ペプチドサプリメント、マーケティングが医学的根拠を上回る(With peptide supplements, marketing outpaces the medicine)

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2026-09-02 カリフォルニア大学ロサンゼルス校(UCLA)

UCLA Healthの研究チームは、筋肉増強、けがの回復、長寿などをうたって販売されている未承認ペプチドについて、科学的根拠と安全性を検証した。BPC-157、TB-500、CJC-1295、MK-677、イパモレリン、GHK-Cuの6種類を対象に、565件の研究をレビューした結果、3分の2以上が動物実験で、人を対象とした筋骨格系疾患への有意な臨床的有効性を示す証拠はほぼなかった。既存研究には対照群不足や研究デザインの不備、利益相反なども確認された。一方、MK-677ではうっ血性心不全の増加により試験が中止された例がある。また、これらの製品の多くはFDAによる承認・品質確認を受けておらず、検査でヒ素や鉛などの有害物質が検出された例もある。研究者は、SNSなどでマーケティングが科学的根拠を大きく先行しているとして、十分な臨床研究が行われるまで使用を控えるよう呼びかけている。

<関連情報>

ペプチドサプリメントとそのスポーツ医学における治療応用 Peptide Supplements and Their Therapeutic Applications in Sports Medicine

Kushagra Tewari, BS , Timothy P. Liu, MD, […], and Thomas J. Kremen, Jr., MD
The American Journal of Sports Medicine  Published:August 11, 2026
DOI:https://doi.org/10.1177/03635465261464420

ペプチドサプリメント、マーケティングが医学的根拠を上回る(With peptide supplements, marketing outpaces the medicine)

Abstract

Background:
The peptide supplement market has experienced rapid growth due to marketing claims of enhanced performance and accelerated recovery from musculoskeletal injury. These peptides are increasingly popular with patients and athletes and are often perceived as low risk, despite the absence of efficacy or safety data for many emerging peptides.

Purpose:
To summarize existing peer-reviewed data on 6 emerging peptides (BPC-157, thymosin beta-4 or TB-500, CJC-1295, MK-677, ipamorelin, and GHK-Cu [copper peptide]) for musculoskeletal recovery and enhancement in animal and human models.

Study Design:
Scoping review.

Methods:
Three independent reviewers searched the PubMed database using permutations of peptide search terms (BPC-157, TB-500, CJC-1295, MK-677 [ibutamoren], ipamorelin, and GHK-Cu) combined with musculoskeletal tissue search terms (bone, fracture, muscle, tendon, ligament, meniscus, and cartilage) following PRISMA (Preferred Reporting Items for Systematic Reviews and Meta-Analyses) guidelines. Papers were independently screened by 2 reviewers, with a third serving as a tiebreaker. Papers examining these peptides for musculoskeletal treatment, tissue recovery, or performance in animal or human models were included.

Results:
Overall, 67% of identified publications utilized preclinical animal models. In animal models, most commonly rats, each compound demonstrated unique mechanisms with promising but variable effects on tendon, muscle, bone, and ligament healing. Human clinical studies were limited to a handful of investigations, most lacking robust controls or rigorous study designs. Human data were heterogeneous and revealed modest improvements at best for metabolic bone health and degenerative knee pain. Some peptides such as MK-677 were associated with significant risks including congestive heart failure, and significant heterogeneity existed in dosing and route of administration.

Conclusion:
Despite promising findings in animal studies, the claimed benefits of emerging peptide supplements for musculoskeletal recovery and performance remain unsubstantiated by current human trials. Documented risks include cardiovascular complications and metabolic dysfunction such as insulin resistance. Because of the lack of robust efficacy and safety data, peptide supplements should not currently be recommended as a replacement or adjunct for existing orthopaedic standard of care.

医療・健康
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