Sunday, May 06, 2018

Cancer cells thrive in stiff tissue

Stiffer breast tissue creates an environment more prone to cancer by enabling the disease to interfere with the surrounding healthy cells, according to a recent study.

Scientists studying tumor growth and metastasis fabricated a human tissue model to examine how cancer cells interact with connective tissue in the breast. The model allowed the team to control the stiffness of the tissue, mimicking both healthy and cancerous breast tissue structures. They found manipulation of fat cells to be stiffness-dependent.

"One of the interesting things we're looking at is how cancer interacts with surrounding cells and how it manipulates those cells to its own benefit," said an assistant professor. "The goal of these tissue engineered cancer models is to mimic the physiological environment of the tumor, so we can use them as a platform to study breast cancer in the human tissue microenvironment."

Fat cells, collagen fibers and epithelial cells make up the micro-environment of breast tissue. Cancer typically appears around the epithelial cells. Previous studies looking at differences between healthy and cancerous tissue found that the cancerous tissue differed in stiffness. According to the study, stiff tissue can present a micro-environment susceptible to tumor growth by enabling the cancer cells to modulate its surrounding connective tissue cells.

"If you have a stiffer environment, the cancer cell can do more manipulation of its immediate micro-environment," the Prof. said. "The model allowed us to study varying levels of stiffness in the tissue. In tissue with normal stiffness, the cancer cells did not interfere with the state of the surrounding stromal cells. In tests where the tissue was stiffer, the cancer halted the differentiation process of the surrounding fat stem cells, favoring a more stem cell-like state creating a micro-environment that favors a tumor to grow."

Researchers have typically conducted similar studies using animal models. While these tests can help advance an understanding of the disease, the Prof. said they could also pose a challenge.

"Animals and humans are quite different," she said. "If you're looking at tissue environment, mobility and the immune system, mouse models, for example, are as different to human models as the pancreas is to the lung."

Those models can also pose a challenge to drug discovery. A fraction of the drugs proven effective in mice actually makes it through clinical trials when tested on humans, she said. The results of this study could help make the case for tissue engineered human disease models to be used as part of a parallel approach to drug screening before administering those drugs in clinical trials.


THIS IS ONLY FOR INFORMATION, ALWAYS CONSULT YOU PHYSICIAN BEFORE HAVING ANY PARTICULAR FOOD/ MEDICATION/EXERCISE/OTHER REMEDIES.                                                                                                                                                                                                        PS- THOSE INTERESTED IN RECIPES ARE FREE TO  VIEW MY BLOG-                                                                                           https://gseasyrecipes.blogspot.com/  

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Saturday, December 24, 2016

Ancient herbal Chinese medicine can help fight TB

Researchers have found that centuries-old herbal medicine, discovered by Chinese scientists to treat malaria, can aid in tuberculosis (TB) treatment and even slow drug resistance.

One-third of the world's population is infected with TB, which killed 1.8 million people in 2015, according to the Centers for Disease Control and Prevention.

Mycobacterium tuberculosis (Mtb) -- the TB-causing bacteria -- needs oxygen to thrive in the body and the immune system starves this bacterium of oxygen to control the infection.

The study found that artemisinin -- the ancient remedy -- stopped the ability Mtb to become dormant -- a stage of the disease that often makes the use of antibiotics ineffective.

"When TB bacteria are dormant, they become highly tolerant to antibiotics. Blocking dormancy makes the TB bacteria more sensitive to these drugs and could shorten treatment times," said Robert Abramovitch, Assistant Professor at Michigan State University in the US.

Artemisinin attacks a molecule called heme, which is found in the Mtb oxygen sensor.

By disrupting this sensor and essentially turning it off, the medicine stopped the disease's ability to sense how much oxygen it was getting, the researchers said.

"When the Mtb is starved of oxygen, it goes into a dormant state, which protects it from the stress of low-oxygen environments. If Mtb can't sense low oxygen, then it can't become dormant and will die," Abramovitch said

TB takes up to six months to treat and is one of the main reasons the disease is so difficult to control, the researchers said.

They also said that the finding could be key to shortening the course of therapy because it can clear out the dormant, hard-to-kill bacteria.

The paper was published in the journal Nature Chemical Biology.



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Researchers have found that centuries-old herbal medicine, discovered by Chinese scientists to treat malaria, can aid in tuberculosis (TB) treatment and even slow drug resistance.

One-third of the world's population is infected with TB, which killed 1.8 million people in 2015, according to the Centers for Disease Control and Prevention.

Mycobacterium tuberculosis (Mtb) -- the TB-causing bacteria -- needs oxygen to thrive in the body and the immune system starves this ba ..

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Friday, August 02, 2013

Cutting down sugar could reduce cancer risk in obese and diabetic people

Blocking dietary sugar and its activity in tumour cells may reduce cancer risk and progression in obese and diabetic people , a new study has found.

The study, by researchers , conducted in fruit flies, provides insight as to why metabolism-related diseases such as diabetes or obesity are associated with certain types of cancer, including pancreatic, breast, liver, and colon cancers.

A researcher has developed a cancer model in the fruit fly Drosophila that allows scientists to evaluate diseases in the context of the whole animal and multiple genetic targets, rather than just looking at the connection of one gene to one disease.

In the current study, he used fruit flies to understand the effects of diet and insulin resistance on cancer progression.

Cells use glucose for energy and to grow. When a cell becomes insulin resistant, glucose builds up in the blood instead of being absorbed by the cell, starving the cell and leading to metabolic diseases like diabetes.

Because of this dysfunctional growth, scientists have been puzzled about how tumours can thrive in an insulin-resistant environment.

"Previous research has established a strong correlation between metabolic diseases and pancreatic, breast, liver, and colon cancers, but we have not determined how tumours grow so aggressively in this environment if they do not have the energy provided by glucose," Dr. said.

"Using our fruit fly model, we discovered how tumours overcome insulin resistance in the body and turn metabolic dysfunction to their advantage," the researcher added.


ps- this is only for information, but always consult you physician before having any particular food/ medication/exercise/other remedies.

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http://gseasyrecipes.blogspot.com/

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