm. Neural Regen Res. 2019;14:328–38.
Xiao S, Wang C, Yang Q, Xu H, Lu J, Xu Okay. Rea regulates microglial polarization and attenuates neuronal apoptosis by way of inhibition of the NF-κB and MAPK signalings for spinal wire harm restore. J Cell Mol Med. 2021;25:1371–82.
Peng C, Luo J, Wang Okay, Li J, Ma Y, Li J, Yang H, Chen T, Zhang G, Ji X, Liao Y, Lin H, Ji Z. Iridium metallic advanced concentrating on oxidation resistance 1 protein attenuates spinal wire harm by inhibiting oxidative stress-associated reactive oxygen species. Redox Biol. 2023;67:102913.
Liu C, Hu F, Jiao G, Guo Y, Zhou P, Zhang Y, Zhang Z, Yi J, You Y, Li Z, Wang H, Zhang X. Dental pulp stem cell-derived exosomes suppress M1 macrophage polarization by means of the ROS-MAPK-NFκB P65 signaling pathway after spinal wire harm. J Nanobiotechnol. 2022;20:65.
Qin Z, Track J, Lin A, Yang W, Zhang W, Zhong F, Huang L, Lü Y, Yu W. GPR120 modulates epileptic seizure and neuroinflammation mediated by NLRP3 inflammasome. J Neuroinflammation. 2022;19:121.
Lang GP, Li C, Han YY. Rutin pretreatment promotes microglial M1 to M2 phenotype polarization. Neural Regen Res. 2021;16:2499–504.
Kobashi S, Terashima T, Katagi M, Nakae Y, Okano J, Suzuki Y, Urushitani M, Kojima H. Transplantation of M2-Deviated Microglia promotes restoration of motor operate after spinal wire Damage in mice. Mol Ther. 2020;28:254–65.
Fukuda Y, Bustos MA, Cho SN, Roszik J, Ryu S, Lopez VM, Burks JK, Lee JE, Grimm EA, Hoon DSB, Ekmekcioglu S. Interaction between soluble CD74 and macrophage-migration inhibitory issue drives tumor progress and influences affected person survival in melanoma. Cell Dying Dis. 2022;13:117.
Guan D, Li Y, Cui Y, Zhao H, Dong N, Wang Okay, Ren D, Track T, Wang X, Jin S, Gao Y, Wang M. 5-HMF attenuates irritation and demyelination in experimental autoimmune encephalomyelitis mice by inhibiting the MIF-CD74 interplay. Acta Biochim Biophys Sin (Shanghai). 2023;55:1222–33.
Xu J, Zhao J, Chen H, Tan X, Zhang W, Xia Z, Yao D, Lei Y, Xu B, Wei Z, Hu J. Mesenchymal stromal cell-derived exosomes defend in opposition to belly aortic aneurysm formation by means of CD74 modulation of macrophage polarization in mice. Stem Cell Res Ther. 2024;15:242.
Chen CH, Chen NF, Feng CW, Cheng SY, Hung HC, Tsui KH, Hsu CH, Sung PJ, Chen WF, Wen ZH. A coral-derived compound improves useful restoration after Spinal Wire Damage by means of its antiapoptotic and anti inflammatory results. Mar Medicine 2016; 14.
Liu Q, Zhou S, Wang X, Gu C, Guo Q, Li X, Zhang C, Zhang N, Zhang L, Huang F. Apelin alleviated neuroinflammation and promoted endogenous neural stem cell proliferation and differentiation after spinal wire harm in rats. J Neuroinflammation. 2022;19:160.
Jo MJ, Kumar H, Joshi HP, Choi H, Ko WK, Kim JM, Hwang SSS, Park SY, Sohn S, Bello AB, Kim KT, Lee SH, Zeng X, Han I. Oral administration of α-Asarone promotes useful restoration in rats with spinal wire Damage. Entrance Pharmacol. 2018;9:445.
Polderman JA, Farhang-Razi V, Van Dieren S, Kranke P, DeVries JH, Hollmann MW, Preckel B, Hermanides J. Hostile unintended effects of dexamethasone in surgical sufferers. Cochrane Database Syst Rev. 2018;8:Cd011940.
