Dubai Telegraph - Costa Rican sloth antibiotics offer hope for human medicine

EUR -
AED 4.35335
AFN 77.050797
ALL 96.614026
AMD 452.873985
ANG 2.121943
AOA 1087.00321
ARS 1723.800654
AUD 1.702936
AWG 2.136666
AZN 2.019869
BAM 1.955248
BBD 2.406031
BDT 145.978765
BGN 1.990709
BHD 0.449191
BIF 3539.115218
BMD 1.18539
BND 1.512879
BOB 8.254703
BRL 6.231008
BSD 1.194568
BTN 109.699013
BWP 15.630651
BYN 3.402439
BYR 23233.647084
BZD 2.402531
CAD 1.615035
CDF 2684.909135
CHF 0.915901
CLF 0.026011
CLP 1027.058063
CNY 8.240537
CNH 8.248946
COP 4354.94563
CRC 591.535401
CUC 1.18539
CUP 31.412839
CVE 110.234327
CZK 24.334287
DJF 212.720809
DKK 7.470097
DOP 74.383698
DZD 153.702477
EGP 55.903178
ERN 17.780852
ETB 185.572763
FJD 2.613371
FKP 0.863571
GBP 0.865754
GEL 3.194674
GGP 0.863571
GHS 12.974143
GIP 0.863571
GMD 86.533903
GNF 10372.164298
GTQ 9.16245
GYD 249.920458
HKD 9.257838
HNL 31.365884
HRK 7.536597
HTG 156.336498
HUF 381.328619
IDR 19883.141804
ILS 3.663335
IMP 0.863571
INR 108.679593
IQD 1553.453801
IRR 49934.560565
ISK 144.985527
JEP 0.863571
JMD 187.197911
JOD 0.840489
JPY 183.433247
KES 152.915746
KGS 103.662825
KHR 4768.236408
KMF 491.93733
KPW 1066.928941
KRW 1719.752641
KWD 0.36382
KYD 0.995519
KZT 600.800289
LAK 25485.888797
LBP 101410.128375
LKR 369.427204
LRD 219.593979
LSL 19.132649
LTL 3.500149
LVL 0.717031
LYD 7.495914
MAD 10.835985
MDL 20.092409
MGA 5260.173275
MKD 61.631889
MMK 2489.287708
MNT 4228.659246
MOP 9.606327
MRU 47.30937
MUR 53.852723
MVR 18.32658
MWK 2059.023112
MXN 20.70407
MYR 4.672854
MZN 75.580924
NAD 18.967522
NGN 1643.520192
NIO 43.508231
NOK 11.437875
NPR 175.519161
NZD 1.96876
OMR 0.458133
PAB 1.194573
PEN 3.994177
PGK 5.066955
PHP 69.837307
PKR 331.998194
PLN 4.215189
PYG 8001.773454
QAR 4.316051
RON 5.097064
RSD 117.111851
RUB 90.544129
RWF 1742.915022
SAR 4.446506
SBD 9.544303
SCR 17.200951
SDG 713.016537
SEK 10.580086
SGD 1.505332
SHP 0.88935
SLE 28.834661
SLL 24857.038036
SOS 677.454816
SRD 45.104693
STD 24535.182964
STN 24.493185
SVC 10.452048
SYP 13109.911225
SZL 19.132635
THB 37.411351
TJS 11.151397
TMT 4.148866
TND 3.37248
TOP 2.854135
TRY 51.47818
TTD 8.110743
TWD 37.456003
TZS 3052.380052
UAH 51.199753
UGX 4270.811618
USD 1.18539
UYU 46.357101
UZS 14603.874776
VES 410.075543
VND 30749.020682
VUV 141.680176
WST 3.213481
XAF 655.774526
XAG 0.014004
XAU 0.000244
XCD 3.203577
XCG 2.153028
XDR 0.815573
XOF 655.774526
XPF 119.331742
YER 282.508153
ZAR 19.136335
ZMK 10669.938133
ZMW 23.443477
ZWL 381.695147
  • SCS

