办公室地址
:苏州市
仁爱路
199
号,
苏州大学独墅湖校区北区
703
楼
B614
室
,邮编
215123
实验室地址
:
苏州市仁爱路
199
号,苏州大学独墅湖校区北区
703
楼
3618
室 (戴克胜教授团队)
联系邮箱
:[email protected]
教育经历
2009.09
–
2013.06
;湖南大学生物学院,
学士
2013.09
–
2016.06
;湖南大学生物学院,
硕士
(导师:王柯敏教授、郭秋平教授)
2016.10
–
2021.06
;荷兰马斯特里赫特大学,
博士
(导师:Tilman Hackeng、
Mark Roest、
Bas de Laat)
工作经历
2021.10
–
2022.10
;美国北卡罗来纳大学教堂山分校,
博士后
(导师:Nigel Mackman)
2023.01
–
今;
苏州大学唐仲英血液学研究中心,
副教授,硕士研究生导师
研究方向: 血栓与止血
研究主题.png
(1)细胞对凝血系统的调控机制,及其在重大疾病中的作用
探索血液循环中的细胞(血小板、红细胞、白细胞、胞外囊泡、癌细胞等)对凝血级联系统以及纤溶系统的新调控机制,以及此类调控机制在重大疾病如心血管疾病和癌症中的作用。
(2)
新型凝血功能检测法的开发和应用
凝血酶生成
检测法
(Thrombin generation assay, TGA)
是目前最广泛应用的
新型凝血功能检测法
,它能提供比传统凝血检测法(PT、APTT)更高的灵敏度。
本人已成功开发新型
全血凝血酶生成检测法
(全血TGA)
,可对人和鼠
全血样本
的凝血潜能进行高灵敏度的直接量化检测。
全血TGA
的
优点
包括:
(1)
直接检测全血样本,省去了对样本进行预处理的时间,有潜力开发成为床旁检测法(
POCT)
;
(2)
全血
TGA
相比血浆
TGA
的灵敏度更高:能更灵敏的检测出小鼠凝血因子IX,
XI, PKa
和
C1-INH
的敲除对凝血系统的影响。
全血TGA
的
潜在应用领域
: (1)
作为研究红细胞等血细胞对凝血过程的调控机制的新工具, 为临床血栓/出血疾病提供机制解释;(2)高灵敏度地筛选新型抗栓/止血药物
(有效性和特异性)
; (3)优化/指导临床
抗栓/止血药物的剂量; (4)作为指示临床血栓/出血风险的POCT。
主持科研项目
/
2023.01 - 2027.12
;苏州大学优秀青年学者(副教授)科研启动经费,主持;
/ 2023.07 - 2025.06;
江苏省高等学校基础科学(自然科学)研究面上项目;
主持;
/
2024.01 - 2027.12; 国家自然科学基金 面上项目;#
82370137
,主持;
获奖情况
/
2015年,
研究生国家奖学金
;
/
2021年, ISTH 2021 Congress, Early career travel award;
/ 2024年, ISTH
2024 Congress, Reach-the-world travel award;
学术兼职 &社会服务
/ 国际血栓与止血学会(ISTH), 会员 2023-2025
/
中国病理生理学会, 会员 2023-2025;
/
中国生理学会, 会员 2023-2025;
/ Frontiers in Medicine, Review Editor;
/ 多个同行评议期刊的审稿人,包括Thromb Res, RPTH, Int J Mol Sci 等;
论文发表
(共同)第一作者或通讯作者 (
#
共同第一作者,
*
通讯作者)
1)
Jun Wan
, Sophia Dhrolia, Rohan R Kasthuri, Yuriy Prokopenko, Anton Ilich, Prakash Saha, Mark Roest, Alisa S. Wolberg, Nigel S Key, Rafal Pawlinski, Pavan K Bendapudi, Nigel Mackman and Steven P Grover. Plasma kallikrein supports FXII-independent thrombin generation in mouse whole blood.
Blood Advances
.
2024
;
(IF2023=7.4)
2)
Jun Wan
, Pansakorn Tanratana, Mark Roest, Andras Gruber, Rafal Pawlinski, Alisa S Wolberg, Nigel Mackman and Steven P Grover. A novel mouse whole blood thrombin generation assay sensitive to FXI- and FIX-mediated amplification of coagulation.
Blood Advances
.
2023
; 7(9): 1915-25.
May 9
(IF2023=7.4)
3)
Jun Wan
, Nadira Vadaq, Joke Konings, Martin Jaeger, Vinod Kumar, Bas de Laat, Leo Joosten, Mihai G Netea, Andre J van der Ven, Philip G de Groot, Quirijn de Mast and Mark Roest. Kallikrein augments the anticoagulant function of the protein C system in thrombin generation.
Journal of Thrombosis and Haemostasis
.
2022
; 20(1): 48-57.
Jan
(IF2022=10.4)
4)
Jun Wan *
, Joke Konings, Bas de Laat, Tilman M Hackeng and Mark Roest. Added Value of Blood Cells in Thrombin Generation Testing.
Thrombosis and Haemostasis
.
2021
; 121(12): 1574-87.