Bowers CA, Kundu B, Hawryluk GW. Methylprednisolone for acute spinal wire harm: an more and more philosophical debate. Neural Regen Res. 2016;11:882–5.
Ma Q, Cai S, Jia Y, Solar X, Yi J, Du J. Results of Scorching-Water Extract from Vine Tea (Ampelopsis grossedentata) on acrylamide formation, High quality and Shopper Acceptability of Bread. Meals. 2020; 9.
Piwowarczyk L, Kucinska M, Tomczak S, Mlynarczyk DT, Piskorz J, Goslinski T, Murias M, Jelinska A. Liposomal Nanoformulation as a provider for Curcumin and pEGCG-Research on Stability and Anticancer potential. Nanomaterials (Basel). 2022; 12.
Wang H, Du Z, Zhang C, Tang Z, He Y, Zhang Q, Zhao J, Zheng X. Organic analysis and 3D-QSAR research of curcumin analogues as aldehyde dehydrogenase 1 inhibitors. Int J Mol Sci. 2014;15:8795–807.
Binion DG, Otterson MF, Rafiee P. Curcumin inhibits VEGF-mediated angiogenesis in human intestinal microvascular endothelial cells by means of COX-2 and MAPK inhibition. Intestine. 2008;57:1509–17.
Xiang D, Li Y, Cao Y, Huang Y, Zhou L, Lin X, Qiao Y, Li X, Liao D. Completely different results of endothelial extracellular vesicles and LPS-Induced endothelial extracellular vesicles on vascular easy muscle cells: position of Curcumin and its derivatives. Entrance Cardiovasc Med. 2021;8:649352.
Kundu M, Sadhukhan P, Ghosh N, Chatterjee S, Manna P, Das J, Sil PC. pH-responsive and focused supply of curcumin by way of phenylboronic acid-functionalized ZnO nanoparticles for breast most cancers remedy. J Adv Res. 2019;18:161–72.
Ruzicka J, Urdzikova LM, Svobodova B, Amin AG, Karova Okay, Dubisova J, Zaviskova Okay, Kubinova S, Schmidt M, Jhanwar-Uniyal M, Jendelova P. Does mixed remedy of curcumin and epigallocatechin gallate have a synergistic neuroprotective impact in opposition to spinal wire harm? Neural Regen Res. 2018;13:119–27.
I EL-D, Manai M, Neili NE, Marzouki S, Sahraoui G, Ben Achour W, Zouaghi S, BenAhmed M, Doghri R, Srairi-Abid N. Twin Mechanism of Motion of Curcumin in Experimental fashions of a number of sclerosis. Int J Mol Sci. 2022; 23.
Dei Cas M, Ghidoni R. Dietary Curcumin: Correlation between Bioavailability and Well being Potential. Vitamins. 2019; 11.
Zhang T, Chen Y, Ge Y, Hu Y, Li M, Jin Y. Inhalation therapy of main lung most cancers utilizing liposomal curcumin dry powder inhalers. Acta Pharm Sin B. 2018;8:440–8.
Dhule SS, Penfornis P, He J, Harris MR, Terry T, John V, Pochampally R. The mixed impact of encapsulating curcumin and C6 ceramide in liposomal nanoparticles in opposition to osteosarcoma. Mol Pharm. 2014;11:417–27.
Evans AC, Martin KA, Saxena M, Bicher S, Wheeler E, Cordova EJ, Porada CD, Almeida-Porada G, Kato TA, Wilson PF, Coleman MA. Curcumin Nanodiscs enhance solubility and function Radiological protectants in opposition to Ionizing Radiation exposures in a cell-cycle Dependent Method. Nanomaterials (Basel). 2022; 12.
Montalbán MG, Coburn JM, Lozano-Pérez AA, Cenis JL, Víllora G, Kaplan DL. Manufacturing of Curcumin-Loaded Silk Fibroin nanoparticles for Most cancers Remedy. Nanomaterials (Basel). 2018; 8.
