Nelidovaet al.,Science 368 , 1108–1113 (2020) 5 June 2020 5of6
Fig. 4. NIR light responses in
the ex vivo human retina.
(A) Schematic of a human retinal
explant 8 weeks postmortem.
Long-term culture leads to
loss of outer segments and light
responses. (B) Top: Top view
of a human retina transduced
with both rTRPV1 and nanorods,
immunostained for TRPV1 (blue)
and overlaid with Hoechst
nuclear stain (gray). Bottom:
Cross section of the retina shown
in top image. Scale bars, 10mm.
(C) Number of rTRPV1-positive
(blue) photoreceptors per square
millimeter in human retinas
transduced with both rTRPV1
and nanorods or in control,
untransduced human retinas.
Each data point is collected
from a different region of
a retina (five regions per retina).
(D) Distribution of rTRPV1-positive
cells across retinal layers.
(E) Scanning electron microscopy
image of gold nanorods bound
to a rTRPV1-transduced human
retina. Scale bar, 1mm. Inset:
Transmission electron microscopy
image showing an anti-6x-His
antibody touching a gold nanorod
with its Fc domain. Scale bar,
20 nm. (F) Example calcium
responses recorded from human
retinal neurons in ONL, INL,
and GCL in response to full-field
NIR light. Vertical lines at bottom
indicate stimulus (915 nm,
100 ms) timing. Two-photon
images of OGB-1 filled cell bodies
(white circles), left of the response
curves. Scale bar, 10mm.
(G) Cumulative frequency of
responding neurons in different
layers of human retinas trans-
duced with both rTRPV1 and
nanorods (labs= 915 nm) or in
control, untransduced human
retinas. (H) Response amplitudes
(DF/F) by retinal layer. Increase
(↑) and decrease (↓) of calcium
signal are shown separately.
Number of neurons given as
ratio of responding neurons to
measured neurons. Log 10 light
intensity = 18.9.
B rTRPV1 C
ONL = 94.5 %
INL = 4.5 %
GCL = 1 %
rTRPV1 transduction specificity
D
ONL
INL
Human retina
0
1000
2000
3000
4000
5000
Nanorod binding
Human retina
Control
n = 3 explants
E
rTRPV1-nanorodsn = 3 explants
n = 3 explants
Antibody
Number of transduced photoreceptors per mm
2
rTRPV1
Cumulative frequenc
y o
f res
ponding
human retinal neurons (%)
GCL, rTRPV1-nanorods, n = 105 neurons
ONL, rTRPV1-nanorods, n = 101 neurons
INL, rTRPV1-nanorods, n = 118 neurons
G
A
Control, n = 325 neurons
F
ONL
INL
GCL
Postmortem human retina
1 s
20%
ΔF/F
GCL
Log 10 I 915 (photons cm-2 s-1)
15.4 16.0 18.1 18.4 18.9
1 2 3 1 2 3 1 2
rTRPV1-nanorods
3
ONL. OGB-1
INL. OGB-1
GCL. OGB-1
0
20
40
60
Log 10 I 915 (photons cm-2 s-1)
15 16 17 18 19
4
4
4
ONL
GCL
, rTRPV1-nanorods
ONL, rTRPV1-nanorods n = 15/101 neuronsINL, n = 53/105 neurons
rTRPV1-nanorods
n = 61/118 neurons
H
-20
-10
0
10
20
30
40
Human retinal neuron response
amplitude (%
ΔF/F)
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