Novel Molecule Reduces the Aggressiveness of Pediatric Cancer – Technology Networks
By daniellenierenberg
In Brazil, scientists affiliated with the Human Genome and Stem Cell Research Center (HUG-CELL) at the University of So Paulo (USP) have identified a molecule capable of reducing the aggressiveness of embryonal central nervous system tumors. These are malignant tumors that start in fetal cells in the brain and mainly affect children up to four years old.
The results arepublishedin the journalMolecular Oncology.HUG-CELLis one of the Research, Innovation and Dissemination Centers (RIDCs) supported by So Paulo Research Foundation - FAPESP. Its principal investigator isMayana Zatz, Professor of Human and Medical Genetics at USP's Institute of Biosciences (IB).
The approach proposed by the group can be classified as a type of microRNA-based therapy. A microRNA is a small RNA molecule that does not encode protein but plays a regulatory role in the genome. In this study, researchers used a synthetic version of an inhibitor of microRNA-367 (miR-367) with anti-tumor activity.
"We demonstrated in an animal model of a central nervous system tumor that treatment with a microRNA inhibitor attenuates properties of tumor stem cells and prolongs survival," saidOswaldo Keith Okamoto, a professor at IB-USP and the principal investigator for the study.
Okamoto explained that embryonal central nervous system tumors such as medulloblastomas and atypical teratoid/rhabdoid tumors (AT/RTs) tend to contain cells with characteristics similar to those of stem cells, which boosts their tumorigenic potential and capacity to invade tissue while also making them more resistant to cell death.
These tumors are caused by genetic or epigenetic aberrations in stem cells and neural progenitors when the nervous system is being formed during embryonic development. The neural stem cells that undergo these alterations later give rise to tumor cells. They form aggressive, fast-growing tumors that may appear shortly after birth, in later childhood or in adolescence.
In a previous study, the group tested an approach that used the Zika virus to destroy tumor stem cells (read more atagencia.fapesp.br/27677).
Expression and inhibition
A more recent study was led byCarolini Kaid, a postdoctoral researcher at IB-USP with a scholarship fromFAPESP.
Previous research has already shown that OCT4A, one of the genes that encode pluripotency factors, is overexpressed in aggressive medulloblastomas and that this overexpression is associated with an unfavorable prognosis. During hermaster's research, Kaid detected the expression of miR-367, a gene that promotes stem-like traits in tumor cells, in parallel with overexpression of OCT4A (read more atagencia.fapesp.br/21959).
The researchers then tested a specific synthetic inhibitor of miR-367 containing minor chemical alterations that make it more stable in cells. A patent application has been filed for the invention.
After inducing the formation of central nervous system tumors in mice using three different strains of tumor cells, the researchers injected the miR-367 inhibitor into the brain's right lateral ventricle, a pathway to the cerebrospinal fluid that surrounds the brain and spinal cord. From there, the miR-367 inhibitor was able to access the tumor cells.
Tumor size was reduced considerably, and survival improved in all groups of mice. The results confirmed what had previously been observed in cell cultures.
In this model, the researchers noted that when the synthetic molecule interacted with miR-367 in tumor cells, it prevented this microRNA from affecting the levels of proteins it normally regulates, such as ITGAV and SUZ12.
The latter is known to be involved in silencing pluripotency-related genes in embryonic stem cells.
While the role of ITGAV in embryonal central nervous system tumors is not fully understood, ITGAV is known to participate in the renewal of both normal and tumor stem cells.
"When miR-367 is inhibited in cancer cells, it stops regulating several proteins. This molecular alteration eventually affects the properties of these cells, resulting in an attenuation of the tumor's aggressiveness. This is what makes the strategy interesting," Kaid said.
The researchers believe that in humans, the synthetic molecule alone may be capable of at least containing the development of these tumors and improving survival. Even so, they are testing combinations of the molecule with drugs currently used to treat the tumors. They want to find out whether the approaches could be combined using lower doses of chemotherapy drugs.
Before clinical trials can be performed, however, pharmacology and toxicity studies will be necessary, as will pharmacokinetic testing to show how the molecule is metabolized and how long it stays in the organism (its half-life).
When embryonal central nervous system tumors are conventionally treated with surgery, chemotherapy and/or radiotherapy, morbidity and mortality rates for these patients are high. These tumors correspond to 10% of all central nervous system cancer cases in children.
Even patients who survive longer than most may suffer from permanent treatment-related sequelae that impair their quality of life, such as problems with development, cognition, locomotion and speech.
Reference: Kaid et al. 2019.miR367 as a therapeutic target in stemlike cells from embryonal central nervous system tumors. Molecular Oncology. DOI: https://doi.org/10.1002/1878-0261.12562.
This article has been republished from the following materials. Note: material may have been edited for length and content. For further information, please contact the cited source.
