董常明 教授 博士 上海市 研究领域: 环保 研究方向: (1)生物高分子与生物医用材料(聚氨基酸或聚肽、抗菌肽、糖聚合物、天然多糖) (2)生物降解高分子与生物医用材料(聚乳酸、聚己内酯、脂肪族聚酯) (3)医用高分子水凝胶及其止血愈合与软组织工程 (医用粘结剂、止血剂、创伤辅料) (4)药物递送体系、纳米医学与癌症治疗(免疫治疗、光热治疗、铁死亡治疗、联合治疗) (5)生物降解与生态环保塑料的先进制备、加工与升级回收 所在单位: 上海交通大学

基本信息

所在单位:
上海交通大学
机构细分:
化学化工学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
教育经历:
1995-1998  武汉大学 化学系 硕士
1998-2001  北京大学 化学与分子工程学院 博士
工作经历:
2002.3-2003.12  美国Emory Univ 医学院 生物材料 博士后
2004.1-2004.8  上海交通大学 化学化工学院 教师、课题组长
2004.8-2008.12 上海交通大学 化学化工学院 副教授、硕士生导师、课题组长
2009.1-2020.7   上海交通大学 化学化工学院 教授、博士生导师、课题组长
2020.8-至今       上海交通大学 化学化工学院 长聘教授、博士生导师、课题组长
专家介绍:
本人主要从事生物降解高分子、生物医用高分子材料的设计合成及其在药物控制释放、纳米医学、医用水凝胶等领域的研究工作。
       目前已发表SCI论文100余篇,H-指数为41。为解决生物医用高分子材料的拓扑结构不可控以及阐明结构-药效的关系,赋予药物释放载体生理相关的刺激响应性和靶向性而提高纳米药物的疗效等,发展了具有拓扑结构、刺激响应性和靶向功能化生物降解高分子的控制合成新方法和新策略,开拓了无催化剂的聚肽光控聚合及其拓扑结构转化,揭示了药物释放载体的拓扑结构效应、以及刺激响应性和靶向性在提高纳米药物活性中的关键作用。该系统性研究具有较重要的理论价值和潜在的应用前景,为发展拓扑结构控制的生物降解高分子及其糖-受体介导的靶向性药物释放载体做出了贡献。
       研究工作主要体现在三个方面:(1)设计合成了具有不对称和对称拓扑结构的聚己内酯或聚氨基酸嵌段共聚物,发展了拓扑结构生物降解高分子的控制合成新方法;发展了无外加催化剂或引发剂的超支化聚氨基酸的光控聚合新方法,实现了聚氨基酸从线形-支化-超支化拓扑结构的光控调控;阐明了聚合物拓扑结构、组成与物化性能、自组装特性、及其药物控释性能的关系规律。(2)创制了新型刺激响应性聚氨基酸新体系,实现了光响应性、二硫还原响应性、及其多重响应性转变;提出了聚氨基酸反胶束水凝胶新概念,揭示了主-客体化学与氢键相互作用在聚氨基酸体系中的协同效应。(3)发展了开环聚合、室温原子转移自由基聚合联用的聚合反应新策略,设计合成了生物降解聚己内酯-嵌段-葡萄糖/乳糖聚合物,建立了糖-蛋白介导的细胞靶向型纳米高分子药物控释载体的合成与组装方法,创制了兼具糖靶向性和近红外光响应性的生物降解高分子纳米药物载体新体系。最近,构建了超低浓度聚肽水凝胶及其单组份聚肽水凝胶,开拓了医用聚肽水凝胶在高性能止血剂和创伤愈合辅料中的应用研究。
专家荣誉:
(1)2008年教育部新世纪优秀人才支持计划
(2)2008年上海交通大学晨星青年学者奖励计划
(3)2012年、2013年获上海市优秀硕士论文导师(学生:华崇硕士和陈怡硕士)
(4)2012年上海交通大学晨星青年学者A类计划
(5)2020年度上海交通大学“教书育人奖(集体)”一等奖(成员)
(6)2021年Excellent Papers Award of Chinese Chemical Letters,中国化学快报编辑部
  (7)  2022年闵行领军人才
  (8)2022.06  中国化学会高级会员
  (9) Fellow of International Association for Advanced Materials (IAAM), 2024

