Research map: Recent Advances in Cryogel Applications for Musculoskeleatal Regeneration
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- Current hydrogel advances in physicochemical and biological response-driven biomedical application diversity · Huấn Cao · 2021 · 1270 citations · Cited by this paper
- A Possibility of Synthetic Lethality: Wee1 Kinase as a Promising Treating Target for Cancer · 2026 · Related
- Injectable antibacterial conductive nanocomposite cryogels with rapid shape recovery for noncompressible hemorrhage and wound healing · Xin Zhao · 2018 · 1172 citations · Cited by this paper
- Hydroxamic Acids as HDAC Inhibitor Drug Leads for Malaria · 2026 · Related
- Scaffold Fabrication Technologies and Structure/Function Properties in Bone Tissue Engineering · Maurice N. Collins · 2021 · 870 citations · Cited by this paper
- Exercise‐Induced Exerkines: Multi‐Nodal Suppression of the NLRP3 Inflammasome and Translational Potential · 2026 · Related
- A Universal Soaking Strategy to Convert Composite Hydrogels into Extremely Tough and Rapidly Recoverable Double‐Network Hydrogels · Yanyu Yang · 2016 · 637 citations · Cited by this paper
- Advances in SIRT2‐Targeted Therapeutics: Structural Insights, Chemical Strategies, and Degrader Technologies · 2026 · Related
- Smart/stimuli-responsive hydrogels: Cutting-edge platforms for tissue engineering and other biomedical applications · Hussein M. El‐Husseiny · 2021 · 533 citations · Cited by this paper
- AI‐Driven Multi‐Omics Integrated Applications Using Diverse Neural Networks for Breast Cancer Diagnostic Screening and Biomarker Discovery · 2026 · Related
- Optimizing scaffold pore size for tissue engineering: insights across various tissue types · Fariza Mukasheva · 2024 · 452 citations · Cited by this paper
- FDA‐Approved Pyrimidine‐Containing Drugs: Synthesis and Clinical Application · 2025 · Related
- Design Challenges in Polymeric Scaffolds for Tissue Engineering · Maria I. Echeverria Molina · 2021 · 387 citations · Cited by this paper
- Senotherapeutics for Knee Osteoarthritis · 2026 · Related
- Latest Advances in Cryogel Technology for Biomedical Applications · Adnan Memić · 2019 · 314 citations · Cited by this paper
- Synthesis and Clinical Application of Small‐Molecule Drugs Approved by FDA in 2025 · 2026 · Related
- Structured Macroporous Hydrogels: Progress, Challenges, and Opportunities · Kevin J. De France · 2017 · 282 citations · Cited by this paper
- The Potential, Challenges and New Horizons of Marine Natural Products Against Tuberculosis Infection · 2025 · Related
- Ice Templating Soft Matter: Fundamental Principles and Fabrication Approaches to Tailor Pore Structure and Morphology and Their Biomedical Applications · Habib Joukhdar · 2021 · 273 citations · Cited by this paper
- Advances in Structural Diversity, Pharmacological Activities, and Drug Development of β‐Carboline Alkaloids · 2026 · Related
- Multiple Stimuli‐Responsive Nanozyme‐Based Cryogels with Controlled NO Release as Self‐Adaptive Wound Dressing for Infected Wound Healing · Yutong Yang · 2023 · 244 citations · Cited by this paper
- Injectable GelMA Cryogel Microspheres for Modularized Cell Delivery and Potential Vascularized Bone Regeneration · Zuoying Yuan · 2021 · 225 citations · Cited by this paper
- Basic Principles of Emulsion Templating and Its Use as an Emerging Manufacturing Method of Tissue Engineering Scaffolds · Betül Aldemir Dikici · 2020 · 186 citations · Cited by this paper
- Application of “Click” Chemistry in Biomedical Hydrogels · Xin Li · 2022 · 172 citations · Cited by this paper
- Sequential growth factor releasing double cryogel system for enhanced bone regeneration · Seunghun S. Lee · 2020 · 148 citations · Cited by this paper
- Cryogels: Freezing unveiled by thawing · Ashok Kumar · 2010 · 140 citations · Cited by this paper
- Biodegradable Piezoelectric‐Conductive Integrated Hydrogel Scaffold for Repair of Osteochondral Defects · Dingge Liu · 2024 · 139 citations · Cited by this paper
- In situ gas foaming based on magnesium particle degradation: A novel approach to fabricate injectable macroporous hydrogels · Yanmei Tang · 2019 · 120 citations · Cited by this paper
- Magnesium Gradient‐Based Hierarchical Scaffold for Dual‐Lineage Regeneration of Osteochondral Defect · Chenyuan Gao · 2023 · 116 citations · Cited by this paper
- Heparin Functionalized Injectable Cryogel with Rapid Shape-Recovery Property for Neovascularization · Inseon Kim · 2018 · 108 citations · Cited by this paper
- Self‐Healing Hydrogels and Cryogels from Biodegradable Polyurethane Nanoparticle Crosslinked Chitosan · Tzu‐Wei Lin · 2019 · 102 citations · Cited by this paper
- Functionally graded multilayer scaffolds for in vivo osteochondral tissue engineering · Heemin Kang · 2018 · 101 citations · Cited by this paper
- Freeze-cast hydroxyapatite scaffolds for bone tissue engineering applications · Qiang Fu · 2008 · 94 citations · Cited by this paper
- PNIPAAm-based temperature responsive ionic conductive hydrogels for flexible strain and temperature sensing · Tongda Lei · 2024 · 91 citations · Cited by this paper
- Injectable, High Specific Surface Area Cryogel Microscaffolds Integrated with Osteoinductive Bioceramic Fibers for Enhanced Bone Regeneration · Yue Wang · 2023 · 88 citations · Cited by this paper
- An Overview on Collagen and Gelatin-Based Cryogels: Fabrication, Classification, Properties and Biomedical Applications · Yujing He · 2021 · 86 citations · Cited by this paper
- Tackling Cell Transplantation Anoikis: An Injectable, Shape Memory Cryogel Microcarrier Platform Material for Stem Cell and Neuronal Cell Growth · Ben Newland · 2015 · 84 citations · Cited by this paper
- Biocompatible Cryogel with Good Breathability, Exudate Management, Antibacterial and Immunomodulatory Properties for Infected Diabetic Wound Healing · Yang Li · 2023 · 82 citations · Cited by this paper
- Bioglass-Incorporated Methacrylated Gelatin Cryogel for Regeneration of Bone Defects · S. Chul Kwon · 2018 · 77 citations · Cited by this paper
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