Gold Nanoparticles Can Remote Control the Brain (2024)

Gold Nanoparticles Can Remote Control the Brain (1)

Some of the newest medical treatments out there require gold—minute rods and sphereswrapped in gold. Thesenanoparticles are engineered to seek out tumor cells and destroyor used as an injectable, reversible male contraception. But, in the future, gold nanoparticles could even be used to control our brain — or rather, to activate brain cells remotely and help treat neurological disease.

For theGuardian, Mo Costandi describes two proposed treatments that use gold nanoparticles to switch nerve cells on. A group of researchers at the University of Chicago, led by Francisco Benzanilla, created gold nanorods that will attach to specific molecules embedded in nerve cell membranes. A gentle pulse of infrared light warms the nanorods which in turn causes the neurons to fire. They’ve tested the system using dorsal root ganglion [DRG] neurons, which cluster in the spinal cord and are important for relaying information about pain and touch. Costandi writes:

The researchers added these particles to DRG neurons growing in Petri dishes, so that they would bind to the cells displaying the relevant proteins on their surface. They then exposed the cells to millisecond pulses of visible light, which heated up the particles, causing the cells to fire nervous impulses in response. This was possible not only in isolated neurons but also in slices of tissue from the rat hippocampus. In both situations, the particles stayed firmly in place when added in low concentrations, allowing for repeated stimulation of the cells for over half an hour.

A second group at MIT is using nano-sized iron oxide spheres that heat up when a magnetic field passes over them. They injected those particles into mice whose neurons had been primed to be sensitive to heat. Normally brain cells don’t need to sense heat, but a virus can carry the gene needed for the heat sensor up into the brain. The neurons incorporate that gene into their own genome and build the sensor. Then when the iron nanoparticles arrive and are warmed by a magnetic field, the neurons sense that and fire.

The treatments are still far from remote-controlling anyone’s brain, but they do demonstrate some of the innovative ways scientists are thinking about nanotechnology and medicine. Benzilla’s group is hoping to develop a modified nanoparticle system to treat macular degeneration, Costandi writes. We’re not that far from a day where you might swallow a pill that would release a team of nanobots into your blood to sniff out disease and report back to your doctor.

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Maris Fessenden | | READ MORE

Maris Fessenden is a freelance science writer and artist who appreciates small things and wide open spaces.

Gold Nanoparticles Can Remote Control the Brain (2024)

FAQs

What can nanoparticles do to the brain? ›

Nanoparticles have the potential to cross the blood brain barrier, which makes them extremely useful as a way to deliver drugs directly to the brain. On the other hand, this is also a major drawback because nanoparticles used to carry drugs may be toxic to the brain. More...

Does gold improve brain function? ›

13, 2024 – Results from phase two clinical trials at UT Southwestern Medical Center showed that a suspension of gold nanocrystals taken daily by patients with multiple sclerosis (MS) and Parkinson's disease (PD) significantly reversed deficits of metabolites linked to energy activity in the brain and resulted in ...

Can gold nanoparticles cross the blood brain barrier? ›

We demonstrated that NPAuG3-S8 crosses the blood-brain barrier (BBB) and does not generate cerebral damage to in vivo CD1 mice model.

Can humans be controlled by nanotechnology? ›

Nanotechnology has the potential to manipulate the biological structure of humans, but it is still a developing field and there are many challenges and limitations to consider.

What is the dark side of nanotechnology? ›

10. REASONS FOR TOXICITY OF NANOPARTICLES:- • As it is well known fact that , when the particle size of a material decreases, its surface area to volume ratio increases, leading to SPECIAL characteristic properties as well different adverse effects on ENVIRONMENT.

What do nanoparticles do to your body? ›

Using several biological models and biomarkers, the included studies revealed the toxic effects of nanoparticles (mainly zinc oxide, silicon dioxide, titanium dioxide, silver, and carbon nanotubes) to include cell death, production of oxidative stress, DNA damage, apoptosis, and induction of inflammatory responses.

What does gold do in the brain? ›

Did you know you have gold in your brain? Inside every neuron, there are just a few atoms of gold that keep the neuron charged, which is what keeps you thinking, moving, and frankly existing.

Does wearing gold affect your body? ›

By boosting oxygen flow through the body, gold helps every body part perform optimally and you will find it easier to complete tasks. Good blood circulation is an important aspect in keeping away disease and this is one reason why many people today wear gold jewelry directly on their skin.

Does gold change your hormones? ›

Results showed that gold nanoparticles have significant effect on hormones in concentrations of 100 ppm. LH, FSH and testosterone were significantly increased compared to (P<0.05). Seminiferous tubular degeneration was also observed in the testes.

Are gold nanoparticles harmful to humans? ›

Gold nanoparticles have a good safety profile and are often used as a non-toxic control in many studies. Bulk gold is well known to be safe and chemically inert, and gold-based compounds have been used in the clinic as anti-inflammatory agents to treat diseases such as rheumatoid arthritis.

What are the disadvantages of gold nanoparticles? ›

One important problem in potential therapy is that toxicity must be carefully examined. Even though it has been reported that gold nanoparticles are inherently non-toxic, it is important to discern the toxicity of the nanoparticle core and that of its capping ligands. Some toxicity may be specific to certain ligands.

Can you drink gold nanoparticles? ›

Although gold nanoparticles are generally considered non-toxic, they do not easily break down in the body and there is concern that prolonged exposure (months) could cause damage to the liver or spleen. In conclusion, I do not recommend ingesting gold nanoparticles, even if you could make microprocessors out of them!

Can nanoparticles be controlled remotely? ›

In addition to liposomes, various other nanoparticle platforms have been used for remote controlled drug delivery using an AMF. In several cases, MNPs have been combined with silica to create composite nanoparticles that can be remotely stimulated to trigger release [107–114].

Can nanotechnology be used as a weapon? ›

Historical use of nanotechnology in the area of warfare and defence has been rapid and expansive. Over the past two decades, numerous countries have funded military applications of this technology including; China, United Kingdom, Russia, and most notably the United States.

Can nanotechnology extend human life? ›

Patients may drink medicine containing nanorobots programmed to kill and reconstruct the molecular structure of cancer cells and viruses. It is also predicted that nanorobots could slow or even reverse the aging process, and life expectancy of human beings could increase significantly.

What are the negative effects of nanotechnology? ›

Potential risks include environmental, health, and safety issues; transitional effects such as displacement of traditional industries as the products of nanotechnology become dominant, which are of concern to privacy rights advocates.

What are the long term effects of nanoparticles? ›

Cellular responses to NP exposure are highly dependent on particle size, surface chemistry, and dose. Exposure to NPs has been linked to various adverse effects on the respiratory system, such as inflammation, oxidative stress, fibrosis, and even lung cancer.

What nanoparticles are in neurological disorders? ›

Nanotechnology provides a new solution to problems associated with CNS disorders. Various CNS disorders, such as multiple sclerosis (MS), PD, ALS, Huntington's disease (HD), AD, and schizophrenia that are almost incurable and have a few treatment options, could be cured with the help of several nanoparticles (Table 1).

What diseases are associated with nanoparticles? ›

These have the potential to produce risk to human health and cause diseases like Parkinson, Alzheimer, asthma, cancer, emphysema, bronchitis, arrhythmia, dermatitis, vasculitis, urticaria, crohn's disease, hypertension, thrombosis, podoconiosis and many more ( Fig. 1) (Ahamed 2014; Asati et al. 2021).

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