The Fort Worth Press - Viruses that could save millions of lives

USD -
AED 3.672499
AFN 66.498782
ALL 80.629676
AMD 365.091035
AOA 917.000408
ARS 1492.336499
AUD 1.414877
AWG 1.80125
AZN 1.701052
BAM 1.691649
BBD 2.00813
BDT 123.418242
BHD 0.375989
BIF 2985.079791
BMD 1
BND 1.277602
BOB 11.849673
BRL 5.083698
BSD 0.997016
BTN 94.875232
BWP 13.457596
BYN 2.968819
BYR 19600
BZD 2.00519
CAD 1.39518
CDF 2262.499098
CHF 0.808199
CLF 0.023198
CLP 912.999827
CNY 6.747602
CNH 6.743155
COP 3157.68
CRC 453.228387
CUC 1
CUP 26.5
CVE 95.372573
CZK 20.984797
DJF 177.546166
DKK 6.46806
DOP 58.20179
DZD 132.308956
EGP 49.569799
ERN 15
ETB 160.923669
EUR 0.86521
FJD 2.20855
FKP 0.74148
GBP 0.741195
GEL 2.610161
GGP 0.74148
GHS 11.700039
GIP 0.74148
GMD 73.496802
GNF 8756.649224
GTQ 7.607144
GYD 208.588851
HKD 7.845875
HNL 26.723176
HRK 6.519601
HTG 130.363707
HUF 314.212956
IDR 17801
ILS 2.99985
IMP 0.74148
INR 95.21055
IQD 1306.058902
IRR 1375550.000465
ISK 123.37984
JEP 0.74148
JMD 158.335856
JOD 0.708953
JPY 157.888997
KES 128.789741
KGS 87.449779
KHR 4049.647537
KMF 425.999543
KRW 1411.360366
KWD 0.30866
KYD 0.830861
KZT 467.275008
LAK 22510.919863
LBP 89282.792025
LKR 334.420274
LRD 179.959348
LSL 16.197552
LTL 2.95274
LVL 0.60489
LYD 6.341738
MAD 9.29222
MDL 17.337716
MGA 4254.638239
MKD 53.219738
MMK 2099.549369
MNT 3595.852714
MOP 8.056654
MRU 40.080439
MUR 46.795264
MVR 15.450064
MWK 1728.841413
MXN 17.138497
MYR 4.085099
MZN 63.904996
NAD 16.197552
NGN 1361.789707
NIO 36.690741
NOK 9.50157
NPR 151.800372
NZD 1.69811
OMR 0.382693
PAB 0.997016
PEN 3.376465
PGK 4.406003
PHP 60.814978
PKR 276.796523
PLN 3.719555
PYG 5928.296501
QAR 3.644596
RON 4.541503
RSD 101.492021
RUB 81.61994
RWF 1466.072741
SAR 3.744756
SBD 8.065696
SCR 14.449077
SDG 600.504962
SEK 9.48365
SGD 1.278665
SLE 24.60377
SOS 569.822255
SRD 37.866499
STD 20697.981008
STN 21.191022
SVC 8.723782
SZL 16.194265
THB 32.970555
TJS 9.197509
TMT 3.51
TND 2.929032
TRY 47.714698
TTD 6.757774
TWD 32.250104
TZS 2643.563029
UAH 44.653894
UGX 3714.050945
UYU 40.133201
UZS 11924.058297
VES 755.762399
VND 26204.5
VUV 118.557141
WST 2.733716
XAF 567.363231
XAG 0.015658
XAU 0.00023
XCD 2.70255
XCG 1.796912
XDR 0.705618
XOF 567.363231
XPF 103.152705
YER 238.395817
ZAR 16.14803
ZMK 9001.197294
ZMW 18.818492
ZWL 321.999592
  • CMSC

    0.0240

    21.744

    +0.11%

  • CMSD

    -0.1600

    21.82

    -0.73%

  • BCC

    2.3400

    86.6

    +2.7%

  • RIO

    1.4500

    101.1

    +1.43%

  • BCE

    -0.0200

    22.75

    -0.09%

  • RBGPF

    0.7600

    70.5

    +1.08%

  • GSK

    0.7900

    52.96

    +1.49%

  • JRI

    0.1500

    12.81

    +1.17%

  • RYCEF

    0.2300

    20.85

    +1.1%

  • AZN

    1.4100

    161.42

    +0.87%

  • VOD

    0.1900

    16.19

    +1.17%

  • NGG

    0.4700

    80.88

    +0.58%

  • RELX

    0.0485

    35.52

    +0.14%

  • BTI

    0.6000

    59.33

    +1.01%

  • BP

    -0.6000

    41.63

    -1.44%

Viruses that could save millions of lives
Viruses that could save millions of lives

Viruses that could save millions of lives

It may seem strange after a pandemic that has killed millions and turned the world upside down, but viruses could save just as many lives.