Go here to read the rest:
Novel Molecule Reduces the Aggressiveness of Pediatric Cancer - Technology Networks
- Much-anticipated human trial aiming to repair spinal cord damage about to begin - ABC News - October 21st, 2024
- The Science Of Health: Are Spinal Cord Injuries Irreversible? Know Science Advances That Can Cure Them In The Future - ABP Live - October 16th, 2023
- Evaluating the Growth Prospects of the Global Nerve Repair & Regeneration Market at a CAGR of 6.5% | Emergen - EIN News - April 21st, 2023
- Regenerative Therapies Market is Set to Grow at a CAGR of 8.7% by 2033, Propelled by Advancements in - EIN News - March 17th, 2023
- Kadimastem Submits IND Application to the FDA for its Phase IIa Clinical Trial with AstroRx for the Treatment of ALS - Marketscreener.com - February 21st, 2023
- My Back Is All F*cked Up 55-Year-Old Joe Rogan Curses at Worst Jiu-Jitsu for Painful Health Condition - EssentiallySports - February 21st, 2023
- Brain and Spinal Cord Tumors: Hope Through Research - January 3rd, 2023
- 14.3 The Brain and Spinal Cord Anatomy & Physiology - January 3rd, 2023
- Stem Cell Therapy for Spinal Cord Injury - PubMed - January 3rd, 2023
- Spinal cord injury - Diagnosis and treatment - Mayo Clinic - December 25th, 2022
- Spinal Cord Injury: Hope Through Research | National Institute of ... - December 1st, 2022
- Stem cell controversy - Wikipedia - October 13th, 2022
- Stem Cells Australia | Australian research, stem cell treatments and ... - October 13th, 2022
- The eye and stem cells: the path to treating blindness - October 13th, 2022
- World's first stem cell treatment for spina bifida delivered during fetal surgery - UC Davis Health - October 13th, 2022
- Fighting One Disease or Condition per Day - Daily Kos - October 13th, 2022
- UPDATE: NurExone Signs Letter of Intent with Nanometrix for Its Exosome and Cargo Molecular Profiling AI-Driven Technology - Yahoo Finance - October 13th, 2022
- Global Cell Therapy Market Report (2022 to 2028) - Featuring Thermo Fisher Scientific, MaxCyte, Danaher and Avantor Among Others -... - October 13th, 2022
- Horizon Therapeutics plc Announces New UPLIZNA (inebilizumab-cdon) Data in Neuromyelitis Optica Spectrum Disorder (NMOSD) to be presented at ECTRIMS... - October 13th, 2022
- Physiology, Spinal Cord - StatPearls - NCBI Bookshelf - October 5th, 2022
- IMAC Holdings, Inc. Announces Completion of Third Cohort of its Phase 1 ... - October 5th, 2022
- Revolutionary Jab that Could Repair Spinal Cord Injuries Developed by Scientists - Good News Network - October 5th, 2022
- How the 'Love Hormone' Oxytocin May Help Heal Heart Muscles - Healthline - October 5th, 2022
- Unlocking the Mysteries of Brain Regeneration Groundbreaking Study Offers New Insight - SciTechDaily - October 5th, 2022
- In Conversation: How to understand chronic pain - Medical News Today - October 5th, 2022
- New drug could cure aggressive brain cancer stopping tumours in their tracks... - The US Sun - September 27th, 2022
- Rehabilitating spinal cord injury and stroke with graphene and gaming - Nanowerk - September 19th, 2022
- Induced Pluripotent Stem Cells Market Reaches at a CAGR of 8.0% in the Forecast Periods [2021-2031] - BioSpace - September 19th, 2022
- Axolotls can regenerate their brains - Big Think - September 19th, 2022
- IMAC Holdings, Inc. Announces Completion of Third Cohort of its Phase 1 Clinical Study of Umbilical Cord-Derived Mesenchymal Stem Cells for the... - September 11th, 2022
- Spinal Muscular Atrophy: Causes and importance of early diagnosis for proactive management - Firstpost - September 11th, 2022
- Increasing Road Accidents and Fall Injuries among Aged Population Primarily Driving Need for Orthopedic Navigation Systems: Fact.MR Analysis - Yahoo... - September 3rd, 2022
- Culture of human nasal olfactory stem cells and their extracellular vesicles as advanced therapy medicinal products - Newswise - August 10th, 2022
- Curious kids: what is inside teeth? - The Conversation - August 10th, 2022
- Human placental mesenchymal stem cells derived exosomes improved functional recovery via attenuating apoptosis and increasing axonal regeneration... - August 2nd, 2022
- How the Regenerative Properties of Glioblastoma Can Be Terminated - Gilmore Health News - August 2nd, 2022
- New TSXV listing looks to address the $3B spinal cord injury treatment market (NRX.V) - FXStreet - July 25th, 2022
- Human iPSC co-culture model to investigate the interaction between microglia and motor neurons | Scientific Reports - Nature.com - July 25th, 2022
- Negligence in treatment of diseases like glioblastoma can be fatal, seminar told - The News International - July 25th, 2022
- What lab-grown cerebral organoids are revealing about the brain - New Scientist - July 25th, 2022