科研能力

研究领域:
环保
研究方向:
(1)生物高分子与生物医用材料(聚氨基酸或聚肽、抗菌肽、糖聚合物、天然多糖)
(2)生物降解高分子与生物医用材料(聚乳酸、聚己内酯、脂肪族聚酯)
(3)医用高分子水凝胶及其止血愈合与软组织工程 (医用粘结剂、止血剂、创伤辅料)
(4)药物递送体系、纳米医学与癌症治疗(免疫治疗、光热治疗、铁死亡治疗、联合治疗)
(5)生物降解与生态环保塑料的先进制备、加工与升级回收
英文标签:
Self-assembly;Nanoparticles;Polypeptide;Ring-opening Polymerization;Combination Therapy;Synergistic Effect;Biodegradable;Photothermal Therapy;Block Copolymers;Controlled Polymerization
论文著作:
95.Xueliang Zhang, Fangrui Ning, Yingying Li, Jiayu Lu, Yushi He, Chuanliang Feng, Chang-Ming Dong*,Pluripotent polysaccharide coordinated hydrogels remodel inflammation, neovascularization and reepithelization for efficient diabetic wound prohealing,Journal of Controlled Release 2025, 377, 37–53.
94. Yanzheng Chen, Qing Wang, Fangrui Ning, Chang Du, Mingsheng Chen*, Chuanliang Feng, Chang-Ming Dong*,Dynamic Hyaluronic Acid Hydrogels for Comprehensively Regulating Inflammation, Angiogenesis, and Metabolism to Effectively Proheal Diabetic Wounds,ACS Appl. Mater. Interfaces2024, 16, 70256-70273.
93. Meng He, Wei Xu, Yuxin Dan, Yue Pan, Yingying Li, Mingsheng Chen,and Chang-Ming Dong*,Mannosylated Fluoropolypeptide Nanovaccines Remodeling
Tumor Immunosuppressive Microenvironment to Achieve Highly Potent Cancer Immunotherapy,Adv. Healthcare Mater.2024,13, 2401354.92. Yingying Song, Lin Teng, Yanzheng Chen, and Chang-Ming Dong*,Glycopolypeptide Coordinated Nanovaccine: Fabrication, Characterization, and Antitumor Immune Response,Chem Bio Eng.2024, 1, 633-646.
91. Wei Ge, Yingying Song, Yingying Li, Gang Wei, Changkun Li, Xuesong Jiang, and Chang-Ming Dong*,Synthesis, Physical, and Mechanical Properties of Fluorinated Vinyl Copolymers Bearing Phosphonate Groups,ACS Appl. Polym. Mater.2024, 6, 9932-9939.
90. Lin Teng, Yingying Song, Yinghan Hu, Jiayu Lu, and Chang-Ming Dong*, Biomimetic and Wound Microenvironment-Modulating PEGylated Glycopolypeptide Hydrogels for Arterial Massive Hemorrhage and Wound Prohealing, Biomacromolecules 2024, 25, 4317−4328.
89. Xueliang Zhang , Fangrui Ning , Yanzheng Chen , Chang-Ming Dong*, All-in-one polysaccharide hydrogel with resistant vascular burst pressure and cooperative wound microenvironment regulation for fatal arterial hemorrhage and diabetic wound healing, International Journal of Biological Macromolecules 2024, 272, 132736.
88. Yanzheng Chen, Xueliang Zhang, Qing Wang, Chang Du* and Chang-Ming Dong*, Wound microenvironment regulatory poly(L-glutamic acid) composite hydrogels containing metal ion-coordinated nanoparticles for effective hemostasis and wound healing, Biomater. Sci., 2024, 12, 1211–1227.
87. Yanzheng Chen, Yingying Song, Xinyuan Zhu*, Chang-Ming Dong* & Mingsheng Chen*,Design and Update of Multifunctional Polypeptides and Their Applications for the Prevention of Viral Infections and Cancer Immunotherapies, Polymer Reviews 2024, 64, 528–574.
86. Meng He, Yingying Song, Wei Xu, Xueliang Zhang, and Chang-Ming Dong*,Four Birds with One Stone: A Multifunctional Polypeptide Nanocomposite to Unify Ferroptosis, Nitric Oxide, and Photothermia for Amplifying Antitumor Immunity,Adv. Funct. Mater. 2023, 33, 2304216.
85.Meng He, Yuxin Dan, Mingsheng Chen, and Chang-Ming Dong*,Biocompatible Polymer-Modified Nanoplatform for Ferroptosis-Enhanced Combination Cancer Therapy,Macromol. Biosci.2023, 2300215.
84. Lin Teng,  Yingying Song, Lingli Hu,  Qian Bai, Xueliang Zhang, and Chang-Ming Dong* ,Nitric Oxide-Releasing Poly(L-glutamic acid) Hybrid Hydrogels for Accelerating Diabetic Wound Healing, Chin. J. Chem. 2023, 41, 2103-2112.
83. Yingying Song, Chang-Ming Dong*, Sugar-dependent targeting and immune adjuvant effects of hyperbranched glycosylated polypeptide nanoparticles for ovalbumin delivery, Chinese Chemical Letters 2022, 33, 4084–4088.
82.  Qian Bai, Lin Teng, Xueliang Zhang, and Chang-Ming Dong*,Multifunctional Single-Component Polypeptide Hydrogels: The Gelation Mechanism, Superior Biocompatibility, High Performance Hemostasis, and Scarless Wound Healing,Adv. Healthcare Mater. 2022, 11, 2101809.
81. Meng He,+ Chang Du,+ Jindong Xia, Zhi-Gang Zhang, and Chang-Ming Dong*, Multivalent Polypeptide and Tannic Acid Cooperatively IronCoordinated Nanohybrids for Synergistic Cancer Photothermal
Ferroptosis Therapy, Biomacromolecules 2022, 23, 2655−2666.
80. Yue Ding∗, Chenwei Wang, Yuxuan Ma, Lvming Zhu, Bing Lu, Yang Wang, Jin Wang,
Chang-Ming Dong∗
, Yong Yao∗, Tumor microenvironment responsive polypeptide-based
supramolecular nanoprodrugs for combination therapy, Acta Biomaterialia 2022, 146, 396–405.
79. Yue Ding*, Chenwei Wang , Yuxuan Ma , Lvming Zhu , Bing Lu ,
Yang Wang, Jin Wang, Tingting Chen, Chang-Ming Dong*,
Yong Yao*, pH/ROS Dual-Responsive Supramolecular Polypeptide Prodrug
Nanomedicine Based on Host-Guest Recognition for Cancer Therapy, Acta Biomaterialia 2022, 143, 381–391.
78.Yuxuan Ma, Chenwei Wang, Lvming Zhu, Chunmei Yu, Bing Lu, Yang Wang, Yue Ding*, Chang-Ming Dong*, Yong Yao*,Polydopamine-drug conjugate nanocomposites based on ZIF-8 for targeted photothermal-chemotherapy, J Biomed Mater Res2022, 110, 954-963.
77. Yingying Song, Yue Ding, Chang-Ming Dong*, Stimuli-responsive polypeptide nanoassemblies: Recent
progress and applications in cancer nanomedicine, WIREs Nanomed Nanobiotechnol. 2022, 14, e1742.

