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AN OPTIMIZED MOUSE PARABIOSIS PROTOCOL FOR INVESTIGATION OF AGING AND REJUVENATIVE MECHANISMS

Publication ,  Journal Article
Rodriguez, S; Carver, C; Ayasoufi, K; Boynton, FD; Schafer, M
Published in: Innovation in Aging
December 20, 2022

Surgical parabiosis is widely used to study the mechanistic influence of the circulating milieu on aging and regeneration. This powerful model presents diverse complications based on age, strain, sex, and other experimental parameters. In young (Y) and old (O) male and female C57BL6 mice, we optimized heterochronic (n=12) and isochronic (n=10 Y-Y, n=7 O-O) parabiosis. Throughout protocol development, we identified several complications including variable responses to anesthesia, external and internal dehiscence, dehydration, and weight loss. We identified and implemented solutions during surgical and post-surgical periods, including titrated anesthesia, reinforced internal sutures, topical agents to promote wound healing, and increased supplementation. By consistently adopting protocol changes we were able to significantly increase survival. Separately, we confirmed the time course of chimerism in heterochronic pairs of C57BL6 and Tg(act-EGFP)Y01Osb (eGFP) mice. Baseline and longitudinal blood samples were collected via tail vein. Flow cytometry was used to visualize GFP-positive cells from the parabiont blood sample. Through blood analysis we found that chimerism occurs as early as 2 days post-operatively. Exploitation of our optimized protocol may enable others to efficiently adopt the surgical parabiosis model to dynamically study mechanisms of aging and regeneration.

Duke Scholars

Published In

Innovation in Aging

DOI

EISSN

2399-5300

Publication Date

December 20, 2022

Volume

6

Issue

Supplement_1

Start / End Page

441 / 442

Publisher

Oxford University Press (OUP)

Related Subject Headings

  • 3202 Clinical sciences
 

Citation

APA
Chicago
ICMJE
MLA
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Rodriguez, S., Carver, C., Ayasoufi, K., Boynton, F. D., & Schafer, M. (2022). AN OPTIMIZED MOUSE PARABIOSIS PROTOCOL FOR INVESTIGATION OF AGING AND REJUVENATIVE MECHANISMS. Innovation in Aging, 6(Supplement_1), 441–442. https://doi.org/10.1093/geroni/igac059.1730
Rodriguez, Sonia, Chase Carver, Katayoun Ayasoufi, Felicia Duke Boynton, and Marissa Schafer. “AN OPTIMIZED MOUSE PARABIOSIS PROTOCOL FOR INVESTIGATION OF AGING AND REJUVENATIVE MECHANISMS.” Innovation in Aging 6, no. Supplement_1 (December 20, 2022): 441–42. https://doi.org/10.1093/geroni/igac059.1730.
Rodriguez S, Carver C, Ayasoufi K, Boynton FD, Schafer M. AN OPTIMIZED MOUSE PARABIOSIS PROTOCOL FOR INVESTIGATION OF AGING AND REJUVENATIVE MECHANISMS. Innovation in Aging. 2022 Dec 20;6(Supplement_1):441–2.
Rodriguez, Sonia, et al. “AN OPTIMIZED MOUSE PARABIOSIS PROTOCOL FOR INVESTIGATION OF AGING AND REJUVENATIVE MECHANISMS.” Innovation in Aging, vol. 6, no. Supplement_1, Oxford University Press (OUP), Dec. 2022, pp. 441–42. Crossref, doi:10.1093/geroni/igac059.1730.
Rodriguez S, Carver C, Ayasoufi K, Boynton FD, Schafer M. AN OPTIMIZED MOUSE PARABIOSIS PROTOCOL FOR INVESTIGATION OF AGING AND REJUVENATIVE MECHANISMS. Innovation in Aging. Oxford University Press (OUP); 2022 Dec 20;6(Supplement_1):441–442.
Journal cover image

Published In

Innovation in Aging

DOI

EISSN

2399-5300

Publication Date

December 20, 2022

Volume

6

Issue

Supplement_1

Start / End Page

441 / 442

Publisher

Oxford University Press (OUP)

Related Subject Headings

  • 3202 Clinical sciences