The China Mail - Human brain cells implanted in rats offer research gold mine

USD -
AED 3.672502
AFN 65.50415
ALL 80.507244
AMD 365.01064
ANG 1.789879
AOA 917.000095
ARS 1492.519411
AUD 1.418078
AWG 1.8
AZN 1.689513
BAM 1.695263
BBD 2.013964
BDT 122.737142
BGN 1.695588
BHD 0.377053
BIF 2989.524961
BMD 1
BND 1.279801
BOB 11.724171
BRL 5.1819
BSD 0.999918
BTN 95.385656
BWP 13.460347
BYN 3.007294
BYR 19600
BZD 2.011025
CAD 1.394935
CDF 2275.000054
CHF 0.81266
CLF 0.023222
CLP 913.970338
CNY 6.74385
CNH 6.74491
COP 3148.12
CRC 448.992151
CUC 1
CUP 26.5
CVE 95.576349
CZK 21.005302
DJF 178.066518
DKK 6.481599
DOP 58.525
DZD 132.927353
EGP 50.278399
ERN 15
ETB 161.748658
EUR 0.86704
FJD 2.21445
FKP 0.740201
GBP 0.741185
GEL 2.609656
GGP 0.740201
GHS 11.129554
GIP 0.740201
GMD 73.999606
GNF 8784.026836
GTQ 7.628599
GYD 209.201938
HKD 7.84695
HNL 26.806912
HRK 6.531898
HTG 130.788467
HUF 314.595996
IDR 17857
ILS 2.981155
IMP 0.740201
INR 95.40865
IQD 1309.878261
IRR 1374625.000306
ISK 123.289894
JEP 0.740201
JMD 158.197428
JOD 0.709025
JPY 159.327499
KES 129.339769
KGS 87.449743
KHR 4047.014363
KMF 427.999933
KPW 899.999851
KRW 1420.455019
KWD 0.30877
KYD 0.833341
KZT 465.334992
LAK 22560.653208
LBP 89543.419564
LKR 333.32611
LRD 181.491161
LSL 16.13092
LTL 2.95274
LVL 0.60489
LYD 6.369156
MAD 9.261974
MDL 17.358291
MGA 4307.049554
MKD 53.333911
MMK 2099.846019
MNT 3597.969266
MOP 8.082069
MRU 40.07073
MUR 47.149994
MVR 15.45993
MWK 1733.944716
MXN 17.05351
MYR 4.087009
MZN 63.898097
NAD 16.13078
NGN 1360.390081
NIO 36.795139
NOK 9.525403
NPR 152.617049
NZD 1.71103
OMR 0.384506
PAB 0.999922
PEN 3.374231
PGK 4.424951
PHP 61.309713
PKR 277.552126
PLN 3.732265
PYG 5967.781779
QAR 3.635016
RON 4.546989
RSD 101.700985
RUB 84.076121
RWF 1472.957921
SAR 3.793913
SBD 8.064941
SCR 13.712904
SDG 600.501194
SEK 9.562105
SGD 1.28006
SHP 0.740866
SLE 24.549903
SLL 20969.503586
SOS 571.473149
SRD 37.669903
STD 20697.981008
STN 21.236115
SVC 8.749355
SYP 13002.000116
SZL 16.135114
THB 33.1355
TJS 9.239471
TMT 3.5
TND 2.934571
TOP 2.40776
TRY 47.77525
TTD 6.780822
TWD 32.13899
TZS 2645.502953
UAH 44.697729
UGX 3712.41966
UYU 40.062929
UZS 11944.334892
VES 765.391543
VND 26075
VUV 118.594628
WST 2.730779
XAF 568.573014
XAG 0.015361
XAU 0.000228
XCD 2.70255
XCG 1.802131
XDR 0.707585
XOF 568.570549
XPF 103.373104
YER 237.15012
ZAR 16.11924
ZMK 9001.201104
ZMW 18.798892
ZWL 321.999592
  • CMSC