76. Lin Teng, Zhengwei Shao, Qian Bai, Xueliang Zhang, Yu-Shi He, Jiayu Lu,* Derong Zou, Chuanliang Feng, and Chang-Ming Dong*,Biomimetic Glycopolypeptide Hydrogels with Tunable Adhesion and Microporous Structure for Fast Hemostasis and Highly Efficient Wound Healing,Adv. Funct. Mater. 2021, 31, 2105628.
75. Chang Du, Lei Zhou, Jiwen Qian, Meng He, Zhi-Gang Zhang, Chuanliang Feng, Yongming Zhang,
Rong Zhang*, and Chang-Ming Dong*, Ultrasmall Zwitterionic Polypeptide-Coordinated Nanohybrids for Highly Efficient Cancer Photothermal Ferrotherapy, ACS Appl. Mater. Interfaces 2021, 13, 44002−44012.
74. Chang Du, Lei Zhou, Jiwen Qian, Meng He, Chang-Ming Dong,* Jin-Dong Xia, Zhi-Gang Zhang and Rong Zhang*. A zwitterionic polypeptide nanocomposite
with unique NIR-I/II photoacoustic imaging
for NIR-I/II cancer photothermal therapy, J. Mater. Chem. B, 2021, 9, 5484–5491.
73.Yue Ding∗, Yuxuan Ma, Chang Du, Chenwei Wang, Tingting Chen, Yang Wang, Jin Wang, Yong Yao∗, Chang-Ming Dong∗,NO-releasing polypeptide nanocomposites reverse cancer multidrug resistance via triple therapies, Acta Biomaterialia 2021,123,335-345.
72. Chang Du+,Xingjie Wu+,Meng He,Yongming Zhang, Rong Zhang*, Chang-Ming Dong*,Polymeric photothermal agents for cancer therapy: recent progress and clinical potential,J. Mater. Chem. B, 2021, 9, 1478-1490.
71. Yingying Song, Yanzheng Chen, Pan Li, and Chang-Ming Dong*, Polypeptide-Glycosylated Dendron Amphiphiles: UV-Triggered Polymersomes, OVA Release, and In Vitro Enhanced Uptake and Immune Response,Biomacromolecules 2020, 21, 5345−5357.
70. Yue Ding, Chang Du, Jiwen Qian, and Chang-Ming Dong*,NIR-Responsive Polypeptide Nanocomposite Generates NO Gas, Mild Photothermia, and Chemotherapy to Reverse MultidrugResistant Cancer,Nano Letters 2019,19,4362-4370.
69.Chang Du, Yue Ding, Jiwen Qian, Rong Zhang*, Chang-Ming Dong*,Dual drug-paired polyprodrug nanotheranostics reverse multidrug resistant cancers via mild photothermal-cocktail chemotherapy,J. Mater. Chem. B, 2019, 7, 5306-5319.
68.Yue Ding, Chang Du, Jiwen Qian, and Chang-Ming Dong*,Zwitterionic polypeptide nanomedicine with dual NIR/reduction-responsivity for synergistic cancer photothermal-chemotherapy,Polym. Chem., 2019, 10,4825-4836.
67.Chang Du, Yue Ding, Jiwen Qian, Rong Zhang, Chang-Ming Dong*,Achieving traceless ablation of solid tumors without recurrence by mild photothermalchemotherapy of triple stimuli-responsive polymer–drug conjugate nanoparticles,J. Mater. Chem. B, 2019, 7, 415-432.
66.Pan Li, Yingying Song and Chang-Ming Dong*, Hyperbranched polypeptides synthesized from phototriggered ROP of a photocaged Nε-[1-(2-nitrophenyl)ethoxycarbonyl]-L-lysine-N-carboxyanhydride: microstructures and effects of irradiation intensity and nitrogen flow rate,Polym. Chem., 2018, 9, 3974-3986(Cover Paper).
65.Yue Ding,Chang Du,Jiwen Qian,Linzhu Zhou,Yue Su,Rong Zhang*,Chang-Ming Dong*,Tumor pH and intracellular reduction responsive polypeptide nanomedicine with a sheddable PEG corona and a disulfide-cross-linked core,Polym. Chem., 2018, 9, 3488-3498 .
64.Yuanfeng Gao, Chang-Ming Dong*,Triple Redox/Temperature Responsive Diselenide-Containing Homopolypeptide Micelles and Supramolecular Hydrogels Thereof,J Polym Sci Polym Chem 2018, 56, 1067-1077 .
63.Pan Li and Chang-Ming Dong*,Phototriggered Ring-Opening Polymerization of a Photocaged L‑Lysine N‑Carboxyanhydride to Synthesize Hyperbranched and Linear Polypeptides,ACS Macro Lett. 2017, 6, 292-297.
62.Chang Du,Jiwen Qian, Linzhu Zhou,Yue Su, Rong Zhang,* and Chang-Ming Dong*,Biopolymer-Drug Conjugate Nanotheranostics for MultimodalImaging-Guided Synergistic Cancer Photothermal-Chemotherapy,ACS Appl. Mater. Interfaces 2017, 9, 31576-31588.
61.Pan Li, Jiacheng Zhang and Chang-Ming Dong *,Photosensitive poly(o-nitrobenzyloxycarbonylL-lysine)-b-PEO polypeptide copolymers: synthesis, multiple self-assembly behaviors, and the photo/pH-thermo-sensitive hydrogels,Polym. Chem., 2017, 8, 7033–7043.
60.Yuanfeng Gao and Chang-Ming Dong*,Reduction- and thermo-sensitive core-crosslinked polypeptide hybrid micelles for triggered and intracellular drug release,Polym. Chem. 2017,8, 1223-1232.
59. Wu Xingjie, Zhou Linzhu, Su Yue, Dong Chang-Ming*, Plasmonic, Targeted,and Dual Drugs-Loaded Polypeptide Composite Nanoparticles for Synergistic Cocktail Chemotherapy with Photothermal Therapy, Biomacromolecules, 2016, 17,2489-2501.
