#Nanozyme
Nanodelivery/Nanoengineering/Nanozyme strategies for skeletal muscle repair & regeneration

Tuning inflammation, oxidative stress, muscularization, vascularization, innervation

#JNanobiotech 2026
link.springer.com/article/10.1...
June 21, 2026 at 12:30 PM
1/5 Can an “antioxidant” nanozyme make neurodegeneration worse? 🤯 In our new work, we designed a potent ROS-scavenging nanozyme. It paradoxically exacerbated Parkinson's-like pathology. This surprising result led to a major discovery. #Neuroscience #Nanozyme
July 12, 2025 at 2:44 PM
六年,感谢有你|纳米酶Nanozymes 生日快乐!

Six years, thank you for being there | Happy Birthday, Nanozymes!
#birthday #纳米酶 #nanozymes #nanozyme #anniversary #周年 #生日
mp.weixin.qq.com/s/vXcmlty_19...
March 1, 2026 at 2:43 AM
A Porphyrin-Based Metal–Organic Framework Nanozyme with Superior Peroxidase-like Activity for Combating Antibacterial Infections and Promoting Wound Healing | Inorganic Chemistry pubs.acs.org/doi/10.1021/... Tang, Lin, Yan, and co-workers @InorgChem #porphyrin #iron #MOF #nanozyme
February 12, 2025 at 4:36 PM
🔥 New and HOT in Chemical Science!
“Modulating ion migration realizes both enhanced and long-term-stable nanozyme activity for efficient microplastic degradation” by Kun Li et al. from Hunan University.
Read it for free: doi.org/10.1039/D5SC...

#ChemSky #ChemSciHOT

August 31, 2025 at 5:31 PM
New glioblastoma research is 🔥. These smart nanoparticles helped mice reach 100% survival at 60 days. Human 5-year survival is typically just 7%. That's like going from a 1 in 14 chance to a sure thing, even in early stages. Super promising.
Smart Nanoparticles Light Up Brain Cancer and Destroy What Surgery Misses
Scientists have developed smart nanoparticles that can both illuminate hidden glioblastoma cells during surgery and subsequently destroy any remaining microscopic cancer. This dual-function nanozyme p
www.sciencedaily.com
August 30, 2026 at 6:02 AM
Synergistic nanozyme-enzyme functionalized MOF membranes for efficient degradation of pharmaceutical pollutants with enhanced antifouling performance https://www.sciencedirect.com/science/article/pii/S246802302601624X
July 8, 2026 at 9:22 PM
Eisenoxid-Nanozyme zur Behandlung von Infektionen im Wurzelkanal mit weniger Nebenwirkungen als der klinische Goldstandard und gleichzeitiger Förderung der Gewebeheilung.
penntoday.upenn.edu/news/root-ca...
Getting to the root of root canals: Nanoparticles offer enhanced treatment | Penn Today
Penn researchers use iron oxide nanozymes to treat infections during root canals with fewer adverse effects than clinical gold standard while also promoting tissue healing.
penntoday.upenn.edu
March 10, 2025 at 9:59 AM
🔔 Research article by Wei Gu 𝘦𝘵 𝘢𝘭.

A high-entropy nanozyme-based photothermal-adjuvant in situ nanovaccine for potentiated tumor immunotherapy

🔗 doi.org/10.1039/d5qm...

#Nanozymes #Immunotherapy #Nanovaccines #Photothermal
September 15, 2026 at 4:44 AM
A new nanozyme delivery system targets hypoxic lesions in nasopharyngeal carcinoma, enhancing radiosensitivity and potentially improving radiotherapy outcomes without significant toxicity. doi.org/g84xd3
Nanozyme targets hypoxic lesions to enhance radiosensitivity in nasopharyngeal carcinoma
A collaborative study published on January 21 in Nature Communications presents a novel strategy to improve the effectiveness of radiotherapy for nasopharyngeal carcinoma (NPC).
phys.org
February 13, 2025 at 1:02 PM
🖊️Introducing RSC Advances' web writer Anna Anandita @thedumbbanshee.bsky.social, a PhD candidate at IIT Jammu

In her blog she looks at an article on enhanced peroxidase-like copper-poly(tannic acid) #nanozyme for #antioxidantsensing

Blog 🔗 buff.ly/MszrSai
Article 🔗 buff.ly/74B0TaS
RSC Advances Science Communications – Enhanced Peroxidase-like Copper-Poly(tannic acid) Nanozyme for Antioxidant Sensing – RSC Advances Blog
Evaluating total antioxidant capacity in food samples is essential for determining the antioxidant levels and managing oxidative stress-related health risks such as cardiovascular diseases, cancer,…
buff.ly
September 18, 2025 at 2:22 PM
'Bioinspired Fe Single-Atom Nanozyme Synergizes with Natural NarGH Dimer for High-Efficiency Photobiocatalytic Nitrate Conversion', has been featured in this week's #JACS!

Explore the research behind the art: buff.ly/VdwHxxZ
December 19, 2025 at 1:03 PM
🧪On this week's outside front cover is an article by Ling Liang, Fanggui Ye and coworkers entitled 'Design of a hollow GOx@Cu2+–PA integrated nanozyme for self-cascading colorimetric sensing of glucose' - doi.org/10.1039/D5NJ...
January 20, 2026 at 1:32 PM
Online now: Design of a bispecific peptide-nanozyme conjugate for cancer immunotherapy
Design of a bispecific peptide-nanozyme conjugate for cancer immunotherapy
Gao et al. develop a PD-L1 and CXCR1/2-targeting bispecific peptide-nanozyme conjugate (BsPNEC) that reduces immunosuppressive myeloid cell infiltration, activates cGAS-STING via ROS to enhance CD8+ T cell tumor infiltration, and validates efficacy in an anti-PD-L1-resistant pancreatic cancer model.
dlvr.it
January 25, 2026 at 8:19 PM
Zr-MOF-Derived Zirconium Oxide Nanozyme and Its Hydrogel Composite Membrane for Organophosphate Detoxification http://dx.doi.org/10.1021/acs.inorgchem.5c01454
May 23, 2025 at 4:15 PM
RRIDs were included in this in Advanced Science paper. Thanks for making your methods matter! #accelerateopenscience #RRID #OpenResearch
Thermally Gated Dual‐Cascade Nanozyme for Enhanced Mild‐Temperature Photothermal Therapy
Read the full paper: Thermally Gated Dual‐Cascade Nanozyme for Enhanced Mild‐Temperature Photothermal Therapy
doi.org
April 4, 2026 at 7:00 AM
👉Check out MCF #review article by Ping Li, Ruijiao Dong et al.
Recent advances in nanozyme-based materials for #environmental pollutant detection and #remediation
doi.org/10.1039/D4QM...
#Chemsky #MCFreview #nanozyme
Recent advances in nanozyme-based materials for environmental pollutant detection and remediation
Natural enzymes inevitably suffer from inherent limitations, including low stability, high cost, sensitive catalytic activity toward environmental stimuli, and difficulties in recycling and reusing. T...
doi.org
March 11, 2025 at 9:59 AM