Microgravity, Stem Cells, and Cancer: A New Hope for Cancer Treatment

Humans are integrated with the environment where they live. Gravitational force plays an important role in shaping the universe, lives, and even cellular biological processes. Research in the last 40 years has shown how exposure to microgravity changes biological processes. Microgravity has been sho...

Full description

Bibliographic Details
Main Authors: Uğur Topal, Cihan Zamur
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Stem Cells International
Online Access:http://dx.doi.org/10.1155/2021/5566872
id doaj-1ca62fb4f21d44949cfb9c60af703d0d
record_format Article
spelling doaj-1ca62fb4f21d44949cfb9c60af703d0d2021-05-10T00:27:16ZengHindawi LimitedStem Cells International1687-96782021-01-01202110.1155/2021/5566872Microgravity, Stem Cells, and Cancer: A New Hope for Cancer TreatmentUğur Topal0Cihan Zamur1Department of Molecular Oncology Health Sciences InstituteDepartment of PediatricsHumans are integrated with the environment where they live. Gravitational force plays an important role in shaping the universe, lives, and even cellular biological processes. Research in the last 40 years has shown how exposure to microgravity changes biological processes. Microgravity has been shown to have significant effects on cellular proliferation, invasion, apoptosis, migration, and gene expression, specifically in tumor cells, and these effects may also exist in stem and cancer stem cells. It has also been shown that microgravity changes the effects of chemotherapeutic drugs. Although studies have been carried out in a simulated microgravity environment in cell culture lines, there are few animal experiments or true microgravity studies. Cancer remains one of the most significant problems worldwide. Despite advances in medical science, no definitive strategies have been found for the prevention of cancer formation or to inform treatment. Thus, the microgravity environment is a potential new therapeutic strategy for future cancer treatment. This review will focus on current knowledge on the impact of the microgravity environment on cancer cells, stem cells, and the biological behavior of cancer stem cells.http://dx.doi.org/10.1155/2021/5566872
collection DOAJ
language English
format Article
sources DOAJ
author Uğur Topal
Cihan Zamur
spellingShingle Uğur Topal
Cihan Zamur
Microgravity, Stem Cells, and Cancer: A New Hope for Cancer Treatment
Stem Cells International
author_facet Uğur Topal
Cihan Zamur
author_sort Uğur Topal
title Microgravity, Stem Cells, and Cancer: A New Hope for Cancer Treatment
title_short Microgravity, Stem Cells, and Cancer: A New Hope for Cancer Treatment
title_full Microgravity, Stem Cells, and Cancer: A New Hope for Cancer Treatment
title_fullStr Microgravity, Stem Cells, and Cancer: A New Hope for Cancer Treatment
title_full_unstemmed Microgravity, Stem Cells, and Cancer: A New Hope for Cancer Treatment
title_sort microgravity, stem cells, and cancer: a new hope for cancer treatment
publisher Hindawi Limited
series Stem Cells International
issn 1687-9678
publishDate 2021-01-01
description Humans are integrated with the environment where they live. Gravitational force plays an important role in shaping the universe, lives, and even cellular biological processes. Research in the last 40 years has shown how exposure to microgravity changes biological processes. Microgravity has been shown to have significant effects on cellular proliferation, invasion, apoptosis, migration, and gene expression, specifically in tumor cells, and these effects may also exist in stem and cancer stem cells. It has also been shown that microgravity changes the effects of chemotherapeutic drugs. Although studies have been carried out in a simulated microgravity environment in cell culture lines, there are few animal experiments or true microgravity studies. Cancer remains one of the most significant problems worldwide. Despite advances in medical science, no definitive strategies have been found for the prevention of cancer formation or to inform treatment. Thus, the microgravity environment is a potential new therapeutic strategy for future cancer treatment. This review will focus on current knowledge on the impact of the microgravity environment on cancer cells, stem cells, and the biological behavior of cancer stem cells.
url http://dx.doi.org/10.1155/2021/5566872
work_keys_str_mv AT ugurtopal microgravitystemcellsandcanceranewhopeforcancertreatment
AT cihanzamur microgravitystemcellsandcanceranewhopeforcancertreatment
_version_ 1721453686127853568