58. Wu Xingjie, Zhou Linzhu, Su Yue, Dong Chang-Ming*, A polypeptide micelle template method to prepare polydopamine composite nanoparticles for synergistic photothermal–chemotherapy, Polym. Chem., 2016, 7, 5552–5562.
57.Wu Xingjie, Zhou Linzhu, Su Yue, Dong Chang-Ming*, An autoreduction method to prepare plasmonic gold-embedded polypeptide micelles for synergistic chemo-photothermal therapy, J. Mater. Chem. B, 2016, 4, 2142–2152.
56.Liu Gang, Liu Na, Zhou Linzhu, Su Yue, Dong Chang-Ming*, NIR-responsive polypeptide copolymer upconversion composite nanoparticles for triggered drug release and enhanced cytotoxicity, Polym. Chem., 2015, 6, 4030–4039.
55.Wu Xingjie, Zhou Linzhu, Su Yue, Dong Chang-Ming*, Comb-like poly(L-cysteine) derivatives with different side groups: synthesis via photochemistry and click chemistry, multi-responsive nanostructures, triggered drug release and cytotoxicity, Polym. Chem., 2015, 6, 6857–6869.
54.Gao Yanqin, Wu Xingjie, Zhou Linzhu, Su Yue, Dong Chang-Ming*, A Sweet Polydopamine Nanoplatform for Synergistic Combination of Targeted Chemo-Photothermal Therapy, Macromolecular Rapid Communications, 2015, 36,916–922.
53.Wu Xingjie, Gao Yanqin, Dong Chang-Ming*, Polymer/gold hybrid nanoparticles: from synthesis to cancer theranostic applications, RSC Advances, 2015,5, 13787–13796.
52. Gang Liu, Linzhu Zhou, Yue Su and Chang-Ming Dong*,An NIR-responsive and sugar-targeted polypeptide composite nanomedicine for intracellular cancer therapy, Chem Comm 2014,50,12538-12541.
51. Gang Liu , Linzhu Zhou , Yanfei Guan , Yue Su , Chang-Ming Dong *, Multi-Responsive Polypeptidosome: Characterization, Morphology Transformation,and Triggered Drug Delivery, Macromol. Rapid Commun. 2014, 35,1673-1678.
50. Xiao Chang, Lisha Liu, Yanfei Guan, Chang-Ming Dong*, Disulfide-Centered Star-Shaped Polypeptide-PEO Block Copolymers for Reduction-Triggered Drug Release, J. Polym. Sci., Part A: Polym. Chem. 2014, 52, 2000-2010.
49. Lin Sun, Bangshang Zhu, Yue Su and Chang-Ming Dong*,
Light-responsive linear-dendritic amphiphiles and their nanomedicines for NIR-triggered drug release, Polym. Chem., 2014, 5, 1605-1613.
48. Xiao Chang, Chang-Ming Dong*,"Synthesis of Hyperbranched Polypeptide and PEO Block Copolymer by Consecutive Thiol-Yne Chemistry", Biomacromolecules 2013, 14, 3329−3337.
47. Gang Liu, Wei Liu, Chang-Ming Dong*,  “UV- and NIR-Responsive Polymeric Nanomedicines for On-Demand Drug Delivery”, Polym. Chem., 2013, 4,3431-3443 (Invited review).
46. Dong-Lin Liu, Xiao Chang, Chang-Ming Dong*, “Reduction- and thermo-sensitive star polypeptide micelles and hydrogels for on-demand drug delivery”, Chem Comm 2013, 49, 1229-1231.
45. Chang-Ming Dong*, Gang Liu, “Linear-Dendritic Biodegradable Block Copolymers: From Synthesis To Application In Bionanotechnology”, Polym. Chem., 2013, 4, 46-52 (Invited Minireview, 6# of Top 10 Most Read article in Septemper, 2012).
44. Lin Sun,Xiaofei Ma, Chang-Ming Dong*, Bangshang Zhu*,  Xinyuan Zhu, 'NIR-Responsive and Lectin-Binding Doxorubicin-Loaded Nanomedicine from Janus-Type Dendritic PAMAM Amphiphiles', Biomacromolecules, 2012, 13, 3581-3591. (Most Read Articles: 6# of Top 20 in October 2012)
43. Gang Liu, Chang-Ming Dong*, "Photoresponsive Poly(S-(o-nitrobenzyl)-L-cysteine)-b-PEO from a LCysteine N-Carboxyanhydride Monomer: Synthesis, Self-Assembly, and Phototriggered Drug Release", Biomacromolecules, 2012, 13, 1573-1583. (Most Read Articles: Top 20 in April-May 2012)
42. Ye Liao, Chang-Ming Dong*, "Synthesis, Conformation Transition, Liquid Crystal Phase, and Self-Assembled Morphology of Thermosensitive Homopolypeptide",J Polym Sci Part A: Polym Chem 2012,50,1834–1843.
41.Yu-Jing Wang, Chang-Ming Dong*, "Bioreducible and Core-Crosslinked Hybrid Micelles from Trimethoxysilyl-Ended Poly(e-caprolactone)-S-S-Poly(ethylene oxide) Block Copolymers: Thiol-Ene Click Synthesis and Properties", J Polym Sci Part A: Polym Chem 2012,50,1645–1656.
40. You-Cui Xu, Chang-Ming Dong*, "Dendron-Like Poly(e-benzyloxycarbonyl-L-lysine)/Linear PEO Block Copolymers: Synthesis, Physical Characterization, Self-Assembly, and Drug-Release Behavior", J Polym Sci Part A: Polym Chem 2012, 50,1216–1225.