Sharma M, Inbaraj BS, Dikkala PK, Sridhar Okay, Mude AN, Narsaiah Okay. Preparation of Curcumin Hydrogel Beads for the Growth of Purposeful Kulfi: A Tailoring Supply System. Meals. 2022; 11.
Zhang X, He J, Qiao L, Wang Z, Zheng Q, Xiong C, Yang H, Li Okay, Lu C, Li S, Chen H, Hu X. 3D printed PCLA scaffold with nano-hydroxyapatite coating doped inexperienced tea EGCG promotes bone progress and inhibits multidrug-resistant micro organism colonization. Cell Prolif. 2022;55:e13289.
Rajabi S, Maresca M, Yumashev AV, Choopani R, Hajimehdipoor H. The Most Competent Plant-Derived Pure Merchandise for Concentrating on Apoptosis in Most cancers Remedy. Biomolecules. 2021; 11.
Jin J, Liu C, Tong H, Solar Y, Huang M, Ren G, Xie H. Encapsulation of EGCG by Zein-Gum Arabic Advanced Nanoparticles and In Vitro Simulated Digestion of Advanced Nanoparticles. Meals. 2022; 11.
Cañibano-Hernández A, Del Saenz L, Espona-Noguera A, Orive G, Hernández RM, Ciriza J, Pedraz JL. Hyaluronic acid enhances cell survival of encapsulated insulin-producing cells in alginate-based microcapsules. Int J Pharm. 2019;557:192–8.
Zhang R, Jiang Y, Hao L, Yang Y, Gao Y, Zhang N, Zhang X, Track Y. CD44/Folate twin concentrating on receptor reductive response PLGA-Primarily based micelles for Most cancers Remedy. Entrance Pharmacol. 2022;13:829590.
Li W, Zhou C, Fu Y, Chen T, Liu X, Zhang Z, Gong T. Focused supply of hyaluronic acid nanomicelles to hepatic stellate cells in hepatic fibrosis rats. Acta Pharm Sin B. 2020;10:693–710.
Puré E, Cuff CA. An important position for CD44 in irritation. Tendencies Mol Med. 2001;7:213–21.
Zhao Y, Zhang T, Duan S, Davies NM, Forrest ML. CD44-tropic polymeric nanocarrier for breast most cancers focused rapamycin chemotherapy. Nanomedicine. 2014;10:1221–30.
Campo GM, Avenoso A, Campo S, D’Ascola A, Nastasi G, Calatroni A. Small hyaluronan oligosaccharides induce irritation by partaking each toll-like-4 and CD44 receptors in human chondrocytes. Biochem Pharmacol. 2010;80:480–90.
Leiva-Vega J, Villalobos-Carvajal R, Ferrari G, Donsì F, Zúñiga RN, Shene C, Beldarraín-Iznaga T. Affect of interfacial construction on bodily stability and antioxidant exercise of curcumin multilayer emulsions. Meals Bioprod Course of. 2020;121:65–75.
Liu B, Kang Z, Yan W. Synthesis, stability, and antidiabetic exercise analysis of (–)-epigallocatechin gallate (EGCG) palmitate derived from pure tea polyphenols. Molecules. 2021;26:393.
Marinho A, Nunes C, Reis S. Hyaluronic acid: a key ingredient within the remedy of irritation. Biomolecules. 2021;11:1518.
Mansoori B, Mohammadi A, Abedi-Gaballu F, Abbaspour S, Ghasabi M, Yekta R, Shirjang S, Dehghan G, Hamblin MR, Baradaran B. Hyaluronic acid-decorated liposomal nanoparticles for focused supply of 5-fluorouracil into HT-29 colorectal most cancers cells. J Cell Physiol. 2020;235:6817–30.
Zhu H, Kong L, Zhu X, Ran T, Ji X. pH-Responsive nanoparticles for supply of Paclitaxel to the Damage Web site for inhibiting vascular restenosis. Pharmaceutics. 2022; 14.
Zeng S, Liu S, Lan Y, Qiu T, Zhou M, Gao W, Huang W, Ge L, Zhang J. Mixed photothermotherapy and chemotherapy of oral squamous cell Carcinoma guided by multifunctional nanomaterials enhanced Photoacoustic Tomography. Int J Nanomed. 2021;16:7373–90.
