Elevate Your Performance with Concierge Longevity Strategies
Optimize recovery and enhance performance with our advanced Inflammaging Strategies.
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About Anura...
At Anura Therapeutics, we specialize in optimizing athletic and performance through advanced therapeutic and lymphatic strategies, focusing on injury recovery and anti-aging consultations to enhance your Wellness journey.


Transform your performance! Anura's Consultations are 10X ... Age, wear and tear, and repair... transform your own personal anti-inflammaging journey......
Call: 561-606-0566


Assisted Lymphatic Drainaging: Inert Gas Ionization -FDA Approved- Non Invasive 10x Tissue, Organ, Joint Detox. Reset your body at its foundational level.
Performance Enhancement
Optimizing recovery and performance through advanced Inflammaging Consutlations
Musculoskeletal & Recovery Research — Synovial™
Synovial™ is a specialized research formulation developed for scientific and educational studies focused on joint, tendon, and connective-tissue physiology.
This advanced blend provides a research framework for examining cellular pathways involved in musculoskeletal integrity, recovery modeling, and the adaptive response of collagen-based structures.o
Key Research Components
BPC-157 — A cytoprotective peptide fragment studied for its influence on angiogenesis, fibroblast activity, and cellular communication in connective-tissue research.
TB-500 — A thymosin β-4 derivative explored for its role in actin regulation, tissue remodeling, and regenerative signaling.
Additional Supportive Compounds — Select amino-acid and growth-factor analogs used to model inflammatory resolution and joint-health maintenance in vitro.
Focus Areas
Examination of tendon and ligament biology under stress conditions
Study of collagen synthesis and extracellular-matrix restoration
Evaluation of inflammatory-response mechanisms in controlled models
Analysis of cellular migration and angiogenic signaling
Exploration of musculoskeletal recovery and age-related degeneration models
Anti-Inflammaging Research — BPC-157 / TB-500
BPC-157 / TB-500 is a dual-peptide research formulation developed for scientific and educational studies exploring cellular repair, regenerative signaling, and tissue-response mechanisms.
This synergistic model allows researchers to examine how peptide fragments may influence angiogenesis, collagen synthesis, and recovery processes at the molecular level in controlled environments.
AOD-9604 – A peptide fragment of human growth hormone (HGH) widely studied for its role in lipid metabolism, including the regulation of fat breakdown and formation pathways.
MOTS-c – A mitochondrial-derived peptide examined for its influence on cellular energy regulation and insulin-related signaling.
Tesamorelin – A growth hormone–releasing hormone (GHRH) analog investigated in the context of endogenous GH activity and metabolic modulation.
CJC-1295 – A long-acting GHRH analog researched for its effect on pulsatile growth hormone signaling.
Ipamorelin – A selective GH secretagogue utilized to study ghrelin receptor activation and related metabolic responses.
Focus Areas
Mechanisms of lipid metabolism and energy balance
Muscle maintenance and protein synthesis pathways
Mitochondrial function and adaptive metabolic responses
Regulation of endogenous growth hormone signaling
Models for age-related body composition and metabolic studies
Metabolic Research & Body Composition: Sculpt
Sculpt is a specialized research formulation developed for laboratory and educational studies focused on the biological mechanisms involved in fat metabolism, muscle integrity, and metabolic function. This synergistic compound blend offers investigators a multi-pathway framework for examining cellular energy regulation and age-associated metabolic processes.


For Research Use Only – Not for Human or Veterinary Consumption.
All content is provided solely for scientific, educational, and laboratory research contexts.
Key Research Components
BPC-157 — A synthetic cytoprotective peptide fragment studied for its role in cellular communication, angiogenesis, and the maintenance of tissue integrity under controlled conditions.
TB-500 — A peptide segment of thymosin β-4, commonly researched for its influence on actin regulation, cellular migration, and regenerative pathway modeling.
Focus Areas
Examination of collagen synthesis and dermal matrix organization
Study of tissue remodeling and cellular-level repair responses
Exploration of inflammatory-pathway regulation in vitro
Investigation of angiogenesis and vascular-growth dynamicsModeling of age-related tissue decline and recovery mechanism
For Research Use Only – Not for Human or Veterinary Consumption.
All content is provided solely for scientific, educational, and laboratory research contexts.




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