39. Lin Sun, Wei Liu, Chang-Ming Dong*, "Bioreducible Micelles and Hydrogels with Tunable Properties from Multi-Armed Biodegradable Copolymer", Chem Comm 2011, 47,11282-11284.
38. Lin Sun, Yang Yang, Chang-Ming Dong*, Yen Wei, "Two-Photon-Sensitive and Sugar-Targeted Nanocarriers from Degradable and Dendritic Amphiphiles", Small 2011, 7, 401-406.
37. Wei Liu, Chang-Ming Dong*, "Versatile Synthesis of Asymmetrical Dendron-Like/Dendron-Like Poly(Caprolactone)-b-Poly(Benzyl-L-Glutamate) Block Copolymers", J. Polym. Sci. Polym. Chem. 2011, 49, 3491-3498.
36. Wei Liu, Chang-Ming Dong*, “Versatile Strategy for the Synthesis of Hyperbranched Poly(e-caprolactone)s and Polypseudorotaxanes Thereof", Macromolecules 2010, 43, 8447-8455.
35. Lin Sun, Lin-Jing Shen, Ming-Qiang Zhu, Chang-Ming Dong*, Yen Wei, “Synthesis, Self-Assembly, Drug-Release Behavior, and Cytotoxicity of Triblock and Pentablock Copolymers Composed of Poly(e-caprolactone),Poly(L-lactide), and Poly(ethylene glycol)”, J Polym Sci Polym Chem 2010, 48, 4583-4593.
34. Yi Chen, Xiao-Hui Pang, Chang-Ming Dong*, “Dual Stimuli-Responsive Supramolecular Polypeptide-Based Hydrogel and Reverse Micellar Hydrogel Mediated by Host-Guest Chemistry”, Adv Funct Mater 2010, 20, 579-586.
33. Yi Chen, Chang-Ming Dong*, "pH-Sensitive Supramolecular Polypeptide-Based Micelles and Reverse Micelles Mediated by Hydrogen-Bonding Interactions or Host-Guest Chemistry: Characterization and In Vitro Controlled Drug Release", J. Phys. Chem. B 2010, 114, 7461–7468.
32. Yuan You, Yi Chen, Chong Hua, Chang-Ming Dong*, “Synthesis and Thermoreversible Gelation of Dendron-like Polypeptide/Linear Poly(e-caprolactone)/Dendron-like Polypeptide Triblock Copolymers”, J Polym Sci Polym Chem 2010, 48, 709-718.
31. Yang Yang, Chong Hua, Chang-Ming Dong*, “Synthesis, Self-Assembly, and In Vitro Doxorubicin Release Behavior of Dendron-like/Linear/Dendron-like Poly(ε-caprolactone)-b-Poly(ethylene glycol)-b-Poly(ε-caprolactone) Triblock Copolymers”, Biomacromolecules 2009, 10, 2310-2318.
30. Chong Hua, Chang-Ming Dong*, Yen Wei, " Versatile Strategy for the Synthesis of Dendron-like Polypeptide/Linear Pol(caprolactone) Block Copolymers via Click Chemistry", Biomacromolecules 2009, 10,1140-1148.
29. Qing Liu, Chen Cai, Chang-Ming Dong*, "Poly(L-lactide)-b-poly(ethylene oxide) copolymers with different arms: Hydrophilicity, biodegradable nanoparticles, in vitro degradation, and drug-release behavior", J Biomed Mater Res 2009, 88A, 990–999.
28. Xiao-Hui Dai, Hua-Dong Zhang, Chang-Ming Dong*, “Fabrication, biomolecular binding, in vitro drug release behavior of sugar-installed nanoparticles from star poly(ε-caprolactone)/glycopolymer biohybrid with a dendrimer core”, Polymer 2009, 50, 4626-4634.
27. Shuo Qiu, Hui Huang, Xiao-Hui Dai, Wei Zhou, Chang-Ming Dong*, "Star-Shaped Polypeptide/Glycopolymer Biohybrids: Synthesis, Self-Assembly, Biomolecular Recognition, and Controlled Drug Release Behavior", J Polym Sci Polym Chem 2009, 47, 2009-2023.
26. Song-Ming Peng, Yi Chen, Chong Hua, Chang-Ming Dong*, "Dendron-like Polypeptide/Linear Poly(ethylene oxide) Biohybrids with Both Asymmetrical and Symmetrical Topologies Synthesized via the Combination of Click Chemistry and Ring-Opening Polymerization", Macromolecules 2009, 42,104-113.
25. Chong Hua, Song-Ming Peng, Chang-Ming Dong*, "Synthesis and Characterization of Linear-Dendron-like Poly(ε-caprolactone)-b-poly(ethylene oxide) Copolymers via the Combination of Ring-Opening Polymerization and Click Chemistry", Macromolecules 2008, 41,6686-6695.
24. Xiao-Hui Dai, Chang-Ming Dong*, D. Yan, "Supramolecular and Biomimetic Polypseudorotaxane/Glycopolymer Biohybrids: Synthesis, Glucose-Surfaced Nanoparticles, and Recognition with Lectin", J Phys Chem B 2008, 112, 3644-3652.
23.Wei Zhou, Xiao-Hui Dai, Chang-Ming Dong*, "Biodegradable and Biomimetic Polycaprolactone/Poly(lactobionamidoethylmethacrylate) Biohybrids: Synthesis, Lactose-Installed Nanoparticles and Recognition Properties", Macromol. Biosci. 2008, 8, 268-278.
22. Xiao-Hui Dai, Chang-Ming Dong*, "Synthesis, Self-Assembly and Recognition Properties of Biomimetic Star-Shaped Pol(caprolactone)-b-Glycopolymer Block Copolymers", J Polym Sci Polym Chem 2008, 46, 817-829.