Dec
(IF2021=6.681)
5)
Lie Li#,
Jun Wan# (co-first)
, Xiaohong Wen, Qiuping Guo, Huishan Jiang, Jie Wang, Yazhou Ren and Kemin Wang. Identification of a New DNA Aptamer by Tissue-SELEX for Cancer Recognition and Imaging.
Analytical Chemistry
.
2021
; 93(19): 7369-77.
May 18
(IF2021=
8.008)
6)
Jun Wan
, Lara N Roberts, Wasiliki Hendrix, Joke Konings, Tsai-Wing Ow, Liane Rabinowich, Omar Barbouti, Bas de Laat, Roopen Arya, Vishal C Patel, Mark Roest, Ton Lisman and William Bernal. Whole blood thrombin generation profiles of patients with cirrhosis explored with a near patient assay.
Journal of Thrombosis and Haemostasis
.
2020
; 18(4): 834-43.
2020-04-01
(IF2020=
5.824)
7)
Jun Wan
, Joke Konings, Qiuting Yan, Hilde Kelchtermans, Romy Kremers, Bas de Laat and Mark Roest. A novel assay for studying the involvement of blood cells in whole blood thrombin generation.
Journal of Thrombosis and Haemostasis
.
2020
; 18(6): 1291-301.
2020-06-28
(IF2020=
5.824)
8)
Jun Wan
, Ling Ye, Xiaohai Yang, Qiuping Guo, Kemin Wang, Zhixiang Huang, Yuyu Tan, Baoyin Yuan and Qin Xie. Cell-SELEX based selection and optimization of DNA aptamers for specific recognition of human cholangiocarcinoma QBC-939 cells.
Analyst
.
2015
; 140(17): 5992-7.
Sep 7
(IF2015=
4.033)
其他参与发表论文
1)
F Meng, S Chen, C Liu, MS Khan, Y Yan,
J Wan
, Y Xia, C Sun, et al. The role of PKC in X-ray-induced megakaryocyte apoptosis and thrombocytopenia.
Blood Cells Mol Dis
.
2024
; 104: 102798.
2)
S Sun, E Campello, J Zou, J Konings, D Huskens,
J Wan
, DI Fernández, C Reutelingsperger
, et al.
Crucial roles of red blood cells and platelets in whole blood thrombin generation.
Blood Adv
.
2023
; 7: 6717-31.
3)
SP Grover, T Kawano,
J Wan
, P Tanratana, Z Polai, YJ Shim, O Snir, S Braekkan
, et al.
C1 inhibitor deficiency enhances contact pathway-mediated activation of coagulation and venous thrombosis.
Blood
.
2023
;
141
: 2390-401.
4)
GS Temba, N Vadaq,
J Wan
, V Kullaya, D Huskens, T Pecht, M Jaeger, CK Boahen
, et al.
Differences in thrombin and plasmin generation potential between East African and Western European adults: The role of genetic and non-genetic factors.
J Thromb Haemost
.
2022
;
20
: 1089-105.
5)
L Li, M Roest, Y Sang, JA Remijn, R Fijnheer, K Smit, D Huskens,
J Wan
, et al.
Patients With Multiple Myeloma Have a Disbalanced Whole Blood Thrombin Generation Profile.
Front Cardiovasc Med
.
2022
;
9
: 919495.
6)
S Huang, W van der Heijden, IJ Reuling,
J Wan
, Q Yan, RMW de Laat-Kremers, AJ Van der Ven, PG de Groot
, et al.
Functional changes in hemostasis during asexual and sexual parasitemia in a controlled human malaria infection.
PLoS One
.
2022
;
17
: e0271527.
7)
WA van der Heijden,
J Wan
, L Van de Wijer, M Jaeger, MG Netea, AJ van der Ven, PG de Groot, M Roest
, et al.
Plasmatic Coagulation Capacity Correlates With Inflammation and Abacavir Use During Chronic HIV Infection.
J Acquir Immune Defic Syndr
.
2021
;
87
: 711-9.
8)
ZX Huang, Q Xie, QP Guo, KM Wang, XX Meng, BY Yuan,
J Wan
and YY Chen. DNA aptamer selected for specific recognition of prostate cancer cells and clinical tissues.
Chin Chem Lett
.
2017
;
28
: 1252-7.
9)
B Yuan, Y Zhou, Q Guo, K Wang, X Yang, X Meng,
J Wan
, Y Tan
, et al.
A signal-on split aptasensor for highly sensitive and specific detection of tumor cells based on FRET.
Chem Commun (Camb)
.
2016
;
52
: 1590-3.
10)
Q Xie, YY Tan, QP Guo, KM Wang, BY Yuan,
J Wan
and XY Zhao. A fluorescent aptasensor for sensitive detection of human hepatocellular carcinoma SMMC-7721 cells based on graphene oxide.
Analytical Methods
.
2014
;
6
: 6809-14.
11)
QP Guo, XY Zhao, Q Xie, KM Wang,
J Wan
, BY Yuan and YY Tan. Label-free Fluorescence Signal Amplifying Detection of DNA Based on Hairpin Probe and Exo III.
Chemical Journal of Chinese Universities-Chinese
.
2014
;
35
: 1646-51.