- Innovative Therapies, Care Equity Highlight 2022 ASCO Annual Meeting - Targeted Oncology - July 16th, 2022
- Global Stem Cell Manufacturing Market Value Projected To Reach USD 21.71 Billion By 2029, Registering A CAGR Of 9.1% - Digital Journal - July 16th, 2022
- Stem Cell Therapy Market Is Expected To Reach USD 455.61 Billion By 2027 At A CAGR Of 16 percent By Forecast 2027 Says Maximize Market Research (MMR)... - June 30th, 2022
- This startup wants you to have a personal stem cell stash - Freethink - June 30th, 2022
- Parents of 12-Year-Old Boy Praying for a Miracle, Appealing UK Judge's Decision to Remove Life Support - CBN.com - June 30th, 2022
- The end of Roe v. Wade affects more than just abortion - Vox.com - June 30th, 2022
- Horizon Therapeutics plc Submits Regulatory Filing for UPLIZNA (inebilizumab) in Brazil - Business Wire - June 20th, 2022
- Effect of Electrical Stimulation on Spinal Cord Injury: In Vitro and In Vivo Analysis - Newswise - June 11th, 2022
- First-of-its-Kind Stem Cell and Gene Therapy Highlighted at Annual Stem Cell Meeting - Newswise - June 11th, 2022
- UK Judge to Decide if 12-Year-Old Will Be Removed from Life Support, Parents Beg for More Time to Heal - CBN.com - June 11th, 2022
- 'This is my life, and I'll try anything to save it': Woman with MS raising funds for treatment - The Brandon Sun - May 29th, 2022
- Racing Thoughts: Quadriplegic Man Drives Race Car With His Brain - Newsy - May 29th, 2022
- Physical therapy for vertigo: Exercises, benefits, and more - Medical News Today - May 29th, 2022
- Researchers find new function performed by almost half of brain cells - Medical News Today - May 13th, 2022
- Texas Family Fights to Access $2.1 Million Treatment for Baby - NBC 5 Dallas-Fort Worth - May 13th, 2022
- Severe COVID-19 may cause cognitive deficits equivalent to 20 years of aging - Medical News Today - May 13th, 2022
- Stem Cell Magic: 5 Promising Treatments For Major Medical Conditions - Study Finds - April 29th, 2022
- Neural Stem Cell Therapy For Spinal Cord Injury To Tap Into The Potential Of Stem Cells - Optic Flux - April 15th, 2022
- Still Blooming: Sams mission to raise money for spinal cord injury research - 7NEWS - April 15th, 2022
- Lineage and Cancer Research UK Announce Completion of Patient Enrollment in Phase 1 Clinical Study of VAC2 for the Treatment of Non-small Cell Lung... - April 15th, 2022
- Lineage Announces Pipeline Expansion to Include Auditory Neuronal Cell Therapy for Treatment of Hearing Loss - Galveston County Daily News - March 22nd, 2022
- COVID-19: Even mild to moderate infection may cause brain anomalies - Medical News Today - March 22nd, 2022
- Scots mum with MS says 50k treatment abroad is 'last hope' of halting disease - Daily Record - January 18th, 2022
- Mending the gap: U of T's Molly Shoichet joins team developing new treatments for spinal cord injuries - News@UofT - January 18th, 2022
- Spinal Cord Injury Information Page | National Institute ... - January 3rd, 2022
- Dancing molecules successfully repair severe spinal cord ... - January 3rd, 2022
- Best 2021 Medical Breakthroughs And Treatments to Beat Cancer, Alzheimer's, Diabetes & More - Good News Network - January 3rd, 2022
- Global Regenerative Medicine Market is Expected to Reach USD 57.08 Billion by 2027, Growing at a CAGR of 11.27% Over the Forecast Period. -... - December 23rd, 2021
- Scientists unravel a gene function that helps the genesis of neurons - Research Matters - December 23rd, 2021
- The 10 Most Compelling Research Stories of 2021 PharmaLive - PharmaLive - December 23rd, 2021
- 2021: The year in review | YaleNews - Yale News - December 23rd, 2021
- Polymyositis Pipeline to Progress with New and Emerging Drugs for Treatment, Analyzes DelveInsight - GlobeNewswire - December 10th, 2021
- Cell and Gene Therapy Market to reach US$ 47,095.2 Mn by end of 2028, Says Coherent Market Insights - PRNewswire - November 22nd, 2021
- From asthma to cancer to infertility, the new treatments, jabs and meds making us healthier... - The Sun - November 22nd, 2021
- Improving motor neuron-like cell differentiation of hEnSCs by the combination of epothilone B loaded PCL microspheres in optimized 3D collagen... - November 8th, 2021
- Akiko Nishiyama Explains the Many Strengths of a Degree in Physiology and Neurobiology - UConn Today - UConn Today - October 28th, 2021
- Team finds way to enhance stem cell therapy for CNS injuries - BioPharma-Reporter.com - October 28th, 2021
- 'Rogue' antibodies found in brains of teens with delusions and paranoia after COVID-19 - Livescience.com - October 28th, 2021
- Traumatic Spinal Cord Injury: An Overview of ... - October 16th, 2021
- Role of Stem Cells in Treatment of Neurological Disorder - October 16th, 2021