21. Hao Feng, Chang-Ming Dong*, "Synthesis and characterization of phthaloyl-chitosan-g-poly(L-lactide) using an organic catalyst", Carbohydrate Polymers 2007, 70, 258–264.
20. Chong Hua, Chang-Ming Dong*, "Synthesis, characterization, effect of architecture on crystallization of biodegradable poly(e-caprolactone)-b-poly(ethylene oxide) copolymers with different arms and nanoparticles thereof", J Biomed Mater Res 2007, 82A, 689–700.
19. Xiao Hui Dai, Chang-Ming Dong*, et al. "Supramolecular Polypseudorotaxanes Composed of Star-Shaped Porphyrin-Cored Poly(E-caprolactone) and Cyclodextrin", Biomacromolecules 2006, 7, 3527-33.
18. Hao Feng, Chang-Ming Dong*, "Preparation, Characterization, and Self-Assembled Properties of Biodegradable Chitosan-Poly(L-lactide) Hybrid Amphiphiles", Biomacromolecules 2006, 7, 3069-75. (Most-Accessed Articles: October-December, 2006).
17. Hao Feng, Chang-Ming Dong*, "Preparation and Characterization of Chitosan-g-Poly(ε-caprolactone) Using an Organic Catalyst", J Polym Sci Polym Chem 2006, 44, 5353-61.
16. Jing Liang Wang, Chang-Ming Dong*, “physical properties, crystallization kinetics, and spherulitic growth of well-defined poly(caprolactone)s with different arms", Polymer 2006, 47, 3218-3228.
15.Jing Liang Wang, Chang-Ming Dong*, “Synthesis, Sequential Crystallization, and Morphological Evolution of Star-Shaped Poly(caprolactone)-b-Poly(L-lactide) Block Copolymer”, Macromol Chem Phys 2006, 207,554-62.
14.Chen Cai, Lu, Wang, Chang-Ming Dong*, " Synthesis, Characterization, Effect of Architecture on Crystallization, and Spherulitic Growth of Poly(L-lactide)- b-Poly(ethylene oxide) Copolymers with Different Branch Arms”, J Polym Sci Polym Chem 2006, 44, 2034-44.
13.Lu Wang, Chang-Ming Dong*, “Synthesis, Crystallization Kinetics, and Spherulitic Growth of Linear and Star-Shaped Poly(L-lactide)s with Different Numbers of Arms”, J Polym Sci Polym Chem 2006, 44, 2226-36.
12. Jing-Liang Wang, Lu Wang, Chang-Ming Dong*, "Synthesis, Crystallization and Morphology of Star-Shaped Poly(caprolactone)", J. Polym. Sci. Polym Chem. 2005,  43, 5449-5457.
11.Lu, Wang, Jing-Liang Wang, Chang-Ming Dong*, "Supramolecular inclusion complexes of star-shaped poly(-caprolactone) with -cyclodextrin", J. Polym. Sci. Polym Chem. 2005, 43, 4721-4730.
10.Chang-Ming Dong*, Y. Z. Guo, K.Y Qiu*, Z.W. Gu, X.-D. Feng; "In vitro degradation and controlled release behavior of d,l-PLGA50 and PCL-b-d,l-PLGA50 copolymer microspheres", J. Control. Rel. 2005, 107 (1), 53-64.
9.Chang-Ming Dong, X.Y. Wu, J. Caves, S.S. Rele, B.S. Thomas, E. L. Chaikof, "Photomediated crosslinking of C6-cinnamate derivatized type I collagen", Biomaterials 2005, 26, 4041-4049.
8. Chang-Ming Dong*, E.L. Chaikof,Self-assembled nanostructures of a biomimetic glycopolymer–polypeptide triblock copolymer,Colloid Polym Sci 2005,283,1366-1370.
7.Chang-Ming Dong*, K M. Faucher,E.L. Chaikof, "Synthesis and Properties of Biomimetic Poly(L-glutamate)-b-Poly(2-acryloyloxyethyllactoside)-b-Poly(L-glutamate)Triblock Copolymers", J Polym Sci Polym Chem 2004, 42, 5754–5765.
6.Chang-Ming Dong, X.L.Sun, K. M. Faucher, R. Apkarian, E. L Chaikof, “Synthesis and Characterization of Glycopolymer-Polypeptide Triblock Copolymers”, Biomacromolecules, 2004, 5, 224-231.
5. Chang-Ming Dong, Kun-Yuan Qiu, Zhong-Wei Gu, Xin-De Feng; “Synthesis of Star-Shaped Poly(D,L-lactic acid-alt-glycolic acid)-b-Poly(L-Lactic Acid) with Multifunctional Initiator and SnOct2 Catalyst”, J Polym Sci Polym Chem, 2002, 40, 409-415.
4. Chang-Ming Dong, Kun-Yuan Qiu, Zhong-Wei Gu, Xin-De Feng; “Synthesis of Star-Shaped Poly(e-caprolactone)-b-(D,L-lactic acid-alt-glycolic acid) with Multifunctional Initiator and SnOct2 Catalyst”, Macromolecules, 2001, 34, 4691-4696.
3. Chang-Ming Dong, Kun-Yuan Qiu, Zhong-Wei Gu, Xin-De Feng; “Living Polymerization of D,L-3-Methylglycolide Initiated with Bimetallic (Al/Zn) m-oxo Alkoxide and Copolymers Thereof”, J Polym Sci Polym Chem, 2001, 39(3), 357-367.
2. Chang-Ming Dong, Kun-Yuan Qiu, Zhong-Wei Gu, Xin-De Feng; “Synthesis of Star-Shaped Poly(D,L-lactic acid-alt-glycolic acid) with Multifunctional Initiator and SnOct2 Catalyst”, Polymer, 2001, 42, 6891-6896.
1. Chang-Ming Dong, Kun-Yuan Qiu, Zhong-Wei Gu, Xin-De Feng; “Synthesis of Poly(D,L-lactic acid-alt-glycolic acid) from D,L-3-Methylglycolide”, J Polym Sci Polym Chem, 2000, 38 (23), 4179-4184.


