2023
DOI: 10.1016/j.cej.2023.143125
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Electroconductive and mechano-competent PUCL@CNT nanohybrid scaffolds guiding neuronal specification of neural stem/progenitor cells

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Cited by 7 publications
(9 citation statements)
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“…[89][90][91][92][93][94][95][96][97][98] Matrix optimization with matrigel or alternative matrigel or combined with graphene was assessed in 51 articles. The quantity of matrigel was depicted in 13 studies, [53][54][55][56][57][58]80,88,[94][95][96][97][98] alternative matrigel in 17 studies, 51,52,63,[74][75][76][77][78][79][81][82][83][89][90][91]93 and combined with graphene in 21 studies. 56,[58][59][60][61][62][64][65][66][67][68]…”
Section: Included Studiesmentioning
confidence: 99%
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“…[89][90][91][92][93][94][95][96][97][98] Matrix optimization with matrigel or alternative matrigel or combined with graphene was assessed in 51 articles. The quantity of matrigel was depicted in 13 studies, [53][54][55][56][57][58]80,88,[94][95][96][97][98] alternative matrigel in 17 studies, 51,52,63,[74][75][76][77][78][79][81][82][83][89][90][91]93 and combined with graphene in 21 studies. 56,[58][59][60][61][62][64][65][66][67][68]…”
Section: Included Studiesmentioning
confidence: 99%
“…Alternative matrigel can be used as a matrix to have effects on the microenvironment in vitro. The previous studies showed alternative materials such as gelatin, GelMa, collagen, Se-EX-Ch-COL/TA, Col-Ch, chitosan-pectin, PAMB-C-OHA, PLA-HA, PEG, GG, IGF1c-PHM, PUCL@CNT, CPSN, and RSF/Mxene, 51,52,63,[74][75][76][77][78][79][81][82][83][89][90][91]93 as summarized in Table 2. The use of gelatin showed that cell aggregation is characterized by spindle-round or spheroid structures.…”
Section: Alternative Matrigel In Cell Culture or Organoidmentioning
confidence: 99%
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“…Peripheral nervous system (PNS) tissue engineering is a field of research focused on developing strategies to repair or regenerate damaged or injured peripheral nerves. 81,122–124 The PNS consists of nerves outside the brain and spinal cord and has some degree of regenerative capacity. However, in the cases of severe injury or nerve damage, it needs tissue engineering approaches that can enhance and accelerate healing.…”
Section: Applications Of Conductive Polymers In Nerve Tissue Engineeringmentioning
confidence: 99%
“…Recent studies have been conducted to improve the reactivity of IS using isosorbide derivatives (ISBD) substituted with primary alcohols [32]. Conductive materials such as carbon nanotubes [33], graphene, and metal particles [34] are principally used to impart electrode properties to PU. Among these, metal particles are superior to organic conductors in terms of their conductivity [35,36].…”
Section: Introductionmentioning
confidence: 99%