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18 results on '"Zheng, Zijun"'

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1. AMPK activation eliminates senescent cells in diabetic wound by inducing NCOA4 mediated ferritinophagy.

2. Multiomics Analysis Unravels Alteration in Molecule and Pathways Involved in Nondiabetic Chronic Wounds.

3. Enzyme-responsive nanospheres target senescent cells for diabetic wound healing by employing chemodynamic therapy.

4. Comparative proteomic analysis identifies proteins associated with arbuscular mycorrhizal symbiosis in Poncirus trifoliata .

5. Role of the membrane-spanning 4A gene family in lung adenocarcinoma.

6. Nanofiber Scaffolds as Drug Delivery Systems Promoting Wound Healing.

8. Defective NCOA4-dependent ferroptosis in senescent fibroblasts retards diabetic wound healing.

9. Strategies for improving the 3D printability of decellularized extracellular matrix bioink.

10. Recent Advances in Nano-Drug Delivery Systems for the Treatment of Diabetic Wound Healing.

11. Association between genetically predicted leukocyte telomere length and non-scarring alopecia: A two-sample Mendelian randomization study.

12. Multifunctional sponge scaffold loaded with concentrated growth factors for promoting wound healing.

13. Polydopamine modified acellular dermal matrix sponge scaffold loaded with a-FGF: Promoting wound healing of autologous skin grafts.

14. Senescence in chronic wounds and potential targeted therapies.

15. Polydopamine-modified collagen sponge scaffold as a novel dermal regeneration template with sustained release of platelet-rich plasma to accelerate skin repair: A one-step strategy.

16. Epithelial differentiation of human adipose-derived stem cells (hASCs) undergoing three-dimensional (3D) cultivation with collagen sponge scaffold (CSS) via an indirect co-culture strategy.

17. A Medicago truncatula SWEET transporter implicated in arbuscule maintenance during arbuscular mycorrhizal symbiosis.

18. Comparative transcriptome analysis of Poncirus trifoliata identifies a core set of genes involved in arbuscular mycorrhizal symbiosis.

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