    0.0800

    21.53

    +0.37%

  • VOD

    0.0450

    16.135

    +0.28%

  • RBGPF

    0.0000

    72.16

    0%

  • NGG

    0.2740

    80.954

    +0.34%

  • RELX

    -0.0650

    34.485

    -0.19%

  • RIO

    -1.8900

    99.33

    -1.9%

  • GSK

    0.0500

    50.35

    +0.1%

  • RYCEF

    0.5500

    21.1

    +2.61%

  • BTI

    1.5900

    57.43

    +2.77%

  • BCE

    0.0700

    23.2

    +0.3%

  • JRI

    -0.0100

    12.7

    -0.08%

  • BCC

    0.7500

    85

    +0.88%

  • CMSD

    0.0800

    21.67

    +0.37%

  • BP

    -0.4500

    42.48

    -1.06%

  • AZN

    -0.8300

    157.67

    -0.53%

Human brain cells implanted in rats offer research gold mine
Human brain cells implanted in rats offer research gold mine / Photo: © Stanford University/AFP

Human brain cells implanted in rats offer research gold mine

Scientists have successfully implanted and integrated human brain cells into newborn rats, creating a new way to study complex psychiatric disorders such as schizophrenia and autism, and perhaps eventually test treatments.

Text size:

Studying how these conditions develop is incredibly difficult -- animals do not experience them like people, and humans cannot simply be opened up for research.

Scientists can assemble small sections of human brain tissue derived from stem cells in petri dishes, and have already done so with more than a dozen brain regions.

But in dishes, "neurons don't grow to the size which a human neuron in an actual human brain would grow", said Sergiu Pasca, the study's lead author and professor of psychiatry and behavioural sciences at Stanford University.

And isolated from a body, they cannot tell us what symptoms a defect will cause.

To overcome those limitations, researchers implanted the groupings of human brain cells, called organoids, into the brains of young rats.

The rats' age was important: human neurons have been implanted into adult rats before, but an animal's brain stops developing at a certain age, limiting how well implanted cells can integrate.

"By transplanting them at these early stages, we found that these organoids can grow relatively large, they become vascularised (receive nutrients) by the rat, and they can cover about a third of a rat's (brain) hemisphere," Pasca said.

- Ethical dilemmas -

To test how well the human neurons integrated with the rat brains and bodies, air was puffed across the animals' whiskers, which prompted electrical activity in the human neurons.

That showed an input connection -- external stimulation of the rat's body was processed by the human tissue in the brain.

The scientists then tested the reverse: could the human neurons send signals back to the rat's body?

They implanted human brain cells altered to respond to blue light, and then trained the rats to expect a "reward" of water from a spout when blue light shone on the neurons via a cable in the animals' skulls.

After two weeks, pulsing the blue light sent the rats scrambling to the spout, according to the research published Wednesday in the journal Nature.

The team has now used the technique to show that organoids developed from patients with Timothy syndrome grow more slowly and display less electrical activity than those from healthy people.

The technique could eventually be used to test new drugs, according to J. Gray Camp of the Roche Institute for Translational Bioengineering, and Barbara Treutlein of ETH Zurich.

It "takes our ability to study human brain development, evolution and disease into uncharted territory", the pair, who were not involved in the study, wrote in a review commissioned by Nature.

The method raises potentially uncomfortable questions -- how much human brain tissue can be implanted into a rat before the animal's nature is changed? Would the method be ethical in primates?

Pasca argued that limitations on how deeply human neurons integrate with the rat brain provide "natural barriers".

Rat brains develop much faster than human ones, "so there's only so much that the rat cortex can integrate".

But in species closer to humans, those barriers might no longer exist, and Pasca said he would not support using the technique in primates for now.

He argued though that there is a "moral imperative" to find ways to better study and treat psychiatric disorders.

"Certainly the more human these models are becoming, the more uncomfortable we feel," he said.

But "human psychiatric disorders are to a large extent uniquely human. So we're going to have to think very carefully... how far we want to go with some of these models moving forward."

R.Yeung--ThChM