专著(章节)
1. Xing-Jie Wu and Chang-Ming Dong, Chapter 4: Near-infrared-responsive gold nanoparticle-based photothermal agents: from synthesis to anticancer applications; Book "Photonanotechnology for Therapeutics and Imaging",2020, Page 83-104, Editor (Seok Ki, Choi), https://doi.org/10.1016/B978-0-12-817840-9.00004-7, Elsevier.
2. 董常明,生物降解高分子材料的新进展,2006年,P665-670,《高分子科学前沿与进展》董建华主编,科学出版社

发明专利:
1. 一种由全氟乙烯基醚卤化物一步制备全氟膦酸酯乙烯基醚单体的方法
山东东岳未来氢能材料股份有限公司; 上海交通大学
董常明; 史翔; 张永明; 宋莹莹; 王丽; 李长坤; 宋昌平; 葛玮; 魏刚; 赵淑会; 李莹莹; 但雨欣
公开日期: 2024-10-29 申请日期: 2023-06-21 公开号: CN118852239A

2. 一种氟化糖聚肽纳米疫苗及其制备方法和应用
上海交通大学
何朦; 董常明
公开日期: 2024-06-07 申请日期: 2024-03-07 公开号: CN118146502A

3. 多功能一体化聚肽治疗性纳米疫苗及其制备方法和应用
上海交通大学
董常明; 何朦
公开日期: 2023-08-04 申请日期: 2023-05-06 公开号: CN116531499A

