Single-Cell Meta-Analysis of Neutrophil Activation in Kawasaki Disease and Multisystem Inflammatory Syndrome in Children Reveals Potential Shared Immunological Drivers

柯泰名副教授研究團隊發表研究成果於Circulation

連結網址:https://www.ahajournals.org/doi/abs/10.1161/CIRCULATIONAHA.123.064734

Abstract

BACKGROUND:

Kawasaki disease (KD) and multisystem inflammatory syndrome in children (MIS-C) share similar clinical manifestations, including cardiovascular complications, suggesting similar underlying immunopathogenic processes. Aberrant neutrophil activation may play a crucial role in the shared pathologies of KD and MIS-C; however, the associated pathogenic mechanisms and molecular drivers remain unknown.

 

METHODS:

We performed a single-cell meta-analysis of neutrophil activation with 103 pediatric single-cell transcriptomic peripheral blood mononuclear cell data across 9 cohorts, including healthy controls, KD, MIS-C, compared with dengue virus infection, juvenile idiopathic arthritis, and pediatric celiac disease. We used a series of computational analyses to investigate the shared neutrophil transcriptional programs of KD and MIS-C that are linked to systemic damage and cardiac pathologies, and suggested Food and Drug Administration–approved drugs to consider as KD and MIS-C treatment.

 

RESULTS:

We meta-analyzed 521 950 high-quality cells. We found that blood signatures associated with risks of cardiovascular events are enriched in neutrophils of KD and MIS-C. We revealed the expansion of CD177+ neutrophils harboring hyperactivated effector functions in both KD and MIS-C, but not in healthy controls or in other viral-, inflammatory-, or immune-related pediatric diseases. KD and MIS-C CD177+ neutrophils had highly similar transcriptomes, marked by conserved signatures and pathways related to molecular damage. We found the induction of a shared neutrophil expression program, potentially regulated by SPI1 (Spi-1 proto-oncogene), which confers enhanced effector functions, especially neutrophil degranulation. CD177 and shared neutrophil expression program expressions were associated with acute stages and attenuated during KD intravenous immunoglobulin treatment and MIS-C recovery. Network analysis identified hub genes that correlated with the high activation of CD177+ neutrophils. Disease-gene association analysis revealed that the KD and MIS-C CD177+ neutrophils’ shared expression program was associated with the development of coronary and myocardial disorders. Last, we identified and validated TSPO (translocator protein) and S100A12 (S100 calcium-binding protein A12) as main molecular targets, for which the Food and Drug Administration–approved drugs methotrexate, zaleplon, metronidazole, lorazepam, clonazepam, temazepam, and zolpidem, among others, are primary candidates for drug repurposing.

 

CONCLUSIONS:

Our findings indicate that CD177+ neutrophils may exert systemic pathological damage contributing to the shared morbidities in KD and MIS-C. We uncovered potential regulatory drivers of CD177+ neutrophil hyperactivation and pathogenicity that may be targeted as a single therapeutic strategy for either KD or MIS-C.

113 學年度  生物科技學系醫學士組 碩、博士班甄試入學招生 初試合格名單

113 學年度  生物科技學系醫學士組 碩、博士班甄試入學招生 初試合格名單 共 4 名

考生編號(依考生編號排序)

9010001    9010002    9010003    9010004

請依規定於112年11月4日(六)至博愛校區賢齊館327室參加複試,未依規定參加複試者視同放棄。

※考生可至網路報名及查詢系統https://reg.nctu.edu.tw  查詢『考生編號』。

備註:

1.每位考生簡報及口試時間共20分鐘,簡報10分鐘(包括過去專題實驗或研究報告),回答老師問題10分鐘。
2. 簡報使用單槍投影機,簡報內容請以PowerPoint 格式呈現,簡報檔案必須於112年11月2日前上傳至https://forms.gle/QvAtfL1grGgxFJgz9/,或至生物科技學院網站https://ceb.nycu.edu.tw/,上方「招生資訊」下拉式選單內選取【口試簡報上傳】,檔名為考生編號+姓名。
3.請您於預定口試時間30分鐘前報到,若因其他原因不便於當日參加口試,請儘早告知。
  113學年度生物科技學系醫學士組博士班甄試入學考試口試時間表
組別901生物科技學系醫學士組
日期112年11月4日(六)
地點賢齊館327室
時間考生編號
09:009010001
09:209010002
09:409010003
10:009010004

