高雄市生物科技發展協會|http://www.khba.org.tw
會員登入
記住帳號 自動登入
會員名錄
各式辦法
下載專區
留言板
您目前的位置:首頁 / 活動與新訊
Scientists discover the Achilles heel of chemotherapy-resistant ovarian cancer
活動日期:2024.03.06
2024.03.06  

Scientists discover the Achilles heel of chemotherapy-resistant ovarian cancer

https://reurl.cc/VNZRrN

Feb 21 2024Northwestern University

Women diagnosed with ovarian cancer may initially respond well to chemotherapy, but the majority of them will develop resistance to treatment and die from the disease. 

Now Northwestern Medicine scientists have discovered the Achilles heel of chemotherapy-resistant ovarian cancer -; its hunger for cholesterol -; and how to sneakily use that to destroy it.

In a new study, scientists first showed that chemotherapy-resistant ovarian cancer cells and tumors are rich in cholesterol due to an increased uptake of it. They then deployed a synthetic nanoparticle that appeared to the cancer cells as a natural one rich in cholesterol. But when the cancer cells bound the fake particle, the mimic actually blocked cholesterol uptake. Additionally, the scientists showed that reducing cholesterol tricked the cancer cells down a cell death pathway. Treatment with the nanoparticle reduced ovarian tumor growth by more than 50% in human cells and animal models. 

This is a new weapon to destroy resistant ovarian cancer."

C. Shad Thaxton, co-corresponding author, associate professor of urology at Northwestern University Feinberg School of Medicine

"More than 18,000 women die of ovarian cancer every year," said co-corresponding author Dr. Daniela Matei, a professor of medicine at Northwestern University Feinberg School of Medicine and a Northwestern Medicine oncologist. "Finding new ways to attack resistant cancer cells is very important."

Matei and Thaxton show the way the cells die after treatment with these nanoparticles is a form of cell death executed through oxidation of lipids in the cell membrane. 

"These cancer cells are resistant to the typical form of death -; apoptosis -; which is why chemo can't kill them," Matei said.

The ovarian cancer findings build on Thaxton and Dr. Leo Gordon's earlier pre-clinical research using nanoparticles to treat lymphoma. 

Cell Density eBook - What are the Many Applications of Cell Density Sensors? eBook This eBook discusses the many applications of cell density sensors and how innovative methods can improve the monitoring of cell density.Download the latest edition

This new study, published recently in Advanced Science, showed the approach also works in ovarian cancer cells. 

Matei and Thaxton tested the nanoparticles in ovarian cancer cells and in animals with xenografts of chemotherapy-resistant ovarian cancer. The next step in the research is to test a combination of the particles with traditional chemotherapy and study the effects of the nanoparticles on immune cells that fight against cancer. 

Matei also is the Diana Princess of Wales Professor of Cancer Research. She and Thaxton are both members of the Robert H. Lurie Comprehensive Cancer Center of Northwestern University.

Other Northwestern authors are Yinu Wang; Andrea E. Calvert; Horacio Cardenas; Jonathon S. Rink; Dominik Nahotko; Wenan Qiang; C. Estelle Ndukwe; Fukai Chen; Russell Keathley; Yaqi Zhang; and Ji-Xin Cheng.

The title of the article is "Nanoparticle Targeting in Chemo-Resistant Ovarian Cancer Reveals Dual Axis of Therapeutic Vulnerability Involving Cholesterol Uptake and Cell Redox Balance." 

The research was funded by a grant from the U.S. Department of Defense Office of the Assistant Secretary of Defense for Health Affairs, through the Ovarian Cancer Research Program.

Source:

Northwestern University

Journal reference:

Wang, Y., et al. (2024). Nanoparticle Targeting in Chemo‐Resistant Ovarian Cancer Reveals Dual Axis of Therapeutic Vulnerability Involving Cholesterol Uptake and Cell Redox Balance. Advanced Sciencedoi.org/10.1002/advs.202305212.

 

共有314筆資料 頁數: 第4頁(共16頁)
編號 標題 新增日期
1 Journey to the Center of the Ear 2023.09.13
2 A Bacterial Culprit for Rheumatoid Arthritis 2023.09.05
3 Pet Hamsters Spread SARS-CoV-2 in Hong Kong: Preprint 2022.02.08
4 What We Learned About COVID-19 in 2021 2022.01.11
5 獨家》國衛院新研究:阿茲海默症乙型類澱粉蛋白會加速新冠病毒.. 2021.11.29
6 《Science》憂鬱症關鍵腦部受體GPR158結構終破解! 可望成治療.. 2021.11.25
7 國衛院領先全球》全身性紅斑狼瘡 致病源頭找到了 2021.11.09
8 Spiny Mice Appear to Regenerate Damaged Kidneys 2021.11.05
9 健康網》喜好口味一直變? 研究:味覺隨年紀增加而下降 2021.10.29
10 Delta後代傳播力更強! 英示警:亞系變異株「AY.4.2」崛起 2021.10.27
11 Red Blood Cells Activate Innate Immune System 2021.10.22
12 Mice that Survive Infection Pass on Stronger Immunit 2021.10.20
13 How Commensal Gut Bacteria Keep Pathogens in Check 2021.10.15
14 Repurposed Drug Reverses Signs of Alzheimer’s in Mice, Hu.. 2021.10.13
15 獨家》糖尿病可治癒!中研院團隊新發現有機會取代胰島素 2021.09.24
16 SARS-CoV-2’s Wide-Ranging Effects on the Body 2021.09.22
17 A Surge in Pandemic Research Shines a Spotlight on Preprints 2021.09.17
18 去年國人10大死因出爐 癌症、心臟病、肺炎仍居前三名 2021.06.18
19 中藥治武肺 清冠一號獲核准 2021.05.19
20 Brain’s Lymphatic System Tied to Alzheimer’s Symptoms in.. 2021.05.10
上一頁  1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16  下一頁
版權所有©2006 高雄市生物科技發展協會 所有文字、資料禁止轉用
地址:高雄市中正一路120號14樓之3 TEL:(07)591-9569 / FAX:(07)591-9018 / e-mail: khba.tw@gmail.com
累積進站人數:3123220