Kittimongkolsuk P, Pattarachotanant N, Chuchawankul S, Wink M, Tencomnao T. Neuroprotective results of extracts from Tiger milk mushroom Lignosus Rhinocerus in opposition to Glutamate-Induced toxicity in HT22 hippocampal neuronal cells and neurodegenerative ailments in Caenorhabditis elegans. Biology (Basel). 2021; 10.
Li Q, Qin M, Tan Q, Li T, Gu Z, Huang P, Ren L. MicroRNA-129-1-3p protects cardiomyocytes from pirarubicin-induced apoptosis by down-regulating the GRIN2D-mediated ca(2+) signalling pathway. J Cell Mol Med. 2020;24:2260–71.
Feng Y, Wu JJ, Solar ZL, Liu SY, Zou ML, Yuan ZD, Yu S, Lv GZ, Yuan FL. Focused apoptosis of myofibroblasts by elesclomol inhibits hypertrophic scar formation. EBioMedicine. 2020;54:102715.
Huynh DTN, Jin Y, Myung CS, Heo KS. Ginsenoside Rh1 induces MCF-7 cell apoptosis and autophagic cell loss of life by means of ROS-Mediated akt signaling. Cancers (Basel). 2021; 13.
Huang S, Zhou C, Zeng T, Li Y, Lai Y, Mo C, Chen Y, Huang S, Lv Z, Gao L. P-Hydroxyacetophenone ameliorates Alcohol-Induced steatosis and oxidative stress by way of the NF-κB Signaling Pathway in zebrafish and hepatocytes. Entrance Pharmacol. 2019;10:1594.
Chen TY, Tseng CL, Lin CA, Lin HY, Venkatesan P, Lai PS. Results of Eye drops containing Hyaluronic Acid-Nimesulide conjugates in a Benzalkonium Chloride-Induced Experimental Dry Eye rabbit mannequin. Pharmaceutics. 2021; 13.
Arioz BI, Tastan B, Tarakcioglu E, Tufekci KU, Olcum M, Ersoy N, Bagriyanik A, Genc Okay, Genc S. Melatonin attenuates LPS-Induced Acute Depressive-Like behaviors and Microglial NLRP3 inflammasome activation by means of the SIRT1/Nrf2 pathway. Entrance Immunol. 2019;10:1511.
Seitz M, Köster C, Dzietko M, Sabir H, Serdar M, Felderhoff-Müser U, Bendix I, Herz J. Hypothermia modulates myeloid cell polarization in neonatal hypoxic-ischemic mind harm. J Neuroinflammation. 2021;18:266.
Zhou Q, Lin L, Li H, Wang H, Jiang S, Huang P, Lin Q, Chen X, Deng Y. Melatonin reduces Neuroinflammation and improves axonal hypomyelination by modulating M1/M2 Microglia polarization by way of JAK2-STAT3-Telomerase pathway in postnatal rats uncovered to Lipopolysaccharide. Mol Neurobiol. 2021;58:6552–76.
Wang T, Li B, Wang Z, Yuan X, Chen C, Zhang Y, Xia Z, Wang X, Yu M, Tao W, Zhang L, Wang X, Zhang Z, Guo X, Ning G, Feng S, Chen X. Mir-155-5p promotes dorsal Root Ganglion Neuron Axonal Progress in an Inhibitory Microenvironment by way of the cAMP/PKA pathway. Int J Biol Sci. 2019;15:1557–70.
Zhu Q, Hong Y, Huang Y, Zhang Y, Xie C, Liang R, Li C, Zhang T, Wu H, Ye J, Zhang X, Zhang S, Zou X, Ouyang H. Polyglutamic Acid-Primarily based Elastic and difficult Adhesive Patch promotes tissue regeneration by means of in situ macrophage modulation. Adv Sci (Weinh). 2022;9:e2106115.
Zha Z, Chen Q, Xiao D, Pan C, Xu W, Shen L, Shen J, Chen W. Mussel-inspired Microgel Encapsulated NLRP3 inhibitor as a synergistic technique in opposition to Dry Eye. Entrance Bioeng Biotechnol. 2022;10:913648.