Text size:

In a petri dish in a laboratory in the Georgian capital Tbilisi, a battle is going on between antibiotic resistant bacteria and "friendly" viruses.

This small nation in the Caucasus has pioneered research on a groundbreaking way to tackle the looming nightmare of bacteria becoming resistant to the antibiotics on which the world depends.

Long overlooked in the West, bacteriophages or bacteria-eating viruses are now being used on some of the most difficult medical cases, including a Belgian woman who developed a life-threatening infection after being injured in the 2016 Brussels airport bombing.

After two years of unsuccessful antibiotic treatment, bacteriophages sent from Tbilisi cured her infection in three months.

"We use those phages that kill harmful bacteria" to cure patients when antibiotics fail, Mzia Kutateladze of the Eliava Institute of Bacteriophages told AFP.

Even a banal infection can "kill a patient because the pathogen has developed resistance to antibiotics," Kutateladze said.

In such cases, phagotherapy "is one of the best alternatives", she added.

Phages have been known about for a century, but were largely forgotten and dismissed after antibiotics revolutionised medicine in the 1930s.

- Stalin's henchman -

It didn't help that the man who did most to develop them, Georgian scientist Giorgi Eliava, was executed in 1937 on the orders of another Georgian, Lavrentiy Beria, Stalin's most notorious henchman and the head of his secret police.

Eliava had worked in the Pasteur Institute in Paris with French-Canadian microbiologist Felix d'Herelle, one of the two men credited with discovering phages, and persuaded Stalin to invite him to Tbilisi in 1934.

But their collaboration was cut short when Beria had Eliava killed, although his motive still remains a mystery.

With the World Health Organization now declaring antimicrobial resistance a global health crisis, phages are making a comeback, especially as they can target bacteria while leaving human cells intact.

A recent study warned that superbugs could kill as many as 10 million people a year when antimicrobial resistance due to overuse of antibiotics reaches a tipping point. That could come within three decades.

- 'Training' viruses -

While phages-based medicines cannot completely replace antibiotics, researchers say they have major pluses in being cheap, not having side-effects nor damaging organs or gut flora.

"We produce six standard phages that are of wide spectrum and can heal multiple infectious diseases," said Eliava Institute physician Lia Nadareishvili.

In some 10 to 15 percent of patients, however, standard phages don't work and "we have to find ones capable of killing the particular bacterial strain," she added.

Tailored phages to target rare infections can be selected from the institute's massive collection -- the world's richest -- or be found in sewage or polluted water or soil, Kutateladze said.

The institute can even "train" phages so that "they can kill more and more different harmful bacteria."

"It is a cheap and easily accessible therapy," she added.

- Last-resort treatment -

A 34-year-old American mechanical engineer suffering from a chronic bacterial disease for six years told AFP he "already felt improvement" after two weeks at the Tbilisi institute.

"I've tried every possible treatment in the United States," said Andrew, who would only give his first name.

He is one of the hundreds of patients from around the globe who arrive in Georgia every year for last-resort treatment, said Nadareishvili.

With the traditional antimicrobial armoury depleting rapidly, more clinical studies are needed so that phagotherapy can be more widely approved, Kutateladze argued.

In 2019, the United States Food and Drug Administration (FDA) authorised a clinical study on the use of bacteriophages to cure secondary infections in Covid patients.

Beyond medicine, phages are already being used to stop food going off, and they "can be used in agriculture to protect crops and animals from harmful bacteria," Kutateladze said.

The institute has already conducted research on bacteria targeting cotton and rice.

Bacteriophages also have potential to counter biological weapons and combat bioterrorism, with Canadian researchers publishing a 2017 study on using them to counter an anthrax attack on crowded public places.

M.Delgado--TFWP