113 學年度 生物科技學院聯招     碩、博士班甄試入學招生初試合格名單

113 學年度 生物科技學院聯招     碩、博士班甄試入學招生初試合格名單 共 8 名

考生編號(依考生編號排序)

8900001    8900002    8900003    8900004    8900005   8900006 8900007    8900008

請依規定於112年11月4日至博愛校區賢齊館327室參加複試,未依規定參加複試者視同放棄。

※考生可至網路報名及查詢系統https://reg.nctu.edu.tw  查詢『考生編號』。

備註:

1.每位考生簡報及口試時間共20分鐘,簡報10分鐘(包括過去專題實驗或研究報告),回答老師問題10分鐘。
2. 簡報使用單槍投影機,簡報內容請以PowerPoint 格式呈現,簡報檔案必須於112年11月2日前上傳至https://forms.gle/QvAtfL1grGgxFJgz9/,或至生物科技學院網站https://ceb.nycu.edu.tw/,上方「招生資訊」下拉式選單內選取【口試簡報上傳】,檔名為考生編號+姓名。
3.請您於預定口試時間30分鐘前報到,若因其他原因不便於當日參加口試,請儘早告知。
  113學年度生科院博士班甄試入學考試口試時間表
組別890生科院聯招
日期112年11月4日(六)
地點賢齊館327室
時間考生編號
10:358900001
10:558900002
11:158900003
11:358900004
11:558900005
12:158900006
12:358900007
12:558900008

113 學年度生物科技學院產業博士班 碩、博士班甄試入學甄試入學招生初試合格名單

113 學年度生物科技學院產業博士班 碩、博士班甄試入學甄試入學招生初試合格名單

共 1 名

考生編號(依考生編號排序)

5310001

請依規定於112年11月4日上午至博愛校區賢齊館327室參加複試,未依規定參加複試者視同放棄。

※考生可至網路報名及查詢系統https://reg.nctu.edu.tw  查詢『考生編號』。

備註:

1.每位考生簡報及口試時間共15分鐘,簡報8分鐘(包括過去專題實驗或研究報告),回答老師問題7分鐘。
2. 簡報使用單槍投影機,簡報內容請以PowerPoint 格式呈現,簡報檔案必須於112年11月2日前上傳至https://forms.gle/QvAtfL1grGgxFJgz9/,或至生物科技學院網站https://ceb.nycu.edu.tw/,上方「招生資訊」下拉式選單內選取【口試簡報上傳】,檔名為考生編號+姓名。
3.請您於預定口試時間30分鐘前報到,若因其他原因不便於當日參加口試,請儘早告知。

113學年度生科院博士班甄試入學考試口試時間表
組別531工程生物科學學院產業博士班
日期113年11月4日(六)
地點賢齊館327室
時間考生編號
10:205310001

Dynamics of Nanocomposite Hydrogel Alignment during 3D Printing to Develop Tissue Engineering Technology

李明家副教授研究團隊發表研究成果於Biomacromolecules

連結網址:https://pubs.acs.org/doi/10.1021/acs.biomac.3c00522

Abstract

Taking inspiration from spider silk protein spinning, we developed a method to produce tough filaments using extrusion-based 3D bioprinting and salting-out of the protein. To enhance both stiffness and ductility, we have designed a blend of partially crystalline, thermally sensitive natural polymer gelatin and viscoelastic G-polymer networks, mimicking the components of spider silk. Additionally, we have incorporated inorganic nanoparticles as a rheological modifier to fine-tune the 3D printing properties. This self-healing nanocomposite hydrogel exhibits exceptional mechanical properties, biocompatibility, shear thinning behavior, and a well-controlled gelation mechanism for 3D printing.

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