Tang JJ, Huang LF, Deng JL, Wang YM, Guo C, Peng XN, Liu Z, Gao JM. Cognitive enhancement and neuroprotective results of OABL, a sesquiterpene lactone in 5xFAD Alzheimer’s illness mice mannequin. Redox Biol. 2022;50:102229.
Liu J, Lu Y, Tang M, Shao F, Yang D, Chen S, Xu Z, Zhai L, Chen J, Li Q, Wu W, Chen H. Fucoxanthin Prevents Lengthy-Time period Administration l-DOPA-Induced neurotoxicity by means of the ERK/JNK-c-Jun System in 6-OHDA-Lesioned mice and PC12 cells. Mar Medicine. 2022; 20.
Eungpinichpong W, Sitthiracha P, GROUND REACTION FORCE OF. STEP MARCHING: A PILOT STUDY. GEOMATE J. 2020;19:104–9.
Li Z, Zhao W, Liu W, Zhou Y, Jia J, Yang L. Transplantation of placenta-derived mesenchymal stem cell-induced neural stem cells to deal with spinal wire harm. Neural Regen Res. 2014;9:2197–204.
Santos EN, Fields RD. Regulation of myelination by microglia. Sci Adv. 2021;7:eabk1131.
Villa A, Klein B, Janssen B, Pedragosa J, Pepe G, Zinnhardt B, Vugts DJ, Gelosa P, Sironi L, Beaino W, Damont A, Dollé F, Jego B, Winkeler A, Ory D, Solin O, Vercouillie J, Funke U, Laner-Plamberger S, Blomster LV, Christophersen P, Vegeto E, Aigner L, Jacobs A, Planas AM, Maggi A, Windhorst AD. Identification of latest molecular targets for PET imaging of the microglial anti-inflammatory activation state. Theranostics. 2018;8:5400–18.
Zhan L, Fan L, Kodama L, Sohn PD, Wong MY, Mousa GA, Zhou Y, Li Y, Gan L. A MAC2-positive progenitor-like microglial inhabitants is immune to CSF1R inhibition in grownup mouse mind. Elife. 2020; 9.
Hu H, Yang X, He Y, Duan C, Solar N. Psychological stress induces depressive-like conduct related to bone marrow-derived monocyte infiltration into the hippocampus unbiased of blood-brain barrier disruption. J Neuroinflammation. 2022;19:208.
Jahn J, Bollensdorf A, Kalischer C, Piecha R, Weiß-Müller J, Potru PS, Ruß T, Spittau B. Microglial CD74 expression is regulated by TGFβ signaling. Int J Mol Sci. 2022; 23.
Chan PC, Wu TN, Chen YC, Lu CH, Wabitsch M, Tian YF, Hsieh PS. Targetted inhibition of CD74 attenuates adipose COX-2-MIF-mediated M1 macrophage polarization and retards obesity-related adipose tissue irritation and insulin resistance. Clin Sci (Lond). 2018;132:1581–96.
Chen T, Chen Z, Wu P, Luo J, Liu Q, Yang H, Peng C, Zhang G, Lin H, Ji Z. The Interplay between ADK and SCG10 regulate the restore of nerve injury. Neuroscience. 2024;544:75–87.
Tondera C, Hauser S, Krüger-Genge A, Jung F, Neffe AT, Lendlein A, Klopfleisch R, Steinbach J, Neuber C, Pietzsch J. Gelatin-based Hydrogel Degradation and Tissue Interplay in vivo: insights from Multimodal Preclinical Imaging in Immunocompetent Nude mice. Theranostics. 2016;6:2114–28.
Huang X, Wang C, Zhou X, Wang J, Xia Okay, Yang B, Gong Z, Ying L, Yu C, Shi Okay, Shu J, Cheng F, Han B, Liang C, Li F, Chen Q. Overexpression of the transcription components OCT4 and KLF4 improves motor operate after spinal wire harm. CNS Neurosci Ther. 2020;26:940–51.