4. 糖基修饰的共负载蛋白和免疫激动剂的糖聚肽纳米囊泡及其应用
上海交通大学
宋莹莹; 董常明
公开日期: 2022-11-01 申请日期: 2022-08-02 公开号: CN115252556A

5. 可释放NO气体的聚谷氨酸基水凝胶及其制备方法和应用
上海交通大学
滕林; 董常明
公开日期: 2022-10-25 申请日期: 2022-08-05 公开号: CN115232305A

6. 糖基化聚赖氨酸-聚乙二醇水凝胶及其制备方法和应用
上海交通大学
董常明; 滕林
公开日期: 2022-09-09 申请日期: 2022-07-15 公开号: CN115025281A

7. 超小粒径的两性离子聚肽/没食子酸/铁配位纳米粒子及其制备方法与应用
SHANGHAI FENGXIAN CENTRAL HOSPITAL; SHANGHAI JIAO TONG UNIVERSITY
DONG CHANGMING; DU CHANG; ZHANG RONG
公开日期: 2022-05-17 申请日期: 2021-05-10 公开号: CN113289014B

8. 一种超低浓度单组分聚肽水凝胶及其制备方法与应用
上海交通大学
柏谦; 董常明
公开日期: 2021-11-30 申请日期: 2021-08-06 公开号: CN113717380A

9. Bionic glycopolypeptide hydrogel as well as preparation method and application thereof
SHANGHAI JIAO TONG UNIVERSITY
TENG LIN; DONG CHANGMING
公开日期: 2021-08-06 申请日期: 2021-05-11 公开号: CN113214476A

10. 苯丁酸氮芥-聚多巴胺前药纳米粒子的抗肿瘤应用
上海交通大学
杜畅; 董常明; 张蓉
公开日期: 2018-12-18 申请日期: 2018-08-22 公开号: CN109010827A

11. 双药型顺铂/阿霉素-聚多巴胺前药纳米粒子的制备和抗肿瘤应用
上海交通大学
杜畅; 董常明
公开日期: 2018-11-23 申请日期: 2018-07-27 公开号: CN108853512A

12. 苯丁酸氮芥-多巴胺缀合物的合成及前药纳米粒子的制备
上海交通大学
杜畅; 董常明; 张蓉
公开日期: 2018-08-10 申请日期: 2018-01-22 公开号: CN108383765A

13. ε-(1-邻硝基苯基)乙氧羰-L-赖氨酸-N-羧酸酐的合成及其应用
上海交通大学
李攀; 董常明
公开日期: 2018-07-24 申请日期: 2018-01-22 公开号: CN108314659A

14. 乳糖‑多巴胺分子的合成及含糖聚多巴胺纳米粒子的制备
上海交通大学
高燕琴; 董常明
公开日期: 2017-07-28 申请日期: 2015-02-09 公开号: CN104610388B

15. pH响应性阿霉素‑多巴胺缀合物及其前药纳米粒子的制备
上海交通大学
杜畅; 董常明
公开日期: 2017-06-13 申请日期: 2016-12-05 公开号: CN106831905A

16. 聚乙二醇-接枝-聚半胱氨酸/金复合纳米粒子、制备及应用
上海交通大学
董常明; 吴兴杰
公开日期: 2016-03-16 申请日期: 2015-12-10 公开号: CN105396134A

17. 聚乙二醇-接枝-聚半胱氨酸/金复合纳米粒子、制备及应用
上海交通大学
吴兴杰; 董常明
公开日期: 2016-03-16 申请日期: 2015-12-10 公开号: CN105396134A

18. 乳糖-多巴胺分子的合成及含糖聚多巴胺纳米粒子的制备
上海交通大学
高燕琴; 董常明
公开日期: 2015-05-13 申请日期: 2015-02-09 公开号: CN104610388A

19. 一种光敏性α-氨基酸-N-羧酸酐及其合成方法
上海交通大学
刘岗; 董常明
公开日期: 2012-09-12 申请日期: 2012-04-25 公开号: CN102659709A

20. 光敏及靶向功能化聚己内酯及其制备方法
上海交通大学
董常明; 杨阳; 刘威
公开日期: 2011-09-28 申请日期: 2009-11-16 公开号: CN101696267B
科研项目:
主持和参与完成国家自然科学基金面上(青年)项目(9项)、上海市重大基础研究项目子课题、上海市教委科研创新计划重大项目子课题、上海市自然科学基金、交大医工交叉重点项目(交大-六院)、交大-六院南院交叉重点项目、教育部新世纪人才基金、教育部留学回国人员基金、交大晨星学者基金等多项课题研究。

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