    0.0200

    16.14

    +0.12%

  • RBGPF

    1.3800

    83.78

    +1.65%

  • RELX

    -0.3700

    35.8

    -1.03%

  • BTI

    0.4600

    60.68

    +0.76%

  • AZN

    0.1800

    92.77

    +0.19%

  • BCC

    0.5100

    80.81

    +0.63%

  • CMSC

    0.0500

    23.76

    +0.21%

  • RIO

    -4.1000

    91.03

    -4.5%

  • BCE

    0.3700

    25.86

    +1.43%

  • BP

    -0.1600

    37.88

    -0.42%

  • GSK

    0.9400

    51.6

    +1.82%

  • NGG

    0.2000

    85.27

    +0.23%

  • CMSD

    -0.0400

    24.05

    -0.17%

  • JRI

    0.1400

    13.08

    +1.07%

  • VOD

    -0.0600

    14.65

    -0.41%

  • RYCEF

    -0.4300

    16

    -2.69%

Costa Rican sloth antibiotics offer hope for human medicine
Costa Rican sloth antibiotics offer hope for human medicine / Photo: Ezequiel BECERRA - AFP

Costa Rican sloth antibiotics offer hope for human medicine

The fur of Costa Rican sloths appears to harbor antibiotic-producing bacteria that scientists hope may hold a solution to the growing problem of "superbugs" resistant to humanity's dwindling arsenal of drugs.

Text size:

Sloth fur, research has found, hosts bustling communities of insects, algae, fungi and bacteria, among other microbes, some of which could pose disease risk.

Yet, experts say, the famously slow-moving mammals appear to be surprisingly infection-proof.

"If you look at the sloth's fur, you see movement: you see moths, you see different types of insects... a very extensive habitat," Max Chavarria, a researcher at the University of Costa Rica, told AFP.

"Obviously when there is co-existence of many types of organisms, there must also be systems that control them," he said.

Chavarria and a team took fur samples from Costa Rican two- and three-toed sloths to examine what that control system could be.

They found the possible existence of antibiotic-producing bacteria that "makes it possible to control the proliferation of potentially pathogenic bacteria... or inhibit other competitors" such as fungi, according to a study published in the journal Environmental Microbiology.

- 'No infection' -

The sloth is a national symbol in laid back Costa Rica, and a major tourist attraction for the Central American country.

Both the two-toed (Choloepus Hoffmanni) and three-toed (Bradypus variegatus) sloth species have seen their populations decline, according to the International Union for the Conservation of Nature's Red List of Threatened Species.

They live in the canopies of trees in the jungle on the Caribbean coast, where the climate is hot and humid.

American Judy Avey runs a sanctuary in the balmy jungle to care for sloths injured after coming into contact with humans or other animals.

She treats and rehabilitates the creatures with a view to releasing them back into the wild.

"We've never received a sloth that has been sick, that has a disease or has an illness," she told AFP.

"We've received sloths that had been burned by power lines and their entire arm is just destroyed... and there's no infection.

"I think maybe in the 30 years (we've been open), we've seen five animals that have come in with an infected injury. So that tells us there's something going on in their... bodily ecosystem."

Avey, who established the sanctuary with her late Costa Rican husband, Luis Arroyo, had never even heard of a sloth back home in Alaska.

Since receiving her first sloth, whom she named "Buttercup," in 1992, she has cared for around 1,000 animals.

- Penicillin inspiration -

Researcher Chavarria took fur samples taken from sloths at the sanctuary to examine in his laboratory.

He began his research in 2020, and has already pinpointed 20 "candidate" microorganisms waiting to be named.

But he said there is a long road ahead in determining whether the sloth compounds could be useful to humans.

"Before thinking about an application in human health, it's important to first understand... what type of molecules are involved," said Chavarria.

An example of this is penicillin, discovered in 1928 by British scientist Alexander Fleming, who discovered that a fungal contamination of a laboratory culture appeared to kill a disease-causing bacteria.

His discovery of the world's first bacteria-killer, or antibiotic, earned him the 1945 Nobel Prize in medicine.

However, microbial resistance to antibiotics has been a growing problem, meaning some medicines no longer work to fight the infections they were designed to treat.

Antimicrobial resistance is a natural phenomenon, but the overuse and misuse of antibiotics in humans, animals and plants has made the problem worse.

The World Health Organization estimates that by 2050, resistance to antibiotics could cause 10 million deaths a year.

"Projects like ours can contribute to finding... new molecules that can, in the medium or long term, be used in this battle against antibiotic resistance," said Chavarria.

I.Mansoor--DT